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基于纳米材料的组织工程应用支架:石墨烯、碳纳米管和纳米纤维素的综述。

Nanomaterial-Based Scaffolds for Tissue Engineering Applications: A Review on Graphene, Carbon Nanotubes and Nanocellulose.

机构信息

Department of Biological and Agricultural Engineering, University of Arkansas, Fayetteville, AR, USA.

Institute for Nanoscience and Engineering, University of Arkansas, Fayetteville, AR, USA.

出版信息

Tissue Eng Regen Med. 2023 Jun;20(3):411-433. doi: 10.1007/s13770-023-00530-3. Epub 2023 Apr 15.

Abstract

Nanoscale biomaterials have garnered immense interest in the scientific community in the recent decade. This review specifically focuses on the application of three nanomaterials, i.e., graphene and its derivatives (graphene oxide, reduced graphene oxide), carbon nanotubes (CNTs) and nanocellulose (cellulose nanocrystals or CNCs and cellulose nanofibers or CNFs), in regenerating different types of tissues, including skin, cartilage, nerve, muscle and bone. Their excellent inherent (and tunable) physical, chemical, mechanical, electrical, thermal and optical properties make them suitable for a wide range of biomedical applications, including but not limited to diagnostics, therapeutics, biosensing, bioimaging, drug and gene delivery, tissue engineering and regenerative medicine. A state-of-the-art literature review of composite tissue scaffolds fabricated using these nanomaterials is provided, including the unique physicochemical properties and mechanisms that induce cell adhesion, growth, and differentiation into specific tissues. In addition, in vitro and in vivo cytotoxic effects and biodegradation behavior of these nanomaterials are presented. We also discuss challenges and gaps that still exist and need to be addressed in future research before clinical translation of these promising nanomaterials can be realized in a safe, efficacious, and economical manner.

摘要

在最近十年,纳米级生物材料在科学界引起了极大的兴趣。本综述特别关注三种纳米材料(石墨烯及其衍生物(氧化石墨烯、还原氧化石墨烯)、碳纳米管(CNTs)和纳米纤维素(纤维素纳米晶体或 CNCs 和纤维素纳米纤维或 CNFs)在不同类型组织再生中的应用,包括皮肤、软骨、神经、肌肉和骨骼。它们优异的固有(和可调)物理、化学、机械、电气、热和光学特性使它们适用于广泛的生物医学应用,包括但不限于诊断、治疗、生物传感、生物成像、药物和基因递送、组织工程和再生医学。提供了使用这些纳米材料制造的复合组织支架的最新文献综述,包括诱导细胞黏附、生长和分化为特定组织的独特物理化学特性和机制。此外,还介绍了这些纳米材料的体外和体内细胞毒性作用和生物降解行为。我们还讨论了仍然存在的挑战和差距,以及在这些有前途的纳米材料以安全、有效和经济的方式实现临床转化之前需要解决的问题。

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