首页> 美国卫生研究院文献>International Journal of Nanomedicine >Overcoming tumor cell chemoresistance using nanoparticles: lysosomes are beneficial for (stearoyl) gemcitabine-incorporated solid lipid nanoparticles
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Overcoming tumor cell chemoresistance using nanoparticles: lysosomes are beneficial for (stearoyl) gemcitabine-incorporated solid lipid nanoparticles

机译:使用纳米颗粒克服肿瘤细胞的化学抗性:溶酶体对掺入(硬脂酰)吉西他滨的固体脂质纳米颗粒有益

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摘要

Despite recent advances in targeted therapies and immunotherapies, chemotherapy using cytotoxic agents remains an indispensable modality in cancer treatment. Recently, there has been a growing emphasis in using nanomedicine in cancer chemotherapy, and several nanomedicines have already been used clinically to treat cancers. There is evidence that formulating small molecular cancer chemotherapeutic agents into nanomedicines significantly modifies their pharmacokinetics and often improves their efficacy. Importantly, cancer cells often develop resistance to chemotherapy, and formulating anticancer drugs into nanomedicines also helps overcome chemoresistance. In this review, we briefly describe the different classes of cancer chemotherapeutic agents, their mechanisms of action and resistance, and evidence of overcoming the resistance using nanomedicines. We then emphasize on gemcitabine and our experience in discovering the unique (stearoyl) gemcitabine solid lipid nanoparticles that are effective against tumor cells resistant to gemcitabine and elucidate the underlying mechanisms. It seems that lysosomes, which are an obstacle in the delivery of many drugs, are actually beneficial for our (stearoyl) gemcitabine solid lipid nanoparticles to overcome tumor cell resistance to gemcitabine.
机译:尽管在靶向疗法和免疫疗法方面取得了最新进展,但是使用细胞毒剂的化学疗法仍然是癌症治疗中必不可少的方法。近来,在癌症化学疗法中使用纳米药物越来越受到重视,并且几种纳米药物已经在临床上用于治疗癌症。有证据表明,将小分子癌症化学治疗剂配制成纳米药物可显着改变其药代动力学,并通常可提高其疗效。重要的是,癌细胞通常会产生对化学疗法的抗性,将抗癌药物配制成纳米药物也有助于克服化学耐药性。在这篇综述中,我们简要描述了不同类别的癌症化学治疗剂,它们的作用机制和耐药性,以及使用纳米药物克服耐药性的证据。然后,我们重点介绍吉西他滨和我们在发现独特的(硬脂酰)吉西他滨固体脂质纳米颗粒方面的经验,这些纳米颗粒可有效抵抗对吉西他滨耐药的肿瘤细胞并阐明其潜在机制。看来,溶酶体是许多药物传递的障碍,实际上对我们的(硬脂酰)吉西他滨固体脂质纳米颗粒有益,以克服肿瘤细胞对吉西他滨的耐药性。

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