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首页> 外文期刊>Journal of Colloid and Interface Science >Poly(lactobionamidoethyl methacrylate)-based amphiphiles with ultrasound-labile components in manufacture of drug delivery nanoparticulates for augmented cytotoxic efficacy to hepatocellular carcinoma
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Poly(lactobionamidoethyl methacrylate)-based amphiphiles with ultrasound-labile components in manufacture of drug delivery nanoparticulates for augmented cytotoxic efficacy to hepatocellular carcinoma

机译:聚(甲基氨基甲酰基甲基丙烯酸甲酯),基于超声波不稳定组分的两种,用于制造药物递送纳米颗粒,用于增加肝细胞癌的细胞毒性疗效

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摘要

Ultrasound-responsive chemistry was exploited in manufacture of drug delivery nanoparticulates for pursuit of on-demand ultrasound-stimulated drug release function. In principle, the ultrasound-labile oxyl-alkylhydroxylamine (-oa-) linkage was tailored between the segments of amphiphiles. Consequently, the hydrophobic chemotherapeutic doxorubicin could be readily assembled with the hydrophobic segments of amphiphiles into interior compartments, whereas the hydrophilic segments represented as the external surroundings. Upon ultrasonication, the proposed phase-segregated self assemblies were determined to be subjected to evident structural rearrangement as a consequence of -oa- cleavage. Simultaneously, the release rate of doxorubicin payloads appeared to accelerate due to the ultrasound-induced structural destabilization, consequently eliciting potent cytotoxic efficacy at the affected cells. Another noteworthy characteristic of the proposed self-assemblies was poly (lactobion-amidoethyl methacrylate) (pLAMA) as the hydrophilic components of the amphiphiles, characterized to possess galactosylated residues. In view of the specific affinity of galactosylated residues (and lactosylated residues) to asialoglycoprotein receptors (overexpressed on the surface of intractable hepatocellular carcinoma), the proposed self-assemblies were determined to impart preferential affinities to hepatocellular carcinoma. Together with the strategic ultrasound-stimulated drug release property, our proposed drug delivery system demonstrated appreciably pharmaceutical efficacy on hepatocellular carcinoma. (C) 2019 Elsevier Inc. All rights reserved.
机译:在制备药物递送纳米颗粒中的超声响应化学以追求按需超声刺激的药物释放功能。原则上,在两亲物之间定制了超声波醛烷基烷基羟基胺(-OA-)键合。因此,疏水化学治疗性多柔比星可以容易地组装在内的两亲物中的疏水区段,而亲水段表示为外部周围环境。在超声波时,确定所提出的相分离的自组装是由于-o-切割而受到明显的结构重排。同时,由于超声诱导的结构稳定化,多柔比蛋白有效载荷的释放速率似乎加速,因此引起了受影响细胞的有效的细胞毒性功效。所提出的自组装的另一种值得注意的特征是聚(亚甲基酰氨酰基甲基丙烯酸甲酯)(PLAMA)作为两亲物的亲水组分,其特征在于具有半乳糖基化残基。鉴于半乳糖基的残基(和乳溶胶化残基)对血糖糖苷的特异性亲和力(在顽固的肝细胞癌表面上过表达),确定了所提出的自组装以赋予肝细胞癌的优先亲和力。我们提出的药物递送系统与战略超声刺激的药物释放性能一起展示了对肝细胞癌的明显药物疗效。 (c)2019 Elsevier Inc.保留所有权利。

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