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An implantable depot capable of in situ generation of micelles to achieve controlled and targeted tumor chemotherapy

机译:一种能够原位产生胶束的植入仓,以实现受控和靶向肿瘤化疗

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Graphical abstract Display Omitted Abstract Camptothecin (CPT)-containing promicelle polymers (PM CPT ) based on 4-armed poly(ethylene glycol) (PEG) were developed previously to self-assemble into folate-targeted and glutathione (GSH)-sensitive micelles (M CPT ). To address severe systemic toxicity and lack of tumor specificity implicated in the intravenous administration of M CPT , a micelle-generating depot has been developed by blend electrospinning of PEG-poly(lactide) (PELA) copolymers, PM CPT and polyethylene oxide (PEO). Upon implantation of the depot onto a tumor, PM CPT are sustainably released to self-assemble into M CPT on the tumor site. The release of PM CPT is adjusted by varying PEO/PELA ratios and reaches in the range of 23–92% after 30?days of incubation. By making use of the aggregation-induced emission (AIE) features of tetraphenylethylene (TPE) derivatives, the release process of TPE-containing promicelle polymers (PM TPE ) from the depot and the spontaneous formation of micelles (M TPE ) have been monitored from the self-assembly-induced fluorescence light-up both in vitro and in vivo . Compared with intravenous injection of M CPT , the micelle-generating depot has significantly enhanced micelle accumulation in the tumor for an extended period of time and resulted in stronger tumor inhibitory efficacy, reduced systemic toxicity and more effective inhibition of tumor metastasis, demonstrating great potential for targeted cancer therapy with sustained efficacy. Statement of significance The promicelle polymer-co-electrospun fibers are developed to form a micelle-generating depot after implantation onto the tumor. The promicelle polymers are continuously released and simultaneously self-assemble into folate-targeted and glutathione-sensitive micelles, ensuring sustained micelle delivery for more than 30?days. The process of micelle formation in the tumor tissue is visualized in vivo for the first time based on the mechanism of aggregation-induced emission. This in situ micelle formation also prevents premature drug release and rapid clearance from the bloodstream. In addition, these fibers deliver anti-cancer agents directly within tumor cells via dual selectivity ( i.e. spatially selective accumulation in tumor tissues via implantation and selective internalization into tumor cells via folate receptor-mediated endocytosis) and on-demand drug release in response to cytosol GSH. They exhibit superior tumor inhibitory efficacy with minimal systemic toxicity, and prevent from malignant metastasis of cancer cells.
机译:图形摘要显示省略了基于4臂聚(乙二醇)(PEG)的Camptothecin(CPT) - 统一的Promicelle聚合物(PM CPT)以先前开发以自组装成叶酸靶向和谷胱甘肽(GSH) - 密胶( mpt)。为了解决严重的全身毒性和缺乏肿瘤特异性,涉及MPT的静脉内给药,通过PEG-Poly(丙交酯)(PELA)共聚物,PM CPT和聚环氧乙烷(PEO)的混合物开发了一种胶束产生仓。 。在将贮库植入到肿瘤上​​时,PM CPT可持续地释放到肿瘤部位上的MPT中以自组装成MPPT。 PM CPT的释放通过改变PEO / PELA比率来调节,在30℃孵育后达到23-92%。通过利用四苯基乙烯(TPE)衍生物的聚集诱导的发射(AIE)特征,已经监测来自贮库的含TPE的Promicelle聚合物(PM TPE)的释放过程和胶束形成(M TPE)自组装诱导的荧光在体外和体内均匀。与静脉注射M个CPT相比,胶束产生的仓库在延长的一段时间内显着增强了肿瘤中的胶束积聚,导致肿瘤抑制效果较强,减少了系统性毒性和更有效的肿瘤转移抑制,表现出极大的潜力针对癌症治疗,持续疗效。显着性陈述PromiCelle聚合物 - 共纺纤维被开发成在植入到肿瘤上​​后形成胶束产生的贮库。 PromiCelle聚合物连续释放并同时自组装成叶酸靶向和谷胱甘肽敏感胶束,确保持续的胶束递送超过30?天。基于聚集诱导的发射的机制,第一次在体内可视化肿瘤组织中胶束形成的方法。这种原位胶束形成还可以防止血液过早的药物释放和快速清除。此外,这些纤维通过双重选择性(即通过植入和选择性内化通过叶酸受体介导的内吞作用,通过叶酸受体介导的内吞作用和按需药物释放而在肿瘤组织中的空间选择性内化递送抗癌剂。 GSH。它们表现出具有最小的全身毒性的肿瘤抑制效果,并防止癌细胞的恶性转移。

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