目的研究细胞程序性死亡配体-1(programmed cell death protein ligand-1,PD-L1)功能抑制调控免疫活化影响ApoE^(-/-)小鼠动脉粥样硬化发生发展的机制。方法将24只ApoE^(-/-)小鼠随机分为正常组,高脂组和高脂^(+)抗PD-L1单抗组,通过高...目的研究细胞程序性死亡配体-1(programmed cell death protein ligand-1,PD-L1)功能抑制调控免疫活化影响ApoE^(-/-)小鼠动脉粥样硬化发生发展的机制。方法将24只ApoE^(-/-)小鼠随机分为正常组,高脂组和高脂^(+)抗PD-L1单抗组,通过高胆固醇饲料喂养建立动脉粥样硬化(atherosclerosis)模型。实验动物饲养70 d后,分离各组实验动物血管(主动脉根部至腹主动脉)及肝脏组织,进行油红O染色;HE染色检测肝组织病理改变;ELISA检测血清中总胆固醇(CHO)、甘油三酯(TG)、高密度脂蛋白(HDL-c)、低密度脂蛋白(LDL-c)和炎症因子(IFN-γ、TNF-α、IL-1β)含量。流式细胞计数检测肝脏淋巴细胞(CD4^(+)、CD8^(+)、CD4^(+)IFN-γ^(+)和CD8^(+)IFN-γ^(+)T细胞)。RT-PCR检测肝脏组织IFN-γ、TNF-α、IL-1β、CD4和CD8表达。结果与高脂组比较,给予抗PD-L1单抗后促血管壁及肝脏脂质累积并上调血清及肝组织CHO、TG、LDL-c和HDL-c含量。高脂饲养条件下给予抗PD-L1单抗促血清和肝组织谷丙转氨酶(GPT)和谷草转氨酶(GOT)含量升高,但是对碱性磷酸酶(AKP)含量没有影响。高脂饲养条件下给予抗PD-L1单抗促血清和肝脏组织IFN-γ、TNF-α和IL-1β含量升高。高脂饲养条件下给予抗PD-L1单抗抑制CD4表达及促CD8表达。高脂饲养条件下给予抗PD-L1单抗促肝脏CD8^(+)T和CD8^(+)IFN-γ^(+)T细胞活化,但是对CD4^(+)IFN-γ^(+)T细胞活化没有影响。结论高脂饲养条件下给予抗PD-L1单抗通过活化肝脏CD8^(+)IFN-γ^(+)T细胞损伤肝脏功能加重动脉粥样硬化。展开更多
Objective:The expression of programmed death 1(PD-1)on CD8^(+)T cells is associated with their activation and exhaustion,while CD57 serves as a senescence marker.The impact of PD-1^(+)and CD57^(+)CD8^(+)T cells on the...Objective:The expression of programmed death 1(PD-1)on CD8^(+)T cells is associated with their activation and exhaustion,while CD57 serves as a senescence marker.The impact of PD-1^(+)and CD57^(+)CD8^(+)T cells on the prognosis of patients with advanced high-grade serous ovarian cancer(HGSOC)remain unclear.Methods:We assessed the percentages of PD-1^(+)and CD57^(+)CD8^(+)T cells in tumor-infiltrating lymphocytes(TILs,n=85)and tumor ascites lymphocytes(TALs,n=87)using flow cytometry.The optimal cutoffs for these markers in TILs and TALs were determined through the log-rank maximization method.Gene expression analysis elucidated the tumor immune microenvironment(TIME,n=36).Results:Patients with higher PD-1^(+)CD8^(+)TILs(>87.8%)exhibited longer platinum-free interval(PFI)and overall survival(OS).In contrast,those with elevated CD57^(+)CD8^(+)TALs(>28.69%)were more likely to experience chemotherapy and had lower complete remission rates,shorter PFI and OS.PD-1^(+)CD8^(+)TILs are primarily displayed an effector memory state with strong proliferative and secretory capabilities.Approximately 50%of CD57^(+)CD8^(+)TALs were terminally differentiated,exhibiting significantly impaired proliferation.Based on the proportions of PD-1^(+)CD8^(+)TILs and CD57^(+)CD8^(+)TALs,patients were categorized into good,median and poor prognosis groups,with median PFI of 47.78,27.29 and 11.96 months,respectively(P<0.0001).Median OS for these groups was not reach,49.23 and 30.92 months,respectively(P<0.0001).Patients with poor prognosis exhibit significantly reduced CD8^(+)T cell proportion and increased M2 macrophage in the TIME,alongside downregulation of multiple T cell activation-related pathways.Conclusions:Lower levels of PD-1^(+)CD8^(+)TILs and higher CD57^(+)CD8^(+)TALs,assessed prior to treatment,correlated with poor prognosis and suppressive TIME in advanced HGSOC.展开更多
Exhausted T cell(Tex)is a specific state of T cell dysfunction,in which these T cells gradually lose their effector function and change their phenotype during chronic antigen stimulation.The enrichment of exhausted CD...Exhausted T cell(Tex)is a specific state of T cell dysfunction,in which these T cells gradually lose their effector function and change their phenotype during chronic antigen stimulation.The enrichment of exhausted CD8^(+)T cell(CD8^(+)Tex)in the tumor microenvironment is one of the important reasons leading to the poor efficacy of immunotherapy.Recent studies have reported many reasons leading to the CD8^(+)T cell exhaustion.In addition to cancer cells,myeloid cells can also contribute to T cell exhaustion via many ways.In this review,we discuss the history of the concept of exhaustion,CD8^(+)T cell dysfunction states,the heterogeneity,origin,and characteristics of CD8^(+)Tex.We then focus on the effects of myeloid cells on CD8^(+)Tex,including tumor-associated macrophages(TAMs),dendritic cells(DCs)and neutrophils.Finally,we systematically summarize current strategies and recent advancements in therapies reversing and CD8^(+)T cell exhaustion.展开更多
