CD81 通过阻断 CD274/PD-L1 的选择性自噬降解驱动放射抵抗性胶质母细胞瘤的免疫逃逸
CD81 drives immune evasion in radioresistant glioblastoma by blocking selective autophagic degradation of CD274/PD-L1.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Tumor and immune cell distribution in the tumor core and outer part of glioblastoma, IDH wildtype.
Tumor and immune cell distribution in the tumor core and outer part of glioblastoma, IDH wildtype.
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本研究强调了免疫微环境的空间差异,这对未来的免疫治疗策略具有潜在意义。
IDH-野生型胶质母细胞瘤是成人中最常见且最具恶性的原发性脑肿瘤。肿瘤细胞浸润脑实质,导致无法完全切除并引起进展。免疫疗法效果有限,但关于IDH-野生型胶质母细胞瘤外部区域(即肿瘤细胞开始浸润脑组织的过渡区以及弥漫浸润脑实质的肿瘤周边区)中免疫细胞频率和类型的信息甚少。我们旨在量化覆盖这些区域的IDH-野生型胶质母细胞瘤中免疫细胞的类型和分布。
我们建立了一个包含54例IDH野生型胶质母细胞瘤的队列,组织来自肿瘤核心、过渡区和周边区。如果大多数肿瘤细胞在P53免疫组化染色中呈阳性,则纳入患者。组织切片进行多重免疫组化,并用P53(肿瘤)、FOXP3(调节性T细胞)、CD8(细胞毒性T细胞)和IBA1(小胶质细胞/巨噬细胞)染色。训练了一个基于软件的分类器来计数细胞。
CD8+、FOXP3+和IBA1+细胞的密度在核心区显著高于外周区,在过渡区也显著高于外周区。然而,CD8+、FOXP3+和IBA1+细胞/肿瘤细胞比值从核心区到过渡区升高,CD8+和IBA1+细胞/肿瘤细胞比值到外周区再次升高。核心区具有最高的FOXP3+/CD8+比值,以及最高比例的肿瘤细胞与IBA1+细胞、CD8+细胞和FOXP3+细胞邻近。
Glioblastoma, IDH-wildtype is the most frequent and malignant primary brain tumor in adults. Tumor cells infiltrate the brain parenchyma, preventing complete resection and causing progression. Immune therapies have limited effect, but little is known about the frequency and type of immune cells in the outer part of glioblastoma, IDH-wildtype, where tumor cells start to infiltrate the brain (transition zone) and diffusely infiltrate the brain parenchyma (tumor periphery). We aimed to quantify the type and distribution of immune cells in glioblastomas, IDH-wildtype covering these areas.
We established a cohort of 54 glioblastomas, IDH-wildtype containing tissue from the tumor core, transition zone, and periphery. Patients were included if most tumor cells were positive in immunohistochemical staining for P53. Tissue sections were subject to multiplex immunohistochemistry and stained with P53 (tumor), FOXP3 (regulatory T cells), CD8 (cytotoxic T cells), and IBA1 (microglia/macrophages). A software-based classifier was trained to count the cells.
The densities of CD8+, FOXP3+, and IBA1+ cells were significantly higher in the core than in the periphery and in the transition zone than in the periphery. However, the CD8+, FOXP3+, and IBA1+ cell/tumor cell ratio increased from the core to the transition zone, and the CD8+ and IBA1+ cell/tumor cell ratio increased again to the periphery. The core had the highest FOXP3+/CD8+ ratio, as well as the highest fraction of tumor cells with IBA1+ cells, CD8+ cells, and FOXP3+ cells in proximity.
This study highlights spatial differences in the immune microenvironment with potential implications for future immune-therapeutic strategies.
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