Showing posts with label biology. Show all posts
Showing posts with label biology. Show all posts

Thursday, October 08, 2009

National Medal of Science Winners

Yesterday President Barak Obama presented the National Medal of Science to nine "eminent researchers" and the National Medal of Technology and Innovation to four inventers, the "highest honors bestowed by the United States government on scientists, engineers, and inventors."

Three women were honored this year with the National Medal of Science.

Dr. Joanna Fowler, Senior Scientist at Brookhaven National Laboratory, New York

[. . . ] for her pioneering work in chemistry involving the synthesis of medical imaging compounds and her innovative applications of these compounds to human neuroscience, which have significantly advanced our understanding of the human brain and brain diseases, including drug addiction.



Dr. Elaine Fuchs
, Rebecca C. Lancefield Professor and Investigator, HHMI at the laboratory of Mammalian Cell Biology and Development, The Rockefeller University, New York
[. . .] for her pioneering use of cell biology and molecular genetics in mice to understand the basis of inherited diseases in humans and her outstanding contributions to our understandings of the biology of skin and its disorders, including her notable investigations of adult skin stem cells, cancers, and genetic syndromes.

Dr. JoAnne Stubbe, Novartis Professor of Chemistry and Professor of Biology, Massachusetts Institute of Technology
[. . . ] for her groundbreaking experiments establishing the mechanisms of ribonucleotide reductases, polyester synthases, and natural product DNA cleavers -- compelling demonstrations of the power of chemical investigations to solve problems in biology.

One woman was honored with the National Medal of Technology and Innovation:

Dr. Esther Sans Takeuchi, Greatbatch Professor of Advanced Power Sources in the Chemical and Biological Engineering Department, University at Buffalo, The State University of New York
[. . . ] for her seminal development of the silver vanadium oxide battery that powers the majority of the world's lifesaving implantable cardiac defibrillators, and her innovations in other medical battery technologies that improve the health and quality of life of millions of people.



Three women National Science Winners in a single year is a record high - and historically that number has frequently been zero. While that may seem like an encouraging upward trend, if you check the stats, more women were NMoS recipients in the 1990s (15) than in the 2000s (10). Hopefully, the 2010s will see an improvement in those numbers.

The National Medal of Technology and Innovation doesn't provide a way to search recipients by gender (and some winners are actually companies), but looking through the list it appears that Esther Sans Takeuchi is the first woman to win since Stephanie Kwolek in 1996.

Watch the awards ceremony on YouTube:


(President Obama also said some good things about supporting research and math and science education in his speech.)

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Monday, October 05, 2009

Blackburn and Greider win the Nobel for Medicine: the first time two women share the prize

Today it was announced that Elizabeth H. Blackburn, Carol W. Greider and Jack W. Szostak would share the 2009 Nobel Prize in Physiology or Medicine "for the discovery of how chromosomes are protected by telomeres and the enzyme telomerase". The award shouldn't have come as a surprise to anyone familiar with the modern biological sciences, since their work was indeed groundbreaking. It wasn't a matter of "if" they would win, but "when".

Telomeres are stretches of repetitive DNA that protect the ends of chromosomes during cell division - Blackburn has compared them to the tips on the ends of shoelaces1 that keep them from unraveling. As cells divide the telomere sequences get shorter and shorter, which limits cells to a fixed number of divisions. Telomere shorting is thought to be responsible for aging on a cellular level. Cancer cells, which divide indefinitely, carry mutations that allow the maintenance of telomere length.

You can find out more about the science by exploring the history of telomere research on the Lasker Awards site and by watching Blackburn's 2008 Women@GoogleTalk about telomeres and aging.

Some of the other awards won jointly by Blackburn and Greider:

Elizabeth Blackburn

Elizabeth Blackburn is a native of Hobart, Tasmania, Australia, the daughter of two physicians, a fact that Blackburn has noted helped shape her view of pursuing a career as a woman:

The main influence my parents' careers had on me was that it gave me the idea that women and men were equivalent in careers. They were both physicians, they grew up at the same time, and they trained at the same time. Probably, the other influence it had was showing me that motherhood and career can go together. My mother worked part-time much of the time, as I was one of seven children!

After receiving her B.Sc. and M.Sc. degrees from the University of Melbourne, she moved to the UK, where she earned her doctorate from the University of Cambridge in the laboratory of biochemist Frederick Sanger, who pioneered methods of nucleic acid sequencing. She moved to the United States in 1975 for postdoctoral work in the lab of Joseph G. Gall2 at Yale.

