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Stem cell aging[electronic resource]...
~
Florian, Maria Carolina.
Stem cell aging[electronic resource] :mechanisms, consequences, rejuvenation /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
杜威分類號:
616.02774
書名/作者:
Stem cell aging : mechanisms, consequences, rejuvenation // edited by Hartmut Geiger, Heinrich Jasper, Maria Carolina Florian.
其他作者:
Geiger, Hartmut.
出版者:
Vienna : : Springer Vienna :, 2015.
面頁冊數:
xi, 354 p. : : ill. (some col.), digital ;; 24 cm.
Contained By:
Springer eBooks
標題:
Stem cells.
標題:
Aging - Molecular aspects.
標題:
Life Sciences.
標題:
Stem Cells.
標題:
Cancer Research.
標題:
Immunology.
標題:
Hematology.
ISBN:
9783709112328 (electronic bk.)
ISBN:
9783709112311 (paper)
內容註:
Introduction -- Stem cells, aging and longevity (overview) -- General mechanisms of stem cell aging (overview) -- Mechanisms of Stem Cell Aging in Model Organisms -- Yeast: Chronological aging -- Divisional aging -- Primarily germline -- stem cell aging -- Drosophila: Male germ line -- Female germ line -- Somatic stem cells (stress and regulation of hematopoietic precursors, intestinal stem cell aging and regulation) Zebrafish -- Mechanisms of Stem Cell Aging in Mammalian Tissues -- Hematopoietic (Mouse/Human) -- Skin (Mouse/Human) -- Intestine (Mouse/Human) -- Muscle (Mouse/Human) -- Neuronal Tissues (Mouse/Human) -- Diseases of Aging and Stem Cells -- Chronic Myeloid Leukemia and Aging of Hematopoietic Stem Cells (Mouse/Human) -- Wound Healing Repair and Aging of Skin Stem Cells (Mouse/Human) -- Stem Cell Rejuvenation Muscle -- Hematopoietic -- Neuronal.
摘要、提要註:
Aging of somatic stem cells reduces cell function and results in dysfunctional organs and tissues, making it an underlying cause of diseases associated with aging. It might even be the primary cause for age-associated attrition of tissue function in organs that heavily rely on stem cells for maintaining homeostasis, like the skin, blood and intestines. Understanding the molecular and cellular mechanisms involved is critical for developing approaches to attenuate stem cell aging and could pave the way for improved quality of life among the elderly. Written by highly prominent experts in the field, this book presents the current state of knowledge on these mechanisms. It offers insights into stem cell function, explains in detail the mechanisms of stem cell aging in model organisms as well as mammalian systems, and describes related diseases and approaches to attenuating stem cell aging or achieving rejuvenation. The book is intended for all scientists and clinicians working with stem cells, aging mechanisms or age-related diseases.
電子資源:
http://dx.doi.org/10.1007/978-3-7091-1232-8
Stem cell aging[electronic resource] :mechanisms, consequences, rejuvenation /
Stem cell aging
mechanisms, consequences, rejuvenation /[electronic resource] :edited by Hartmut Geiger, Heinrich Jasper, Maria Carolina Florian. - Vienna :Springer Vienna :2015. - xi, 354 p. :ill. (some col.), digital ;24 cm.
Introduction -- Stem cells, aging and longevity (overview) -- General mechanisms of stem cell aging (overview) -- Mechanisms of Stem Cell Aging in Model Organisms -- Yeast: Chronological aging -- Divisional aging -- Primarily germline -- stem cell aging -- Drosophila: Male germ line -- Female germ line -- Somatic stem cells (stress and regulation of hematopoietic precursors, intestinal stem cell aging and regulation) Zebrafish -- Mechanisms of Stem Cell Aging in Mammalian Tissues -- Hematopoietic (Mouse/Human) -- Skin (Mouse/Human) -- Intestine (Mouse/Human) -- Muscle (Mouse/Human) -- Neuronal Tissues (Mouse/Human) -- Diseases of Aging and Stem Cells -- Chronic Myeloid Leukemia and Aging of Hematopoietic Stem Cells (Mouse/Human) -- Wound Healing Repair and Aging of Skin Stem Cells (Mouse/Human) -- Stem Cell Rejuvenation Muscle -- Hematopoietic -- Neuronal.
Aging of somatic stem cells reduces cell function and results in dysfunctional organs and tissues, making it an underlying cause of diseases associated with aging. It might even be the primary cause for age-associated attrition of tissue function in organs that heavily rely on stem cells for maintaining homeostasis, like the skin, blood and intestines. Understanding the molecular and cellular mechanisms involved is critical for developing approaches to attenuate stem cell aging and could pave the way for improved quality of life among the elderly. Written by highly prominent experts in the field, this book presents the current state of knowledge on these mechanisms. It offers insights into stem cell function, explains in detail the mechanisms of stem cell aging in model organisms as well as mammalian systems, and describes related diseases and approaches to attenuating stem cell aging or achieving rejuvenation. The book is intended for all scientists and clinicians working with stem cells, aging mechanisms or age-related diseases.
ISBN: 9783709112328 (electronic bk.)
Standard No.: 10.1007/978-3-7091-1232-8doiSubjects--Topical Terms:
412365
Stem cells.
LC Class. No.: QH588.S83
Dewey Class. No.: 616.02774
Stem cell aging[electronic resource] :mechanisms, consequences, rejuvenation /
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Introduction -- Stem cells, aging and longevity (overview) -- General mechanisms of stem cell aging (overview) -- Mechanisms of Stem Cell Aging in Model Organisms -- Yeast: Chronological aging -- Divisional aging -- Primarily germline -- stem cell aging -- Drosophila: Male germ line -- Female germ line -- Somatic stem cells (stress and regulation of hematopoietic precursors, intestinal stem cell aging and regulation) Zebrafish -- Mechanisms of Stem Cell Aging in Mammalian Tissues -- Hematopoietic (Mouse/Human) -- Skin (Mouse/Human) -- Intestine (Mouse/Human) -- Muscle (Mouse/Human) -- Neuronal Tissues (Mouse/Human) -- Diseases of Aging and Stem Cells -- Chronic Myeloid Leukemia and Aging of Hematopoietic Stem Cells (Mouse/Human) -- Wound Healing Repair and Aging of Skin Stem Cells (Mouse/Human) -- Stem Cell Rejuvenation Muscle -- Hematopoietic -- Neuronal.
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Aging of somatic stem cells reduces cell function and results in dysfunctional organs and tissues, making it an underlying cause of diseases associated with aging. It might even be the primary cause for age-associated attrition of tissue function in organs that heavily rely on stem cells for maintaining homeostasis, like the skin, blood and intestines. Understanding the molecular and cellular mechanisms involved is critical for developing approaches to attenuate stem cell aging and could pave the way for improved quality of life among the elderly. Written by highly prominent experts in the field, this book presents the current state of knowledge on these mechanisms. It offers insights into stem cell function, explains in detail the mechanisms of stem cell aging in model organisms as well as mammalian systems, and describes related diseases and approaches to attenuating stem cell aging or achieving rejuvenation. The book is intended for all scientists and clinicians working with stem cells, aging mechanisms or age-related diseases.
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