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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >cRGD mediated redox and pH dual responsive poly(amidoamine) dendrimer-poly(ethylene glycol) conjugates for efficiently intracellular antitumor drug delivery
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cRGD mediated redox and pH dual responsive poly(amidoamine) dendrimer-poly(ethylene glycol) conjugates for efficiently intracellular antitumor drug delivery

机译:CRGD介导的氧化还原和pH双敏化聚(酰胺胺)树枝状聚合物 - 聚(乙二醇)缀合物,用于有效的细胞内抗肿瘤药物递送

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摘要

To improve antitumor efficiency of chemotherapy and reduce side effect, according to the physiological characteristics of tumor tissues and tumor intracellular microenvironment, a multifunctional drug delivery system with properties of long circulation, active targeting, redox and pH triggered drug release was established based on the Generation 4 polyamidoamine dendrimer (PAMAM). First, the redox cleavable disulfide bonds (SeS) were introduced for linking polyethylene glycol (PEG) with PAMAM to form PAMAM-S-S-PEG (PSSP). Then cRGD peptide was applied to the PEG end of PSSP to construct RGD-PSSP conjugates. Finally, encapsulating the antitumor chemotherapy drug doxorubicin (DOX) into the hydrophobic cavity of RGD-PSSP conjugates constructed the RGD-PSSP/DOX drug delivery system. The in vitro experiments displayed that RGD-PSSP/DOX NPs showed obviously redox and pH dual sensitive drug release profile. MTT and cell uptake observation elucidated cRGD modification could increase the cytotoxicity, and promote the uptake of B16 cells and HUVEC cells both overexpressing integrin alpha nu beta 3 on cell membrane. Cell uptake mechanism investigation further revealed that RGD-PSSP/DOX interacted with plasma membrane via specific recognition of cRGD peptide with integrin alpha nu beta 3, and was subsequently internalized mainly through clathrin- and caveolin-mediated endocytosis. Remarkably, RGD-PSSP/DOX presented superior anticancer activity and lower heart and kidney toxicity in vivo, which could be regarded as a potential candidate for efficient antitumor chemotherapy drug delivery.
机译:为了提高化疗的抗肿瘤效率并减少副作用,根据肿瘤组织和肿瘤细胞内微环境的生理特性,基于一代建立了具有长循环,活性靶向,氧化还原和pH触发药物释放性质的多功能药物递送系统4聚酰胺胺树枝状大分子(PAMAM)。首先,引入用PAMAM连接聚乙二醇(PEG)以形成PAMAM-S-S-PEG(PSSP)来引入氧化还原可切割的二硫键(SES)。然后将CRGD肽施加到PSSP的PEG端以构建RGD-PSSP缀合物。最后,将抗肿瘤化疗药物多柔比星(DOX)封装到RGD-PSSP缀合物的疏水腔中构建了RGD-PSSP / DOX药物递送系统。展示RGD-PSSP / DOX NPS的体外实验明显氧化还原和pH双敏感药物释放曲线。 MTT和细胞吸收观察阐明阐明CRGD修饰可以增加细胞毒性,促进B16细胞和Huvec细胞的摄取,两者在细胞膜上过表达整合蛋白αNuβ3。细胞吸收机制进一步揭示了RGD-PSSP / DOX通过细胞肽与整联蛋白αNUβ3的特异性识别与血浆膜相互作用,随后主要通过Clathrin-和Caveolin介导的内吞作用内化。值得注意的是,RGD-PSSP / DOX在体内提出了优异的抗癌活性和下部心脏和肾脏毒性,这可以被认为是有效抗肿瘤化疗药物递送的潜在候选者。

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