LBPO.ET03 · 实验与分子治疗 · Late-Breaking

Bcl-xL特异性PROTAC——DT2216提高不同来源临床前肿瘤模型对靶向治疗的敏感性

The Bcl-xL specific PROTAC, DT2216, increases the sensitivity to target therapy of preclinical tumor models from different origin

编号 LB359 展板 16 时间 4/21 02:00–05:00 区域 Section 53 主讲 Giulia Gentile
分会场 Late-Breaking Research: Experimental and Molecular Therapeutics 3
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作者与单位 Authors & Affiliations

Giulia Gentile1, Elisabetta Valentini1, Marta Di Martile1, Simona D'Aguanno1, Matteo Brignone1, Adriana Maria Di Stefano2, Marica Di Caprio1, Elisa Melucci1, Claudio Botti1, Fabio Pelle1, Arianna Ortolano3, Luigi Fattore4, Rita Mancini3, Gennaro Ciliberto1, Dante Rotili5, Michela Chiappa6, Giovanna Damia6, Donatella Del Bufalo1

1IRCCS Regina Elena National Cancer Institute, Rome, Italy,2Policlinico Le Scotte, University of Siena, Siena, Italy,3Sapienza University of Rome, Rome, Italy,4Link Campus University, Rome, Italy,5Roma Tre University, Rome, Italy,6IRCCS Istituto di Ricerche Farmacologiche Mario Negri, Milan, Italy