It was in Gall's laboratory that Blackburn analyzed the structure of the chromosomes of the fresh water protozoan Tetrahymena, discovering that the DNA sequence ends of chromosomes consisted of simple repeated DNA sequences. As Gall has recalled,3 they didn't fully appreciate the revolutionary nature of the discovery at that time.
The work Liz was doing in my lab was technically advanced, because she was using techniques learend in Sanger's lab, and virtually no one else in the world was doing that kind of work. We were interested in sequencing partly because it was something you could do and we knew there were unusual features about these molecules. At the time, we didn't say, Eureka, we found what the ends of chromosomes are like. She had made a discovery whose significance we didn't yet appreciate completely. I knew Liz was extremely good, but I didn't know she as a superstar until she started doing her own independent work.
After completing her postdoc, Blackburn joined the faculty of the University of California at Berkeley in 1978, where she continued her study of telomere biochemistry. There she and one of her graduate students, Carol Greider, discovered telomerase, the enzyme that adds telomere DNA sequences to the ends of chromosomes (read more about that below). In 1990 Blackburn moved her lab to the University of California at San Francisco, where she continues to study telomere function and biochemistry.

Blackburn has also been involved in the political side of science. In 2001 she was appointed by the Bush administration as a scientist member of the President's Council on Bioethics. Blackburn and fellow panelist Janet Rowley were very critical of the scientific content of the Council's reports on stem cell research and aging. Her removal from the panel in 2004 drew criticism from scientists who believed she was removed because of her advocacy for human embryonic stem cell research and therapeutic cloning.

A few key publications:
Additional information about Elizabeth Blackburn:
Carol W. Greider

Carol Greider grew up in Davis, California, the daughter of two scientists: her mother was a biologist, who died when Greider was six and her father was a physicist at UC Davis.

Greider got her first taste of hands-on research when she was a freshman at the University of California at Santa Barbara under the mentorship of Bea Sweeney, and ended up working in several labs before deciding that she wanted to pursue biochemistry. She applied to a number of graduate programs, but ran into a problem:
“I had great research experience, great letters of recommendation, and outstanding grades, but I had poor GREs.” Although she did not know it growing up, Greider suffers from dyslexia, which affected her scores on standardized tests. Only two schools—the California Institute of Technology (Pasadena, CA) and the University of California, Berkeley— offered her an interview. When she met with cell biologist Elizabeth Blackburn in Berkeley, things clicked again. “I really liked my conversations with Liz, and there were a number of other people in the department that would be potentially fun to work with, so I went there,” says Greider.
It was while working in Blackburn's lab in 1984 that Greider discovered telomerase, an enzyme that maintains telomere sequences. The account of her discovery in the biography published upon her election to the National Academy of Sciences explains the skill and hard work that went into that achievement:
"If you were easily intimidated, you wouldn't take on that kind of project," Blackburn says. "We had to be both rigorous and enterprising, and those are exactly the characteristics that Carol has. the combination is a great strength." For her part, Greider worked 12-hour days and supplemented her existing biochemistry knowledge with DNA cloning techniques and other skills needed for the project.

Nine months after she began the project, and after much trial and error finding the right substrate and assay, Greider identified the first signs of her enzyme. On Christmas Day in 1984, she developed one of her gels and saw a ladder of the characteristic Tetrahymena 6-base telomeric repeats - exactly the pattern that would be expected from a telomere-synthesizing enzyme.
Of course that was just the beginning. Greider and Blackburn had to rule out the possibility that the results were an artifact. It wasn't until June of 1985 that they were completely convinced that they had isolated the correct enzyme. Greider and Blackburn seem to have had a very good working relationship, which likely contributed to her success.

After receiving her PhD, Greider continued research on the biochemistry of telomerase and the biological function of telomeres at Cold Spring Harbor, first as an independent fellow and then as an Investigator. She moved her lab to the Department of Molecular Biology and Genetics at Johns Hopkins University School of Medicine in 1997 where she is continues her research today.

A few key publications:
Additional information about Carol Greider:
Of course Jack Szostak also made important contributions to the understanding of telomere function (among other achievements), and you can read about his work in some of the other posts in the blogsphere about the award:
1. Aglets, as any regular crossword puzzle worker knows.
2. Joseph Gall was (and is) well known for providing a supportive environment for women scientists in his lab. Many successful women scientists have been members of his lab, including Blackburn, Mary-Lou Pardue, Susan Gerbi, Joan Steitz and Virginia Zakian.
3. Quoted in Elizabeth Blackburn and the story of telomeres; deciphering the ends of DNA by Catherine Brady.

Photos: Left is Eliabeth Blackburn, right is Carol W. Greider. Both taken by Wikipedia Author Gerbil in March 2009. Licensed by Attribution Share Alike 3.0
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Tuesday, September 29, 2009

2009 MacArthur Fellows: Lin He and Beth Shapiro

Recipients of the 2009 MacArthur Fellowship - sometimes referred to as the MacArthur "genius grant" - are an interesting mix of writers, artists, journalists, scientists, attorneys, entrepeneurs and physicians who have one thing in common: they have demonstrated "exceptional creativity in their work and the prospect for still more in the future". The 24 fellows will receive a $500,000 stipend over the course of five years, no strings attached.

