光热治疗
癌症研究
材料科学
甲状腺乳突癌
淋巴系统
聚吡咯
转移
生物物理学
遗传增强
癌症
基因传递
纳米技术
甲状腺癌
化学
聚合物
病理
医学
生物
生物化学
内科学
聚合
基因
复合材料
作者
Menghong Xu,Duo Zhao,Yuwen Chen,Chaoyi Chen,Lulu Zhang,Lihong Sun,Jing Chen,Qingshuang Tang,Suhui Sun,Cheng Ma,Xiaolong Liang,Shumin Wang
标识
DOI:10.1021/acsami.1c25179
摘要
As a traditional treatment for papillary thyroid cancer (PTC), surgical resection of diseased tissues often brings lots of inconveniences to patients, and the tumor recurrence and metastasis are difficult to avoid. Herein, we developed a gene and photothermal combined therapy nanosystem based on a polypyrrole (Ppy)-poly(ethylene imine)-siILK nanocomplex (PPRILK) to achieve minimally invasive ablation and lymphatic metastasis inhibition in PTC simultaneously. In this system, gelatin-stabilized Ppy mainly acted as a photothermal- and photoacoustic (PA)-responsive nanomaterial and contributed to its well-behaved photosensitivity in the near-infrared region. Moreover, gelatin-stabilized Ppy possessed a charge reversal function, facilitating the tight conjunction of siILK gene at physiological pH (7.35-7.45) and its automatic release into acidic lysosomes (pH 4.0-5.5); the proton sponge effect generated during this process further facilitated the escape of siILK from lysosomes to the cytoplasm and played its role in inhibiting PTC proliferation and lymphatic metastasis. With the guidance of fluorescence and PA bimodal imaging, gene delivery and Ppy location in tumor regions could be clearly observed. As a result, tumors were completely eradicated by photothermal therapy, and the recurrences and metastases were obviously restrained by siILK.
科研通智能强力驱动
Strongly Powered by AbleSci AI