首页> 外文期刊>Recent patents on anti-cancer drug discovery >Applications of nanosystems to anticancer drug therapy (Part II. Dendrimers, micelles, lipid-based nanosystems).
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Applications of nanosystems to anticancer drug therapy (Part II. Dendrimers, micelles, lipid-based nanosystems).

机译:纳米系统在抗癌药物治疗中的应用(第二部分:树枝状大分子,胶束,基于脂质的纳米系统)。

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摘要

The great efforts of many researchers have brought down some of the barriers that exist to turn a good in vitro compound into a potential in vivo drug. The advent of pharmaceutical nanotechnology has allowed an arsenal of drugs with poor stability, low solubility, high off-target toxicity and other disadvantageous features, to be accessible as pharmaceutical products that could be administered to a patient. Nanotechnology was introduced in drug delivery very long ago, but has flourished with unprecedented intensity during the last twenty years and now a diversity of nano-based preparations are at clinical stage of development or already available in the market. Undoubtedly, nanotechnology plays a key role in future pharmaceutical development and pharmacotherapy. In the first part of this review, we have already discussed recent (2008-2012) patents on linear polymer-based nanosystems (nanogels, nanospheres and nanocapsules) applications to cancer therapy. Here, we have expanded such analysis to branched polymers (dendrimers), self-assembling nanomicelles and lipid-based nanocarriers.
机译:许多研究人员的巨大努力消除了将良好的体外化合物转变为潜在的体内药物所存在的一些障碍。药物纳米技术的出现使得具有不良稳定性,低溶解度,高脱靶毒性和其他不利特征的药物库可以作为可施用于患者的药物获得。纳米技术很早就被引入药物输送领域,但在过去的二十年中以前所未有的强度蓬勃发展,现在各种基于纳米的制剂正处于临床开发阶段或已经在市场上可用。毫无疑问,纳米技术在未来的药物开发和药物治疗中起着关键作用。在本综述的第一部分中,我们已经讨论了有关基于线性聚合物的纳米系统(纳米凝胶,纳米球和纳米胶囊)应用于癌症治疗的最新专利(2008-2012年)。在这里,我们已经将这种分析扩展到支链聚合物(树枝状大分子),自组装纳米胶束和基于脂质的纳米载体。

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