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Versatile RBC-derived vesicles as nanoparticle vector of photosensitizers for photodynamic therapy

机译:多功能RBC衍生的囊泡作为光动力疗法的光敏剂的纳米颗粒载体

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摘要

Various nanocarriers for photosensitizers have been developed to solve the problems of limiting the clinical utility of photodynamic therapy (PDT); however, to date, no carriers capable of supplying oxygen have been reported. We reported the development of a novel system composed of red blood cell (RBC)-derived vesicles (RDVs) generated by osmotic stress and demonstrated the capacity of RDVs for encapsulating and delivering external cargo into targeted cells due to the cellular uptake of RDVs. In this study, protoporphyrin IX (PplX)-encapsulated RDVs (PplX@RDVs) were prepared by the hypotonic incorporation of PplX into RDVs in an aqueous environment, characterized, and utilized for PDT of cancer. PplX@RDVs were rapidly uptaken by tumor cells via endocytosis in vitro, and the highly phototoxic effect of PplX@RDVs was demonstrated upon irradiation. Superoxide anion (O2~·) and singlet oxygen (~1O2) were involved in PplX@RDV-induced cell apoptosis and necrosis. Finally, we demonstrated that RDVs with an oxygen supply capacity have potential as versatile delivery vehicles for efficient PDT.
机译:已经开发了各种用于光敏剂的纳米载体,以解决限制光动力疗法(PDT)临床实用性的问题;但是,迄今为止,尚无能够供应氧气的载体。我们报道了由红细胞(RBC)衍生的囊泡(RDV)组成的新型系统的发展,该系统由于RDV的细胞摄取而证明了RDVs将外部货物封装和运送到靶向细胞中的RDV能力。在这项研究中,原核IX(PPLX)包含的RDV(PPLX@RDVS)是通过在水性环境中置于RDV中的低位掺入RDV的。 PPLX@RDV通过体外内吞作用迅速被肿瘤细胞吸收,PPLX@rdvs的高度光毒性作用在辐照后得到了证明。超氧化物阴离子(O2〜·)和单线氧(〜1O2)参与PPLX@RDV诱导的细胞凋亡和坏死。最后,我们证明了具有氧气供应能力的RDV具有有效PDT的多功能输送车辆的潜力。

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