文摘目的研究细胞程序性死亡配体-1(programmed cell death protein ligand-1,PD-L1)功能抑制调控免疫活化影响ApoE^(-/-)小鼠动脉粥样硬化发生发展的机制。方法将24只ApoE^(-/-)小鼠随机分为正常组,高脂组和高脂^(+)抗PD-L1单抗组,通过高胆固醇饲料喂养建立动脉粥样硬化(atherosclerosis)模型。实验动物饲养70 d后,分离各组实验动物血管(主动脉根部至腹主动脉)及肝脏组织,进行油红O染色;HE染色检测肝组织病理改变;ELISA检测血清中总胆固醇(CHO)、甘油三酯(TG)、高密度脂蛋白(HDL-c)、低密度脂蛋白(LDL-c)和炎症因子(IFN-γ、TNF-α、IL-1β)含量。流式细胞计数检测肝脏淋巴细胞(CD4^(+)、CD8^(+)、CD4^(+)IFN-γ^(+)和CD8^(+)IFN-γ^(+)T细胞)。RT-PCR检测肝脏组织IFN-γ、TNF-α、IL-1β、CD4和CD8表达。结果与高脂组比较,给予抗PD-L1单抗后促血管壁及肝脏脂质累积并上调血清及肝组织CHO、TG、LDL-c和HDL-c含量。高脂饲养条件下给予抗PD-L1单抗促血清和肝组织谷丙转氨酶(GPT)和谷草转氨酶(GOT)含量升高,但是对碱性磷酸酶(AKP)含量没有影响。高脂饲养条件下给予抗PD-L1单抗促血清和肝脏组织IFN-γ、TNF-α和IL-1β含量升高。高脂饲养条件下给予抗PD-L1单抗抑制CD4表达及促CD8表达。高脂饲养条件下给予抗PD-L1单抗促肝脏CD8^(+)T和CD8^(+)IFN-γ^(+)T细胞活化,但是对CD4^(+)IFN-γ^(+)T细胞活化没有影响。结论高脂饲养条件下给予抗PD-L1单抗通过活化肝脏CD8^(+)IFN-γ^(+)T细胞损伤肝脏功能加重动脉粥样硬化。
基金supported by National Natural Science Foundation of China(No.82372888)National Key Research and Development Program of China(No.2022YFC2704000)+6 种基金National Natural Science Foundation of China(No.82273383)the Capital’s Funds for Health Improvement and Research(No.2020-2-4098)Youth program of Beijing Municipal Natural Science Foundation(No.7204328)Clinical Medicine Plus X-Young Scholars Project,Peking University(No.PKU2022LCXQ020)Key Clinical Project of Peking University Third Hospital(No.BYSY2022050)Key Clinical Projects of Peking University Third Hospital(No.BYSYZD2021006)Key Clinical Projects of Peking University Third Hospital(No.BYSYZD2019034).
文摘Objective:The expression of programmed death 1(PD-1)on CD8^(+)T cells is associated with their activation and exhaustion,while CD57 serves as a senescence marker.The impact of PD-1^(+)and CD57^(+)CD8^(+)T cells on the prognosis of patients with advanced high-grade serous ovarian cancer(HGSOC)remain unclear.Methods:We assessed the percentages of PD-1^(+)and CD57^(+)CD8^(+)T cells in tumor-infiltrating lymphocytes(TILs,n=85)and tumor ascites lymphocytes(TALs,n=87)using flow cytometry.The optimal cutoffs for these markers in TILs and TALs were determined through the log-rank maximization method.Gene expression analysis elucidated the tumor immune microenvironment(TIME,n=36).Results:Patients with higher PD-1^(+)CD8^(+)TILs(>87.8%)exhibited longer platinum-free interval(PFI)and overall survival(OS).In contrast,those with elevated CD57^(+)CD8^(+)TALs(>28.69%)were more likely to experience chemotherapy and had lower complete remission rates,shorter PFI and OS.PD-1^(+)CD8^(+)TILs are primarily displayed an effector memory state with strong proliferative and secretory capabilities.Approximately 50%of CD57^(+)CD8^(+)TALs were terminally differentiated,exhibiting significantly impaired proliferation.Based on the proportions of PD-1^(+)CD8^(+)TILs and CD57^(+)CD8^(+)TALs,patients were categorized into good,median and poor prognosis groups,with median PFI of 47.78,27.29 and 11.96 months,respectively(P<0.0001).Median OS for these groups was not reach,49.23 and 30.92 months,respectively(P<0.0001).Patients with poor prognosis exhibit significantly reduced CD8^(+)T cell proportion and increased M2 macrophage in the TIME,alongside downregulation of multiple T cell activation-related pathways.Conclusions:Lower levels of PD-1^(+)CD8^(+)TILs and higher CD57^(+)CD8^(+)TALs,assessed prior to treatment,correlated with poor prognosis and suppressive TIME in advanced HGSOC.
