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Cellular uptake and phototoxicity of surface-modified fluorescent nanodiamonds

机译:表面修饰的荧光纳米金刚石的细胞吸收和光毒性

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摘要

Bioconjugated fluorescent nanodiamonds (FNDs) show potential for effectively targeted imaging and the enhanced photokilling of cancer cells. In this study, we investigated the mechanisms involved in the cellular uptake of surface-modified 140 nm FNDs and evaluated their cytotoxicity and phototoxicity following particle internalization. Through an analysis of flow cytometry, the internalized FND-Tf and FND-NH_2 particles reached their respective saturation values, with half-life times of approximately 0,8 h and 1.4 h. The determination indicated that the receptor-mediated endocytosis of FND-Tf particles was highly effective and nearly twice as efficient as the endocytic process of FND-NH_2 particles mainly through surface electrostatic interactions. The cytotoxicity of internalized particles was evaluated using the MTT assay, indicating that at saturation concentrations, the rate of proliferation of FND-treated cells decreases to less than half that of untreated cells. An examination of the phototoxicity of internalized FND-Tf particles under irradiation using a 532 nm laser revealed that the FND-treated cells could be killed using less than half the energy required for untreated cells. The enhanced cellular killing was attributed to FND particles converting light to thermal energy, with the support of Raman spectra of nanodiamond clusters that showed an increase in particle temperature under irradiation. Our results demonstrated that bioconjugated FNDs could be highly effective in the targeting of cancer cells for fluorescence imaging and photokilling with a minimum of collateral cell damage.
机译:生物共轭荧光纳米金刚石(FNDs)显示出有效靶向成像和增强癌细胞光杀死作用的潜力。在这项研究中,我们调查了表面修饰的140 nm FND吸收细胞所涉及的机制,并评估了它们在颗粒内化后的细胞毒性和光毒性。通过流式细胞仪分析,内化的FND-Tf和FND-NH_2颗粒达到了各自的饱和度值,半衰期分别约为0.8 h和1.4 h。该测定表明,受体介导的FND-Tf颗粒的内吞作用是高效的,并且几乎是FND-NH_2颗粒的内吞过程的两倍,主要是通过表面静电相互作用。使用MTT测定法评估了内在化颗粒的细胞毒性,表明在饱和浓度下,经FND处理的细胞的增殖速率降低至小于未处理细胞的增殖速率的一半。在使用532 nm激光照射下检查内在化的FND-Tf颗粒的光毒​​性,发现使用FND处理过的细胞可以用不到未处理细胞所需能量的一半杀死。增强的细胞杀伤力归因于FND颗粒将光转换为热能,并得到纳米金刚石簇的拉曼光谱的拉曼光谱的支持,该拉曼光谱显示了辐照下颗粒温度的升高。我们的结果表明,生物缀合的FND在靶向癌细胞以荧光成像和光杀死作用方面可能非常有效,而对附带细胞的损害最小。

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