This year's winners include two young women scientists:


Lin He is an assistant professor in the Department of Molecular & Cell Biology at the University of California, Berkeley. She studies the role of microRNAs in the development of cancer:

Lin He's research involves a class of small ribonucleic acid, or RNA, that are not transcribed into protein like messenger RNA. Instead, these microRNAs or miRNAs bind to messenger RNA to regulate the amount of protein produced. This entirely new level of dosage regulation in mammals was not realized until 2000, even though miRNAs were first discovered in 1993. Now, miRNAs have been shown to be involved in many aspects of development and diseases, He said.

"MicroRNAs are a mechanism to fine-tune gene expression simultaneously in many different pathways, achieving a homeostasis very much needed for many biological processes," He said. "In the case of cancer, where some microRNAs behave abnormally, detrimental effects will occur due to the loss of proper gene regulation by microRNAs."

He has shown that miRNAs play a role in a broad range of cancers, in particular those such as lung cancer that involve mutations in the p53 tumor suppressor gene. She is also investigating the role of miRNA in the development of B cell lymphomas.

"In an area that has generated intense effort among many leading researchers, Lin He has established early in her career the capacity to make significant advances with direct implications for the development of future cancer treatment strategies," the MacArthur Foundation noted.

More information about Lin He:

Beth Shapiro is an Assistant Professor in the Department of Biology at Pennsylvania State University. She is "an evolutionary biologist who integrates molecular phylogenetics with advanced computational biostatistics to reconstruct the influences on population dynamics in a wide variety of organisms." She is using the methods she and her colleagues developed to study the population history of recently extinct (like the dodo) or currently threatened species to assess the effects of environmental change on polar bear populations, an approach that will help in shaping conservation efforts. She also has been studying the evolution of RNA viruses in individual patients, an approach that may help in understanding the development of virulence in human pathogens.

Prior to joining Penn State in 2007, Shapiro was director of the Ancient Biomolcules Centre at Oxford University. She was also named one one "America's Young Innovators in the Arts and Sciences" by Smithsonian Magazine.

Here Shapiro explains "How to Clone a Mammoth":


More information about Beth Shapiro:
Also included among this year's recipients are two women physicians:
  • Jill Seaman, Infectious Disease Physician in Old Fangak, Sudan
  • Mary Tinetti, Geriatric Physician at the Yale School of Medicine

Photos courtesy of the MacArthur Foundation
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Sunday, September 27, 2009

The Sultana's Dream

'Our good Queen liked science very much. She circulated an order that all the women in her country should be educated. Accordingly a number of girls' schools were founded and supported by the government. Education was spread far and wide among women. And early marriage also was stopped. No woman was to be allowed to marry before she was twenty-one. I must tell you that, before this change we had been kept in strict purdah.'

'How the tables are turned,' I interposed with a laugh.

'But the seclusion is the same,' she said. 'In a few years we had separate universities, where no men were admitted.'

'In the capital, where our Queen lives, there are two universities. One of these invented a wonderful balloon, to which they attached a number of pipes. By means of this captive balloon which they managed to keep afloat above the cloud-land, they could draw as much water
from the atmosphere as they pleased. As the water was incessantly being drawn by the university people no cloud gathered and the ingenious Lady Principal stopped rain and storms thereby.'

'Really! Now I understand why there is no mud here!' said I. But I could not understand how it was possible to accumulate water in the pipes. She explained to me how it was done, but I was unable to understand her, as my scientific knowledge was very limited. However, she went on, 'When the other university came to know of this, they became exceedingly jealous and tried to do something more extraordinary still. They invented an instrument by which they could
collect as much sun-heat as they wanted. And they kept the heat stored up to be distributed among others as required.

'While the women were engaged in scientific research, the men of this country were busy increasing their military power. When they came to know that the female universities were able to draw water from the atmosphere and collect heat from the sun, they only laughed at the
members of the universities and called the whole thing "a sentimental nightmare"!'

'Your achievements are very wonderful indeed! But tell me, how you managed to put the men of your country into the zenana. Did you entrap them first?'

'No.'

'It is not likely that they would surrender their free and open air life of their own accord and confine themselves within the four walls of the zenana! They must have been overpowered.'

'Yes, they have been!'

'By whom? By some lady-warriors, I suppose?'

'No, not by arms.'

'Yes, it cannot be so. Men's arms are stronger than women's. Then?'

'By brain.'

'Even their brains are bigger and heavier than women's. Are they not?'

'Yes, but what of that? An elephant also has got a bigger and heavier brain than a man has. Yet man can enchain elephants and employ them, according to their own wishes.'

'Well said, but tell me please, how it all actually happened. I am dying to know it!'

'Women's brains are somewhat quicker than men's. Ten years ago, when the military officers called our scientific discoveries "a sentimental nightmare," some of the young ladies wanted to say something in reply to those remarks. But both the Lady Principals restrained them and said, they should reply not by word, but by deed, if ever they got the opportunity. And they had not long to wait for that opportunity.'
~ from "Sultana's Dream" by Rokeya Sakhawat, 1905


Rokeya Sakhawat (also known as Roquia Sakhawat Hussain) was an early 20th century Muslim feminist writer and social worker from what is present-day Bangladesh. She was a "crusader for girls' education", and founded Sakhawat Memorial Girls' High School - the first school primarily aimed at Muslim girls. Her 1905 science-fiction short story, "Sultana's Dream", is set in a utopian future where women rule and the men are locked away at home, very much like the Muslim practice of purdah that kept most women in the home in Sakhawat's time (and yes, today too).

