研究概要
具有减弱抗病毒先天免疫反应的载体MSCs——以低MAVS表达和减弱的促炎信号为特征——为溶瘤病毒的全身递送提供了治疗优势。
中文摘要
我们之前的临床数据显示,自体间充质基质细胞(MSCs)可作为载体,在儿童晚期癌症中系统性递送溶瘤腺病毒,这种疗法被称为Celyvir。尽管实现了临床缓解,但治疗反应存在异质性。在此,我们试图确定载体MSCs的固有生物学特征是否影响治疗结果。对来自应答者和非应答者患者的MSCs进行转录组分析,以识别根据临床反应差异调节的通路。在基线和腺病毒感染后,分析MSCs和Celyvir产品中MAVS(线粒体抗病毒信号)的表达、NF-κB激活以及促炎细胞因子的分泌。在根据治疗反应差异调节的MSCs通路中,MAVS被确定为相关调节因子,在应答者患者的Celyvir产品中表达显著降低。一致地,应答者的MSCs和Celyvir产品在基线和感染后表现出NF-κB激活减少,并分泌显著较低水平的促炎细胞因子。为验证这些发现,用MAVS缺陷(MAVS -/-)MSCs制备的鼠源Celyvir作为“沉默细胞”模型治疗免疫 competent 小鼠。因此,与野生型MSCs相比,使用MAVS -/- MSCs的鼠源Celyvir治疗显著增强了抗肿瘤疗效。用鼠源Celyvir MAVS -/-治疗的动物肿瘤显示T细胞和NK细胞浸润增加。总之,具有减弱的抗病毒先天免疫反应的载体MSC——其特征为低MAVS表达和减弱的促炎信号传导——为溶瘤病毒的全身递送提供了治疗优势。这些发现支持将“沉默”MSC(自发或诱导的)纳入下一代临床试验,旨在优化基于细胞的溶瘤病毒治疗。
展开英文摘要原文
Our previous clinical data showed that autologous mesenchymal stromal cells (MSCs) can be used as carriers for the systemic delivery of oncolytic adenoviruses in children with advanced cancers, a therapy known as Celyvir. Despite achieving clinical remissions, treatment responses have been heterogeneous. Here, we sought to determine whether intrinsic biological characteristics of carrier MSCs influence therapeutic outcomes. Transcriptomic profiling was performed on MSCs from responder and non-responder patients to identify pathways differentially regulated according to clinical response. Expression of MAVS (mitochondrial antiviral signaling), NF-κB activation, and secretion of pro-inflammatory cytokines were analyzed in MSCs and Celyvir products both at baseline and after adenoviral infection. Among the pathways differentially regulated in MSCs according to treatment response, MAVS was identified as a relevant modulator, showing significantly lower expression in Celyvir products from responder patients. Consistently, MSCs and Celyvir products from responders exhibited reduced NF-κB activation and secreted significantly lower levels of pro-inflammatory cytokines at baseline and post-infection. To validate these findings, immunocompetent mice were treated with murine Celyvir prepared using MAVS-deficient (MAVS -/- ) MSCs as a model of "silent cells". Accordingly, murine Celyvir treatment using MAVS -/- MSCs significantly enhanced antitumor efficacy compared to wild-type MSCs. Tumors from animals treated with murine Celyvir MAVS -/- displayed increased infiltration of T cells and NK cells. In summary, carrier MSCs with a diminished antiviral innate immune response-characterized by low MAVS expression and attenuated pro-inflammatory signaling-provide a therapeutic advantage for systemic delivery of oncolytic viruses. These findings support the incorporation of "silent" MSCs, spontaneous or induced, into next-generation clinical trials aiming to optimize cell-based oncolytic virotherapy.
论文信息
- 作者
- Morales-Molina A、Franco-Luzón L、Garcia-Rodriguez P、González-Murillo A、García-Castro J、Ramírez M
- 第一作者单位
- Cellular Biotechnology Unit, Instituto de Salud Carlos III, Ctra. Majadahonda-Pozuelo, Km 2, 28220, Majadahonda, Madrid, Spain.Spain
- 通讯作者单位
- Pediatric Hematology & Oncology, Servicio de Oncohematología, Hospital Infantil Universitario Niño Jesús, Av. Menéndez Pelayo, 65, 28009, Madrid, Spain. manuel.ramirez@salud.madrid.org.Spain
- 文献类型
- 读者来信
- 期刊
- Experimental hematology & oncology2026 Apr 2