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ZnS:Mn量子点对A549细胞的对映选择性细胞毒性

Enantioselective cytotoxicity of ZnS:Mn quantum dots in A549 cells.

作者信息

Kuznetsova V A, Visheratina A K, Ryan A, Martynenko I V, Loudon A, Maguire C M, Purcell-Milton F, Orlova A O, Baranov A V, Fedorov A V, Prina-Mello A, Volkov Y, Gun'Ko Y K

机构信息

Chemistry School, Trinity College Dublin, Dublin, Ireland.

Optical Physics and Modern Natural Science, ITMO University, Saint Petersburg, Russia.

出版信息

Chirality. 2017 Aug;29(8):403-408. doi: 10.1002/chir.22713. Epub 2017 Jun 13.

Abstract

Chirality strongly influences many biological properties of materials, such as cell accumulation, enzymatic activity, and toxicity. In the past decade, it has been shown that quantum dots (QDs), fluorescent semiconductor nanoparticles with unique optical properties, can demonstrate optical activity due to chiral ligands bound on their surface. Optically active QDs could find potential applications in biomedical research, therapy, and diagnostics. Consequently, it is very important to investigate the interaction of QDs capped with chiral ligands with living cells. The aim of our study was to investigate the influence of the induced chirality of Mn-doped ZnS QDs on the viability of A549 cells. These QDs were stabilized with D- and L-cysteine using a ligand exchange technique. The optical properties of QDs were studied using UV-Vis, photoluminescence (PL), and circular dichroism (CD) spectroscopy. The cytotoxicity of QDs was investigated by high content screening analysis. It was found that QDs stabilized by opposite ligand enantiomers, had identical PL and UV-Vis spectra and mirror-imaged CD spectra, but displayed different cytotoxicity: QDs capped with D-cysteine had greater cytotoxicity than L-cysteine capped QDs.

摘要

手性对材料的许多生物学特性有强烈影响,如细胞积累、酶活性和毒性。在过去十年中,已表明量子点(QDs),即具有独特光学性质的荧光半导体纳米颗粒,由于其表面结合的手性配体可表现出光学活性。光学活性量子点在生物医学研究、治疗和诊断中可能有潜在应用。因此,研究手性配体包覆的量子点与活细胞之间的相互作用非常重要。我们研究的目的是调查锰掺杂硫化锌量子点的诱导手性对A549细胞活力的影响。使用配体交换技术用D-和L-半胱氨酸使这些量子点稳定。使用紫外可见光谱、光致发光(PL)和圆二色性(CD)光谱研究量子点的光学性质。通过高内涵筛选分析研究量子点的细胞毒性。发现由相反配体对映体稳定的量子点具有相同的PL和紫外可见光谱以及镜像CD光谱,但表现出不同的细胞毒性:用D-半胱氨酸包覆的量子点比用L-半胱氨酸包覆的量子点具有更大的细胞毒性。

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