I find the story particularly enjoyable because of the way in which the women took over: they studied science and developed useful inventions while the men scoffed. It was their brains, rather than brawn, that created their peaceful country. And while I don't believe that women are "smarter" than men, or that the world would be necessarily a much better place if women ruled by locking up the men, I do think that increasing the number of women scientists would indeed improve the world if only because excluding a significant portion of the population from scientific research is a huge waste of brainpower.

And even though women in Bangladesh face many obstacles - poverty is widespread and only 32% of women are literate - there are indeed a number Bangladeshi women scientists making a difference today:

("Sultana's Dream" via Nesrine Malik in The Guardian's Comment is free)

Image: Dr. Shamima Akhter, Research Investigator, Health Systems and Infectious Diseases Division, ICDDR, B

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Thursday, July 09, 2009

Sylvia Earle: Marine Biologist and Aquanaut

A few days ago the KQED public television program QUEST profiled pioneering marine biologist and explorer Sylvia Earle, which has given me the kick in the rear I needed to finish this post that's been sitting as a draft for several months.

In 1970 Sylvia Earle lead an all-female team of "Aquanauts" that lived for two weeks in an underwater habitat - Tektite II - off the Virgin Islands. The project was partially funded by NASA, which was interested in how teams would work in an isolated closed environment. Others on her team were Renata True of Tulane (now at College of the Mainland in Texas), Scripps graduate students Ann Hartline and Alina Szmant (now at University of North Carolina, Wilmington), and engineer Margaret Ann Lucas.

Their mission wasn't just focused on learning to work together as a team and studying the local flora and fauna. They were also testing newly developed diving equipment. Astronaut Scott Carpenter noted that when he visited Tektite II and wrote about it for Popular Science:

Their professional skill impressed me, and so did their self-reliance. With no male help wanted, they toted their own tanks and other heavy gear. [...] On a swim the day before, I saw the team prepare equipment for another ecology study by Ann Hartline and Alina Szmant. Peggy Lucas, the team's engineer, went along on another occasion, when all five girls were in the water at once.

That was a rare and somewhat eerie sight. Five girls clad in bright-orange wetsuits, with stark white backpacks, working on their projects in brilliant blue-green water, [...] a splash of color I'll remember [...]. An unusual part of the spectacle was the absence of bubbles.

The team was building up experience with closed-circuit, mixed-scuba - an innovation that their Tektite II mission would be the first to put to use. Instead of exhausting a diver's exhaled breath to the sea, as an open-circuit scuba does, it absorbs carbon dioxide and recovers unused oxygen, to supplement the mixture entering the inhalation bag from the tanks.
If you can overlook the patronizing tone (I hate when adult women are called "girls"), it's an interesting look at the development of new technology.

When they emerged from their habitat they were instant celebrities, and were treated to a ticker-tape parade in Chicago and invited to lunch at the Whitehouse. Not surprisingly the press focused on the novelty of women scientists. For example this Associated Press article published in the Spokane Daily Chronicle gives us the important details about the Aquanauts' average height, weight and preferred hair styles (petite with pony tails, if you must know). However, it also included this great quote:
"Sometimes people find it hard to take us seriously," says Dr. Sylvia Early[sic] Mead, 34, of Los Angeles, the team leader. But she adds, "Most of the problems are in the minds of the men."
Since 1970 Earle has never let up on her exploration of the oceans - she set several diving records, walked on the ocean floor 1250 feet below the surface, and became the first female chief scientist at the National Oceanographic and Atmospheric Administration. She has also lead the Sustainable Sea Expeditions, a project to research and promote the US National Marine Sanctuaries, and her work as an advocate for oceans and its denizens Time magazine named her a "hero for the planet".

She acknowledges that her devotion to her work may have strained her first marriage. However, she was able to figure out how to combine career and family, despite her frequent field trips:
It is a problem trying to combine having family and being as enthusiastic about a specialty as I have always been. I have managed it in part through ingenious rearranging of a life, I suppose. Having a laboratory set up at home. I always had a microscope -- not a big, fancy, sophisticated microscope, but something that would make it possible for me to work at home. And I have a professional library that I have accumulated all my life. The big professional libraries do provide the necessary access to a world of information, but I have managed to gather a nucleus of books at home that are like an extension of my mind. My favorite wall paper is books. I can't possibly keep everything in my brain, but if I have access to it, and know where to get it off the shelf, that's like having an extension -- a bigger brain. That's certainly true with computers now.
Earle's husband and parents helped take care of the kids while she was traveling, and her they were also occasionally taken out of school to "dive with the whales in Hawaii" or travel "to the Bahamas and dive with a friendly dolphin" (how cool is that?). Earle's children learned to love the oceans too:
Ms. Earle said her son works for California Fish and Game, catching the “bad guys who take more abalone than they should.” Her older daughter, whom she described as hating math since the 6th grade because of a discouraging teacher, now runs the company Ms. Earle started, Deep Ocean Engineering. And her younger daughter now does deep sea diving in submarines.
Watch the QUEST segment on Sylvia Earle either below or at KQED.com.

