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首页> 外文期刊>Cancers >Photodynamic Therapy Activity of New Porphyrin-Xylan-Coated Silica Nanoparticles in Human Colorectal Cancer
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Photodynamic Therapy Activity of New Porphyrin-Xylan-Coated Silica Nanoparticles in Human Colorectal Cancer

机译:新卟啉 - 木聚糖涂层二氧化硅纳米粒子在人结肠癌中的光动力治疗活性

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Photodynamic therapy (PDT) using porphyrins has been approved for treatment of several solid tumors due to the generation of cytotoxic reactive oxygen species (ROS). However, low physiological solubility and lack of selectivity towards tumor sites are the main limitations of their clinical use. Nanoparticles are able to spontaneously accumulate in solid tumors through an enhanced permeability and retention (EPR) effect due to leaky vasculature, poor lymphatic drainage, and increased vessel permeability. Herein, we proved the added value of nanoparticle vectorization on anticancer efficacy and tumor-targeting by 5-(4-hydroxyphenyl)-10,15,20-triphenylporphyrin (TPPOH). Using 80 nm silica nanoparticles (SNPs) coated with xylan-TPPOH conjugate (TPPOH-X), we first showed very significant phototoxic effects of TPPOH-X SNPs mediated by post-PDT ROS generation and stronger cell uptake in human colorectal cancer cell lines compared to free TPPOH. Additionally, we demonstrated apoptotic cell death induced by TPPOH-X SNPs-PDT and the interest of autophagy inhibition to increase anticancer efficacy. Finally, we highlighted in vivo, without toxicity, elevated anticancer efficacy of TPPOH-X SNPs through improvement of tumor-targeting compared to a free TPPOH protocol. Our work demonstrated for the first time the strong anticancer efficacy of TPPOH in vitro and in vivo and the merit of SNPs vectorization.
机译:使用卟啉的光动力疗法(PDT)已被批准用于治疗几种固体瘤,由于产生细胞毒性反应性氧(ROS)。然而,低生理溶解性和对肿瘤部位的选择性是其临床应用的主要局限性。由于泄漏脉管系统,淋巴排出差和血管渗透率增加,纳米粒子能够通过增强的渗透率和保留(EPR)效应来自发积聚在实体肿瘤中。在此,我们证明了纳米粒子升压对抗癌疗效和肿瘤靶向的额外值,通过5-(4-羟基苯基)-10,15,20-三苯基卟啉(TPPOH)。使用涂有Xylan-TPPOH缀合物(TPPOH-X)的80nm二氧化硅纳米颗粒(SNP),首先表现出由PDT ROS产生的TPPOH-X SNP的非常显着的光毒性效应,并比较人结肠直肠癌细胞系中的PDT ROS产生和更强的细胞摄取免费TPPOH。此外,我们证明了TPPOH-X SNPS-PDT诱导的凋亡细胞死亡和自噬抑制的兴趣增加抗癌疗效。最后,我们在没有毒性的情况下突出了体内,无毒性,通过改善与游离TPPOH方案相比,通过改善肿瘤靶向抗癌的抗癌效果。我们的工作首次证明了TPPOH体外和体内强烈抗癌效果和SNPS向量化的优点。

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