斯达
溶瘤病毒
药代动力学
JAK-STAT信号通路
病毒
病毒学
癌症研究
药理学
化学
医学
信号转导
内科学
受体
生物化学
受体酪氨酸激酶
车站3
作者
Jingyi Tan,Jiayu Zhang,Cheng Hu,Gongwei Wang,Qianyao Ren,Chaoqun Wang,Dan Jia,Zexin Zeng,Jun Hu,Wenbo Zhu,Jiankai Liang,Jing Cai,Ying Liu,Guangmei Yan,Yuan Lin
标识
DOI:10.1016/j.apsb.2024.03.007
摘要
Oncolytic viruses (OVs), a group of replication-competent viruses that can selectively infect and kill cancer cells while leaving healthy cells intact, are emerging as promising living anticancer agents. Unlike traditional drugs composed of non-replicating compounds or biomolecules, the replicative nature of viruses confer unique pharmacokinetic properties that require further studies. Despite some pharmacokinetics studies of OVs, mechanistic insights into the connection between OV pharmacokinetics and antitumor efficacy remain vague. Here, we characterized the pharmacokinetic profile of oncolytic virus M1 (OVM) in immunocompetent mouse tumor models and identified the JAK‒STAT pathway as a key modulator of OVM pharmacokinetics. By suppressing the JAK‒STAT pathway, early OVM pharmacokinetics are ameliorated, leading to enhanced tumor-specific viral accumulation, increased AUC and Cmax, and improved antitumor efficacy. Rather than compromising antitumor immunity after JAK‒STAT inhibition, the improved pharmacokinetics of OVM promotes T cell recruitment and activation in the tumor microenvironment, providing an optimal opportunity for the therapeutic outcome of immune checkpoint blockade, such as anti-PD-L1. Taken together, this study advances our understanding of the pharmacokinetic-pharmacodynamic relationship in OV therapy.
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