Derivation and properties of human embryonic stem cell-derived cardiomyocytes

I. Kehat, L. Gepstein
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引用次数: 2

Abstract

The heart has relatively little regenerative capacity and hence any significant cell loss may lead to the development of heart failure. Cell therapy is emerging as a possible novel therapeutic approach for heart failure but is hampered by the paucity of cell sources for cardiomyocytes. Human embryonic stem (ES) cells are cell lines that were derived from the pre-implantation embryo and are capable of undifferentiated proliferation while retaining the capability to form derivatives of all three germ layers. The current review describes the properties of human ES cells and the derivation and properties of cardiomyocytes generated using this unique differentiating system. The possible applications in several research and clinical fields are described as well as the steps required to establish this tissue as a unique source for cell therapy procedures.
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人胚胎干细胞衍生心肌细胞的来源及性质
心脏具有相对较小的再生能力,因此任何显著的细胞损失都可能导致心力衰竭的发展。细胞疗法正在成为一种可能的治疗心力衰竭的新方法,但由于心肌细胞细胞来源的缺乏而受到阻碍。人类胚胎干细胞(ES)是来源于胚胎植入前的细胞系,能够进行未分化增殖,同时保留形成所有三种胚层衍生物的能力。目前的综述描述了人类胚胎干细胞的特性以及使用这种独特的分化系统产生的心肌细胞的来源和特性。在几个研究和临床领域的可能应用描述以及建立这种组织作为细胞治疗程序的独特来源所需的步骤。
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NUCLEAR REPROGRAMMING AND THE CURRENT CHALLENGES IN ADVANCING PERSONALIZED PLURIPOTENT STEM CELL-BASED THERAPIES S/MAR VECTORS — ALTERNATIVE EXPRESSION SYSTEMS FOR GENE THERAPY? MURINE PGK PROMOTER IN A LENTIVIRAL VECTOR IN CANINE LEUKOCYTE ADHESION DEFICIENCY AND IN HUMAN LAD-1 CD34+ CELLS IN NSG MICE 3D CELL BIOPRINTING FOR REGENERATIVE MEDICINE RESEARCH AND THERAPIES EDITORIAL — NOBEL PRIZE HIGHLIGHT: SOMATIC CELL REPROGRAMMING AND THE CURRENT CLINICAL GRADE CHALLENGE
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