γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
我们的发现表明,活化的γδ T细胞可能是SCLC治疗的有价值靶点。
英文原题:Personalized tumor-loaded monocyte-derived dendritic cell vaccination in combination with atezolizumab as maintenance treatment in extensive-stage small cell lung cancer (ES-SCLC): phase Ib-II VENEZOLUNG trial.
DC免疫联合atezolizumab维持治疗,在标准化疗联合atezolizumab治疗后,耐受性良好。其临床活性在本研究中无法确定,因为它是作为维持治疗给药的;然而,观察到的长期生存者比例提示可能存在获益。我们的发现表明cDC1s在介导长期生存者的抗肿瘤活性中发挥关键作用。
尽管已将抗程序性死亡配体1(PD-L1)抗体atezolizumab纳入一线化疗方案,广泛期小细胞肺癌(ES-SCLC)患者的生存率仍然很低。鉴于树突状细胞(DCs)在调节抗程序性细胞死亡蛋白1(PD-1)抗体反应中的作用,开发基于DCs的疫苗,并评估DCs表型修饰如何影响治疗效果,是一个有前景的方向。
这是一项单臂、Ib/II期、开放标签临床试验,研究将自体肿瘤裂解物脉冲DC皮内注射与静脉注射atezolizumab联合作为ES-SCLC患者维持治疗的安全性和活性。白细胞分离术后,单核细胞在体外分化为成熟DC,并负载经照射的自体肿瘤裂解物。在标准诱导治疗(四周期卡铂、依托泊苷和atezolizumab)后,患者接受最多六剂成熟DC皮内注射,同时每3周静脉注射atezolizumab 1,200 mg,直至疾病进展。
共入组20例患者,其中6例伴有脑转移。18例患者接受了DC疫苗治疗,中位接种3剂(范围1-6)。大多数3-4级治疗相关不良事件为血液学毒性,且与化疗相关。DC疫苗耐受性良好,仅出现注射部位1-2级一过性皮肤刺激。在18例可评估患者中,17例(94.4%)达到客观缓解。中位随访31.4个月后,2年无进展生存率(PFS 2y)为20%(95% CI 6.4%至39.1%),中位总生存期(OS)为11.2个月(95% CI 6.3至26.0),3年OS率为22.5%(95% CI 6.8%至43.6%)。6例患者获得长期生存(中位30.5个月,范围23.4-36.2)。化疗联合atezolizumab后,常规1型DC(cDC1s)XCR1+及干细胞样祖细胞耗竭型(CXCR5+PD-1+)CD8+T细胞的扩增与PFS改善相关(HR 0.94,95% CI 0.90至0.99;HR 0.59,95% CI 0.39至0.89)。
BACKGROUND: Despite the incorporation of atezolizumab, an anti-programmed death-ligand 1 (PD-L1) antibody, into first-line chemotherapy regimen, survival in patients with extensive-stage small cell lung cancer (ES-SCLC) remains poor. Given the role of dendritic cells (DCs) in modulating responses to anti-programmed cell death protein 1 (PD-1) antibodies, a promising avenue is the development of vaccines based on DCs, together with the evaluation of how DC phenotypic modifications shape treatment efficacy. MATERIALS AND METHODS: This is a single-arm, phase Ib/II, open-label clinical trial investigating the safety and activity of combining autologous tumor lysate pulsed DCs administered intradermally with intravenous atezolizumab as maintenance therapy for patients with ES-SCLC. Following leukapheresis, monocytes were differentiated ex vivo into mature DCs and loaded with irradiated autologous tumor lysate. After standard induction therapy (four cycles of carboplatin, etoposide, and atezolizumab), patients received up to six doses of mature DCs intradermally, along with intravenous atezolizumab 1,200 mg every 3 weeks, until disease progression. RESULTS: 20 patients were enrolled, including six patients with brain metastases. 18 patients received DC vaccination, with a median of three doses (range 1-6). Most grade 3-4 treatment-related adverse events were hematological and related to chemotherapy. DC vaccination was well tolerated, with only grade 1-2 transient skin irritation at the injection site. Among 18 evaluable patients, 17 (94.4%) achieved an objective response. After a median follow-up of 31.4 months, progression-free survival at 2 years (PFS 2y ) was 20% (95% CI 6.4% to 39.1%), median overall survival (OS) 11.2 months (95% CI 6.3 to 26.0) and OS 3y 22.5% (95% CI 6.8% to 43.6%). Six patients achieved long survival (median 30.5 months, range 23.4-36.2). Expansion of conventional type DC1 (cDC1s) XCR1 + and stem-like progenitor-exhausted (CXCR5 + PD-1 + ) CD8 + T cells following chemotherapy plus atezolizumab was associated with improved PFS (HR 0.94, 95% CI 0.90 to 0.99 and HR 0.59, 95% CI 0.39 to 0.89). CONCLUSION: DC immunization combined with atezolizumab maintenance following standard chemotherapy plus atezolizumab treatment is well tolerated. Its clinical activity cannot be definitively determined in this study, as it was administered as maintenance therapy; however, the observed rate of long-term survivors suggests a potential benefit. Our findings suggest a pivotal role for cDC1s in mediating the antitumor activity in long-term survivors. TRIAL REGISTRATION NUMBER: NCT04487756.
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