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Recent Advances in Nanoformulated Chemotherapeutic Drug Delivery (2015-2019)

机译:纳米制造化学治疗药物输送的最新进展(2015-2019)

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An attempt was made to summarize the chemotherapeutic drug formulations at nanoscale. The number of biocompatible materials like carbohydrates, proteins, peptides, chitosan, and other water soluble materials would enhance the hydrophilicity of chemotherapeutic drugs. Some of the formulations were responsible for the improved anticancer activity, drug loading capability, higher encapsulation efficiency etc. Nanodrug for- mulations were engineered in such a way that hydrophobic anticancer agents were transformed to possess hydrophilic features which would allow them to self-assemble into nano- drug carriers and hence longer blood circulation times of drug, sustained drug release were achieved. Tumor cell targetability was also achieved by selectively conjugating biomolecules with anticancer drugs. Drug loaded nanovectors exhibited improved cytotoxic activities compared to free drug molecules. Few classes of nanoformulations possessing major advantages were described in this review. These classes of drug delivery system possess a greater number of advantages over the other drug delivery systems. The amphiphilicity was enhanced by the complexation of the drugs and supramolecular micellation. Combination of the two or more drugs was successfully experimented via nanoprecipitation methods. Synergistic enhancement of the cytotoxic activity and good tumor growth inhibition evident by the introduction of chemotherapeutic nanopharmacology and nanodrug delivery methods were explained.
机译:试图总结纳米级化学治疗药物制剂。生物相容性材料(如碳水化合物,蛋白质,肽,壳聚糖和其他水溶性材料)的数量将增强化学治疗药物的亲水性。其中一些制剂负责改善抗癌活性,药物加载能力,更高的封装效率等。纳米果效率的设计方式使疏水性抗癌剂被转化为具有亲水性特征,使它们能够自组合到它们中。纳米药物载体,因此获得了持续药物释放的药物血液循环时间。还可以通过选择性地将生物分子与抗癌药物结合性结合来实现肿瘤细胞的靶标。与游离药物分子相比,药物载荷纳米型的细胞毒性活性改善。在本综述中,很少有具有主要优势的纳米制剂类别。这些类别的药物输送系统比其他药物输送系统具有更多的优势。药物的络合和超分子胶束的络合增强了两亲性。通过纳米沉淀方法成功实验了两种或多种药物的组合。通过引入化学治疗性纳米药理学和纳米糖递送方法来证明细胞毒性活性和良好的肿瘤生长抑制作用的协同增强。

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