氧化石墨烯复合支架的生物相容性研究进展
摘要
的二维碳纳米材料,作为石墨烯的氧化形态,其展现出优异的力学性能、高比表面积、良好的生物相容性、低毒性
等特点。氧化石墨烯不仅直接促进细胞的黏附、增殖以及分化能力,它还能够改良传统支架的机械性能、生物活性、
抗菌能力,氧化石墨烯复合支架材料有很大希望能成为理想的骨再生材料,本文对于氧化石墨烯在骨组织工程复合
支架材料中的生物相容性研究进行综述。
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[1]金灿,陈振琦.应用 3D打印技术制作组织工程
支架:修复骨缺损的研究回顾 [J].中国组织工程研究,
2017,21(10):1611-1616.
[2]Yousefi AM, James PF, Akbarzadeh R, Subramanian
A, Flavin C, Oudadesse H. Prospect of Stem Cells in
Bone Tissue Engineering: A Review. Stem Cells Int.
2016;2016:6180487.
[3]米雪,张嘉宇,何惠宇.三维打印组织工程骨支
架的生物相容性实验研究 [J].中华实用诊断与治疗杂志,
2017,31(07):640-644.
[4]Novoselov KS, Geim AK, Morozov SV, Jiang D,
Zhang Y, Dubonos SV, Grigorieva IV, Firsov AA. Electric
field effect in atomically thin carbon films. Science. 2004 Oct
22;306(5696):666-9.
[5]Liang C, Luo Y, Yang G, Xia D, Liu L, Zhang
X, Wang H. Graphene Oxide Hybridized nHAC/PLGA
Scaffolds Facilitate the Proliferation of MC3T3-E1 Cells.
Nanoscale Res Lett. 2018 Jan 11;13(1):15.
[6]Paris JL, Baeza A, Vallet-Regí M. Overcoming
the stability, toxicity, and biodegradation challenges of tumor
stimuli-responsive inorganic nanoparticles for delivery
of cancer therapeutics. Expert Opin Drug Deliv. 2019
Oct;16(10):1095-1112.
[7]Yu W, Sisi L, Haiyan Y, Jie L. Progress in the
functional modification of graphene/graphene oxide: a
review. RSC Adv. 2020 Apr 17;10(26):15328-15345.
[8]Qi Z, Guo W, Zheng S, Fu C, Ma Y, Pan S, Liu
Q, Yang X. Enhancement of neural stem cell survival,
proliferation and differentiation by IGF-1 delivery in
graphene oxide-incorporated PLGA electrospun nanofibrous
mats. RSC Adv. 2019 Mar 12;9(15):8315-8325.
[9]陈仲,孔超,齐天天,等.氧化石墨烯材料在骨
缺损修复中的作用研究进展 [J].转化医学杂志,2024,13
(02):301-307.
19
现代医学前沿 | 第2卷/第11期
Advances in Mordern Medical
[10]Wang K, Ruan J, Song H, Zhang J, Wo Y, Guo S,
Cui D. Biocompatibility of Graphene Oxide. Nanoscale Res
Lett. 2011 Dec;6(1):8.
[11]Peruzynska M, Cendrowski K, Barylak M, Tkacz
M, Piotrowska K, Kurzawski M, Mijowska E, Drozdzik M.
Comparative in vitro study of single and four layer graphene
oxide nanoflakes - Cytotoxicity and cellular uptake. Toxicol
In Vitro. 2017 Jun;41:205-213.
[12]石纯熔,何家旭,邓丽姗,等.氧化石墨烯在
口腔种植修复领域的应用 [J/OL].中国组织工程研究,
1-9[2024-11-04].
[13]Liu S, Zeng TH, Hofmann M, Burcombe E, Wei J,
Jiang R, Kong J, Chen Y. Antibacterial activity of graphite,
graphite oxide, graphene oxide, and reduced graphene
oxide: membrane and oxidative stress. ACS Nano. 2011 Sep
27;5(9):6971-80.
[14]Jia Z, Shi Y, Xiong P, Zhou W, Cheng Y, Zheng Y,
Xi T, Wei S. From Solution to Biointerface: Graphene SelfAssemblies of Varying Lateral Sizes and Surface Properties for
Biofilm Control and Osteodifferentiation. ACS Appl Mater
Interfaces. 2016 Jul 13;8(27):17151-65.
[15]魏常博,余智超,李晔,等.氧化石墨烯片对人
乳牙牙髓干细胞黏附、增殖及成骨早期相关蛋白表达的
影响 [J].临床口腔医学杂志,2018,34(07):387-391
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