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Nanoscale Formulations: Incorporating Curcumin into Combination Strategies for the Treatment of Lung Cancer

机译:纳米级配方:将姜黄素掺入治疗肺癌的组合策略

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摘要

Lung cancer remains the most common cancer worldwide. Although significant advances in screening have been made and early diagnosis strategies and therapeutic regimens have been developed, the overall survival rate remains bleak. Curcumin is extracted from the rhizomes of turmeric and exhibits a wide range of biological activities. In lung cancer, evidence has shown that curcumin can markedly inhibit tumor growth, invasion and metastasis, overcome resistance to therapy, and even eliminate cancer stem cells (CSCs). Herein, the underlying molecular mechanisms of curcumin were summarized by distinct biological processes. To solve the limiting factors that curtail the clinical applications of curcumin, nanoformulations encapsulating curcumin were surveyed in detail. Nanoparticles, including liposomes, micelles, carbon nanotubes (CNTs), solid lipid nanoparticles (SLNs), nanosuspensions, and nanoemulsions, were explored as proper carriers of curcumin. Moreover, it was firmly verified that curcumin has the ability to sensitize lung cancer cells to chemotherapeutic drugs, such as cisplatin and docetaxel, and to various targeted therapies. Regarding the advantages and drawbacks of curcumin, we concluded that combination therapy based on nanoparticles would be the optimal approach to broaden the application of curcumin in the clinic in the near future.
机译:肺癌仍然是全世界最常见的癌症。虽然已经进行了筛选的显着进展,但已经开发出早期诊断策略和治疗方案,但总生存率仍然黯淡。姜黄素从姜黄的根茎中提取,并且具有广泛的生物活性。在肺癌中,证据表明,姜黄素可以显着抑制肿瘤生长,侵袭和转移,克服对治疗的抗性,甚至消除癌症干细胞(CSCs)。在此,通过不同的生物方法总结了姜黄素的潜在分子机制。为了解决缩短姜黄素的临床应用的限制因素,详细地调查包封姜黄素的纳米型族种。纳米颗粒,包括脂质体,胶束,碳纳米管(CNT),固体脂质纳米粒子(SLNS),纳米粒子粒子和纳米乳液,作为姜黄素的适当载体。此外,牢固核实姜黄素能够使肺癌细胞敏化至化学治疗药物,例如顺铂和多西紫杉醇,以及各种靶向疗法。关于姜黄素的优点和缺点,我们得出结论,基于纳米颗粒的联合治疗是在不久的将来扩大临床中姜黄素在临床中的应用的最佳方法。

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