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Meta-tetra(hydroxyphenyl)chlorin-loaded liposomes sterically stabilised with poly(ethylene glycol) of different length and density: characterisation, in vitro cellular uptake and phototoxicity

机译:用不同长度和密度的聚乙二醇在空间上稳定的间-四(羟苯基)二氢卟酚脂质体:表征,体外细胞吸收和光毒性

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摘要

We studied the effects of density and thickness of PEG coating on in vitro cellular uptake, and dark- and photo-toxicity of liposomal formulations (Fospeg) of the photodynamic agent meta-tetrahydroxyphenyl chlorin (m-THPC). The cellular uptake of various Fospeg formulations was determined by flow cytometry in CCD-34Lu human normal fibroblasts and A549 lung cancer cells. Dark and light-induced cytotoxicity was measured by MTS assay after exposure to increasing concentrations of Fospeg only and followed by irradiation with red light. Intracellular localization of m-THPC delivered by Fospeg was determined by fluorescence microscopy. The studies were carried out in comparison with m-THPC delivered by the standard solvent. In the dark all Fospeg formulations were less cytotoxic than m-THPC in standard solvent (ethanol/poly(ethylene glycol 400/water; 20:30:50 by vol.) and cytotoxicity decreased by increasing PEGylation. m-THPC delivered as Fospeg was internalised by endocytosis and localised mainly in the Golgi apparatus and endoplasmic reticulum. The efficiency of cellular uptake of Fospeg was reduced by 30–40% with respect to m-THPC in standard solution causing a slight reduction of the phototoxicity but without serious impairment of the efficacy of the treatment. Our study suggests that PEGylated liposomes are promising nanocarriers for the delivery of photosensitisers for photodynamic therapy because they reduce dark cytotoxicity while preserving therapeutic efficacy.
机译:我们研究了PEG涂层的密度和厚度对体外细胞摄取以及光动力剂间四羟基苯基二氢卟酚(m-THPC)的脂质体制剂(Fospeg)的暗毒性和光毒性的影响。通过流式细胞术测定CCD-34Lu人正常成纤维细胞和A549肺癌细胞中各种Fospeg制剂的细胞摄取。在仅暴露于递增浓度的Fospeg并随后用红光照射后,通过MTS测定法测量暗和光诱导的细胞毒性。通过荧光显微镜确定由Fospeg递送的m-THPC的细胞内定位。与标准溶剂输送的m-THPC进行了比较。在黑暗中,所有Fospeg制剂在标准溶剂(乙醇/聚(乙二醇400 /水;体积比为20:30:50)中)的毒性均低于m-THPC,并且通过增加PEG化程度降低了细胞毒性。在标准溶液中,相对于m-THPC,Fospeg的细胞摄取效率降低了30–40%,从而使光毒性略有降低,但并未严重损害细胞的内吞作用。我们的研究表明,聚乙二醇化脂质体是有前途的纳米载体,可用于光敏剂的光动力学治疗,因为它们可以降低暗细胞毒性,同时保持治疗效果。

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