一种用于克服非小细胞肺癌治疗中抗原异质性的多靶向 CAR-T 细胞平台
A Multi-Targeting Chimeric Antigen Receptor-T Cell Platform to Overcome Antigen Heterogeneity in the Treatment of Non-Small Cell Lung Cancer.
这些发现支持采用多靶点CAR-T 策略来应对NSCLC及可能其他实体瘤中的抗原异质性。
英文原题:A probiotic bacterium modulates antitumour γδ T-cell responses in lung cancer.
A probiotic bacterium modulates antitumour γδ T-cell responses in lung cancer.
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肠道菌群与癌症结局之间的联系已被认识十多年。
肠道微生物群与癌症预后之间的联系已被认识超过十年。近期多项研究表明,肠道微生物组与癌症T细胞检查点阻断治疗的疗效相关,这引发了通过摄入活微生物(益生菌)来利用这一效应的策略兴趣。益生菌丁酸梭菌MIYAIRI 588株(CBM588)可提高接受免疫检查点抑制剂(ICI)治疗的非小细胞肺癌和转移性肾细胞癌患者的缓解率和总生存期,但这一获益背后的机制仍不清楚。在此,我们展示CBM588孢子可诱导健康供者和肺癌患者外周血中出现一群Vγ9Vδ2 T细胞。这些T细胞的一个亚群通过butyrophilin 3A依赖机制对癌细胞系产生应答并直接将其裂解。在同时接受CBM588和检查点阻断治疗的患者中,使用来自38例患者队列的样本,外周血Vδ2+ T细胞表达活化标志物CD69的频率高于仅接受检查点阻断治疗的患者,且Vδ2+CD69+细胞的频率在开始CBM588治疗后增加(p = 0.0041)。接受ICI联合CBM588治疗患者的胸腔积液,尽管仅从3例个体中获取,也显示局部γδ T细胞区室从预期的Vδ1优势显著向Vδ2细胞转变,提示Vδ2细胞在肿瘤部位的募集或滞留发生了改变。在整个患者队列中,治疗后较高的CD69+Vδ2 T细胞频率与改善的生存和更有利的临床结局相关。这些发现提供了一个潜在机制,即通过调节肠道菌群,可能通过影响具有内在抗癌特性的免疫效应细胞来促进癌症预后。
The link between the intestinal microflora and cancer outcomes has been recognized for over a decade. Several recent studies have demonstrated that the gut microbiome is associated with the efficiency of T-cell checkpoint blockade therapy for cancer, raising interest in strategies to harness this effect via consumption of live microorganisms (probiotics). The probiotic Clostridium butyricum strain MIYAIRI 588 (CBM588) improves response rates and overall survival in patients receiving immune checkpoint inhibitor (ICI) therapy for non-small cell lung cancer and metastatic renal cell carcinoma but the mechanism underlying this benefit remains unclear. Here, we show that CBM588 spores induce a population of Vγ9Vδ2 T-cells from the peripheral blood of healthy donors and lung cancer patients. A subset of these T-cells responded to, and directly lysed, cancer cell lines via a butyrophilin 3A-dependent mechanism. In patients taking CBM588 alongside checkpoint blockade, using samples from a cohort of 38 patients, peripheral blood Vδ2 + T-cells expressed the activation marker CD69 more frequently than in those receiving checkpoint blockade alone and the frequency of Vδ2 + CD69 + cells increased following initiation of CBM588 treatment (p = 0.0041). Pleural effusions from patients receiving ICI with CBM588, although available from only three individuals, also showed a notable shift in the local γδ T-cell compartment from the expected Vδ1 dominance towards Vδ2 cells, suggesting altered recruitment or retention of Vδ2 cells at the tumour site. Across the patient cohort, higher post-treatment frequencies of CD69 + Vδ2 T-cells were associated with improved survival and more favourable clinical outcomes. These findings provide a potential mechanism by which manipulation of the intestinal microflora might contribute to cancer prognosis through effects on immune effector cells with intrinsic anticancer properties.
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