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Recent advances in image-based stem-cell labeling and tracking, and scaffold-based organ development in cardiovascular disease

机译:基于图像的干细胞标记和追踪以及基于支架的器官发展在心血管疾病中的最新进展

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Myocardial infarction (MI)and heart failure (HF)are leading causes of mortality and morbidity in the Western World. Therapeutic approaches using interventional cardiology and bioengineering techniques have thus far focused on either salvaging viable tissue post-infarction or preserving cardiac function in the failing myocardium. Regenerative medicine on the other hand, attempts to renew damaged tissue and enhance cardiac functional performance. Tremendous advances have been made in this field since the introduction and ethical approval for use of stem-cells (SC)and relevant technologies in pre-clinical and clinical practice. While study outcomes are still ambivalent on the potential translational impact of SCs, renewed hope has arisen since the introduction of induced pluripotent stem-cells (iPS)and the prospect of intact organ development and transplantation. The aim of this work is to review recent discoveries and the patent landscape employing stem-cell engineering, labeling and image-based monitoring strategies, their use in bioreactors and constructions of enriched bio-artificial membranes, as well as the potential role in artificial organ development and transplantation, with relevance to anticipated impact in pre-clinical screening and widespread clinical use.
机译:心肌梗塞(MI)和心力衰竭(HF)是西方世界死亡率和发病率的主要原因。迄今为止,使用介入心脏病学和生物工程技术的治疗方法集中于抢救梗死后的可行组织或在衰竭的心肌中保存心脏功能。另一方面,再生医学试图更新受损的组织并增强心脏功能。自从在临床前和临床实践中引入干细胞(SC)和相关技术并获得伦理学认可以来,该领域取得了巨大进步。尽管关于SC的潜在翻译影响的研究结果尚不明确,但自从引入诱导性多能干细胞(iPS)以及完整器官发育和移植的前景以来,人们有了新的希望。这项工作的目的是回顾采用干细胞工程,标记和基于图像的监测策略的最新发现和专利概况,其在生物反应器中的使用以及富集的生物人工膜的构建以及在人工器官中的潜在作用开发和移植,与临床前筛查和临床广泛应用的预期影响有关。

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