CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:CTRP9 engages AdipoR1 and promotes T cell glycolysis and immunity.
CTRP9 engages AdipoR1 and promotes T cell glycolysis and immunity.
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脂联素(ADPN)受体(AdipoR)调节T细胞反应,但其作用仍存在争议,因为其信号传导既可促进也可抑制T细胞功能。与配体ADPN的相互作用抑制T细胞反应,但鉴于存在多种AdipoR配体,我们假设配体多样性是其对T细胞免疫差异性效应的基础。为验证这一点,我们使用罗非鱼和小鼠模型。罗非鱼编码AdipoR1但缺乏ADPN。相反,另一种脂肪因子CTRP9与AdipoR1结合。
我们发现CTRP9-AdipoR1相互作用触发Ca 2+内流并激活CaM-CaMKK-AMPK通路,促进与TCR信号的串扰。这一级联反应通过促进糖酵解增强T细胞活化、增殖和抗菌免疫。在小鼠中,CTRP9同样增强T细胞活化、增殖和细胞因子产生,并在体外提高抗CD19 CAR-T 细胞消除B细胞淋巴瘤的疗效。这些发现揭示了CTRP9在促进T细胞免疫中具有进化上保守的作用,与ADPN所施加的抑制作用形成对比。在机制上,CTRP9和ADPN对T细胞代谢发挥不同效应;CTRP9增强T细胞糖酵解,而ADPN抑制糖酵解。
因此,我们提出配体选择性是AdipoR1依赖性T细胞免疫结局的决定因素。
The adiponectin (ADPN) receptor (AdipoR) modulates T-cell responses, but its effects remain controversial since signaling can either promote or inhibit T-cell function. Interaction with the ligand ADPN inhibits T-cell responses, but given the existence of multiple AdipoR ligands, we hypothesize that ligand diversity underlies its differential effect in T-cell immunity. To test this, we use tilapia and mouse models. Tilapia encodes AdipoR1 but lacks ADPN. Instead, an alternative adipokine, CTRP9, engages AdipoR1.
We find CTRP9-AdipoR1 interaction triggers Ca 2+ influx and activates the CaM-CaMKK -AMPK pathway, facilitating crosstalk with TCR signaling. This cascade enhances T-cell activation, proliferation, and antimicrobial immunity by promoting glycolysis. In mice, CTRP9 similarly enhances T-cell activation, proliferation, and cytokine production and improves the efficacy of anti-CD19 CAR-T cells in eliminating B-cell lymphoma in vitro.
These findings reveal an evolutionarily conserved role of CTRP9 in promoting T-cell immunity, in contrast to the inhibitory effect exerted by ADPN.
Mechanistically, CTRP9 and ADPN exert distinct effects on T-cell metabolism; CTRP9 enhances T-cell glycolysis, whereas ADPN suppresses it.
We therefore propose ligand selectivity as a determinant of AdipoR1-dependent T-cell immune outcomes.
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