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二甲双胍衍生的碳点:具有高度生物相容性的荧光纳米材料,可作为线粒体靶向和血脑屏障穿透生物标志物。

Metformin derived carbon dots: Highly biocompatible fluorescent nanomaterials as mitochondrial targeting and blood-brain barrier penetrating biomarkers.

作者信息

Kirbas Cilingir Emel, Seven Elif S, Zhou Yiqun, Walters Brian M, Mintz Keenan J, Pandey Raja R, Wikramanayake Athula H, Chusuei Charles C, Vanni Steven, Graham Regina M, Leblanc Roger M

机构信息

Department of Chemistry, University of Miami, 1301 Memorial Drive, Coral Gables, FL 33146, United States.

Department of Biology, University of Miami, Coral Gables, FL 33146, United States.

出版信息

J Colloid Interface Sci. 2021 Jun 15;592:485-497. doi: 10.1016/j.jcis.2021.02.058. Epub 2021 Feb 19.

Abstract

Carbon dots (CDs) have been intensively studied since their discovery in 2004 because of their unique properties such as low toxicity, excellent biocompatibility, high photoluminescence (PL) and good water dispersibility. In this study metformin derived carbon dots (Met-CDs) were synthesized using a microwave assisted method. Met-CDs were meticulously characterized using ultra-violet spectroscopy (UV-vis), photoluminescence (PL), Fourier Transform Infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), atomic force (AFM) and transmission electron (TEM) microscopies. According to results of cytotoxicity studies, Met-CDs possess low-toxicity and excellent biocompatibility towards both non-tumor and tumor cell lines indicating that Met-CDs are outstanding candidates for living cell bioimaging studies. Furthermore, bioimaging studies have displayed that Met-CDs can penetrate the cell membrane and disperse throughout the cell structure including the nucleus and mitochondria. More specifically, Met-CDs tend to start localizing selectively inside the mitochondria of cancer cells, but not of non-tumor cells after 1 h of incubation. Finally, a zebrafish study confirmed that Met-CDs cross the blood-brain barrier (BBB) without the need of any other ligands. In summary, this study presents synthesis of Met-CDs which feature abilities such as mitochondrial and nucleus localizations along with BBB penetration.

摘要

碳点(CDs)自2004年被发现以来就受到了广泛研究,因为它们具有独特的性质,如低毒性、优异的生物相容性、高光致发光(PL)和良好的水分散性。在本研究中,采用微波辅助法合成了二甲双胍衍生的碳点(Met-CDs)。使用紫外光谱(UV-vis)、光致发光(PL)、傅里叶变换红外光谱(FTIR)、X射线光电子能谱(XPS)、原子力显微镜(AFM)和透射电子显微镜(TEM)对Met-CDs进行了细致表征。根据细胞毒性研究结果,Met-CDs对非肿瘤细胞系和肿瘤细胞系均具有低毒性和优异的生物相容性,这表明Met-CDs是活细胞生物成像研究的优秀候选材料。此外,生物成像研究表明,Met-CDs可以穿透细胞膜并分散在整个细胞结构中,包括细胞核和线粒体。更具体地说,孵育1小时后,Met-CDs倾向于选择性地开始定位于癌细胞的线粒体内,而非肿瘤细胞的线粒体中。最后,一项斑马鱼研究证实,Met-CDs可以穿过血脑屏障(BBB),而无需任何其他配体。总之,本研究展示了Met-CDs的合成,其具有线粒体和细胞核定位以及血脑屏障穿透等能力。

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