RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Neurotransmitters and Neuropeptides decrease PD-1 in T cells of healthy subjects and patients with hepatocellular carcinoma (HCC), and increase their proliferation and eradication of HCC cells.
Neurotransmitters and Neuropeptides decrease PD-1 in T cells of healthy subjects and patients with hepatocellular carcinoma (HCC), and increase their proliferation and eradication of HCC cells.
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老年人以及癌症或严重感染(包括COVID-19)患者的T细胞常出现耗竭、衰老和功能障碍,导致易感性、并发症和死亡率增加。神经递质和神经肽可结合T细胞受体并诱导多种有益T细胞功能。
然而,不同个体T细胞表达神经递质和神经肽受体的水平及相应效应幅度各不相同。因此,本研究对3名健康受试者和3名肝细胞癌(HCC)患者的T细胞开展个体化研究。HCC通常由慢性炎症引起;肝脏炎症会导致CD4⁺ T细胞和自然杀伤(NK)细胞减少并受到抑制,因而迫切需要基于免疫的HCC治疗。
本研究检验特定神经递质和神经肽是否可降低人T细胞关键检查点蛋白PD-1,并增强T细胞增殖及杀伤HCC细胞的能力。首先,研究确认人T细胞表达所有多巴胺受体(DR)和谷氨酸受体(GluR),包括AMPA-GluR3、NMDA-R和mGluR。其次,研究发现,多巴胺、谷氨酸、GnRH-II、神经肽Y和/或CGRP(10 nM),以及DR和GluR激动剂,可产生以下作用:1)显著降低PD-1阳性T细胞比例及单个细胞的PD-1表达水平(最高降低60%,仅需1小时);2)显著增加与HCC细胞共培养时增殖的T细胞数量(最高增加7倍);3)显著增强T细胞杀伤HCC细胞的能力(最高增加2倍);4)少数非常规神经递质和神经肽组合产生了令人惊讶的有益协同效应。研究总结认为,多巴胺、谷氨酸、GnRH-II、神经肽Y和CGRP单独或联合使用,可降低健康受试者和HCC患者T细胞中PD-1阳性比例及单细胞PD-1表达,并增强其对HCC细胞的增殖反应和杀伤能力。但仍亟需在更多癌症患者T细胞中开展测试。基于这些及既往发现,研究者设计了一种新型“个体化过继神经-免疫治疗”,并呼吁在临床试验中验证其安全性和疗效。
T cells of aged people, and of patients with either cancer or severe infections (including COVID-19), are often exhausted, senescent and dysfunctional, leading to increased susceptibilities, complications and mortality. Neurotransmitters and Neuropeptides bind their receptors in T cells, and induce multiple beneficial T cell functions. Yet, T cells of different people vary in the expression levels of Neurotransmitter and Neuropeptide receptors, and in the magnitude of the corresponding effects.
Therefore, we performed an individual-based study on T cells of 3 healthy subjects, and 3 Hepatocellular Carcinoma (HCC) patients. HCC usually develops due to chronic inflammation. The inflamed liver induces reduction and inhibition of CD4 + T cells and Natural Killer (NK) cells. Immune-based therapies for HCC are urgently needed.
We tested if selected Neurotransmitters and Neuropeptides decrease the key checkpoint protein PD-1 in human T cells, and increase proliferation and killing of HCC cells. First, we confirmed human T cells express all dopamine receptors (DRs), and glutamate receptors (GluRs): AMPA-GluR3, NMDA-R and mGluR. Second, we discovered that either Dopamine, Glutamate, GnRH-II, Neuropeptide Y and/or CGRP (10nM), as well as DR and GluR agonists, induced the following effects: 1.
Decreased significantly both %PD-1 + T cells and PD-1 expression level per cell (up to 60% decrease, within 1 h only); 2. Increased significantly the number of T cells that proliferated in the presence of HCC cells (up to 7 fold increase), 3. Increased significantly T cell killing of HCC cells (up to 2 fold increase). 4. Few non-conventional combinations of Neurotransmitters and Neuropeptides had surprising synergistic beneficial effects.
We conclude that Dopamine, Glutamate, GnRH-II, Neuropeptide Y and CGRP, alone or in combinations, can decrease % PD-1 + T cells and PD-1 expression per cell, in T cells of both healthy subjects and HCC patients, and increase their proliferation in response to HCC cells and killing of HCC cells. Yet, testing T cells of many more cancer patients is absolutely needed. Based on these findings and previous ones, we designed a novel "Personalized Adoptive Neuro-Immunotherapy", calling for validation of safety and efficacy in clinical trials.
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