癌细胞
癌症
转染
癌症研究
肺癌
细胞凋亡
药物输送
内吞作用
基因沉默
药理学
细胞培养
化学
医学
细胞
免疫学
生物
病理
内科学
生物化学
有机化学
基因
遗传学
作者
Yunfeng Yan,Li Liu,Hu Xiong,Jason B. Miller,Kejin Zhou,Petra Kós,Kenneth E. Huffman,Sussana Elkassih,John Norman,Ryan Carstens,James Kim,John D. Minna,Daniel J. Siegwart
标识
DOI:10.1073/pnas.1606886113
摘要
Conventional chemotherapeutics nonselectively kill all rapidly dividing cells, which produces numerous side effects. To address this challenge, we report the discovery of functional polyesters that are capable of delivering siRNA drugs selectively to lung cancer cells and not to normal lung cells. Selective polyplex nanoparticles (NPs) were identified by high-throughput library screening on a unique pair of matched cancer/normal cell lines obtained from a single patient. Selective NPs promoted rapid endocytosis into HCC4017 cancer cells, but were arrested at the membrane of HBEC30-KT normal cells during the initial transfection period. When injected into tumor xenografts in mice, cancer-selective NPs were retained in tumors for over 1 wk, whereas nonselective NPs were cleared within hours. This translated to improved siRNA-mediated cancer cell apoptosis and significant suppression of tumor growth. Selective NPs were also able to mediate gene silencing in xenograft and orthotopic tumors via i.v. injection or aerosol inhalation, respectively. Importantly, this work highlights that different cells respond differentially to the same drug carrier, an important factor that should be considered in the design and evaluation of all NP carriers. Because no targeting ligands are required, these functional polyester NPs provide an exciting alternative approach for selective drug delivery to tumor cells that may improve efficacy and reduce adverse side effects of cancer therapies.
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