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石墨烯的综合应用:侧重于生物医学问题

Comprehensive Application of Graphene: Emphasis on Biomedical Concerns.

作者信息

Syama S, Mohanan P V

机构信息

Toxicology Division, Biomedical Technology Wing, Sree Chitra Tirunal Institute for Medical Sciences and Technology, Thiruvananthapuram, Kerala, 695 012, India.

出版信息

Nanomicro Lett. 2019 Jan 12;11(1):6. doi: 10.1007/s40820-019-0237-5.

Abstract

Graphene, sp hybridized carbon framework of one atom thickness, is reputed as the strongest material to date. It has marked its impact in manifold applications including electronics, sensors, composites, and catalysis. Current state-of-the-art graphene research revolves around its biomedical applications. The two-dimensional (2D) planar structure of graphene provides a large surface area for loading drugs/biomolecules and the possibility of conjugating fluorescent dyes for bioimaging. The high near-infrared absorbance makes graphene ideal for photothermal therapy. Henceforth, graphene turns out to be a reliable multifunctional material for use in diagnosis and treatment. It exhibits antibacterial property by directly interacting with the cell membrane. Potential application of graphene as a scaffold for the attachment and proliferation of stem cells and neuronal cells is captivating in a tissue regeneration scenario. Fabrication of 2D graphene into a 3D structure is made possible with the help of 3D printing, a revolutionary technology having promising applications in tissue and organ engineering. However, apart from its advantageous application scope, use of graphene raises toxicity concerns. Several reports have confirmed the potential toxicity of graphene and its derivatives, and the inconsistency may be due to the lack of standardized consensus protocols. The present review focuses on the hidden facts of graphene and its biomedical application, with special emphasis on drug delivery, biosensing, bioimaging, antibacterial, tissue engineering, and 3D printing applications.

摘要

石墨烯是一种单原子厚度的sp杂化碳框架,被誉为迄今为止最强的材料。它在包括电子、传感器、复合材料和催化等众多应用领域都产生了显著影响。当前最前沿的石墨烯研究围绕其生物医学应用展开。石墨烯的二维(2D)平面结构为加载药物/生物分子提供了大表面积,并为生物成像提供了共轭荧光染料的可能性。高近红外吸收率使石墨烯成为光热疗法的理想材料。因此,石墨烯成为一种用于诊断和治疗的可靠多功能材料。它通过与细胞膜直接相互作用表现出抗菌特性。在组织再生场景中,石墨烯作为干细胞和神经元细胞附着与增殖支架的潜在应用很有吸引力。借助3D打印,将二维石墨烯制成三维结构成为可能,3D打印是一种在组织和器官工程中有广阔应用前景的革命性技术。然而,除了其有利的应用范围外,石墨烯的使用也引发了毒性问题。一些报告证实了石墨烯及其衍生物的潜在毒性,这种不一致可能是由于缺乏标准化的共识协议。本综述重点关注石墨烯及其生物医学应用的潜在事实,特别强调药物递送、生物传感、生物成像、抗菌、组织工程和3D打印应用。

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