更正:B7-H3 CAR T 细胞清除肝内胆管癌并诱导持久应答
Correction: B7-H3 CAR T cells eradicate intrahepatic cholangiocarcinoma and induce durable response.
英文原题:Development of a murine tumor-infiltrating lymphocyte therapy model for cholangiocarcinoma.
TIL(肿瘤浸润淋巴细胞)疗法是一种前景广阔的治疗方法,已获得美国
TIL(肿瘤浸润淋巴细胞)疗法是一种有前景的方法,近期已获美国食品药品监督管理局批准,用于抗PD-1耐药黑色素瘤患者。将TIL疗法拓展至胆管癌(CCA)患者是一个新兴研究方向;CCA是一种侵袭性强且大多对免疫疗法耐药的癌症。但成本和制备复杂性限制了CCA TIL疗法的临床规模化应用,凸显了建立小鼠模型、优化疗效的必要性。在此,我们建立了新型CCA原位TIL治疗模型,并测试新的离体扩增策略。我们首先表征原位CCA免疫特征,随后比较两种TIL扩增方法:(1)采用CD3激动剂刺激的传统方案(CD3 TIL);(2)使用照射的自体CCA细胞进行肿瘤抗原刺激,以富集肿瘤反应性TIL(肿瘤抗原TIL)。与CD3 TIL相比,肿瘤抗原TIL体外肿瘤裂解能力更强。两种TIL产品均能在体内植入,但肿瘤抗原TIL持久性更高。尽管如此,任一种TIL产品单药对肿瘤生长速率的影响均有限;输注细胞的PD-1等抑制性免疫检查点受体表达上调。进一步研究显示,肿瘤抗原TIL和CD3 TIL与PD-L1抑制剂联合治疗后,体内抗肿瘤疗效均增强。总之,本研究建立了用于模拟CCA TIL疗法的临床前平台,确定了增强TIL疗效的合理联合策略,并为推进CCA及相关实体瘤过继T细胞转移研究奠定基础。
Tumor-infiltrating lymphocyte (TIL) therapy is a promising approach, earning U.S. Food and Drug Administration approval in patients with anti-PD-1-resistant melanoma. Extending TIL therapy to patients with cholangiocarcinoma (CCA), an aggressive and largely immune-refractory cancer, is an emerging area of interest. However, cost and manufacturing complexity constrain clinical scalability of TIL therapy for CCA, underscoring the need for a murine model to optimize efficacy. Here, we established a novel orthotopic model of TIL therapy for CCA and tested a new ex vivo expansion strategy. We first characterized the immune landscape of orthotopic CCA and then compared 2 TIL expansion methods: (1) a conventional protocol using CD3 agonist stimulation (CD3 TILs) and (2) a tumor antigen-based protocol using irradiated autologous CCA cells to enrich for tumor-reactive TILs (Tumor Ag TILs). Tumor Ag TILs displayed superior tumor lysis in vitro compared to CD3 TILs. While both TIL products engrafted in vivo, Tumor Ag TILs showed enhanced persistence. Despite this, monotherapy with either TIL product alone had only a modest impact on tumor growth rate, and infused cells had upregulation of inhibitory checkpoint receptors, including PD-1. Further investigations demonstrated that the in vivo antitumor efficacy of both Tumor Ag TILs and CD3 TILs was enhanced when combined with PD-L1 inhibitor therapy. Altogether, our study establishes a preclinical platform for modeling CCA TIL therapy, identifies a rational combination strategy that potentiates TIL efficacy, and provides the field with a foundation to advance adoptive T-cell transfer development for CCA and related solid tumors.
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