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含 CdTe 量子点的纳米乳的保护作用,有望作为一种诊断试剂。

Protective effect of nanoemulsions containing CdTe quantum dots with potential application as a diagnostic agent.

机构信息

Department of Chemistry, Center of Nanotechnology and Tissue Engineering, Photobiology and Photomedicine Research Group, Faculty of Philosophy, Sciences and Letters of Ribeirão Preto, University of São Paulo, São Paulo, Brazil.

Zoological Institute, Cellular and Molecular Neurobiology, Technische Universität Braunschweig, Brunswick, Germany.

出版信息

Mikrochim Acta. 2024 Sep 20;191(10):610. doi: 10.1007/s00604-024-06690-w.

Abstract

A nanoemulsion containing CdTe quantum dots (NE-CdTe-QD) was developed to shield cells from cadmium toxicity and shown to be a promising candidate for brain tumor diagnosis. CdTe-QD was characterized by X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), and Raman spectroscopy. CdTe-QD exhibited high luminescence emission at 700 nm, and their stability was maintained when encapsulated in lipidic/polymeric nanoemulsions (198 ± 2.0 nm; PDI = 0.174; - 49.0 mV). The biological effects of free and nanoemulsified CdTe-QD were tested in normal cells (NHF) and glioblastoma cell lines (U87-MG and T98G). Membrane colocalization of NE-CdTe-QD by T98G cells was observed. Instead, intracellular endoplasmic reticulum localization of NE-CdTe-QD was verified in U87-MG cells. Cell viability was reduced only when NE-CdTe-QD permeated the membrane of GBM cells, as observed in U87-MG cells, whereas no cytotoxic effects were observed in normal fibroblasts. Incorporating quantum dots directly into the brain cells is difficult. However, the nanoemulsions reduced the toxicity of CdTe-QD in zebrafish larvae and increased their circulation time, and direct injection into the zebrafish brain did not affect neural cell viability. This validates the potential application of these nanomaterials as diagnostic agents and satisfies the necessary criteria for their use as photosensitizers in photodynamic therapy.

摘要

研制了一种包含碲化镉量子点的纳米乳剂(NE-CdTe-QD),以保护细胞免受镉毒性,并已被证明是脑肿瘤诊断的有前途的候选物。通过 X 射线衍射(XRD)、傅里叶变换红外光谱(FTIR)和拉曼光谱对 CdTe-QD 进行了表征。CdTe-QD 在 700nm 处表现出高的荧光发射,并且当封装在脂质/聚合物纳米乳剂中时其稳定性得以保持(198±2.0nm;PDI=0.174;-49.0mV)。在正常细胞(NHF)和神经胶质瘤细胞系(U87-MG 和 T98G)中测试了游离和纳米乳状 CdTe-QD 的生物效应。观察到 T98G 细胞对 NE-CdTe-QD 的膜共定位。相反,在 U87-MG 细胞中验证了 NE-CdTe-QD 的细胞内质网内定位。只有当 NE-CdTe-QD 渗透到 GBM 细胞的膜中时,细胞活力才会降低,如在 U87-MG 细胞中观察到的那样,而在正常成纤维细胞中则没有观察到细胞毒性作用。将量子点直接掺入脑细胞中是困难的。然而,纳米乳剂降低了 CdTe-QD 在斑马鱼幼虫中的毒性并增加了它们的循环时间,并且直接注射到斑马鱼脑中不会影响神经细胞活力。这验证了这些纳米材料作为诊断剂的潜在应用,并满足了将其用作光动力疗法中的光敏剂的必要标准。

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