Zhang Fengzhu, Zhang Aiwen, Xie Youning, Wen Haiying, Kankala Ranjith Kumar, Huang Jing, Zhang Anjun, Wang Qi, Chen Biaoqi, Dong Haiyan, Guo Zhao, Chen Aizheng, Yang Dayun
Fujian Key Laboratory of Translational Research in Cancer and Neurodegenerative Diseases, School of Basic Medical Sciences, Fujian Medical University, Fuzhou, 350108, PR China.
Institute of Biomaterials and Tissue Engineering, Huaqiao University, Xiamen, 361021, PR China.
Regen Biomater. 2023 Feb 27;10:rbad014. doi: 10.1093/rb/rbad014. eCollection 2023.
Cancer metastasis is the primary cause of all cancer-related deaths due to the lack of effective targeted drugs that simultaneously block multiple signaling pathways that drive the dissemination and growth of cancer cells. The unique proline isomerase Pin1 activates numerous cancer pathways, but its role in cancer metastasis and the inhibitory efficacy of Pin1 inhibitors on cancer metastasis are unknown. Moreover, the applicability of Pin1 inhibitor-all- retinoic acid (ATRA) is limited due to its several drawbacks. Herein, uniform ATRA-loaded polylactic acid-polyethylene glycol block copolymer nanoparticles (ATRA-NPs) with high encapsulation efficiency, good cellular uptake, excellent controlled release performance and pharmacokinetics are developed using supercritical carbon dioxide processing combined with an optimized design. ATRA-NPs exhibited excellent biosafety and significant inhibition on the growth and metastasis of hepatocellular carcinoma. Pin1 played a key role in cancer metastasis and was the main target of ATRA-NPs. ATRA-NPs exerted their potent anti-metastatic effect by inhibiting Pin1 and then simultaneously blocking multiple signaling pathways and cancer epithelial-mesenchymal progression. Since ATRA-NPs could effectively couple the inhibition of cancer cell dissemination with cancer growth, it provided a novel therapeutic strategy for efficiently inhibiting cancer metastasis.
癌症转移是所有癌症相关死亡的主要原因,因为缺乏能够同时阻断多种驱动癌细胞扩散和生长的信号通路的有效靶向药物。独特的脯氨酸异构酶Pin1激活众多癌症通路,但其在癌症转移中的作用以及Pin1抑制剂对癌症转移的抑制效果尚不清楚。此外,Pin1抑制剂——全反式维甲酸(ATRA)由于存在一些缺点,其适用性受到限制。在此,通过超临界二氧化碳处理结合优化设计,制备了具有高包封率、良好细胞摄取、优异控释性能和药代动力学的均匀负载ATRA的聚乳酸-聚乙二醇嵌段共聚物纳米颗粒(ATRA-NPs)。ATRA-NPs表现出优异的生物安全性,并对肝癌的生长和转移具有显著抑制作用。Pin1在癌症转移中起关键作用,是ATRA-NPs的主要靶点。ATRA-NPs通过抑制Pin1,进而同时阻断多种信号通路和癌症上皮-间质转化发挥其强大的抗转移作用。由于ATRA-NPs能够有效地将抑制癌细胞扩散与癌症生长相结合,为有效抑制癌症转移提供了一种新的治疗策略。