PO.ET09.03 · 实验与分子治疗

一种口服生物利用度良好、特异性 PLK1 双功能降解剂,用于治疗小细胞肺癌及其他癌症

An orally bioavailable, specific PLK1 bifunctional degrader for the treatment of small cell lung cancer and other cancers

海报缩略图:一种口服生物利用度良好、特异性 PLK1 双功能降解剂,用于治疗小细胞肺癌及其他癌症
编号 4598 展板 8 时间 4/21 09:00–12:00 区域 Section 18 主讲 Hwajin Lee, PhD
分会场 Proximity-Induced Drug Discovery 1
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作者与单位 Authors & Affiliations

Keum Young Kang1, Im Suk Min1, Seong Hye Ahn1, Gi Bbeum Lee1, Sol Hee Noh1, Yeon Jung Song1, Hyun Lim1, Boas Nam1, Hanbit Lee1, Su Gwon Lee1, Woojeung Song2, Kyungsik Ha1, Junyang Jung2, Jihoon Ryu1, Soo Hee Ryu1, Na Young Lee1, Seong Hoon Kim1, Hwajin Lee2

1UPPThera, inc., Incheon, Korea, Republic of,2College of Medicine, Kyung Hee University, Seoul, Korea, Republic of

摘要 Abstract

中文摘要
Polo 样激酶 1(PLK1)是一种 G2/M 期检查点蛋白,调控对细胞周期进程至关重要的信号通路,是癌细胞增殖和肿瘤发生的关键因素。由于其在多种细胞类型中发挥着必不可少的作用,PLK1 已成为多种癌症具有吸引力的治疗靶点。尽管已有多种 PLK1 抑制剂进入临床评估,但大多数在耐受性毒性剂量下未能显示疗效,这凸显了对有效靶向 PLK1 的新型治疗方法的需求。UP1002 是一种口服给药、选择性的 PLK1 双功能降解剂,其设计旨在潜在地克服上述局限。UP1002 促进 PLK1 与 cereblon(CRBN)之间的邻近,通过蛋白酶体依赖性机制实现对 PLK1 的选择性降解。与传统 PLK1 抑制剂不同,UP1002 可阻止 PLK1 在 G2/M 期阻滞期间的累积,并诱导强效的细胞周期阻滞和凋亡。在临床前模型中,UP1002 单药在多种癌症类型中显示出显著的抗肿瘤疗效,在部分给药组中实现了近乎完全的肿瘤消退,同时相较于经典 PLK1 抑制剂降低了毒性。此外,UP1002 与多种已获批疗法联用显示出协同或相加的抗肿瘤活性,凸显其增强现有治疗方案的潜力。综上所述,这些发现表明 UP1002 在小细胞肺癌中具有治疗潜力,并可能将其疗效扩展至其他癌症类型。
查看英文原文 English abstract
Polo-like kinase 1 (PLK1) is a G2/M phase checkpoint protein that regulates signaling pathways critical for cell cycle progression, making it a key contributor to cancer cell proliferation and tumorigenesis. Due to its essential role across diverse cell types, PLK1 has emerged as an attractive therapeutic target for various cancers. Although several PLK1 inhibitors have reached clinical evaluation, most have failed to demonstrate efficacy at doses that show tolerable toxicity, highlighting the need for novel therapeutic approaches to effectively target PLK1. UP1002 is an orally administered, selective bifunctional PLK1 degrader which has been designed to potentially overcome such limitations. UP1002 promotes the proximity between PLK1 and cereblon (CRBN), leading to selective PLK1 degradation through a proteasome-dependent mechanism. Unlike traditional PLK1 inhibitors, UP1002 prevents PLK1 accumulation during G2/M arrest and induces robust cell cycle arrest and apoptosis. In preclinical models, UP1002 monotherapy demonstrated significant antitumor efficacy in multiple cancer types, which achieved near-complete tumor regression in a subset of dosing groups while reducing toxicity compared to canonical PLK1 inhibitors. Moreover, combinations of UP1002 with multiple approved therapies showed synergistic or additive antitumor activity, highlighting its potential to enhance current treatment regimens. Together, these findings suggest that UP1002 has therapeutic potential in small-cell lung cancer and may extend its efficacy to additional cancer types.
利益披露 Disclosure
K. Kang, None.. I. Min, None.. S. Ahn, None.. S. Noh, None.. Y. Song, None.. H. Lim, None.. B. Nam, None.. H. Lee, None.. S. Lee, None.. W. Song, None.. K. Ha, None.. J. Jung, None.. J. Ryu, None.. S. Ryu, None.. N. Lee, None.. S. Kim, None. H. Lee, UPPThera, inc. Co-Founder.

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