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Synthesis of Hydrophilic CuInS2/ZnS Quantum Dots with Different Polymeric Shells and Study of Their Cytotoxicity and Hemocompatibility

机译:不同聚合物壳的亲水性CuInS2 / ZnS量子点的合成及其细胞毒性和血液相容性的研究

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In this work, there is a detailed description of the whole process of biocompatible CIS/ZnS QDs production. Special attention was paid to the stability of QDs against photooxidation. It was shown that Cu/In ratio greatly affected not only nanocrystals PLQYs but photostability as well. CIS/ZnS QDs with Cu/In = 1:4 ratio :showed high photostability under UV illumination both in toluene and aqueous solutions. Meanwhile, photoluminescence of CIS/ZnS QDs with Cu/In = 1:1 ratio was completely quenched after several hours under UV illumination, though their initial QY was as high as 40% with peak maximum at 740 nm. QDs were transferred to water by polymer encapsulation and were subsequently modified with polyethers Jeffamines; cheap analogues of PEG-derivatives. Three types of hydrophilic QDs differing in size, PEG content, and surface charge were obtained for further investigation and Comparison of their cytotoxicity and hemocompatibility. It was shown that both leucocytes Size distribution and coagulation activation change after introduction of polyethers into QDs polymeric shell, while red blood cells and platelets size distribution as well as hemolysis rate did not show any different results among different QDs and the polymer itself. All three types of QDs showed only slight cytotoxicity. Confocal microscopy proves penetration of hydrophilic CIS/ZnS QDs inside cells, so the low QDs cytotoxocity cannot be explained by low cellular uptake of the QDs and indicated low QDs toxicity in general.
机译:在这项工作中,对生物相容性CIS / ZnS QDs生产的整个过程进行了详细描述。特别注意量子点对光氧化的稳定性。结果表明,Cu / In比不仅对纳米晶体PLQYs有很大的影响,而且对光稳定性也有很大的影响。 Cu / In = 1:4的CIS / ZnS QD在甲苯和水溶液中在紫外线照射下显示出高光稳定性。同时,虽然Cu / In = 1:1的CIS / ZnS量子点的初始QY高达40%,最大峰值在740 nm,但其在Cu / In = 1:1比例的CIS / ZnS量子点的光致发光被完全淬灭。通过聚合物包封将量子点转移到水中,然后用聚醚Jeffamines进行修饰。 PEG衍生物的廉价类似物。获得了三种类型,大小,PEG含量和表面电荷不同的亲水性量子点,用于进一步研究和比较其细胞毒性和血液相容性。结果表明,将聚醚引入QDs聚合物壳中后,白细胞的大小分布和凝血激活均发生变化,而不同QDs和聚合物本身之间的红细胞和血小板的大小分布以及溶血速率均未显示出任何不同的结果。三种类型的量子点仅显示出轻微的细胞毒性。共聚焦显微镜证明亲水性CIS / ZnS QD在细胞内的渗透,因此QDs的低细胞毒性不能用低QDs的细胞摄取来解释,并且通常表明QDs的毒性低。

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