CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Therapy-Induced Senescence Contributes to the Efficacy of Abemaciclib in Patients with Dedifferentiated Liposarcoma.
Therapy-Induced Senescence Contributes to the Efficacy of Abemaciclib in Patients with Dedifferentiated Liposarcoma.
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Abemaciclib 耐受性良好,并在 DDLS 中显示出有前景的活性。ANGPTL4 作为 geroconversion 晚期调节因子的发现,有助于阐明 CDK4/6i 诱导的细胞衰老如何调节免疫肿瘤微环境,并促成阳性和阴性临床结局。参见 Weiss 等人的相关评论,第 649 页。
我们在临床前和临床领域同时开展了对 CDK4/6 抑制剂(CDK4/6i)的研究,以更深入地了解衰老如何影响人类肿瘤生长。
我们协调了一项首创的CDK4/6i abemaciclib用于进展性去分化脂肪肉瘤(DDLS)患者的II期临床试验,并通过细胞研究探讨了geroconversion的分子基础。
30例进展期DDLS患者入组,接受abemaciclib 200 mg每日两次治疗。数据锁定时中位无进展生存期为33周,30例中23例在12周时无进展(76.7%,双侧95% CI,57.7%-90.1%)。未发现新的安全性信号。同时在脂肪肉瘤细胞系中进行的临床前研究发现,ANGPTL4是geroconversion所必需的晚期调节因子,geroconversion是从可逆性细胞周期退出到稳定停滞的、引发炎症的衰老细胞的通路。利用这一发现,我们能够识别出abemaciclib诱导肿瘤细胞衰老的患者。衰老与治疗一个月内白细胞浸润增加相关,主要为CD4阳性细胞。然而,那些同时具有衰老和TILs增加的患者也更可能在治疗后期获得耐药性。这些结果表明,在部分患者中将senolytics与abemaciclib联合使用可能会延长缓解持续时间。
We conducted research on CDK4/6 inhibitors (CDK4/6i) simultaneously in the preclinical and clinical spaces to gain a deeper understanding of how senescence influences tumor growth in humans.
We coordinated a first-in-kind phase II clinical trial of the CDK4/6i abemaciclib for patients with progressive dedifferentiated liposarcoma (DDLS) with cellular studies interrogating the molecular basis of geroconversion.
Thirty patients with progressing DDLS enrolled and were treated with 200 mg of abemaciclib twice daily. The median progression-free survival was 33 weeks at the time of the data lock, with 23 of 30 progression-free at 12 weeks (76.7%, two-sided 95% CI, 57.7%-90.1%). No new safety signals were identified. Concurrent preclinical work in liposarcoma cell lines identified ANGPTL4 as a necessary late regulator of geroconversion, the pathway from reversible cell-cycle exit to a stably arrested inflammation-provoking senescent cell. Using this insight, we were able to identify patients in which abemaciclib induced tumor cell senescence. Senescence correlated with increased leukocyte infiltration, primarily CD4-positive cells, within a month of therapy. However, those individuals with both senescence and increased TILs were also more likely to acquire resistance later in therapy. These suggest that combining senolytics with abemaciclib in a subset of patients may improve the duration of response.
Abemaciclib was well tolerated and showed promising activity in DDLS. The discovery of ANGPTL4 as a late regulator of geroconversion helped to define how CDK4/6i-induced cellular senescence modulates the immune tumor microenvironment and contributes to both positive and negative clinical outcomes. See related commentary by Weiss et al., p. 649.
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