不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Diffuse large B-cell lymphoma: the significance of CD8(+) tumor-infiltrating lymphocytes exhaustion mediated by TIM3/Galectin-9 pathway.
Diffuse large B-cell lymphoma: the significance of CD8(+) tumor-infiltrating lymphocytes exhaustion mediated by TIM3/Galectin-9 pathway.
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我们的研究强调,TIM3/Galectin-9 通路在 CD8 + TILs 耗竭及 DLBCL 免疫逃逸中发挥关键作用,这有助于进一步的功能研究,并可为 DLBCL 新型免疫疗法的开发提供理论依据。
T细胞免疫球蛋白和黏蛋白结构域蛋白3(TIM3)的过表达与弥漫性大B细胞淋巴瘤(DLBCL)中CD8+TIL(肿瘤浸润淋巴细胞)(TILs)的耗竭有关。然而,TIM3介导DLBCL中CD8+TILs耗竭的机制尚不清楚。因此,我们旨在阐明TIM3介导CD8+TILs耗竭的潜在通路及其在DLBCL中的意义。
采用单细胞RNA测序分析TIM3的表达及其与CD8 + TILs耗竭、TIM3的关键配体以及DLBCL中TIM3介导CD8 + TILs耗竭的潜在通路的相关性,并通过RNA测序进行验证。基于RNA测序、免疫组织化学和逆转录定量聚合酶链反应数据,研究TIM3相关通路在DLBCL中的生物学意义。最后,利用单细胞RNA测序和RNA测序探索TIM3相关通路在DLBCL中可能的调控机制。
我们的结果表明,CD8 + TILs,尤其是终末耗竭状态,是DLBCL中表达TIM3的主要细胞群。Galectin-9主要表达于M2巨噬细胞,是TIM3的关键配体,可通过TIM3/Galectin-9通路诱导CD8 + TILs的耗竭。同时,TIM3/Galectin-9高富集与免疫抑制性肿瘤微环境、严重临床表现、不良预后以及对CHOP为基础化疗的不良反应相关,并可预测DLBCL中免疫检查点阻断治疗的临床疗效。此外,DLBCL中TIM3/Galectin-9的富集可能受IFN-γ信号通路调控。
Overexpression of T-cell immunoglobulin and mucin domain-containing protein 3 (TIM3) is related to the exhaustion of CD8 + tumor-infiltrating lymphocytes (TILs) in diffuse large B-cell lymphoma (DLBCL). However, the mechanism of TIM3-mediated CD8 + TILs exhaustion in DLBCL remains poorly understood. Therefore, we aimed to clarify the potential pathway involved in TIM3-mediated CD8 + TILs exhaustion and its significance in DLBCL.
The expression of TIM3 and its correlation with CD8 + TILs exhaustion, the key ligand of TIM3, and the potential pathway of TIM3-mediated CD8 + TILs exhaustion in DLBCL were analyzed using single-cell RNA sequencing and validated by RNA sequencing. The biological significance of TIM3-related pathway in DLBCL was investigated based on RNA sequencing, immunohistochemistry, and reverse transcription-quantitative polymerase chain reaction data. Finally, the possible regulatory mechanism of TIM3-related pathway in DLBCL was explored using single-cell RNA sequencing and RNA sequencing.
Our results demonstrated that CD8 + TILs, especially the terminally exhausted state, were the major clusters that expressed TIM3 in DLBCL. Galectin-9, mainly expressed in M2 macrophages, is the key ligand of TIM3 and can induce the exhaustion of CD8 + TILs through TIM3/Galectin-9 pathway. Meanwhile, high TIM3/Galectin-9 enrichment is related to immunosuppressive tumor microenvironment, severe clinical manifestations, inferior prognosis, and poor response to CHOP-based chemotherapy, and can predict the clinical efficacy of immune checkpoint blockade therapy in DLBCL. Furthermore, the TIM3/Galectin-9 enrichment in DLBCL may be regulated by the IFN-γ signaling pathway.
Our study highlights that TIM3/Galectin-9 pathway plays a crucial role in CD8 + TILs exhaustion and the immune escape of DLBCL, which facilitates further functional studies and could provide a theoretical basis for the development of novel immunotherapy in DLBCL.
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