QUEST on KQED Public Media.

More about Sylvia Earle:
Image: "During the National Geographic/Sea Stories filming, Dr. Earle explains to Emma, the uses and benefits of deploying the DeepWorkers in the Sanctuary system." (from sanctuaries.noaa.gov)
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Monday, June 01, 2009

Eugenie Scott: Battling for Science Education

Sometimes I get tired. I have a bunch of half-finished posts that all seem like variations on the same negative themes: women are falling behind, left behind, and dropping out. It's the same reports and same arguments over and over again. I just haven't been that inspired. But I realized that what I needed was something positive to write about. Fortunately, Eugenie Scott has provided me an inspiring subject.

Eugenie Scott can remember well when she first became interested in anthropology:

I must have been around nine or 10 years old when my older sister brought home a college-level textbook in anthropology. I was something of a compulsive reader even then, and I casually picked up one of my sister’s books and flipped through the pages.

In the middle of the book was a set of plates showing primitive-looking people with big brows, prow-like noses and receding chins. They were kind of like her boyfriend of the time actually, an observation that was not appreciated. But I was gobsmacked by the reconstructions of these early fossil humans – Cro-Magnons, Neanderthals, Peking Man and the like.

This is where we started. These were the great-great-great-umpty-ump-great grandfathers of us all. It was stunning to a 10-year-old. The title of the book was Anthropology. I decided then that I wanted to be an anthropologist when I grew up.

She wasn't actually taught anything about evolution in her science classes until she got to college, but she never lost interest in anthropology. After getting her bachelor and masters degrees from the University of Wisconsin, Milwaukee she headed to graduate school at the University of Missouri.

It was as a graduate student in physical anthropology that Scott first became aware of oxymoronically-named "creation science" in 1971. It may not have seemed significant at the time, but that started her on a path towards her current position as the Executive Director of the Oakland, California-based National Center for Science Education (NCSE), which works to keep evolution in public school science education. Over the years Scott collected creationist literature, at first as a mostly academic curiosity. It was while teaching at the University of Kentucky that she became involved in a fight to keep creationism out of the Lexington public schools. From that effort the NCSE was formed in 1981, and Scott was made Executive Director of the organization in 1987.

While she has accumulated a number of awards and honors over the years, it's not too surprising that her efforts have come under fire. As Chris Mooney has pointed out, she has has to fend off criticism from both creationists and science advocates:
As this evidence suggests, Scott is regularly under fire from the culture war combatants on both sides. Not only does NCSE have to monitor the endless permutations of the creationists, who are constantly coming up with new ploys for attacking evolution. It also has to deal with the pugilistic evolutionists who want to make this battle about the truth or falsehood of religious belief, rather than the truth or falsehood of what science discovers about the world. In this gauntlet, Scott has remained an eloquent defender of the view that people of science and people of religion can and must work together to solve conflicts—and indeed, this is the best and only way forward.
Her position seems reasonable to me, and the NCSE's efforts seem to have been effective. I'm thankful that Scott has devoted so much of her career to fighting this fight. Quality science education from elementary through high school is necessary to cultivate the upcoming generations of American scientists.

More information about Eugenie Scott:
(If you are interested in helping defend the teaching of evolution, download "Voices for Evolution" and check out the NCSE's resource page.)

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Friday, May 22, 2009

L'Oreal-UNESCO USA Fellowships Awarded

The five postdoctoral researchers who were awarded 2009 L'Oreal USA Fellowships for Women in Science were honored at a special ceremony at the American Museum of Natural History on Thursday. Each of the winners will receive a $60,000 grant for scientific research and career development. The awardees:

Dr. Beena Kalisky
: Kalisky is a postdoc in the lab of Kathyrn A. Moler in the Department of Applied Stanford University. According to the press release, she is "developing a new system for detection and characterization of individual nanomagnets. The instrument designed will scan over a large number of particles and individually measure their magnetic properties. This will help in the gathering of pertinent information for the exploration of the nanomagnets' possible applications."

Dr. Aster Kammrath
: Kammrath is a postdoc in the lab of Frank Keutsch in the Department of Chemistry at the University of Wisconsin at Madison. According to the press release her research focuses on "the pathways by which molecules emitted by human activity or natural sources are involved in climate change and pollution problems. This work aims to help set appropriate emissions controls to minimize the production of carbon dioxide, other greenhouse gases and aerosol, which could help reduce respiratory problems."

