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基于氧化石墨烯和还原氧化石墨烯的支架在再生医学中的应用。

Graphene oxide and reduced graphene oxide-based scaffolds in regenerative medicine.

机构信息

NanoBioCel Group, Laboratory of Pharmacy and Pharmaceutical Technology, Faculty of Pharmacy, University of the Basque Country UPV/EHU, Vitoria-Gasteiz 01006, Spain; Biomedical Research Networking Center in Bioengineering, Biomaterials, and Nanomedicine, CIBER-BBN, Spain.

NanoBioCel Group, Laboratory of Pharmacy and Pharmaceutical Technology, Faculty of Pharmacy, University of the Basque Country UPV/EHU, Vitoria-Gasteiz 01006, Spain; Biomedical Research Networking Center in Bioengineering, Biomaterials, and Nanomedicine, CIBER-BBN, Spain.

出版信息

Int J Pharm. 2020 Apr 30;580:119226. doi: 10.1016/j.ijpharm.2020.119226. Epub 2020 Mar 13.

Abstract

There is a vast and rapid increase in the applications of graphene oxide (GO) and reduced graphene oxide (rGO) in the biomedical field, including drug delivery, bio-sensing, and diagnostic tools. Among all the applications, the GO and rGO-based scaffolds are a very promising system that have attracted attention because of their great clinical projection in tissue regeneration therapies. Both GO and rGO have shown a strong impact on the proliferation and differentiation of implemented stem cells, but still need to overcome several challenges, such as cytotoxicity, biodistribution, biotransformation or immune response. However, there are still controversial hypothesises regarding the mechanisms involved in these issues that should be clarified in order to improve the applications of these compounds. 3D-scaffolds can help in solving some of those limitations when moving into preclinical studies in regenerative medicine. In this review, we will describe the application of GO and rGO within 3D scaffolds in bone, cardiac and neural regenerative medicine after analyzing the aforementioned challenges.

摘要

氧化石墨烯(GO)和还原氧化石墨烯(rGO)在生物医学领域的应用正在迅速扩大,包括药物输送、生物传感和诊断工具。在所有应用中,基于 GO 和 rGO 的支架是一个非常有前途的系统,由于其在组织再生治疗中的巨大临床应用前景而引起了关注。GO 和 rGO 都对所植入的干细胞的增殖和分化产生了强烈的影响,但仍需要克服一些挑战,如细胞毒性、生物分布、生物转化或免疫反应。然而,对于这些问题涉及的机制仍存在争议性假设,为了改善这些化合物的应用,需要对其进行澄清。3D 支架在再生医学的临床前研究中可以帮助解决其中的一些局限性。在本文综述中,我们将在分析上述挑战后,描述 GO 和 rGO 在骨、心脏和神经再生医学的 3D 支架中的应用。

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