纳米医学
肺癌
抗药性
放射治疗
免疫疗法
医学
化疗
癌症
药品
药物输送
肺癌的治疗
肿瘤科
药理学
内科学
纳米技术
材料科学
生物
纳米颗粒
微生物学
作者
Xiuli Zheng,Xiao-Hai Song,Guonian Zhu,Dayi Pan,Haonan Li,Jian‐Kun Hu,Kai Xiao,Qiyong Gong,Zhongwei Gu,Kui Luo,Weimin Li
标识
DOI:10.1002/adma.202308977
摘要
Abstract Lung cancer is the second most prevalent cancer and the leading cause of cancer‐related death worldwide. Surgery, chemotherapy, molecular targeted therapy, immunotherapy, and radiotherapy are currently available as treatment methods. However, drug resistance is a significant factor in the failure of lung cancer treatments. Novel therapeutics have been exploited to address complicated resistance mechanisms of lung cancer and the advancement of nanomedicine is extremely promising in terms of overcoming drug resistance. Nanomedicine equipped with multifunctional and tunable physiochemical properties in alignment with tumor genetic profiles can achieve precise, safe, and effective treatment while minimizing or eradicating drug resistance in cancer. Here, this work reviews the discovered resistance mechanisms for lung cancer chemotherapy, molecular targeted therapy, immunotherapy, and radiotherapy, and outlines novel strategies for the development of nanomedicine against drug resistance. This work focuses on engineering design, customized delivery, current challenges, and clinical translation of nanomedicine in the application of resistant lung cancer.
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