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首页> 外文期刊>Expert opinion on biological therapy >Hypoxia and adipose-derived stem cell-based tissue regeneration and engineering.
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Hypoxia and adipose-derived stem cell-based tissue regeneration and engineering.

机译:基于缺氧和脂肪的干细胞的组织再生和工程化。

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摘要

INTRODUCTION: Realization that oxygen is one of the key regulators of development and differentiation has a profound significance on how current cell-based and tissue engineering applications using adipose-derived stem cells (ASCs) can be further improved. AREAS COVERED: The article provides an overview of mechanisms of hypoxic responses during physiological adaptations and development. Furthermore, a synopsis of the hypoxic responses of ASCs is provided, and this information is presented in context of their utility as a major source of stem cells across the regenerative applications explored to date. EXPERT OPINION: The reader will obtain insight into a highly specific area of stem cell research focusing on ASCs and hypoxia. In order to enhance the level of comprehension, a broader context with other stem cell and experimental systems is provided. It is emphasized that the pericellular oxygen tension is a critical regulatory factor that should be taken into account when devising novel stem cell-based therapeutic applications along with other parameters, such as biochemical soluble factors and the growth substrates.
机译:简介:氧是发育和分化的关键调节剂之一,这一认识对如何进一步改善目前使用脂肪干细胞(ASC)的基于细胞和组织工程的应用具有深远的意义。涵盖的领域:本文概述了生理适应和发育过程中的低氧反应机制。此外,提供了ASC的低氧反应的提要,并在其作为迄今为止探索的再生应用中干细胞的主要来源的实用性的背景下提供了该信息。专家意见:读者将深入了解干细胞研究的高度特定领域,重点是ASC和缺氧。为了提高理解水平,提供了与其他干细胞和实验系统更广泛的联系。要强调的是,当设计新颖的基于干细胞的治疗应用以及其他参数(例如生化可溶性因子和生长底物)时,应考虑到细胞周围的氧张力是关键的调节因素。

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