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用于细胞递送的支架的3D打印:皮肤组织工程学进展

3D Printing of Scaffold for Cells Delivery: Advances in Skin Tissue Engineering.

作者信息

Singh Deepti, Singh Dolly, Han Sung Soo

机构信息

Department of Surgery, Yale School of Medicine, Yale University, New Haven, CT-06510, CT, USA.

Biomaterials Lab, Department of Nano, Medical & Polymer Materials, College of Engineering, Yeungnam University, 280 Daehak-ko, Gyeongsan, Gyeongsanbukdo 712-749, Korea.

出版信息

Polymers (Basel). 2016 Jan 16;8(1):19. doi: 10.3390/polym8010019.

Abstract

Injury or damage to tissue and organs is a major health problem, resulting in about half of the world's annual healthcare expenditure every year. Advances in the fields of stem cells (SCs) and biomaterials processing have provided a tremendous leap for researchers to manipulate the dynamics between these two, and obtain a skin substitute that can completely heal the wounded areas. Although wound healing needs a coordinated interplay between cells, extracellular proteins and growth factors, the most important players in this process are the endogenous SCs, which activate the repair cascade by recruiting cells from different sites. Extra cellular matrix (ECM) proteins are activated by these SCs, which in turn aid in cellular migrations and finally secretion of growth factors that can seal and heal the wounds. The interaction between ECM proteins and SCs helps the skin to sustain the rigors of everyday activity, and in an attempt to attain this level of functionality in artificial three-dimensional (3D) constructs, tissue engineered biomaterials are fabricated using more advanced techniques such as bioprinting and laser assisted printing of the organs. This review provides a concise summary of the most recent advances that have been made in the area of polymer bio-fabrication using 3D bio printing used for encapsulating stem cells for skin regeneration. The focus of this review is to describe, in detail, the role of 3D architecture and arrangement of cells within this system that can heal wounds and aid in skin regeneration.

摘要

组织和器官的损伤是一个重大的健康问题,每年导致全球约一半的医疗支出。干细胞(SCs)和生物材料加工领域的进展为研究人员操控这两者之间的动态关系提供了巨大飞跃,从而获得一种能够完全治愈伤口的皮肤替代品。尽管伤口愈合需要细胞、细胞外蛋白质和生长因子之间的协同相互作用,但这一过程中最重要的参与者是内源性干细胞,它们通过从不同部位募集细胞来激活修复级联反应。细胞外基质(ECM)蛋白质被这些干细胞激活,进而有助于细胞迁移,最终分泌能够封闭和愈合伤口的生长因子。ECM蛋白质与干细胞之间的相互作用有助于皮肤承受日常活动的严酷考验,并且为了在人工三维(3D)构建物中达到这种功能水平,人们使用生物打印和器官激光辅助打印等更先进的技术制造组织工程生物材料。本综述简要总结了利用3D生物打印进行聚合物生物制造以封装干细胞用于皮肤再生领域的最新进展。本综述的重点是详细描述该系统中能够愈合伤口并有助于皮肤再生的3D结构以及细胞排列的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2128/6432526/22c783b0baca/polymers-08-00019-g001.jpg

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