帕博利珠单抗联合二甲双胍治疗转移性头颈部癌的 II 期可行性研究
A Phase II Feasibility Study Combining Pembrolizumab and Metformin in Patients with Metastatic Head and Neck Cancer.
二甲双胍联合帕博利珠单抗耐受性良好,仅出现轻度胃肠道不良事件,并展现出有前景的活性,值得在随机试验中进一步研究。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Reconstituting the head and neck tumor microenvironment with air-liquid interface organoids.
Reconstituting the head and neck tumor microenvironment with air-liquid interface organoids.
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采用 ALI 法成功构建了体外 HNC 免疫微环境模型。该模型在体外一段时间内维持了原肿瘤组分的比例和结构,如 TIL(肿瘤浸润淋巴细胞)和癌相关成纤维细胞,为探索 HNC 细胞与多种细胞集落之间复杂的串扰提供了实验平台。本研究初步验证了利用 ALI 类器官模型评估免疫治疗药物治疗 HNC 疗效的可行性,提供了可靠稳定的临床前模型,并为 HNC 个性化精准医学的药物筛选平台提供了新思路。
利用气液界面(ALI)培养技术,建立了一种能够重建肿瘤免疫微环境(TME)的患者来源头颈癌类器官(HNCO)模型。TIL(肿瘤浸润淋巴细胞)(TILs)和癌相关成纤维细胞(CAFs)可在该模型中维持一定时间。该模型被证实可模拟PD-1/PD-L1检查点阻断,为头颈癌(HNC)相关免疫治疗药物疗效的验证和临床预测提供了可靠的体外模型。
获取新鲜肿瘤组织样本以建立ALI头颈癌类器官(ALI-HNCO)模型。使用组织形态学分析验证类器官的肿瘤学特征及其与亲本肿瘤的同源性。使用免疫荧光染色检测类器官中的T淋巴细胞和成纤维细胞。经pembrolizumab(一种PD-1抑制剂)处理后,使用酶联免疫吸附试验(ELISA)测定细胞因子干扰素-γ(IFN-γ)的分泌水平,并使用流式细胞术分析类器官免疫微环境中CD8+/CD4+分布比例的变化,以及CD69+免疫细胞亚群的表达。使用FVS染色试验验证细胞毒性T细胞对肿瘤细胞的杀伤作用。
类器官与亲本肿瘤组织的免疫荧光比较显示,CD3+淋巴细胞和SMA+细胞也存在于活性类器官组织中。约17.86%(5/28)的ALI-HNCO模型能够扩增特异性反应性CD8+ T淋巴细胞,产生肿瘤特异性和细胞毒性。
Fresh tumor tissue samples were obtained to establish an ALI head and neck cancer organoid (ALI-HNCO) model. The oncological characteristics of the organoids and their homology with parental tumors were verified using histomorphological analysis. T lymphocytes and fibroblasts in the organoids were detected using immunofluorescence staining. After treating with pembrolizumab (a PD-1 inhibitor), the secreted levels of the cytokine interferon-γ (IFN-γ) were measured using an enzyme-linked immunosorbent assay (ELISA), and changes in the ratio of CD8+/CD4+ distributed in the immune microenvironment of the organoid, as well as the expression of CD69+ immune cell subsets, were analyzed using flow cytometry. The FVS staining assay was used to verify the killing of tumor cells by cytotoxic T cells.
The comparison of immunofluorescence in organoids and parental tumor tissues showed that CD3+ lymphocytes and SMA+ cells were also present in the active organoid tissues. Approximately 17.86% (5/28) of the ALI-HNCO model could amplify specific reactive CD8+ T lymphocytes, generating tumor specificity and cytotoxicity. DISCUSSION: An in vitro HNC immune microenvironment model was successfully constructed using the ALI method. This model maintained the proportions and structures of the components of the original tumor, such as tumor-infiltrating lymphocytes and cancer-associated fibroblasts, for a period of time in vitro , providing an experimental platform for exploring the complex crosstalk between HNC cells and multiple cell colonies. This study preliminarily validated the feasibility of using ALI organoid models to evaluate the efficacy of immunotherapy drugs in treating HNC, providing a reliable and stable preclinical model, and new ideas for drug screening platforms for personalized precision medicine in HNC.
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