Chen Siqin, Zhong Yin, Fan Wufa, Xiang Jiajia, Wang Guowei, Zhou Quan, Wang Jinqiang, Geng Yu, Sun Rui, Zhang Zhen, Piao Ying, Wang Jianguo, Zhuo Jianyong, Cong Hailin, Jiang Haiping, Ling Jun, Li Zichen, Yang Dingding, Yao Xin, Xu Xiao, Zhou Zhuxian, Tang Jianbin, Shen Youqing
Zhejiang Key Laboratory of Smart BioMaterials and Center for Bionanoengineering, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou, China.
Key Laboratory of Biomass Chemical Engineering of the Ministry of Education, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou, China.
Nat Biomed Eng. 2021 Sep;5(9):1019-1037. doi: 10.1038/s41551-021-00701-4. Epub 2021 Apr 15.
Effective anticancer nanomedicines need to exhibit prolonged circulation in blood, to extravasate and accumulate in tumours, and to be taken up by tumour cells. These contrasting criteria for persistent circulation and cell-membrane affinity have often led to complex nanoparticle designs with hampered clinical translatability. Here, we show that conjugates of small-molecule anticancer drugs with the polyzwitterion poly(2-(N-oxide-N,N-diethylamino)ethyl methacrylate) have long blood-circulation half-lives and bind reversibly to cell membranes, owing to the negligible interaction of the polyzwitterion with proteins and its weak interaction with phospholipids. Adsorption of the polyzwitterion-drug conjugates to tumour endothelial cells and then to cancer cells favoured their transcytosis-mediated extravasation into tumour interstitium and infiltration into tumours, and led to the eradication of large tumours and patient-derived tumour xenografts in mice. The simplicity and potency of the polyzwitterion-drug conjugates should facilitate the design of translational anticancer nanomedicines.
有效的抗癌纳米药物需要在血液中具有较长的循环时间,能够渗出并在肿瘤中积累,并被肿瘤细胞摄取。这些关于持续循环和细胞膜亲和力的相互矛盾的标准常常导致纳米颗粒设计复杂,临床可转化性受阻。在此,我们表明小分子抗癌药物与聚两性离子聚(甲基丙烯酸2-(N-氧化物-N,N-二乙氨基)乙酯)的缀合物具有较长的血液循环半衰期,并可逆地结合到细胞膜上,这是由于聚两性离子与蛋白质的相互作用可忽略不计,且与磷脂的相互作用较弱。聚两性离子-药物缀合物吸附到肿瘤内皮细胞,然后吸附到癌细胞上,有利于它们通过转胞吞作用介导的渗出进入肿瘤间质并浸润到肿瘤中,并导致小鼠体内大肿瘤和患者来源的肿瘤异种移植瘤被根除。聚两性离子-药物缀合物的简单性和有效性应有助于设计可转化的抗癌纳米药物。