Kammrath has said that it was her mother who helped her discover science:

"She instilled in me a passion for solving problems and understanding the real-world application of the scientific method," she says.
Dr. Nozomi Nishimura: Nishimura is a postdoc in the lab of Chris B. Schaffer in the Department of Biomedical Engineering at Cornell University. Her research involves "testing the role that blood vessel dysfunction plays in triggering Alzheimer's disease. This research will look at how clots or bleeds in the smallest blood vessels in the brain could seed the accumulation of A-beta proteins, an indication of plaque in the brain which often occurs in Alzheimer's patients."

Dr. Tiffany Santos
: Santos is a postdoc in the Electronic & Magnetic Materials & Devices division of the Center for Nanoscale Materials at Argonne National Laboratory in Illinois. Her research involves "a class of materials called transition metal oxides, with a wide array of properties, that have numerous potential applications. This research aims to uncover new materials, which could potentially help reduce power consumption and increase the energy efficiency of information technologies, such as data storage devices and memory chips."

Dr. Erika Sudderth: Sudderth is a postdoc in the lab of David Ackerly in the Department of Integrative Biology at the University of California at Berkeley (the press release says Brown University, so she may have recently moved). Her research is focused on understanding "the constraints, thresholds and limits of ecological responses to precipitation, which is arguably the most important controller of ecosystem processes. This research aims to understand the mechanisms driving ecosystem responses to climate change."

(I plan to update the post as the various institutions release additional information)

For more information about the awards, see:
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Tuesday, May 05, 2009

Rita Levi-Montalcini: Still busy after a century

Times Online has an interesting article about neuroscientist Rita Levi-Montalcini, who tuned 100 on April 22. She has lead - or I should say is leading - a fascinating life.

Levi-Montalcini enrolled in medical school at the University of Turin in 1930 over her father's objections.

The initial obstacle to entering university was not Fascism, but her father. In her autobiography she writes that she and her twin sister Paola (an artist who died in 2000 and whose artworks decorate her office walls) were born to Adamo Levi, “an electrical engineer and gifted mathematician”, and Adele Montalcini, “a talented painter and an exquisite human being”.
[...snip...]
“[My father] loved us dearly and had a great respect for women, but he believed that a professional career would interfere with the duties of a wife and mother. He decided that the three of us - Anna, Paola and I - would not engage in studies which open the way to a professional career, and that we would not enroll in the University.”

She enrolled anyway, earning her degree in medicine and surgery in 1936. She wasn't sure if she wanted to pursue neurology research or focus on medicine, so she chose to enroll in further coursework to specialize in neurology and psychiatry.

Her academic career was cut short, however, when Mussolini issued his Manifesto of Race which barred Jews like Levi-Montalcini from academic and professional careers. Rather than flee the country, she decided to stay in Italy and continue her work on her own:
The two alternatives left then to us were either to emigrate to the United States, or to pursue some activity that needed neither support nor connection with the outside Aryan world where we lived. My family chose this second alternative. I then decided to build a small research unit at home and installed it in my bedroom. My inspiration was a 1934 article by Viktor Hamburger reporting on the effects of limb extirpation in chick embryos. My project had barely started when [Italian histologist] Giuseppe Levi, who had escaped from Belgium invaded by Nazis, returned to Turin and joined me, thus becoming, to my great pride, my first and only assistant.

The heavy bombing of Turin by Anglo-American air forces in 1941 made it imperative to abandon Turin and move to a country cottage where I rebuilt my mini-laboratory and resumed my experiments. In the Fall of 1943, the invasion of Italy by the German army forced us to abandon our now dangerous refuge in Piemonte and flee to Florence, where we lived underground until the end of the war.
When the British and American armed forces forced the Germans out of Florence in 1944 she was hired as a physician to minister to a war refugee camp, which housed Italians who had fled the continued fighting in the North. When the war was over, she and her family returned to Turin where she resumed her academic position at the University.

But her life was to change once again. In 1947 developmental biologist Viktor Hamburger invited Levi-Montalcini to join him in his lab at Washington University in St. Louis. She had intended to stay there for 10 months, but actually ended up remaining there for 30 years. She was hired as an Assistant Professor in 1956, and promoted to Full Professor in 1958.

While she made her home in the US she didn't neglect her Italian roots: in 1962 she established a research unit in Rome, splitting her time between there and St. Louis. And in 1969 she became the Director of the Institute of Cell Biology of the Italian National Council of Research.

It was at Washington University that Levi-Montalcini and Stanley Cohen first isolated Nerve Growth Factor from tumor cells. They received the Nobel Prize in Physiology or Medicine for that work in 1986. As she told the Times:
Her discovery, she says, was the highlight of her long life. “I immediately understood the importance of this discovery, which is more important today than it was then and which went completely against the dogmas of the time. The recognition in Stockholm gave me great pleasure, but it does not compare with the moment of the discovery itself, when I realised I was opening up a whole new scenario.”
Although she officially retired in 1977, she never actually stopped working as a scientist. Five years ago she founded the European Brain Research Institute (EBRI) in Rome. That is, in fact, where she spent her 100th birthday, attending a conference on "The Brain in Health and Disease" held in her honor.

