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Comparative Study on the Efficiency of the Photodynamic Inactivation of Candida albicans Using CdTe Quantum Dots Zn(II) Porphyrin and Their Conjugates as Photosensitizers

机译:CdTe量子点Zn(II)卟啉及其偶联物作为光敏剂的白色念珠菌光动力学灭活效率的比较研究

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摘要

The application of fluorescent II-VI semiconductor quantum dots (QDs) as active photosensitizers in photodymanic inactivation (PDI) is still being evaluated. In the present study, we prepared 3 nm size CdTe QDs coated with mercaptosuccinic acid and conjugated them electrostatically with Zn(II) meso-tetrakis (N-ethyl-2-pyridinium-2-yl) porphyrin (ZnTE-2-PyP or ZnP), thus producing QDs-ZnP conjugates. We evaluated the capability of the systems, bare QDs and conjugates, to produce reactive oxygen species (ROS) and applied them in photodynamic inactivation in cultures of Candida albicans by irradiating the QDs and testing the hypothesis of a possible combined contribution of the PDI action. Tests of in vitro cytotoxicity and phototoxicity in fibroblasts were also performed in the presence and absence of light irradiation. The overall results showed an efficient ROS production for all tested systems and a low cytotoxicity (cell viability >90%) in the absence of radiation. Fibroblasts incubated with the QDs-ZnP and subjected to irradiation showed a higher cytotoxicity (cell viability <90%) depending on QD concentration compared to the bare groups. The PDI effects of bare CdTe QD on Candida albicans demonstrated a lower reduction of the cell viability (~1 log10) compared to bare ZnP which showed a high microbicidal activity (~3 log10) when photoactivated. The QD-ZnP conjugates also showed reduced photodynamic activity against C. albicans compared to bare ZnP and we suggest that the conjugation with QDs prevents the transmembrane cellular uptake of the ZnP molecules, reducing their photoactivity.
机译:荧光II-VI半导体量子点(QD)作为活性光敏剂在光动力失活(PDI)中的应用仍在评估中。在本研究中,我们制备了涂覆有巯基琥珀酸的3 nm尺寸的CdTe量子点,并将其与Zn(II)介孔四(N-乙基-2-吡啶-2-基)卟啉(ZnTE-2-PyP或ZnP)静电偶联。 ),从而产生QDs-ZnP共轭物。我们评估了系统(裸露的量子点和共轭物)产生活性氧(ROS)的能力,并将其应用于白色念珠菌培养物中的光动力学灭活,方法是照射量子点并测试PDI作用可能综合贡献的假设。在有和没有光照射的情况下,还进行了成纤维细胞体外细胞毒性和光毒性的测试。总体结果表明,在没有辐射的情况下,所有测试系统均能有效产生ROS,而细胞毒性较低(细胞活力> 90%)。与裸露的组相比,与QDs-ZnP一起孵育并受到照射的成纤维细胞显示出更高的细胞毒性(细胞活力<90%),具体取决于QD浓度。与裸ZnP相比,裸CdTe QD对白色念珠菌的PDI效应显示出较低的细胞活力降低(〜1 log10),而ZnP在光活化后显示出高的杀菌活性(〜3 log10)。与裸露的ZnP相比,QD-ZnP共轭物还显示出对白色念珠菌的光动力学活性降低,并且我们建议与QDs的缀合可阻止ZnP分子跨膜细胞摄取,从而降低其光活性。

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