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首页> 外文期刊>Anti-cancer drugs >Long-circulating poly(ethylene glycol)-grafted gelatin nanoparticles customized for intracellular delivery of noscapine: preparation, in-vitro characterization, structure elucidation, pharmacokinetics, and cytotoxicity analyses.
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Long-circulating poly(ethylene glycol)-grafted gelatin nanoparticles customized for intracellular delivery of noscapine: preparation, in-vitro characterization, structure elucidation, pharmacokinetics, and cytotoxicity analyses.

机译:专为细胞内递送Noscapine而定制的长循环聚(乙二醇)接枝明胶纳米颗粒:制备,体外表征,结构阐明,药代动力学和细胞毒性分析。

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摘要

Noscapine, the tubulin-binding anticancer agent, when administered orally, requires high ED(50) (300-600 mg/kg), whereas intravenous administration (10 mg/kg) results in rapid elimination of the drug with a half-life of 0.39 h. Hence, the development of long-circulating injectable nanoparticles can be an interesting option for designing a viable formulation of noscapine for anticancer activity. Noscapine-enveloped gelatin nanoparticles and poly(ethylene glycol)-grafted gelatin nanoparticles were constructed and characterized. Data indicate that smooth and spherical shaped nanoparticles of 127 +/- 15 nm were engineered with maximum entrapment efficiency of 65.32 +/- 3.81%. Circular dichroism confirms that nanocoacervates retained the alpha-helical content of gelatin in ethanol whereas acetone favored the formation of a random coil. Moreover, the Fourier transform infrared and powder X-ray diffraction pattern prevents any significant change in the noscapine-loaded gelatin nanoparticles in comparison with individual components. In-vitro release kinetic data suggest a first-order release of noscapine (85.1%) from gelatin nanoparticles with a release rate constant of 7.611x10(-3). It is to be noted that there is a 1.43-fold increase in the area under the curve up to the last sampling point for the noscapine-loaded poly(ethylene glycol)-grafted gelatin nanoparticles over the noscapine-loaded gelatin nanoparticles and a 13.09-fold increase over noscapine. Cytotoxicity analysis of the MCF-7 cell line indicated that the IC(50) value of the noscapine-loaded poly(ethylene glycol)-grafted gelatin nanoparticles was equivalent to 20.8 mumol/l, which was significantly (P<0.05) lower than the IC(50) value of the noscapine-loaded gelatin nanoparticles (26.3 mumol/l) and noscapine (40.5 mumol/l).Noscapine-loaded poly(ethylene glycol)-grafted gelatin nanoparticles can be developed as a promising therapeutic agent for the management of breast cancer.
机译:口服微管蛋白结合型抗癌药Noscapine需要较高的ED(50)(300-600 mg / kg),而静脉内给药(10 mg / kg)则可快速消除药物,半衰期为0.39小时因此,长循环可注射纳米颗粒的开发可能是用于设计具有抗癌活性的Noscapine可行制剂的有趣选择。构建并表征了包封有芥子碱的明胶纳米颗粒和聚乙二醇接枝的明胶纳米颗粒。数据表明,设计的127 +/- 15 nm光滑球形球形纳米颗粒的最大包封率为65.32 +/- 3.81%。圆二色性证实纳米凝聚层保留了乙醇中明胶的α-螺旋含量,而丙酮则有利于无规卷曲的形成。此外,与单个组分相比,傅里叶变换红外和粉末X射线衍射图可防止装载有Noscapine的明胶纳米颗粒发生任何重大变化。体外释放动力学数据表明,Noscapine(85.1%)从明胶纳米颗粒中一级释放,释放速率常数为7.611x10(-3)。值得注意的是,相比于装载有芥子碱的明胶纳米颗粒和装载有Noscapine的明胶纳米颗粒,曲线上直至最后一个采样点的曲线下面积增加了1.43倍。倍于诺索卡因。 MCF-7细胞系的细胞毒性分析表明,装载有Noscapine的聚乙二醇明胶纳米颗粒的IC(50)值相当于20.8μmol/ l,比(p <0.05)显着降低(P <0.05)。 Noscapine负载明胶纳米颗粒(26.3 mumol / l)和Noscapine(40.5 mumol / l)的IC(50)值.Noscapine负载聚乙二醇接枝的明胶纳米颗粒可作为有前景的治疗药物开发乳腺癌。

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