PO.ET09.04 · 实验与分子治疗
首创CDK9降解剂TB-008在异种移植模型中的PK/PD及临床前ADME特征研究
PK/PD and preclinical ADME characterization of TB-008, a first-in-class CDK9 degrader in xenograft models
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
靶向蛋白降解(TPD)通过清除而非抑制驱动疾病的蛋白,提供了一种颇具前景的治疗策略。细胞周期蛋白依赖性激酶9(CDK9)是一个关键的致癌调控因子,与多种血液系统和实体肿瘤相关。TB008是一种利用AI驱动的降解剂平台合理设计的CDK9靶向PROTAC,旨在实现高亲和力、高选择性和良好的药理学特性。临床前研究已证实其可强效、选择性地降解CDK9,并下游抑制c-MYC和MCL-1等致癌靶点。TB008在多种癌细胞系中表现出强劲的抗增殖和促凋亡活性,并在三阴性乳腺癌异种移植模型中实现了>95%的强劲肿瘤生长抑制,支持将TB008作为CDK9靶向治疗候选药物进一步开发。在Balb/c-nude小鼠(药效研究物种)中的药代动力学显示,TB-008经腹腔给药后被迅速吸收,生物利用度约90%,半衰期为1小时。有趣的是,计算机模拟(in-silico)药代动力学和生物利用度分析确实预测,给药后第一个小时内小鼠血浆中的药物浓度会下降90%。此外,同样基于计算机模拟评估,还预测药物浓度在胃肠道、肺、血浆、脾脏和门静脉中会更高。尽管半衰期相对较短,异种移植研究中观察到的高肿瘤生长抑制证实了TB-008在实现肿瘤CDK9降解方面的强效和快速动力学。我们已在小鼠异种移植模型中启动研究,以更好地理解PK/PD并设计最佳给药方案。此外,我们还将报告TB-008在其他异种移植模型中的疗效。更多临床前ADME数据以及在更高级非临床物种中的PK将另行报告。
查看英文原文 English abstract
Targeted protein degradation (TPD) offers a promising therapeutic strategy by removing, rather than inhibiting, disease-driving proteins. Cyclin-dependent kinase 9 (CDK9) is a key oncogenic regulator implicated in multiple hematologic and solid tumors. TB008 is a rationally designed CDK9-targeting PROTAC developed using an AI-driven degrader platform to achieve high affinity, selectivity, and favorable pharmacologic properties. Preclinical studies have demonstrated potent, selective CDK9 degradation with downstream suppression of oncogenic targets such as c-MYC and MCL-1. TB008 has shown robust antiproliferative and pro-apoptotic activity across cancer cell lines and strong tumor growth inhibition >95% in triple negative breast cancer xenograft model which support further development of TB008 as a CDK9-directed therapeutic candidate. Pharmacokinetics in Balb/c-nude mice (efficacy study species) has shown that TB-008 is rapidly absorbed following an intraperitoneal dose with ~90% bioavailability and a half-life of 1 hr. Interestingly, in-silico PK and bioavailability analysis does predict that there is a 90% decrease in drug concentration in mouse plasma within the first hour after administration. Furthermore, also based on in-silico evaluation, it is also predicted that higher drug concentration will be in the GI tract, lungs, plasma, spleen and portal vein. Even with the relatively short half-life, the high tumor growth inhibition observed in xenograft studies confirms the potency and fast kinetics of TB-008 in effecting the degradation of the tumor CDK9. We have initiated studies in mouse xenograft models to better understand the PK/PD and design optimal dosing regimens. Also, we will report the efficacy of TB-008 in additional xenograft models. Additional preclinical ADME data and PK in higher nonclinical species will be reported.
利益披露 Disclosure
N. Narasimhan, None..
M. Koirala, None..
I. Dussault, None..
L. Yan, None..
O. Kashala, None..
Z. Mohamed, None..
M. DiPaola, None.