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The effect of kinetic stability on biodistribution and anti-tumor efficacy of drug-loaded biodegradable polymeric micelles

机译:动力学稳定性对药物负载可生物降解聚合物胶束生物分布和抗肿瘤疗效的影响

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This study was aimed to investigate the effect of kinetic stability on biodistribution and antitumor efficacy of drug-loaded biodegradable polymeric micelles. Four diblock copolymers of acid- and urea-functionalized polycarbonate (i.e. PAC and PUC) and poly(ethylene glycol) (PEG) with the same polycarbonate length and two different PEG molecular weights (Mn: 5 kDa and 10 kDa), i.e. 5K PEG-PAC, 10K PEG-PAC, 5K PEG-PUC and 10K PEG-PUC, were synthesized via organocatalytic living ring-opening polymerization using methoxy PEG as a macroinitiator. These polymers were employed to prepare 5K PEG-PAC/5K PEG-PUC and 10K PEG-PAC/10K PEG-PAC mixed micelles via urea-acid hydrogen bonding. An amine group-containing anticancer drug, doxorubicin (DOX) was loaded into the mixed micelles via a self-assembly process. DOX-loaded 5K and 10K PEG mixed micelles had particle sizes of 66 and 87 nm respectively with narrow size distribution (polydispersity index: 0.12), and DOX loading levels were 28.9 and 22.8% in weight. DOX-loaded 5K PEG mixed micelles had greater kinetic stability than DOX-loaded 10K PEG mixed micelles due to stronger hydrophobicity of 5K PEG block copolymers. The results of in vitro release studies showed that DOX release was sustained without obvious initial burst release. The DOX-loaded mixed micelles effectively suppressed the proliferation of HepG2 and 4T1 cells. The in vivo studies conducted in a 4T1 mouse breast cancer model demonstrated that the mixed micelles were preferably transported to the tumor with the 5K PEG mixed micelles accumulating in the tumor more rapidly to a larger extent than 10K PEG mixed micelles, and DOX-loaded 5K PEG mixed micelles with greater kinetic stability inhibited tumor growth more effectively than free DOX and DOX-loaded 10K PEG mixed micelles without causing significant body weight loss or cardiotoxicity. The 5K PEG mixed micelles with sizes below 100 nm and narrow size distribution as well as excellent kinetic stability holds great potential as a delivery carrier for amine group-containing anticancer drugs. ? 2013 Elsevier Ltd.
机译:本研究旨在探讨动力学稳定性对药物载荷的可生物降解聚合物胶束生物分布的影响和抗肿瘤效果。酸和尿素官能化聚碳酸酯(IE PAC)和聚(乙二醇)(PEG)的四种二嵌段共聚物,具有相同的聚碳酸酯长度和两种不同的PEG分子量(Mn:5kDa和10kDa),即5K PEG -PAC,10K PEG-PAC,5K PEG-PUC和10K PEG-PUC通过使用甲氧基PEG作为大型引发剂通过有机催化活性开环聚合合成。使用这些聚合物通过尿素酸氢键合来制备5K PEG-PAC / 5K PEG-PEG-PAG-PAG混合胶束。通过自组装方法将含胺基抗癌药物,多柔比星(DOX)加载到混合胶束中。装载的5K和10K PEG混合胶束分别具有66和87nm的粒径,分别具有窄尺寸分布(多分散指数:0.12),DOX负载水平为28.9%和22.8%。由于5K PEG嵌段共聚物的较强疏水性,DOX加载的5K PEG混合胶束具有比DOX加载的10K PEG混合胶束更大的动力学稳定性。体外释放研究的结果表明,Dox释放的持续无明显初始爆发释放。装载的混合胶束有效地抑制了HepG2和4T1细胞的增殖。在4T1小鼠乳腺癌模型中进行的体内研究表明,混合胶束优选用5K PEG混合胶束在肿瘤中迅速迅速地将肿瘤运输到较大程度上,比10K PEG混合胶束,装载DOX装载的5K PEG混合胶束具有更大的动力学稳定性抑制了比游离的DOX和DOX的10K PEG混合胶束更有效地抑制肿瘤生长,而不会导致体重减轻或心脏毒性。 5K PEG混合胶束,尺寸低于100nm和窄尺寸分布以及优异的动力学稳定性,作为含胺基抗癌药物的递送载体具有很大的潜力。还2013年elestvier有限公司

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