通过靶向肿瘤相关巨噬细胞的嵌合受体工程化溶瘤病毒重振内源性抗肿瘤免疫
Rejuvenating endogenous antitumor immunity via a chimeric receptor-engineered oncolytic virus targeting tumor-associated macrophages.
我们的研究结果定义了一个精准溶瘤平台,该平台能够解除TAM介导的免疫抑制,同时增强适应性免疫,为癌症免疫治疗提供了一条有前景的转化途径。
英文原题:Mesenchymal stem cell origin contributes to the antitumor effect of oncolytic virus carriers.
溶瘤病毒疗法作为一种癌症治疗手段展现出前景;然而,其全身性应用受到抗体中和的阻碍。
溶瘤病毒疗法作为一种癌症治疗方法显示出前景,但抗体中和作用限制了其全身应用。利用间充质干细胞(MSC)作为溶瘤病毒(OV)载体细胞可克服这一问题。然而,MSC来源是否影响抗肿瘤效应尚不清楚。本研究显示,MSC来源会影响OV负载MSC的迁移能力和溶瘤活性。在不同组织来源的人MSC中,骨髓来源MSC(BMMSC)在二维和三维MSC-癌细胞共培养模型中向癌细胞迁移能力较强。综合基因表达和基于基因本体(GO)的功能分析提示,参与细胞迁移和细胞因子应答的基因会影响BMMSC对癌症的特异性趋向。此外,MSC来源还会影响其对OV的易感性,包括细胞毒性耐受和OV从MSC中释放的能力。与单独递送OV相比,MSC介导的OV递送显著增加病毒扩散和抗肿瘤活性;在OV负载MSC中,OV负载BMMSC的抗肿瘤作用最强。我们的结果为利用载体细胞开展癌症基因治疗提供了有前景的见解,有助于为MSC介导的OV疗法选择适当的MSC来源。
Oncolytic virotherapy shows promise as a cancer treatment approach; however, its systemic application is hindered by antibody neutralization. This issue can be overcome by using mesenchymal stem cells (MSCs) as carrier cells for oncolytic viruses (OVs). However, it remains elusive whether MSC source influences the antitumor effect. Here, we demonstrate that their source affects the migration ability and oncolytic activity of OV-loaded MSCs. Among human MSCs derived from different tissues, bone marrow-derived MSCs (BMMSCs) showed a high migration ability toward cancer cells in two- and three-dimensional MSC-cancer cell co-culture models. Comprehensive gene expression and Gene Ontology-based functional analyses suggested that genes involved in cell migration and cytokine response influence the cancer-specific tropism of BMMSCs. Furthermore, MSC origin affected the susceptibility to OVs, including cytotoxicity resistance and OV release from MSCs. MSC-mediated OV delivery significantly increased the viral spread and antitumor activity compared with delivery by OVs alone, and OV-loaded BMMSCs demonstrated the most potent antitumor effect among OV-loaded MSCs. Our results offer promising insights into cancer gene therapy with carrier cells and can help with the selection of an appropriate MSC source for MSC-based OV therapy.
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