PO.IM01.03 · 免疫学

递送IL-33溶瘤痘苗病毒的间充质干细胞增强抗肿瘤作用并克服膀胱癌中的PD-1抑制剂耐药

Mesenchymal stem cells delivering IL-33 oncolytic vaccinia virus enhance antitumor effects and overcome PD-1 inhibitor resistance in bladder cancerResistance in bladder cancer

海报缩略图:递送IL-33溶瘤痘苗病毒的间充质干细胞增强抗肿瘤作用并克服膀胱癌中的PD-1抑制剂耐药
编号 4362 展板 2 时间 4/21 09:00–12:00 区域 Section 10 主讲 Qi Wang, PhD
分会场 Vaccine Platforms and Target Identification
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作者与单位 Authors & Affiliations

Yong Tang1, Yingzhao Liu2, Songlin Li1, Wenjie Wang2, Jiahu Wang3, Qi Wang2

1Department of Urology, Guangxi Medical University Cancer Hospital, Nanning, China,2Department of Research, Guangxi Medical University Cancer Hospital, Nanning, China,3Genvira Biosciences Inc, Ottawa, ON, Canada

摘要 Abstract

中文摘要
约80%的晚期膀胱癌(BCa)患者对PD-1抑制剂产生耐药,这构成了重大的临床挑战。本研究旨在开发一种创新的治疗策略,利用间充质干细胞(MSCs)递送一种经改造携带白细胞介素-33(IL-33)的溶瘤痘苗病毒,目的是克服对PD-1抑制剂的耐药并阐明相关的免疫机制。为创建溶瘤痘苗病毒变体OVV-hIL33(GVB-2030)和OVV-mIL33,将人或小鼠IL-33 cDNA插入痘苗病毒Copenhagen株。通过定量PCR和ELISA确认整合。使用实时细胞分析测量对人和小鼠膀胱癌细胞增殖的影响。在具有MB49模型的C57BL/6小鼠中,测试了OVV-mIL33与抗PD-1治疗的有效性。开发了PD-1抑制剂耐药的MB49/R细胞系,并使用MSCs递送OVV-mIL33,形成MSC-OVV-mIL33。通过比较肿瘤大小和生存期,评估其与PD-1抑制剂联合相对于无包被OVV-mIL33的疗效。单细胞测序、光谱流式细胞术和多重免疫荧光分析了肿瘤环境中的细胞因子和免疫细胞。研究结果表明,OVV-hIL33(GVB-2030)和OVV-mIL33在体外对BCa细胞表现出选择性细胞毒性,同时不损害正常细胞。在小鼠模型中,OVV-mIL33与PD-1抑制剂联合腹腔给药有效抑制了肿瘤进展并延长了生存期,尽管观察到肿瘤复发。值得注意的是,涉及MSC-OVV-mIL33和PD-1抑制剂的联合治疗表现出增强的疗效。该方案不仅抑制了原发性和复发性肿瘤,在小鼠中实现了90%的治愈率,而且在用MB49/R再次攻击时显著减少了60%的肿瘤形成,从而建立了抗BCa免疫反应。该联合治疗通过增强细胞毒性CD8+ T细胞、记忆B细胞和2型固有淋巴细胞的浸润,同时减少调节性T细胞和终末耗竭CD8+ T细胞的存在,有效地重塑了肿瘤微环境。此外,MSC包被赋予病毒抵御中和的保护,从而确保高效的肿瘤靶向和增殖。因此,我们提出MSC介导的OVV-mIL33递送联合PD-1阻断治疗,在克服BCa中对PD-1抑制剂的耐药方面具有重大潜力。这种协同相互作用主要归因于T细胞耗竭的逆转和抗肿瘤免疫记忆形成的增强。
查看英文原文 English abstract
Approximately 80% of patients with advanced bladder cancer (BCa) develop resistance to PD-1 inhibitors, presenting a substantial clinical challenge. This study seeks to develop an innovative therapeutic strategy utilizing mesenchymal stem cells (MSCs) to deliver an oncolytic vaccinia virus engineered to carry interleukin-33 (IL-33), with the objective of overcoming resistance to PD-1 inhibitors and elucidating the associated immune mechanisms. To create the oncolytic vaccinia virus variants OVV-hIL33(GVB-2030)and OVV-mIL33, human or mouse IL-33 cDNA was inserted into the vaccinia virus Copenhagen strain. Integration was confirmed via quantitative PCR and ELISA. The impact on human and mouse bladder cancer cell proliferation was measured using real-time cell analysis. In C57BL/6 mice with the MB49 model, OVV-mIL33's effectiveness with anti-PD-1 therapy was tested. A PD-1 inhibitor-resistant MB49/R cell line was developed, and MSCs were used to deliver OVV-mIL33, forming MSC-OVV-mIL33. Its efficacy with PD-1 inhibitors was evaluated against uncoated OVV-mIL33 by comparing tumor size and survival. Single-cell sequencing, spectral flow cytometry, and multiplex immunofluorescence analyzed cytokines and immune cells in the tumor environment. The findings indicate that OVV-hIL33 (GVB-2030) and OVV-mIL33 demonstrate selective cytotoxicity towards BCa cells in vitro, sparing normal cells. In murine models, intraperitoneal administration of OVV-mIL33 in conjunction with a PD-1 inhibitor effectively inhibited tumor progression and extended survival, although tumor recurrence was observed. Notably, the combination therapy involving MSC-OVV-mIL33 and PD-1 inhibitors demonstrated enhanced efficacy. This regimen not only suppressed both primary and recurrent tumors, achieving a 90% cure rate in mice, but also significantly reduced tumor formation by 60% upon re-challenge with MB49/R, thereby establishing an anti-BCa immune response. The combination therapy effectively remodeled the tumor microenvironment by augmenting the infiltration of cytotoxic CD8+ T cells, memory B cells, and type 2 innate lymphoid cells, while concurrently decreasing the presence of regulatory T cells and terminally exhausted CD8+ T cells. Additionally, the MSC coating conferred protection to the virus against neutralization, thereby ensuring efficient tumor targeting and proliferation. Consequently, we propose that the MSC-mediated delivery of OVV-mIL33, combined with PD-1 blockade therapy, presents significant potential to overcome resistance to PD-1 inhibitors in BCa. This synergistic interaction is principally attributed to the reversal of T cell exhaustion and the enhancement of anti-tumor immune memory formation.
利益披露 Disclosure
Y. Tang, None.. Y. Liu, None.. S. Li, None.. W. Wang, None.. J. Wang, None.. Q. Wang, None.

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