决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Aberrant JAK-STAT signaling-mediated chromatin remodeling impairs the sensitivity of NK/T-cell lymphoma to chidamide.
我们的研究表明,西达本胺联合JAK-STAT抑制剂可作为NKTL标准治疗中的一种新型靶向疗法。
自然杀伤/T细胞淋巴瘤(NKTL)是一种罕见的侵袭性、异质性非霍奇金淋巴瘤(NHL),预后差且治疗选择有限。因此,迫切需要探索潜在的新型治疗靶点用于NKTL的治疗。组蛋白去乙酰化酶(HDAC)抑制剂西达本胺最近获批用于治疗复发/难治性外周T细胞淋巴瘤(PTCL)患者。然而,其在NKTL中的治疗疗效仍不明确。
我们开展了一项II期临床试验,评估西达本胺在28例复发/难治性NKTL患者中的疗效。通过整合转录组学、染色质图谱分析和功能研究,识别潜在的预测性生物标志物并揭示西达本胺耐药机制。采用免疫组织化学(IHC)在临床试验肿瘤样本中验证预测性生物标志物。
我们证明西达本胺在治疗复发/难治性NKTL患者中有效,总体缓解率和完全缓解率分别为39%和18%。体外研究表明,NKTL细胞系中JAK-STAT信号通路的过度活跃与西达本胺耐药相关。在机制上,我们的结果揭示异常的JAK-STAT信号重塑染色质并赋予西达本胺耐药性。随后,抑制JAK-STAT活性可通过将染色质从耐药状态重编程为敏感状态来克服西达本胺耐药性,从而在体外和体内产生协同抗肿瘤效应。更重要的是,我们的临床数据表明,西达本胺与JAK抑制剂ruxolitinib的联合治疗对西达本胺耐药的NKTL有效。此外,我们鉴定出TNFRSF8(CD30),JAK-STAT通路的下游靶点,作为可预测NKTL对西达本胺敏感性的潜在生物标志物。
BACKGROUND: Natural killer/T-cell lymphoma (NKTL) is a rare type of aggressive and heterogeneous non-Hodgkin's lymphoma (NHL) with a poor prognosis and limited therapeutic options. Therefore, there is an urgent need to exploit potential novel therapeutic targets for the treatment of NKTL. Histone deacetylase (HDAC) inhibitor chidamide was recently approved for treating relapsed/refractory peripheral T-cell lymphoma (PTCL) patients. However, its therapeutic efficacy in NKTL remains unclear. METHODS: We performed a phase II clinical trial to evaluate the efficacy of chidamide in 28 relapsed/refractory NKTL patients. Integrative transcriptomic, chromatin profiling analysis and functional studies were performed to identify potential predictive biomarkers and unravel the mechanisms of resistance to chidamide. Immunohistochemistry (IHC) was used to validate the predictive biomarkers in tumors from the clinical trial. RESULTS: We demonstrated that chidamide is effective in treating relapsed/refractory NKTL patients, achieving an overall response and complete response rate of 39 and 18%, respectively. In vitro studies showed that hyperactivity of JAK-STAT signaling in NKTL cell lines was associated with the resistance to chidamide. Mechanistically, our results revealed that aberrant JAK-STAT signaling remodels the chromatin and confers resistance to chidamide. Subsequently, inhibition of JAK-STAT activity could overcome resistance to chidamide by reprogramming the chromatin from a resistant to sensitive state, leading to synergistic anti-tumor effect in vitro and in vivo. More importantly, our clinical data demonstrated that combinatorial therapy with chidamide and JAK inhibitor ruxolitinib is effective against chidamide-resistant NKTL. In addition, we identified TNFRSF8 (CD30), a downstream target of the JAK-STAT pathway, as a potential biomarker that could predict NKTL sensitivity to chidamide. CONCLUSIONS: Our study suggests that chidamide, in combination with JAK-STAT inhibitors, can be a novel targeted therapy in the standard of care for NKTL. TRIAL REGISTRATION: ClinicalTrials.gov, NCT02878278. Registered 25 August 2016, https://clinicaltrials.gov/ct2/show/NCT02878278.
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