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Erich Feldmeier

Hachung Chung Species-Specific Microbes May Be Key to a Healthy Immune System: Scientif... - 0 views

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    "Mice have a jungle of bacteria, viruses and fungi in their stomachs-and so do we. These microorganisms help both mice and us break down dinner. As we are finding, these bugs also help to regulate the immune system. But we are just starting to learn how these tiny organisms influence us and how changing their composition changes us... Interestingly, though, the mice with these microbes did not: their immune systems remained underdeveloped. Even when researchers gave rat microbiota to mice, the mice's immune systems failed to mature"
Erich Feldmeier

MPG Nod2 is essential for temporal development of intestinal microbial communities. - 0 views

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    "We found that adult Nod2-deficient mice display a substantially altered microbial community structure and a significantly elevated bacterial load in their faeces and terminal ileum compared to their wild-type counterparts. Interestingly, we demonstrate that these findings are also present in weaning mice, indicating a profound influence of Nod2 on the early development and composition of the intestinal microbiota. We demonstrate that NOD2 genotypes also influence the microbial composition in humans. Conclusions Our results point to an essential role of Nod2 for the temporal development and composition of the host microbiota, both in mice and in humans, which may contribute to the complex role of NOD2 for the aetiopathogenesis of Crohn's disease. "
Charles Daney

Drug Corrects Memory Problems in Sleep-Deprived Mice | 80beats - 0 views

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    Researchers have found a pharmaceutical way to clear some of the cognitive fog that results from a sleepless night. In a new study using lab mice, researchers corrected the memory problems in sleep-deprived mice through a drug that suppressed levels of a certain enzyme in a brain region called the hippocampus.
Erich Feldmeier

Spiegelman: Scientists find molecular link to obesity/insulin resistance in mice - 0 views

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    "For this study, the investigators bred mice lacking TRPV4 or administered a drug to deactivate it. In the absence of TRPV4, white cells turned on a set of genes that consume energy to produce heat, rather than storing the energy as excess fat. This "thermogenic" process normally occurs in brown or beige fat (commonly called "good fat"), which is found mostly in small animals and human infants to protect against cold. When the TRPV4-deficient mice were put on a high-calorie diet for several weeks, they did not become obese, and their level of fat cell inflammation and insulin resistance was lowered. "We have identified a target that, when inhibited, can activate beige adipose tissue and suppress inflammation," said Spiegelman."
Walid Damouny

1 gene lost = 1 limb regained? Scientists demonstrate mammalian regeneration through si... - 1 views

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    "A quest that began over a decade ago with a chance observation has reached a milestone: the identification of a gene that may regulate regeneration in mammals. The absence of this single gene, called p21, confers a healing potential in mice long thought to have been lost through evolution and reserved for creatures like flatworms, sponges, and some species of salamander. In a report published today in the Proceedings of the National Academy of Sciences, researchers from The Wistar Institute demonstrate that mice that lack the p21 gene gain the ability to regenerate lost or damaged tissue."
thinkahol *

Vehicle pollution significantly damages the brain, mouse study suggests - 0 views

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    ScienceDaily (Apr. 13, 2011) - If mice commuted, their brains might find it progressively harder to navigate the maze of Los Angeles freeways. A new study reveals that after short-term exposure to vehicle pollution, mice showed significant brain damage -- including signs associated with memory loss and Alzheimer's disease.
thinkahol *

BPA-exposed male deer mice are demasculinized and undesirable to females, new study finds - 1 views

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    ScienceDaily (June 27, 2011) - While the U.S. Food and Drug Administration notes "some concern" with the controversial chemical BPA, and many other countries, such as Japan and Canada, have considered BPA product bans, disagreement exists amongst scientists in this field on the effects of BPA in animals and humans. The latest research from the University of Missouri shows that BPA causes male deer mice to become demasculinized and behave more like females in their spatial navigational abilities, leading scientists to conclude that exposure to BPA during human development could be damaging to behavioral and cognitive traits that are unique to each sex and important in reproduction.
Erich Feldmeier

Mauro Costa-Mattioli: Neuroscientists boost memory in mice using genetics and a new mem... - 0 views

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    "The molecule PKR (the double-stranded RNA-activated protein kinase) was originally described as a sensor of viral infections, but its function in the brain was totally unknown," said Dr. Mauro Costa-Mattioli, assistant professor of neuroscience at BCM and senior author of the paper. Since the activity of PKR is altered in a variety of cognitive disorders, Costa-Mattioli and colleagues decided to take a closer look at its role in the mammalian brain. Super memory The authors discovered that mice lacking PKR in the brain have a kind of "super" memory. "
Charles Daney

Drug shows cancer stem cells not invulnerable - health - 13 August 2009 - New Scientist - 0 views

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    Salinomycin can target and kill the chemotherapy-resistant cells in lab cultures and mice
Charles Daney

New Type Of Adult Stem Cells Found In Prostate May Be Involved In Cancer Development - 0 views

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    A new type of stem cell discovered in the prostate of adult mice can be a source of prostate cancer, according to a new study by researchers
Walid Damouny

Stem cells grow fully functional new teeth - 2 views

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    "(Medical Xpress) -- Researchers from Japan recently published a paper in PLoS One describing their successful growth and transplantation of new teeth created from the stem cells of mice."
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