基金supported by grants from the National Key Research and Development Program of China(No.2022YFA1304504)National Natural Science Foundation of China(No.82293633 and 82270180)。
文摘Exhausted T cell(Tex)is a specific state of T cell dysfunction,in which these T cells gradually lose their effector function and change their phenotype during chronic antigen stimulation.The enrichment of exhausted CD8^(+)T cell(CD8^(+)Tex)in the tumor microenvironment is one of the important reasons leading to the poor efficacy of immunotherapy.Recent studies have reported many reasons leading to the CD8^(+)T cell exhaustion.In addition to cancer cells,myeloid cells can also contribute to T cell exhaustion via many ways.In this review,we discuss the history of the concept of exhaustion,CD8^(+)T cell dysfunction states,the heterogeneity,origin,and characteristics of CD8^(+)Tex.We then focus on the effects of myeloid cells on CD8^(+)Tex,including tumor-associated macrophages(TAMs),dendritic cells(DCs)and neutrophils.Finally,we systematically summarize current strategies and recent advancements in therapies reversing and CD8^(+)T cell exhaustion.
文摘目的研究长链非编码RNA(long non-coding RNA,LncRNA)LINC01137在非小细胞肺癌(nonsmall cell lung cancer,NSCLC)免疫逃逸中的生物学功能及其潜在的调节机制。方法采集24例健康志愿者和24例NSCLC患者血液样本,并收集NSCLC肿瘤组织和癌旁组织检测LINC01137水平。利用Starbase数据库预测LINC01137与miR-22-3p的结合位点,荧光素酶报告基因分析进行验证。采用A549细胞来源的外泌体和/或sh-LINC01137干扰序列转染A549细胞,检测细胞增殖和侵袭能力;收集转染后的细胞上清液培养CD8^(+)T细胞,检测CD8^(+)T细胞耗竭标志物干扰素-γ(interfereron-γ,IFN-γ)、肿瘤坏死因子-α(tumor necrosis factor-α,TNF-α)、颗粒霉素B(granzyme B)和白细胞介素-2(interleukin-2,IL-2)水平,以及PD-1+Tim3^(+)CD8^(+)T细胞百分比。采用外泌体和/或miR-22-3p模拟物(miR-22-3p mimic)转染CD8^(+)T细胞,检测PD-1蛋白水平。结果与癌旁组织相比,NSCLC肿瘤组织中LINC01137表达(3.357±0.548 vs 1.011±0.371)明显升高;与健康志愿者相比,NSCLC患者外周血LINC01137表达(3.216±0.342 vs 1.007±0.313)亦明显升高,差异具有统计学意义(t=-17.367,-17.147,均P<0.001)。肿瘤组织LINC01137表达与外周血中LINC01137表达呈正相关(r=0.755,P<0.05)。在A549细胞来源的外泌体中LINC01137显著富集。与Exo+sh-NC组相比,Exo+sh-LINC01137组细胞活力(65.852%±4.715%vs 100.153%±11.934%)及细胞侵袭(21.464%±3.481%vs 43.126%±1.447%)能力显著降低,差异具有统计学意义(t=4.630,9.953,均P<0.01)。NSCLC患者外周血中LINC01137表达和CD8^(+)T细胞百分比呈负相关(r=-0.520,P<0.05)。与Exo+sh-NC组相比,Exo+sh-LINC01137组IFN-γ(3865.314±543.852 pg/ml vs 1786.971±105.982 pg/ml),TNF-α(4631.930±510.715pg/ml vs 1973.242±379.623pg/ml),Granzyme B(3876.496±312.438pg/ml vs 1879.439±287.584pg/ml)和IL-2 mRNA水平(3.286±0.437 vs 1.015±0.314)升高,PD-1+Tim3^(+)CD8^(+)T细胞百分比(7.680%±2.185%vs 18.952%±3.216%)降低,差异具有统计学意义(t=-6.497,-7.237,-8.146,-7.310,5.021,均P<0.01)。miR-22-3p是LINC01137的靶基因。与Exo+NC mimic组相比,Exo+miR-22-3p组PD-1蛋白水平(0.384±0.087 vs 1.003±0.147)显著降低,差异有统计学意义(t=6.277,P<0.01)。结论NSCLC患者肿瘤组织及外周血中LINC01137表达显著上调;NSCLC细胞来源的外泌体中LINC01137通过靶向CD8^(+)T细胞中miR-22-3p并抑制其表达,诱导CD8^(+)T细胞耗竭,促进NSCLC细胞免疫逃逸。