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用于骨组织工程的碳基纳米材料:在黑色小支架上构建新骨:综述

Carbon based nanomaterials for tissue engineering of bone: Building new bone on small black scaffolds: A review.

作者信息

Eivazzadeh-Keihan Reza, Maleki Ali, de la Guardia Miguel, Bani Milad Salimi, Chenab Karim Khanmohammadi, Pashazadeh-Panahi Paria, Baradaran Behzad, Mokhtarzadeh Ahad, Hamblin Michael R

机构信息

Catalysts and Organic Synthesis Research Laboratory, Department of Chemistry, Iran University of Science and Technology, Tehran 16846-13114, Iran.

Department of Analytical Chemistry, University of Valencia, Dr. Moliner 50, 46100, Burjassot, Valencia, Spain.

出版信息

J Adv Res. 2019 Mar 28;18:185-201. doi: 10.1016/j.jare.2019.03.011. eCollection 2019 Jul.

Abstract

Tissue engineering is a rapidly-growing approach to replace and repair damaged and defective tissues in the human body. Every year, a large number of people require bone replacements for skeletal defects caused by accident or disease that cannot heal on their own. In the last decades, tissue engineering of bone has attracted much attention from biomedical scientists in academic and commercial laboratories. A vast range of biocompatible advanced materials has been used to form scaffolds upon which new bone can form. Carbon nanomaterial-based scaffolds are a key example, with the advantages of being biologically compatible, mechanically stable, and commercially available. They show remarkable ability to affect bone tissue regeneration, efficient cell proliferation and osteogenic differentiation. Basically, scaffolds are templates for growth, proliferation, regeneration, adhesion, and differentiation processes of bone stem cells that play a truly critical role in bone tissue engineering. The appropriate scaffold should supply a microenvironment for bone cells that is most similar to natural bone in the human body. A variety of carbon nanomaterials, such as graphene oxide (GO), carbon nanotubes (CNTs), fullerenes, carbon dots (CDs), nanodiamonds and their derivatives that are able to act as scaffolds for bone tissue engineering, are covered in this review. Broadly, the ability of the family of carbon nanomaterial-based scaffolds and their critical role in bone tissue engineering research are discussed. The significant stimulating effects on cell growth, low cytotoxicity, efficient nutrient delivery in the scaffold microenvironment, suitable functionalized chemical structures to facilitate cell-cell communication, and improvement in cell spreading are the main advantages of carbon nanomaterial-based scaffolds for bone tissue engineering.

摘要

组织工程是一种快速发展的方法,用于替换和修复人体中受损和有缺陷的组织。每年,大量的人因意外或疾病导致的骨骼缺陷而自身无法愈合,需要进行骨替代。在过去几十年中,骨组织工程引起了学术和商业实验室中生物医学科学家的广泛关注。各种各样的生物相容性先进材料已被用于形成可在其上形成新骨的支架。基于碳纳米材料的支架就是一个关键例子,它具有生物相容性、机械稳定性和商业可用性等优点。它们在影响骨组织再生、促进细胞增殖和成骨分化方面表现出显著能力。基本上,支架是骨干细胞生长、增殖、再生、黏附和分化过程的模板,在骨组织工程中发挥着真正关键的作用。合适的支架应为骨细胞提供一个与人体天然骨最相似的微环境。本综述涵盖了多种能够作为骨组织工程支架的碳纳米材料,如氧化石墨烯(GO)、碳纳米管(CNTs)、富勒烯、碳点(CDs)、纳米金刚石及其衍生物。大致上,讨论了基于碳纳米材料的支架家族的能力及其在骨组织工程研究中的关键作用。基于碳纳米材料的支架用于骨组织工程的主要优点包括对细胞生长的显著刺激作用、低细胞毒性、在支架微环境中高效的营养物质传递、有助于细胞间通讯的合适功能化化学结构以及细胞铺展的改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1afb/6479020/7b4aae9341ac/ga1.jpg

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