She also has been working for social change. She (with her sister Paola) also founded the Rita Levi-Montalcini Foundation, which focuses on the education of girls and young women in Africa. In 2001 she was appointed an Italian Senator-for-life, a role she actively serves which she actively serves "unless busy in academic activities around the world"

And what is her secret to such a long and active life? She gets up early in the morning, eats very little, and keeps her brain active. She also supposedly doses herself every day with nerve growth factor eye drops, which may or may not have had a positive effect. She has also seems to have been blessed with general good health.

She has lived an amazing life, and shows little sign of slowing down. We should all be so active when we hit the century mark.

More information:
Publications:
(via Mind Hacks)

Photo (top): Rita Levi-Montalcini by Jollyroger on Wikipedia (2007)
Photo (bottom): Rita Levi- Montalcini viewing slides by Herb Weitman (1964)
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Are you infected by The NERD?

I was surfing about (doing research, I swear!) and stumbled on some disturbing information. I may be infected by The NERD! The symptoms?

  • Heightened interest in intellectual and academic pursuits, including but not limited to biology, chemistry, physics, geology, anthropology and even psychology
  • Obsessive behaviors including but not limited to collecting, memorizing, reciting and hoarding of intellectual materials
  • Inability to understand how others are not fascinated by their particular nerdy fetish
  • A lack of fashion sense, or at least a bizarre one. (e.g. this )
  • Pronounced interest in emotionally mature and complex materials like advanced physics or computing
  • Pronounced interest in emotionally immature materials like comic books and animated television
  • Finds puns particularly funny, for no obvious reason
  • Abnormal levels of attraction to other infected people, who they consider “smart” and “interesting”
  • Prone to creative outlets of their obsessions like shanties or themed haikus
  • Embraces the title of “geek,” “nerd,” or “dork” willingly - possibly a little too excitedly
Yup, looks like I've caught it.

But I am not alone. It is currently estimated that "25-50% of the world’s population is infected, with numbers continually rising." And NERD Infection site founder Christie Wilcox (who blogs at Observations of a Nerd) has reason to follow the epidemiology of the disease very closely: as this week's Science Channel Geek of the Week she is almost certainly infected herself.

And here is a personal case study from University of Illinois bioengineering instructor Joanne Manaster of Joanne Loves Science:


There is currently no treatment or cure, so all I can do is spread my NERDiness about in hope of finding solidarity with others who share my condition. Nerds rule!

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Wednesday, April 22, 2009

Women Scientists and Engineers on NOVA's scienceNOW

PBS has just made a bunch of their programs available online, including their science news show, NOVA scienceNOW. Each episode includes a profile of a scientist or engineer doing interesting research.

The segments are short and full of human interest, with "how we met" bits from the spouse, and emphasis on hobbies. There's some science too, of course, but the overall tone is light and breezy. The take home message is science is cool and so are scientists, which isn't a bad thing at all.

The women profiled in the full online episodes are:

Cynthia Breazeal, Associate Professor of Media Arts and Sciences and Director of the Robotic Life Group at the MIT Media Lab.

"A daring engineer designs robots to communicate and interact the way people do.
Watch the complete episode with the segment on Breazeal. Read the program's transcript.

More information:

Edith Widder, marine biologist and bioluminescence specialist, deep-sea explorer and founder of the Ocean Research & Conservation Association.
"Meet a marine biologist and explorer who has engineered new ways to spy on deep-sea creatures."
Watch the complete episode with the segment on Widder. Read the transcript.

More information:

Other ScienceNOW segments are available online too, but only as Quicktime movies:

Yoky Matsuoka, neuroboticist (robotics + neuroscience) at the University of Washington.
Profile page (with video). Transcript.

Pardis Sabeti, Harvard geneticist and genomics expert.
Profile page (with video). Transcript

Bonnie Basler, Princeton biologist who studies how bacteria "talk".
Profile page (with video). Transcript.

Naomi Halas, Rice University nanotech expert.
Profile page (with video). Transcript.

Julie Schablitsky, archaeologist studying the Donner Party site and other areas important to the history of the American West.
Profile page (with video). Transcript.

Watching the videos (or reading the transcripts) of a bunch of the profiles, it's striking how much more the women profiled talked about their personal lives than the men. I don't know if that is because of the questions they were asked or not, but I was pretty surprised that Naomi Halas was asked point blank whether the reason she and her husband didn't have children because of her work. The answer: no, they wanted children, but she couldn't have them, which seems like a very personal revelation. When most the men were interviewed we don't even find out whether they have children or not, let alone whether they wanted to have kids. I realize that's likely because there is a social expectation is that "normal" women want to be mothers and are more interested in having a life outside the lab then men, but it's disappointing that the show's questions went in that direction.

