共查询到20条相似文献,搜索用时 15 毫秒
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Interleukin-7 (IL-7) is required for T cell development and for maintaining and restoring homeostasis of mature T cells. IL-7 is a limiting resource under normal conditions, but it accumulates during lymphopaenia, leading to increased T cell proliferation. The administration of recombinant human IL-7 to normal or lymphopenic mice, non-human primates and humans results in widespread T cell proliferation, increased T cell numbers, modulation of peripheral T cell subsets and increased T cell receptor repertoire diversity. These effects raise the prospect that IL-7 could mediate therapeutic benefits in several clinical settings. This Review summarizes the biology of IL-7 and the results of its clinical use that are available so far to provide a perspective on the opportunities for clinical application of this cytokine. 相似文献
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Cell biology in model systems as the key to understanding corals 总被引:1,自引:0,他引:1
Weis VM Davy SK Hoegh-Guldberg O Rodriguez-Lanetty M Pringle JR 《Trends in ecology & evolution》2008,23(7):369-376
Corals provide the foundation of important tropical reef ecosystems but are in global decline for multiple reasons, including climate change. Coral health depends on a fragile partnership with intracellular dinoflagellate symbionts. We argue here that progress in understanding coral biology requires intensive study of the cellular processes underlying this symbiosis. Such study will inform us on how the coral symbiosis will be affected by climate change, mechanisms driving coral bleaching and disease, and the coevolution of this symbiosis in the context of other host-microbe interactions. Drawing lessons from the broader history of molecular and cell biology and the study of other host-microbe interactions, we argue that a model-systems approach is essential for making effective progress in understanding coral cell biology. 相似文献
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Philip A. Wigge 《Current opinion in plant biology》2002,5(6):475
A selection of World Wide Web sites relevant to papers published in this issue of Current Opinion in Plant Biology. 相似文献
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《Current opinion in cell biology》2001,13(3):249-258
A selection of interesting papers that were published in the two months before our press date in major journals most likely to report significant results in cell biology. 相似文献
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Arshad Desai Elizabeth A. Holleran John P. Incardona Orion Weiner Robert O. J. Weinzierl Vas Ponnambalam Paul A. Slesinger Joe William Ramos Michelle L. Matter Richard Benton Neil Hukriede Michael Tsang 《Current opinion in cell biology》2001,13(6):649
A selection of interesting papers that were published in the two months before our press date in major journals most likely to report significant results in cell biology. 相似文献
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Arshad Desai Stephen Rogers John P. Incardona Orion Weiner Leonie Ringrose Robert O. J. Weinzierl Vas Ponnambalam Paul A. Slesinger Joe William Ramos Michelle L. Matter Fabrizio d'Adda di Fagagna Neil Hukriede Michael Tsang Vincent Guacci Margarete M. S. Heck 《Current opinion in cell biology》2002,14(6):661
A selection of interesting papers that were published in the two months before our press date in major journals most likely to report significant results in cell biology. 相似文献
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《Current opinion in cell biology》2002,14(4):385-393
A selection of interesting papers that were published in the two months before our press date in major journals most likely to report significant results in cell biology. 相似文献
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Andrea Massiah 《Current opinion in plant biology》2000,3(6):445
A selection of World Wide Web sites relevant to papers published in this issue of Current Opinion in Plant Biology. 相似文献
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《Current opinion in cell biology》2002,14(2):127-134
A selection of interesting papers that were published in the two months before our press date in major journals most likely to report significant results in cell biology. 相似文献
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The scientific techniques used in molecular biological research and drug discovery have changed dramatically over the past 10 years due to the influence of genomics, proteomics and bioinformatics. Furthermore, genomics and functional genomics are now merging into a new scientific approach called chemogenomics. Advancements in the study of molecular cell biology are dependent upon "omics" researchers realizing the importance of and using the experimental tools currently available to cell biologists. For example, novel microscopic techniques utilizing advanced computer imaging allow for the examination of live specimens in a fourth dimension, viz., time. Yet, molecular biologists have not taken full advantage of these and other traditional and novel cell biology techniques for the further advancement of genomic and proteomic-oriented research. The application of traditional and novel cellular biological techniques will enhance the science of genomics. The authors hypothesize that a stronger interdisciplinary approach must be taken between cell biology (and its closely related fields) and genomics, proteomics and bio-chemoinformatics. Since there is a lot of confusion regarding many of the "omics" definitions, this article also clarifies some of the basic terminology used in genomics, and related fields. It also reviews the current status and future potential of chemogenomics and its relationship to cell biology. The authors also discuss and expand upon the differences between chemogenomics and the relatively new term--chemoproteomics. We conclude that the advances in cell biology methods and approaches and their adoption by "omics" researchers will allow scientists to maximize our knowledge about life. 相似文献
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Sean Munro 《BioEssays : news and reviews in molecular, cellular and developmental biology》1999,21(7):622-623
Cell biology from a nuclear perspective, Cells, a Laboratory Manual (1998). D.L. Spector, R.D. Goldman, and L.A. Leinwand (Eds). Cold Spring Harbor, NY: CSHL Press, 2,136 pp. (3 vols.) $255 comb-bound; ISBN 0879695218 相似文献
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The P2X7 receptor: a key player in IL-1 processing and release 总被引:19,自引:0,他引:19
Ferrari D Pizzirani C Adinolfi E Lemoli RM Curti A Idzko M Panther E Di Virgilio F 《Journal of immunology (Baltimore, Md. : 1950)》2006,176(7):3877-3883
Human IL-1 family proteins are key mediators of the host response to infections, injury, and immunologic challenges. The mechanism by which IL-1 activates proinflammatory responses in target cells, and the plasma membrane receptors involved, is fairly well known. This has led to the development of innovative drugs that block IL-1 downstream to its synthesis and secretion. On the contrary, the mechanism of IL-1 and other IL-1 family members (e.g., IL-18) maturation and release is incompletely understood. Accruing evidence points to a plasma membrane receptor for extracellular ATP, the P2X(7) receptor, as a key player in both processes. A deeper understanding of the mechanism by which the P2X(7) receptor triggers IL-1 maturation and exteriorization may suggest novel avenues for the treatment of inflammatory diseases and provide a deeper insight in the fundamental mechanism of protease activation and cellular export of proteins lacking a leader sequence. 相似文献
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