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基于共刺激结构域的CART细胞衰老的差异易感性及其作用。

Differential susceptibility and role for senescence in CART cells based on costimulatory domains.

作者信息

Can Ismail, Siegler Elizabeth L, Sirpilla Olivia L, Manriquez-Roman Claudia, Yun Kun, Stewart Carli M, Feigin Jennifer M, Rodriguez Makena L, Gutierrez-Ruiz Omar L, Ogbodo Ekene J, Huynh Truc N, Kimball Brooke L, Mai Long K, Hefazi Mehrdad, Fonkoua Lionel Kankeu, Xia Hong, Hamaidi Imene, Alkan Berke, Sezer Fatih, Ekiz H Atakan, Sakemura R Leo, Kenderian Saad S

机构信息

T Cell Engineering, Mayo Clinic, Rochester, MN, USA.

Division of Hematology, Mayo Clinic, 200 First Street S.W, Rochester, MN, 55905, USA.

出版信息

Mol Cancer. 2025 Jun 10;24(1):172. doi: 10.1186/s12943-025-02371-1.

Abstract

Despite the success of chimeric antigen receptor T (CART) cell therapy in hematological malignancies, durable remissions remain low. Here, we report CART senescence as a potential resistance mechanism in 41BB-costimulated CART cell therapy. To mimic cancer relapse, we utilized an in vitro model with repeated CART cell activation cycles followed by rest periods. Using CD19-targeted CART cells with costimulation via 4-1BB-CD3ζ (BBζ) or CD28-CD3ζ (28ζ), we showed that CART cells undergo functional, phenotypical, and transcriptomic changes of senescence, which is more prominent in BBζ. We then utilized two additional independent strategies to induce senescence through MYC activation and irradiation. Induction of senescence impaired BBζ activity but improved 28ζ activity in preclinical studies. These findings were supported by analyses of independent patient data sets; senescence signatures in CART cell products were associated with non-response to BBζ but with improved clinical outcomes in 28ζ treatment. In summary, our study identifies senescence as a potential mechanism of failure predominantly in 41BB-costimulated CART cells.

摘要

尽管嵌合抗原受体T(CART)细胞疗法在血液系统恶性肿瘤治疗中取得了成功,但持久缓解率仍然较低。在此,我们报告CART细胞衰老作为4-1BB共刺激的CART细胞疗法中的一种潜在耐药机制。为模拟癌症复发,我们使用了一种体外模型,该模型具有重复的CART细胞激活周期,随后是休息期。使用通过4-1BB-CD3ζ(BBζ)或CD28-CD3ζ(28ζ)共刺激的靶向CD19的CART细胞,我们发现CART细胞经历了衰老的功能、表型和转录组学变化,这在BBζ中更为突出。然后,我们利用另外两种独立策略通过MYC激活和辐射诱导衰老。在临床前研究中,衰老的诱导损害了BBζ活性,但改善了28ζ活性。这些发现得到了对独立患者数据集分析的支持;CART细胞产物中的衰老特征与对BBζ无反应相关,但与28ζ治疗中改善的临床结果相关。总之,我们的研究确定衰老主要是4-1BB共刺激的CART细胞治疗失败的一种潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89fc/12150488/ce8eb0e0cb50/12943_2025_2371_Fig1_HTML.jpg

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