Department of Ultrasound, Peking University Third Hospital, Beijing 100191, P. R. China.
Department of Ultrasound, Ordos City Central Hospital, Ordos City, Inner Mongolia 017000, P. R. China.
ACS Appl Mater Interfaces. 2022 Mar 30;14(12):14072-14086. doi: 10.1021/acsami.1c25179. Epub 2022 Mar 15.
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 (PPR) 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.
作为甲状腺乳头状癌(PTC)的传统治疗方法,手术切除病变组织常常给患者带来诸多不便,且肿瘤复发和转移难以避免。在此,我们开发了一种基于聚吡咯(Ppy)-聚乙烯亚胺-siILK 纳米复合物(PPR)的基因和光热联合治疗纳米系统,以实现 PTC 的微创消融和淋巴转移抑制。在该系统中,明胶稳定的 Ppy 主要作为光热和光声(PA)响应性纳米材料,在近红外区域表现出良好的光敏感性。此外,明胶稳定的 Ppy 具有电荷反转功能,有利于在生理 pH 值(7.35-7.45)下与 siILK 基因紧密结合,并自动释放到酸性溶酶体中(pH 4.0-5.5);在此过程中产生的质子海绵效应进一步促进 siILK 从溶酶体逃逸到细胞质,并发挥抑制 PTC 增殖和淋巴转移的作用。在荧光和 PA 双模成像的引导下,可以清楚地观察到基因传递和 Ppy 在肿瘤区域的位置。结果,肿瘤完全被光热疗法根除,siILK 明显抑制了肿瘤的复发和转移。