转染
癌症研究
化学
遗传增强
克拉斯
肿瘤微环境
基因传递
纳米技术
肺癌
癌症
癌细胞
基因敲除
细胞生物学
突变体
RNA干扰
脂质体
免疫疗法
药物输送
纳米医学
自噬
癌症治疗
纳米颗粒
癌症免疫疗法
细胞培养
毒品携带者
肺
癌症治疗
泛素
聚酯纤维
阿霉素
靶向治疗
炎症
作者
Hezhi Wang,Fan Li,Zhixiang Cui,Renfang Zhu,Ye Yuan,Mengmeng Yue,Xuanguang Zhan,Yalin An,Lu Qin,Qiyao Zhai,Jian Guan,C J Liu,Yixuan Zhang,Xi Zhang,Shirui Mao
出处
期刊:Small
[Wiley]
日期:2026-07-23
卷期号:: e74724-e74724
摘要
The efficacy of gene therapy for lung cancer remains constrained by inadequate tumor targeting and insufficient penetration. Compounding this issue, conventional lipid-based gene vectors face the clinical challenges of instability induced by nebulization shear forces and severe toxicity caused by excessive positive surface charge. Herein, we engineered inhalable rigid polyester shell-lipid core hybrid nanoparticles (HNPs) capable of passive targeting upon pulmonary delivery, harnessing the complementary advantages of both liposomes and polymer nanoparticles. Systematic screening of shell type and molecular weight revealed a synergistic interplay between acid-labile rapidly degrading polyesters and lipids that simultaneously enhanced vibrating-mesh nebulization stability, pulmonary deposition, mucus and tumor penetration, while remarkably enabling rapid and sustained endo/lysosomal escape, thereby safely elevating short-term transfection efficiency in lung cancer cells and fibroblasts. To overcome the limited efficacy of single-target therapy, a dual siRNA delivery approach was employed, whereby the TGF-β pathway was first silenced to remodel the tumor microenvironment and the undruggable mutant KRAS oncogene was subsequently silenced, leading to tumor growth suppression and reduced metastasis. Collectively, a vector-drug dual-synergy strategy was established that systematically amplifies the therapeutic efficacy of gene therapy against NSCLC. Coupled with microfluidics-enabled scalable manufacturing and commercial nebulizer-compatible inhalability, HNPs hold promise for clinical translation.
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