Molecular Biology and Genomics (The Experimenter Series)
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It is also important to determine whether these artificially produced pluripotent stem cells have the same functional potential as embryonic stem cells.
As long as this question remains unanswered it is unlikely that they will be used in cell therapy. However, this would solve an ethical dilemma, given that embryonic stem cells are taken from surplus embryos that were frozen following in vitro fertilization for infertility.
The initial results are promising, but it will be a while before the technique can be used routinely. A major advantage of using a variety of model organisms is that scientists can focus on the salient features of each.
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This is not a typical stem cell system involving self-renewal; instead, several rounds of asymmetric cell division yield multiple cell types including a neuron and associated cells. A number of regulatory factors including Notch and Numb are involved in these asymmetric cell divisions. This fundamental research provides critical insights into asymmetric cell division, a mechanism used by stem cells in many organisms to generate a variety of cell fates and to self-renew.
Pablo Navarro Gil and his team are attempting to identify the mechanism that enables pluripotent stem cells to be passed from one generation to the next.
ISBN 13: 9780120885466
Embryonic stem cells renew themselves—in other words some of them generate new stem cells to form a cell reservoir. It is thanks to these cell reservoirs that some animals, such as lizards and salamanders, are able to regenerate limbs even in adulthood. Mammals, however, are not so lucky, and must repair any injuries they incur. Adult mammals retain some stem cells, but most of these lose their regenerative potential with age.
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For example, hematopoietic stem cells residing in the bone marrow continually renew red blood cells, which have a short life span. Biologists are trying to unlock the secrets of these stem cells: What is their role? How does aging affect them? Could they be reactivated? During the last few years, the team led by Philippe Herbomel within this Institut Pasteur department used zebrafish to identify the niche where hematopoietic stem cells are produced.
Using a molecular tracer he was able to monitor in vivo how these cells emerge in the animal model. Although stem cell research is a major focus of interest at the Institut Pasteur, it is not an end in itself, as illustrated by this brief overview of the changing nature of research topics in what is now known as the Department of Developmental and Stem Cell Biology.
Understanding the fundamental principles of gene regulation and cell fate involves a wide variety of different disciplines, including epigenetics, epigenomics, biophysics, single-cell analysis and real-time imaging, all of which converge to shed light on how interactions between cells result in organ morphogenesis during growth, regeneration, illness and aging. The major strength of this department is its sheer diversity— from the wide range of model organisms flies, worms, zebrafish, mice and birds and sophisticated techniques it uses to its multiscale research at molecular, cell and tissue level.
The recent recruitment of a new generation of talented leaders with expertise in all these fields will further consolidate this diversity.
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These are only a few of the research areas being investigated in this field at the Institut Pasteur. Embryonic stem cell colonies with rare cells isolated during spontaneous differentiation. Enter your keywords. Claude Flamand : predicting epidemics with satellite images Dr Amy Kristine Bei to head a new 4-year research group on malaria in Dakar Dr. The Research Journal: 's most read articles!
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Discovery of a mechanism responsible for chronic inflammation in patients suffering from multiple sclerosis Discovery of a restriction factor for hepatitis B virus Discovery of new strains of the HTLV-4 virus in hunters bitten by gorillas in Gabon Discovery of the mechanism used to coordinate replication of the two Vibrio cholerae chromosomes Distinguishing resistence from resilience to prolong antibiotic potency Division — a key moment in establishing cell polarity Drastic reduction of exposure to malaria in Senegal ERC grants: scientific excellence supported by Europe Ebola: the answers to your questions in our disease sheet Effect of the seasons on pneumococcal infections Efficacy of cancer treatment: two bacteria in the microbiota identified Esrrb transcription factor plays a key role in maintaining stem cell identity even after countless divisions Exhibition: the amazing achievements of "Pasteur, the experimenter"!
When Listeria attacks the intestinal microbiota When the structure of Tunneling nanotubes TNTs challenges the very concept of cell Whooping cough: elucidation of a critical stage in the action of the CyaA toxin Why some patients develop resistance to new class of anti-cancer drugs Why vaccines are essential Yellow fever: using modeling to optimize the use of vaccine stocks Events Congratulations are in order for the Pasteur iGEM team!
Why does bronchiolitis only affect infants? With its new "Omics" buildings, the Institut Pasteur continues its digital revolution Yellow fever: a new method for testing vaccine safety Zika: an accurate estimation of the neurological risks in unborn children Zika: silent long-term circulation in Thailand Resources for medias Annual Report of the Institut Pasteur The Institut Pasteur Annual reports archives. You are here. The research journal. All reports. Print Share. Francoeur E, Segal J From model kits to interactive computer graphics.
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Grote M Hybridizing bacteria, crossing methods, cross-checking arguments: the transition from episomes to plasmids — Working papers series, vol Hall KT The man in the monkeynut coat: William Astbury and the forgotte -road to the double helix. Hudson RG Mesosomes and scientific methodology. Irwin LN Scotophobin: darkness at the dawn of the search for memory molecules. Hamilton books, Lantham Google Scholar.
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Jiang L Causes of aging are likely to be many: Robin Holliday and changing molecular approaches to cell aging, — Judson HF The eighth day of creation: the makers of the revolution in biology. Judson HF Reflections on the historiography of molecular biology. Keller EF The century of the gene. Keller EF Making sense of life: explaining biological development with models, metaphors, and machines. Leonelli S Growing weed, producing knowledge: an epistemic history of Arabidopsis thaliana. MacLeod M, Nersessian NJ Modeling systems-level dynamics: understanding without mechanistic explanation in integrative systems biology.
HarperCollins, London Google Scholar. Genomics —2 CrossRef Google Scholar. Morange M The transformation of molecular biology on contact with higher organisms, — from a molecular description to a molecular explanation. Morange M The death of molecular biology? Morange M Molecular hybridization: a problematic tool for the study of differentiation and development — Morange M b Resurrection of a transient forgotten model of gene action. Olby RC The path to the double helix. Macmillan, London Google Scholar. Olby RC The significance of the macromolecules in the historiography of molecular biology.
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Molecular Biology and Genomics by Cornel Mulhardt
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