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利用贻贝启发的聚多巴胺对石墨烯量子点进行表面涂层处理,用于生物医学光学成像。

Surface coating of graphene quantum dots using mussel-inspired polydopamine for biomedical optical imaging.

机构信息

Department of Polymer Science and Engineering, Korea National University of Transportation, Chungju, 380-702 Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2013 Aug 28;5(16):8246-53. doi: 10.1021/am4023863. Epub 2013 Aug 6.

Abstract

Because of the superiority of GQDs (graphene quantum dots) in biomedical imaging, in terms of biocompatibility and toxicity of semiconductor quantum dots, GQDs bring new opportunities for the diagnosis and detection of diseases. In this study, we synthesized photoluminescent (PL) graphene quantum dots (GQDs) through a simple exfoliation and oxidation process, and then coated them with polydopamine (pDA) for enhanced stability in water and low toxicity in vivo. From the results, the GQDs coated with pDA showed an excellent stability of PL intensity. It showed that the PL intensity of noncoated GQDs in PBS solution rapidly decreased with time, resulting in a 45% reduction of the PL intensity for 14 days of incubation in PBS solution. After coating with polydopamine, PL intensities of polydopamine-coated GQDs was maintained more stably for 14 days compared with uncoated GQDs. We have observed the in vitro and in vivo biocompatibility of pDA-coated GQDs in nude mice. The overall observation revealed that pDA-coated GQDs could be used as a long-term optical imaging agent as well as a biocompatible drug carrier.

摘要

由于 GQDs(石墨烯量子点)在生物医学成像方面的优势,在生物相容性和半导体量子点的毒性方面,GQDs 为疾病的诊断和检测带来了新的机遇。在本研究中,我们通过简单的剥离和氧化过程合成了发磷光(PL)的石墨烯量子点(GQDs),然后用聚多巴胺(pDA)对其进行涂层处理,以提高其在水中的稳定性和体内的低毒性。结果表明,用 pDA 涂层的 GQDs 表现出优异的 PL 强度稳定性。结果表明,在 PBS 溶液中,未涂层 GQDs 的 PL 强度随时间迅速下降,在 PBS 溶液中孵育 14 天后,PL 强度降低了 45%。用聚多巴胺涂层后,与未涂层的 GQDs 相比,聚多巴胺涂层的 GQDs 的 PL 强度在 14 天内保持更稳定。我们观察了裸鼠体内外 pDA 涂层 GQDs 的生物相容性。整体观察表明,pDA 涂层的 GQDs 可以用作长期光学成像剂以及生物相容的药物载体。

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