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用于软组织和软骨工程的3D生物制造

3D biofabrication for soft tissue and cartilage engineering.

作者信息

Turnbull Gareth, Clarke Jon, Picard Frédéric, Zhang Weidong, Riches Philip, Li Bin, Shu Wenmiao

机构信息

Department of Biomedical Engineering, Wolfson Building, University of Strathclyde, 106 Rottenrow, Glasgow G4 0NW, United Kingdom; Department of Orthopaedic Surgery, Golden Jubilee National Hospital, Agamemnon St, Clydebank G81 4DY, United Kingdom.

Department of Orthopaedic Surgery, Golden Jubilee National Hospital, Agamemnon St, Clydebank G81 4DY, United Kingdom.

出版信息

Med Eng Phys. 2020 Aug;82:13-39. doi: 10.1016/j.medengphy.2020.06.003. Epub 2020 Jul 9.

Abstract

Soft tissue injuries (STIs) affect patients of all age groups and represent a common worldwide clinical problem, resulting from conditions including trauma, infection, cancer and burns. Within the spectrum of STIs a mixture of tissues can be injured, ranging from skin to underlying nerves, blood vessels, tendons and cartilaginous tissues. However, significant limitations affect current treatment options and clinical demand for soft tissue and cartilage regenerative therapies continues to rise. Improving the regeneration of soft tissues has therefore become a key area of focus within tissue engineering. As an emerging technology, 3D bioprinting can be used to build complex soft tissue constructs "from the bottom up," by depositing cells, growth factors, extracellular matrices and other biomaterials in a layer-by-layer fashion. In this way, regeneration of cartilage, skin, vasculature, nerves, tendons and other bodily tissues can be performed in a patient specific manner. This review will focus on recent use of 3D bioprinting and other biofabrication strategies in soft tissue repair and regeneration. Biofabrication of a variety of soft tissue types will be reviewed following an overview of available cell sources, bioinks and bioprinting techniques.

摘要

软组织损伤(STIs)影响所有年龄组的患者,是一个全球常见的临床问题,由创伤、感染、癌症和烧伤等情况引起。在软组织损伤范围内,从皮肤到深层神经、血管、肌腱和软骨组织等多种组织都可能受损。然而,目前的治疗选择存在重大局限性,对软组织和软骨再生疗法的临床需求持续上升。因此,改善软组织再生已成为组织工程的一个关键重点领域。作为一项新兴技术,3D生物打印可通过逐层沉积细胞、生长因子、细胞外基质和其他生物材料,“自下而上”构建复杂的软组织构建体。通过这种方式,可以以患者特异性方式实现软骨、皮肤、脉管系统、神经、肌腱和其他身体组织的再生。本综述将重点关注3D生物打印和其他生物制造策略在软组织修复和再生中的最新应用。在概述可用细胞来源、生物墨水和生物打印技术之后,将对多种软组织类型的生物制造进行综述。

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