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:PGE2-EP2/EP4 signaling elicits mesoCAR T cell immunosuppression in pancreatic cancer.
PGE2-EP2/EP4 signaling elicits mesoCAR T cell immunosuppression in pancreatic cancer.
我们的研究结果表明,减轻PGE2-EP2/EP4信号传导可能是一种可行的策略,用以在具有挑战性的TME中增强CAR T细胞活性,从而提高CAR T细胞疗法在临床环境中的疗效。
多年来,手术、辅助化疗和联合化疗一直是胰腺癌治疗的基石。尽管这些方法提高了患者的生存率,但复发仍然常见,因此需要探索新的治疗策略。CAR T细胞疗法目前在血液系统恶性肿瘤中取得了巨大成功。然而,CAR T细胞在实体瘤中的临床疗效仍然较低,尤其是由于免疫抑制性肿瘤微环境(TME)的存在。前列腺素E2是TME中发现的一种生物活性脂质代谢物,通过增加肿瘤增殖、促进血管生成和损害免疫细胞功能,在促进癌症进展中发挥重要作用。尽管PGE2信号对癌症的影响已得到充分证实,但其对CAR T细胞疗法的具体影响仍在研究中。
为填补这一知识空白,本研究通过in-silico方法评估了PGE2相关基因在胰腺癌患者癌组织和T细胞中的作用。通过体外研究,我们制备了针对胰腺癌的全人源功能性mesoCAR T细胞,并探讨了PGE2-EP2/EP4信号传导对mesoCAR T细胞抗胰腺癌细胞的增殖、细胞毒性和细胞因子产生的影响。
计算机模拟研究揭示了PGE2表达与记忆T细胞基因特征之间存在显著的负相关。此外,体外实验表明,通过EP2和EP4受体激活PGE2信号通路抑制了mesoCAR T细胞的增殖和主要抗肿瘤功能。有趣的是,双重阻断EP2和EP4受体有效逆转了PGE2对mesoCAR T细胞的抑制,而单一受体拮抗剂未能减轻PGE2诱导的抑制。
INTRODUCTION: For many years, surgery, adjuvant and combination chemotherapy have been the cornerstone of pancreatic cancer treatment. Although these approaches have improved patient survival, relapse remains a common occurrence, necessitating the exploration of novel therapeutic strategies. CAR T cell therapies are now showing tremendous success in hematological cancers. However, the clinical efficacy of CAR T cells in solid tumors remained low, notably due to presence of an immunosuppressive tumor microenvironment (TME). Prostaglandin E2, a bioactive lipid metabolite found within the TME, plays a significant role in promoting cancer progression by increasing tumor proliferation, improving angiogenesis, and impairing immune cell's function. Despite the well-established impact of PGE2 signaling on cancer, its specific effects on CAR T cell therapy remain under investigation. METHODS: To address this gap in knowledge the role of PGE2-related genes in cancer tissue and T cells of pancreatic cancer patients were evaluated in-silico . Through our in vitro study, we manufactured fully human functional mesoCAR T cells specific for pancreatic cancer and investigated the influence of PGE2-EP2/EP4 signaling on proliferation, cytotoxicity, and cytokine production of mesoCAR T cells against pancreatic cancer cells. RESULTS: In-silico investigations uncovered a significant negative correlation between PGE2 expression and gene signature of memory T cells. Furthermore, in vitro experiments demonstrated that the activation of PGE2 signaling through EP2 and EP4 receptors suppressed the proliferation and major antitumor functions of mesoCAR T cells. Interestingly, the dual blockade of EP2 and EP4 receptors effectively reversed PGE2-mediated suppression of mesoCAR T cells, while individual receptor antagonists failed to mitigate the PGE2-induced suppression. DISCUSSION: In summary, our findings suggest that mitigating PGE2-EP2/EP4 signaling may be a viable strategy for enhancing CAR T cell activity within the challenging TME, thereby improving the efficacy of CAR T cell therapy in clinical settings.
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