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Thursday, March 26, 2009

Visit Dr. Isis to Help a Young Woman Scientist

Dr. Isis, hot science and fabulous shoe blogger extraordinaire, is putting the money where her mouth is (so to speak), and using revenue from her blog to fund an award for a budding young woman scientist. She says:

Since joining ScienceBlogs I have been in contact and discussion with the executive director of the American Physiological Society, discussing ways I might use my blog powers for good instead of solely evil. The APS has very kindly agreed to allow us (hang tight, I'm not asking for money, seriously) to fund an award at this year's Experimental Biology meeting for the undergraduate woman who submits the best abstract. Each year the APS awards seven David Bruce Awards for undergraduate research excellence and, within the structure of this program, the APS will be adding an eighth award specifically from me and my lovely readers (but I'm not asking for money. I promise). I really loved the idea of using my blog to encourage and reward a more junior scientist who had done excellent work and visiting these undergraduate poster presentations are really a highlight for me each year.
You can help fund the award by simply visiting On Becoming a Domestic and Laboratory Goddess. So far the fundraising is apparently going very well, and Dr. Isis says "If you keep visiting the way you are now (or maybe one extra click more a day to help a sister out? or maybe you would tell one friend about the blog?) we're going to be able to do something much bigger than I initially anticipated we would. Much." So go and read!

If you need somewhere to start, you might want to begin with her post about Marion Diamond, then continue on from there. You won't regret it.

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Tuesday, February 24, 2009

Diversity in Science Carnival #1

The first Diversity in Science Carnival is up at Urban Science Adventures. There are a lot of excellent posts collected there, but I wanted to specifically point to several posts about women scientists:

And I'm especially looking forward to the next edition:
Join us late March/early April as Diversity in Science and Scientiae celebrate Women’s History Month and salute woman achievers in Science, Technology, Engineering, and Technology.

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Tuesday, January 13, 2009

Hina Chaudhry: Interesting Science from a Lab-Worn Doctor-Lady

Over on my Biology in Science Fiction blog I recently posted about an article by Tom Junod in men's magazine Esquire profiling UW scientist Mark Roth. The article was bad, in part because it painted a picture of Roth as an genius maverick who couldn't get a grants because his ideas were too brilliant, unlike the plodding never-had-a-fresh-idea scientists actually funded by the NIH. But it wasn't just that. It was the writing, which read like a transcribed conversation with a valley dude who was completely unfamiliar with science and the way it's practiced.

Now Carl Zimmer points out another article in the latest Esquire - this one by Lisa Taddeo - that's equally bad. There's the flip conversational tone and use of odd analogies*, and, as a bonus, "who'd believe this normal-looking woman is a scientist."

But now look here, a woman. She is a pretty lady of Pakistani heritage who highlights her soccer-mom layers, which you don't expect from a lab-worn doctor-lady. And she's got ideas. Wild ones. Hina Chaudhry believes she can do what the body can't: fix the dead parts.
Highlighted layers and ideas? Amazing! And is the "soccer-mom" description a dig at her style?

It's a shame the writing is so bad, since Chaudhry's research sounds quite interesting. She's been studying the role of the cell-cycle regulating protein cyclin A2 in heart development.

From the Esquire article:
Chaudhry says it was women's intuition. The holy-shit solution. It came to her during a seminar at UPenn when she was twenty-nine. They were discussing fruit-fly genes. How the head segment knows it's going to form a head and how the tail segment knows it's going to be a tail. "I just had this sudden realization that heart cells don't divide after birth in any mammal. They divide in the embryo, but they stop after birth," she says. "So I thought, That's it! We have to go back and study the basics of why and when heart cells stop dividing." If they could do that -- figure out what causes heart-cell division to turn off -- then perhaps they could find a way to turn it back on.
She's devised a method of introducing an expressed version of cyclin A2 into adult heart cells, which appears to allow the heart to recover from a heart attack. It's been successfully tested in rats and ultimately she hopes that the method can be used in humans.
Her idea was laughed at, at first. In part because she was young and a woman, she says. But now the medical world is sitting up, taking notes.

Chaudhry was recruited to Mount Sinai's Cardiovascular Institute by the director of Mount Sinai Heart, Dr. Valentin Fuster, and the medical center's Cardiovascular Research Center director, Dr. Roger Hajjar. She calls them the two greatest visionaries in the cardiac world. Along with their chosen one, this bright many-schooled angel, they are going to make Mount Sinai the leading thinker in the heart world. "We've had no therapies to reverse heart failure, to make a diseased heart normal again," says Hajjar. "This therapy may finally do that."

An angel and "chosen one" - that's a lot to live up to. Heart attacks are a top killer here in the United States, so anything that improves the survival rate would be a significant achievement. I suspect, though, that Chaudhry's methodology is further from being a clinical reality than the article might lead you to believe.
---

* From the description of what happens during a heart attack.
"Suddenly, soldier, this part of your heart is dead, only it's still in your body, attached to the good section -- the 90210 ventricle -- and the good part is smirking, it's saying, "Come on, rebuild yourself, man!"
Science articles rarely
juxtapose a reference to a teen drama and a quote from an anthropomorphized internal organ in the same sentence (not to mention the gratuitous "soldier" reference), so this is very special.

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