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Graphene: a versatile nanoplatform for biomedical applications

机译:石墨烯:多功能nanoplatform生物医学应用程序

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摘要

Graphene, with its excellent physical, chemical, and mechanical properties, holds tremendous potential for a wide variety of biomedical applications. As research on graphene-based nanomaterials is still at a nascent stage due to the short time span since its initial report in 2004, a focused review on this topic is timely and necessary. In this feature review, we first summarize the results from toxicity studies of graphene and its derivatives. Although literature reports have mixed findings, we emphasize that the key question is not how toxic graphene itself is, but how to modify and functionalize it and its derivatives so that they do not exhibit acute/chronic toxicity, can be cleared from the body over time, and thereby can be best used for biomedical applications. We then discuss in detail the exploration of graphene-based nanomaterials for tissue engineering, molecular imaging, and drug/gene delivery applications. The future of graphene-based nanomaterials in biomedicine looks brighter than ever, and it is expected that they will find a wide range of biomedical applications with future research effort and interdisciplinary collaboration.
机译:石墨烯以其优异的物理、化学、和机械性能,拥有巨大的各种各样的生物应用程序。由于纳米材料仍处于萌芽阶段短时间跨度以来最初的报告2004年,及时审查关注这个话题和必要的。总结毒性的研究结果石墨烯及其衍生物。报告发现,混合我们强调问题的关键不是石墨烯本身的毒性是,但是如何修改,使职能化呢其衍生产品,这样他们不展览急性/慢性毒性,可以清除的身体随着时间的推移,从而可以用于最好生物医学应用。详细的探索石墨烯纳米材料在组织工程、分子成像和药物/基因传递应用程序。石墨烯纳米材料的未来生物医学看起来比以前更明亮,它是预计他们将找到一个广泛的生物医学应用程序与未来的研究努力和跨学科合作。

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