首页> 外文期刊>Macromolecular Research >Synthesis, Characterization, and Drug Delivery of Amphiphilic Poly{(lactic acid)-co-[(glycolic acid)-alt-(L-glutamic acid)]}-g-Poly(ethylene glycol)
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Synthesis, Characterization, and Drug Delivery of Amphiphilic Poly{(lactic acid)-co-[(glycolic acid)-alt-(L-glutamic acid)]}-g-Poly(ethylene glycol)

机译:两亲性聚{(乳酸)-co-[[乙醇酸)-alt-(L-谷氨酸)]}-g-聚(乙二醇)的合成,表征和药物传递

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This paper discusses the use of a novel amphiphilic graft polymer poly {(lactic acid)-eo-[(glycolic acid)-alt-(L-glutamic acid)]}-g-monomethyl poly (ethylene glycol) (PLGG-g-mPEG) as a drug carrier. PLGG was synthesized through the ring-opening polymerization of L-lactide (LLA) and (3s)-benzoxylcarbonylethyl-morpholine-2,5-dione (BEMD) using Sn(Oct)2 as a catalyst and it was subsequently deprotected via hydrogenolysis in the presence of Pd/C. A series of monomethyl poly(ethylene glycol) (PEG) with the molecular weights of 2,000,1,100, and 500 were immobilized on the carboxyl groups of PLGG These PEGylated graft derivatives were characterized using proton nuclear magnetic resonance spectra(~1H NMR), Fourier transform infrared spectroscopy (FTIR), and gel permeation chromatography (GPC). The critical micelle concentrations (CMCs) of the amphiphilic copolymers were tested by the fluorescence probe technique and the CMCs were 2.3, 1.0, and 0.32 μg/mL, respectively. Transmission electronic microscopy (TEM) and dynamic light scattering (DLS) images revealed that the micelles were homogeneous spherical nanopar-ticles and the sizes of the micelles were distributed across a range of 80 to 22 nm. Anticancer drug doxorubicin (DOX) was loaded into the micelles. The in vitro release profiles showed that the sustaining release of the drug-loaded micelles could last over 7 days. The in vitro cytotoxicity assay of the DOX-loaded micelles against HepG2 cells was assessed by methyl thiazolyl tetrazolium (MTT) assays. The results demonstrated that the drug-loaded micelles exhibited a high level of inhibition activity on cancer cells. The confocal microscopy images of HepG2 cells showed that DOX released from the micelles could be delivered into cell nuclei. PLGG-g-mPEG micelles are promising potential carriers for delivering anticancer drugs.
机译:本文讨论了新型两亲性接枝聚合物聚{(乳酸)-eo-[[乙醇酸)-alt-(L-谷氨酸)]}-g-单甲基聚乙二醇(PLGG-g- mPEG)作为药物载体。通过使用Sn(Oct)2作为催化剂,通过L-丙交酯(LLA)和(3s)-苯甲酰基羰基乙基-吗啉-2,5-二酮(BEMD)的开环聚合反应合成PLGG,随后将其通过在Pd / C的存在。将一系列分子量分别为2,000、1,100和500的单甲基聚乙二醇(PEG)固定在PLGG的羧基上。使用质子核磁共振波谱(〜1H NMR),傅里叶表征了这些PEG化的接枝衍生物。变换红外光谱(FTIR)和凝胶渗透色谱(GPC)。通过荧光探针技术测试两亲共聚物的临界胶束浓度(CMC),CMC分别为2.3、1.0和0.32μg/ mL。透射电子显微镜(TEM)和动态光散射(DLS)图像显示,胶束是均匀的球形纳米粒子,胶束的大小分布在80至22 nm的范围内。将抗癌药阿霉素(DOX)装入胶束中。体外释放曲线表明,载药胶束的持续释放可以持续7天以上。通过甲基噻唑基四唑(MTT)分析评估了DOX加载的胶束对HepG2细胞的体外细胞毒性分析。结果表明载药的胶束对癌细胞表现出高水平的抑制活性。 HepG2细胞的共聚焦显微镜图像显示,从胶束释放的DOX可以传递到细胞核中。 PLGG-g-mPEG胶束是有前途的潜在载体,可用于递送抗癌药物。

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