基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Characterization of Immunoactive and Immunotolerant CD4+ T Cells in Breast Cancer by Measuring Activity of Signaling Pathways That Determine Immune Cell Function.
Characterization of Immunoactive and Immunotolerant CD4+ T Cells in Breast Cancer by Measuring Activity of Signaling Pathways That Determine Immune Cell Function.
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信号通路检测可用于定量测量体外和体内淋巴细胞亚群的功能性免疫应答状态。临床结果提示,在原发性乳腺癌中,CD4+ T 细胞的适应性免疫应答可能频繁被免疫抑制性 Treg 细胞替代,从而可能导致对检查点抑制的耐药。体外研究结果提示,这由来自癌组织的可溶性因子介导。对 TIL 和/或血液样本进行信号通路活性分析可能改善对检查点抑制剂应答的预测和监测,并可能提供新的治疗靶点(例如 Notch 通路)以降低对免疫治疗的耐药。
STP活性评分在以下Affymetrix表达微阵列数据上测量:(1)静息和免疫激活的CD4+ T细胞;(2)CD4+ T辅助1(Th1)和T辅助2(Th2)细胞;(3)CD4+ Treg细胞;(4)与乳腺癌组织上清液孵育的免疫激活CD4+ T细胞;(5)来自10名原发性乳腺癌患者血液、淋巴结和癌组织的CD4+ T细胞。
CD4+ T 细胞活化诱导了 PI3K、NF B、JAK-STAT1/2 和 JAK-STAT3 STP 活性。Th1、Th2 和 Treg 细胞各自表现出典型的通路活性谱。将活化的 CD4+ T 细胞与肿瘤上清液共孵育后,PI3K、NF B 和 JAK-STAT3 通路活性降低,TGF 通路活性升高,呈现免疫耐受状态的特征。免疫抑制性 Treg 细胞的特征是高 NF B、JAK-STAT3、TGF 和 Notch 通路活性评分。在一部分原发性乳腺癌患者的肿瘤浸润组织和血液 CD4+ T 细胞中,鉴定出免疫耐受性通路活性谱,其与免疫抑制性 Treg 细胞中的通路活性谱最为相似。
STP activity scores were measured on Affymetrix expression microarray data of the following: (1) resting and immune-activated CD4+ T cells; (2) CD4+ T-helper 1 (Th1) and T-helper 2 (Th2) cells; (3) CD4+ Treg cells; (4) immune-activated CD4+ T cells incubated with breast cancer tissue supernatants; and (5) CD4+ T cells from blood, lymph nodes, and cancer tissue of 10 primary breast cancer patients.
CD4+ T cell activation induced PI3K, NF B, JAK-STAT1/2, and JAK-STAT3 STP activities. Th1, Th2, and Treg cells each showed a typical pathway activity profile. The incubation of activated CD4+ T cells with cancer supernatants reduced the PI3K, NF B, and JAK-STAT3 pathway activities and increased the TGF pathway activity, characteristic of an immunotolerant state. Immunosuppressive Treg cells were characterized by high NF B, JAK-STAT3, TGF , and Notch pathway activity scores. An immunotolerant pathway activity profile was identified in CD4+ T cells from tumor infiltrate and blood of a subset of primary breast cancer patients, which was most similar to the pathway activity profile in immunosuppressive Treg cells.
Signaling pathway assays can be used to quantitatively measure the functional immune response state of lymphocyte subsets in vitro and in vivo. Clinical results suggest that, in primary breast cancer, the adaptive immune response of CD4+ T cells may be frequently replaced by immunosuppressive Treg cells, potentially causing resistance to checkpoint inhibition. In vitro study results suggest that this is mediated by soluble factors from cancer tissue. Signaling pathway activity analysis on TIL and/or blood samples may improve response prediction and monitoring response to checkpoint inhibitors and may provide new therapeutic targets (e.g., the Notch pathway) to reduce resistance to immunotherapy.
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