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Biodegradable m-PEG/PCL Core-Shell Micelles: Preparation and Characterization as a Sustained Release Formulation for Curcumin

机译:可生物降解的m-PEG / PCL核壳胶束:姜黄素的缓释制剂的制备和表征

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摘要

>Purpose: Among the potent anticancer agents, curcumin is known as a very efficacious against many different types of cancer cells, but its clinical applications has been limited because of hydrophobicity, low gastrointestinal absorption, poor bioavailability and rapid metabolism. In this way, a novel micellar delivery system with mPEG–PCL was synthesized and the release profile of the curcumin from the drug-loaded micelles was evaluated. >Methods: In this study, curcumin was encapsulated within monomethoxypoly(ethylene glycol)-poly(ε-caprolactone) (mPEG-PCL) micelles through a single-step nano-precipitation method, leading to creation of curcumin-loaded mPEG-PCL (Cur/mPEG-PCL) micelles. Di-block mPEG-PCL copolymers were synthesized and used to prepare micelles. mPEG-PCL copolymer was characterized in vitro by HNMR, FTIR, DSC and GPC techniques. Then, mPEG–PCL copolymers with curcumin were self-assembled into micelles in aqueous solution. The resulting micelles were characterized further by various techniques such as dynamic light scattering (DLS) and atomic force microscopy (AFM). >Results: The findings showed the successful formation of smooth and spherical curcumin-loaded micelles. The encapsulation efficiency of curcumin was 88 ± 3.32%. The results of AFM revealed that the micelles have spherical shapes with size of 73.8 nm. The release behavior of curcumin from micelles was compared in different media. In vitro release of curcumin from curcumin-entrapped micelles was followed remarkably sustained profile. The sustained release of drug was hypothetically due to the entrapment of curcumin in core of micelles. >Conclusion: The results indicate the successful formulation of curcumin loaded m-PEG/PCL micelles. From the results, iIt can be concluded that curcumin m-PEG-PCL micelles may be considered as an effective treatment strategy for cancer in the future.
机译:>目的:在许多有效的抗癌药物中,姜黄素被认为对许多不同类型的癌细胞非常有效,但由于疏水性,胃肠道吸收低,生物利用度差和新陈代谢快,其临床应用受到限制。 。通过这种方法,合成了具有mPEG–PCL的新型胶束递送系统,并评估了姜黄素从载药胶束中的释放情况。 >方法:在这项研究中,姜黄素通过一步沉淀法封装在单甲氧基聚(乙二醇)-聚(ε-己内酯)(mPEG-PCL)胶束中,从而产生了姜黄素加载的mPEG-PCL(Cur / mPEG-PCL)胶束。合成了二嵌段mPEG-PCL共聚物,并用于制备胶束。通过HNMR,FTIR,DSC和GPC技术对mPEG-PCL共聚物进行了体外表征。然后,将具有姜黄素的mPEG–PCL共聚物在水溶液中自组装成胶束。通过各种技术,例如动态光散射(DLS)和原子力显微镜(AFM),进一步表征所得的胶束。 >结果:研究结果表明成功地形成了光滑且球形的姜黄素负载胶束。姜黄素的包封率为88±3.32%。原子力显微镜的结果表明,胶束呈球形,大小为73.8 nm。比较了姜黄素在不同介质中从胶束中的释放行为。姜黄素从包裹有姜黄素的胶束中的体外释放显着持续。假设药物的持续释放是由于姜黄素在胶束核心中的截留。 >结论:结果表明姜黄素负载的m-PEG / PCL胶束的成功配制。从结果可以得出结论,姜黄素m-PEG-PCL胶束可能被认为是将来治疗癌症的有效策略。

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