Zhang Huacheng, Grüner George, Zhao Yanli
Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, Singapore 637371.
J Mater Chem B. 2013 May 28;1(20):2542-2567. doi: 10.1039/c3tb20405g. Epub 2013 Apr 15.
Graphene, as a rising star in the field of nanomaterials, possesses a unique planar structure and exceptional electronic, mechanical, and optical properties. The material has attracted tremendous interest not only for its intrinsic properties but also promising application opportunities in a wide range of technologies and markets. This review specifically summarizes recent research advancements of graphene in the areas of biotechnology and biomedicine. The bio-application opportunities lie in the unique attributes of graphene, i.e., (1) its nano-scale structure that allows for bio-compatibility, (2) biofunctionalization of graphene for biological recognition, (3) its mechanical, electronic and optical properties for bioimaging and external stimulus driven therapeutics, and (4) its functionalities for tissue and genetic engineering. The review mainly highlights eight subjects including (1) biocompatibility, cytotoxicity and biofunctionalization, (2) antibacterial activity, (3) biosensing and immunosensing, (4) bioimaging, (5) genetic engineering, (6) drug delivery, (7) cancer phototherapy, and (8) tissue engineering. Perspectives and future challenges in this rapidly developing area are also discussed.
石墨烯作为纳米材料领域的一颗新星,具有独特的平面结构以及卓越的电子、机械和光学性能。该材料不仅因其固有特性,还因其在广泛技术和市场中具有广阔的应用前景而备受关注。本综述特别总结了石墨烯在生物技术和生物医学领域的最新研究进展。生物应用机会源于石墨烯的独特属性,即:(1)其纳米级结构具备生物相容性;(2)石墨烯的生物功能化用于生物识别;(3)其机械、电子和光学性能用于生物成像及外部刺激驱动的治疗;(4)其在组织和基因工程方面的功能。本综述主要突出了八个主题,包括:(1)生物相容性、细胞毒性和生物功能化;(2)抗菌活性;(3)生物传感和免疫传感;(4)生物成像;(5)基因工程;(6)药物递送;(7)癌症光疗;(8)组织工程。此外,还讨论了这一快速发展领域的前景和未来挑战。