巯基乙酸
细胞毒性
化学
碲化镉光电
量子点
共焦显微镜
镉
生物物理学
神经突
毒性
细胞凋亡
纳米技术
生物化学
材料科学
细胞生物学
体外
生物
有机化学
作者
Babu Rajendra Prasad,Gillian Mullins,Natalia Nikolskaya,David Connolly,Terry Smith,Valérie Gérard,Stephen J. Byrne,Gemma‐Louise Davies,Yurii K. Gun’ko,Yury Rochev
标识
DOI:10.1186/1477-3155-10-4
摘要
Abstract Background The inherent toxicity of unmodified Quantum Dots (QDs) is a major hindrance to their use in biological applications. To make them more potent as neuroprosthetic and neurotherapeutic agents, thioglycolic acid (TGA) capped CdTe QDs, were coated with a gelatine layer and investigated in this study with differentiated pheochromocytoma 12 (PC12) cells. The QD - cell interactions were investigated after incubation periods of up to 17 days by MTT and APOTOX-Glo Triplex assays along with using confocal microscopy. Results Long term exposure (up to 17 days) to gelatinated TGA-capped CdTe QDs of PC12 cells in the course of differentiation and after neurites were grown resulted in dramatically reduced cytotoxicity compared to non-gelatinated TGA-capped CdTe QDs. Conclusion The toxicity mechanism of QDs was identified as caspase-mediated apoptosis as a result of cadmium leaking from the core of QDs. It was therefore concluded that the gelatine capping on the surface of QDs acts as a barrier towards the leaking of toxic ions from the core QDs in the long term (up to 17 days).
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