摘要 Abstract

中文摘要
Bcl-2家族的抗凋亡蛋白通常作为凋亡抑制因子发挥作用,在各种来源的实体瘤中常发生失调,从而促进肿瘤进展相关特性。具体而言,我们和其他研究者证明,抗凋亡蛋白Bcl-xL可刺激肿瘤血管生成、转移和免疫抑制性微环境的建立,并促进耐药。在此背景下,BH3模拟物已被开发为抗凋亡蛋白的抑制剂,其中一些已作为单药或联合治疗进入临床试验。然而,Bcl-xL导向的BH3模拟物在临床适用性方面存在一些局限,主要是由于诱导血小板减少。近期已鉴定出选择性蛋白水解靶向嵌合体(PROTAC)降解剂。其中,DT2216(一种处于I/II期临床试验的候选药物)通过Von Hippel Lindau E3连接酶诱导Bcl-xL降解,并在某些临床前癌症模型中展现出体外和/或体内抗肿瘤活性,且不诱导血小板减少。我们的研究旨在评估DT2216与目前临床使用或处于临床研究中的靶向治疗联用在不同肿瘤组织类型(即黑色素瘤、结直肠癌、胰腺癌、乳腺癌和卵巢癌)中的抗肿瘤疗效。为此,我们首先通过细胞活力、流式细胞术和蛋白质印迹分析,从降低细胞活力和诱导凋亡性细胞死亡的角度考察了各种治疗的效果。随后,我们聚焦于黑色素瘤,并在体外和体内实验中更深入地探究了联合治疗方案的效果。我们的结果表明,DT2216能够诱导Bcl-xL降解,从而在黑色素瘤、结直肠癌、胰腺癌、乳腺癌和卵巢癌细胞系panel中导致细胞活力丧失。此外,当用于联合治疗方案时,我们证明DT2216增强了以下药物的疗效:在BRAF V600E/K黑色素瘤细胞系中增强BRAF抑制剂(Dabrafenib)和MEK抑制剂(Trametinib)的疗效;在BRAF野生型黑色素瘤细胞系中增强Trametinib的疗效;在BRAF V600E/K结直肠癌细胞系中增强Dabrafenib的疗效;在KRAS G12D胰腺癌细胞系中增强KRAS抑制剂(MRTX1133)的疗效;在乳腺癌和卵巢癌细胞系中增强PARP-1抑制剂(Olaparib)的疗效。在所有情况下,协同效应均归因于联合治疗相比单药能够降低细胞活力并增加凋亡性细胞死亡的能力。值得注意的是,在对靶向治疗耐药的BRAF V600E/K黑色素瘤细胞系中,DT2216也增强了Dabrafenib/Trametinib治疗的疗效。在黑色素瘤模型中,DT2216还对ABT-199(一种Bcl-2特异性抑制剂)和S63845(一种Mcl-1特异性抑制剂)产生了增强效应。最后,我们通过使用异种移植小鼠黑色素瘤模型验证了体外结果,在该模型中DT2216增强了靶向治疗的效果,显示出肿瘤生长的显著减少并赋予了更长的疾病控制。总之,我们的结果凸显了靶向Bcl-xL蛋白作为一种潜在治疗策略、在不同肿瘤组织类型中与靶向治疗联合应用的意义,为那些对标准治疗无应答或出现耐药的患者提供了一种新的治疗选择。
查看英文原文 English abstract
The anti-apoptotic proteins of the Bcl-2 family, which canonically act as inhibitors of apoptosis, are frequently deregulated in solid tumors of various origins, thereby promoting tumor progression-associated properties. Specifically, we and others demonstrated that the anti-apoptotic protein Bcl-xL stimulates tumor angiogenesis, metastatization and the establishment of an immunosuppressive niche and fosters drug resistance. In this context, BH3 mimetics have been developed as inhibitors of the anti-apoptotic proteins and some of them have entered clinical trials as single agents or in combination therapy. Nevertheless, Bcl-xL-directed BH3 mimetics show some limitations in clinical applicability, mainly due to the induction of thrombocytopenia. Recently, selective proteolysis targeting chimera (PROTAC) degraders have been identified. Among these, DT2216, a candidate in phase I/II clinical trials, induces Bcl-xL degradation via Von Hippel Lindau E3 ligase, and demonstrates in vitro and/or in vivo antitumoral activity in some preclinical cancer models without inducing thrombocytopenia. Our study aimed to assess the antitumor efficacy of DT2216 in combination with target therapies currently used in clinics or under clinical investigation in different tumor histotypes (i.e. melanoma, colorectal, pancreatic, breast and ovarian cancers). To this aim, we firstly investigated the effect of treatments in terms of cell viability reduction and apoptotic cell death induction, performing cell viability, cytofluorimetric and western blot analyses. Then, we focused on melanoma and investigated more deeply the effect of the combinatorial regimens in in vitro and in vivo experiments. Our results demonstrated that DT2216 was able to induce Bcl-xL degradation with a resulting cell viability loss in a panel of melanoma, colorectal, pancreatic, breast and ovarian cancer cell lines. Moreover, when used in combinational regimen, we proved that DT2216 potentiated the efficacy of: a BRAF inhibitor (Dabrafenib) and a MEK inhibitor (Trametinib) in BRAF V600E/K melanoma cell lines; Trametinib in BRAF wild type melanoma cell lines; Dabrafenib in BRAF V600E/K colorectal cancer cell lines; a KRAS inhibitor (MRTX1133) in KRAS G12D pancreatic cancer cell lines; a PARP-1 inhibitor (Olaparib) in breast and ovarian cancer cell lines. In all cases, the synergistic effect was due to the ability of the combination treatment to reduce cell viability and increase apoptotic cell death compared to single agents. Notably, also in BRAF V600E/K melanoma cell lines resistant to target therapy, DT2216 enhanced the efficacy of Dabrafenib/Trametinib treatment. In melanoma models, DT2216 also induced a potentiating effect on ABT-199, a Bcl-2 specific inhibitor, and S63845, a Mcl-1 specific inhibitor. Finally, we validated our in vitro results by using xenograft mouse melanoma model in which DT2216 potentiated the effect of target therapy, showing a significant reduction of tumor growth and conferring a longer disease control. In conclusion, our results highlighted the relevance of targeting the Bcl-xL protein as a potential therapeutic strategy in combinatorial regimens with target therapies in different tumor histotypes, providing a new therapeutic option for those patients who are unresponsive or evolve resistance to the therapeutic standard of care.
利益披露 Disclosure
G. Gentile, None.. E. Valentini, None.. M. Di Martile, None.. S. D'Aguanno, None.. M. Brignone, None.. A. Di Stefano, None.. M. Di Caprio, None.. E. Melucci, None.. C. Botti, None.. F. Pelle, None.. A. Ortolano, None.. L. Fattore, None.. R. Mancini, None.. G. Ciliberto, None.. D. Rotili, None.. M. Chiappa, None.. G. Damia, None.. D. Del Bufalo, None.

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