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首页> 外文期刊>Journal of nanoscience and nanotechnology >Tubular Tissues and Organs of Human Body-Challenges in Regenerative Medicine
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Tubular Tissues and Organs of Human Body-Challenges in Regenerative Medicine

机译:人体的管状组织和器官-再生医学的挑战

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摘要

Tissue engineering of tubular organs such as the blood vessel, trachea gastrointestinal tract, urinary tract are of the great interest due to the high amount of surgeries performed annually on those organs. Development in tissue engineering in recent years and promising results, showed need to investigate more complex constructs that need to be designed in special manner. Stent technology remain the most widely used procedure to restore functions of tubular tissues after cancer treatment, or after organ removal due to traumatic accidents. Tubular structures like blood vessels, intestines, and trachea have to work in specific environment at the boundary of the liquids, solids or air and surrounding tissues and ensure suitable separation between them. This brings additional challenges in tissue engineering science in order to construct complete organs by using combinations of various cells along with the support material systems. Here we give a comprehensive review of the tubular structures of the human body, in perspective of the current methods of treatment and progress in regenerative medicine that aims to develop fully functioning organs of tubular shape. Extensive analysis of the available literature has been done focusing on materials and methods of creations of such organs. This work describes the attempts to incorporate growth factors and drugs within the scaffolds to ensure localized drug release and enhance vascularization of the organ by attracting blood vessels to the site of implantation.
机译:管状器官的组织工程,例如血管,气管胃肠道,泌尿道,由于每年对这些器官进行大量外科手术而引起了极大的兴趣。近年来组织工程学的发展和令人鼓舞的结果表明,有必要研究需要以特殊方式设计的更复杂的构建体。支架技术仍然是最广泛使用的程序,用于在癌症治疗后或因外伤事故除去器官后恢复管状组织的功能。诸如血管,肠和气管的管状结构必须在液体,固体或空气与周围组织的边界处的特定环境中工作,并确保它们之间的适当隔离。为了通过使用各种细胞与支持材料系统的组合来构建完整的器官,在组织工程科学中带来了其他挑战。鉴于目前的治疗方法和旨在发展功能完备的管状器官的再生医学的进展,我们在此对人体的管状结构进行了全面回顾。已经对现有文献进行了广泛的分析,着重于这类器官的创作材料和创作方法。这项工作描述了将生长因子和药物掺入支架中以确保局部药物释放并通过将血管吸引到植入部位来增强器官血管化的尝试。

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