Dendritic Cells Loaded With Heat Shock Inactivated Glioma Stem Cells Enhance Antitumor Response of Mouse Glioma When Combining With CD47 Blockade.

IF 1.9 4区 医学 Q3 ONCOLOGY
Clinical Medicine Insights-Oncology Pub Date : 2024-10-16 eCollection Date: 2024-01-01 DOI:10.1177/11795549241285239
Qijia Tan, Feng Li, Jun Wang, Yi Liu, Yingqian Cai, Yuxi Zou, Xiaodan Jiang
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引用次数: 0

Abstract

Background: For glioma patients, the long-term advantages of dendritic cells (DCs) immunization remain unknown. It is extremely important to develop new treatment strategies that enhance the immunotherapy effect of DC-based vaccines. DCs exposed to glioma stem cells (GSCs) are considered promising vaccines against glioma.

Methods: Glioma stem cells were isolated from mouse glioma GL261 cells (GCs). Both were subjected to severe (47°C) and mild (42°C) heat shock to induce immunogenic cell death (ICD). Membrane mobilization of calreticulin (CRT) and release of heat shock proteins (HSPs) were detected by flow cytometry. Dendritic cells were then exposed to heat-inactivated cells and co-culturing of T cells tested for immunotherapeutic efficacy in vitro. In vivo, we investigated the GSC targeting effect of the GSC-DC vaccine combined with CD47 blockade.

Results: Heat shock induced ICD in GCs and GSCs, as indicated by significant release of calreticulin, HSP70, and HSP90. Heat shock condition ICD lysates induce maturation and activation-associated marker expression on monocyte-derived DCs. Accordingly, DCs pulsed with GCs and GSCs inactivated reduced colony formation, sphere formation, migration, and invasion of glioma and GSCs in vitro. Glioma stem cell-DC vaccine in combination with anti-CD47 antibody significantly enhanced survival in mice with glioma, induced production of interferon (IFN)-γ, and enhanced T-cell expansion in vivo. Of note, DCs pulsed with inactivated GSCs were more effective to control tumor growth than DCs pulsed with inactive GCs.

Conclusions: Severe heat shock induces ICD in vitro. These data showed that administration of anti-CD47 antibody combined with GSC-DC vaccine may represent an effective immunotherapeutic strategy for cancer patients in clinical.

树突状细胞负载热休克失活胶质瘤干细胞,与 CD47 阻断剂结合使用可增强小鼠胶质瘤的抗肿瘤反应。
背景:对于胶质瘤患者来说,树突状细胞(DCs)免疫的长期优势仍然未知。开发新的治疗策略以增强基于树突状细胞疫苗的免疫治疗效果极为重要。暴露于胶质瘤干细胞(GSCs)的树突状细胞被认为是有前景的胶质瘤疫苗:方法:从小鼠胶质瘤 GL261 细胞(GCs)中分离出胶质瘤干细胞。方法:从小鼠胶质瘤 GL261 细胞(GCs)中分离出胶质瘤干细胞,对两者分别进行严重(47°C)和轻微(42°C)热休克,以诱导免疫原性细胞死亡(ICD)。通过流式细胞仪检测钙调蛋白(CRT)的膜动员和热休克蛋白(HSPs)的释放。然后,将树突状细胞暴露于热灭活细胞,并与 T 细胞共培养,测试其体外免疫治疗效果。在体内,我们研究了GSC-DC疫苗结合CD47阻断的GSC靶向效果:结果:热休克诱导 GCs 和 GSCs 的 ICD,表现为钙网蛋白、HSP70 和 HSP90 的显著释放。热休克条件下的 ICD 裂解液能诱导单核细胞衍生的 DCs 成熟和活化相关标志物的表达。因此,用 GCs 和 GSCs 灭活的 DCs 脉冲可减少胶质瘤和 GSCs 在体外的集落形成、球体形成、迁移和侵袭。胶质瘤干细胞-DC 疫苗与抗 CD47 抗体联合使用可显著提高胶质瘤小鼠的存活率,诱导产生干扰素(IFN)-γ,并增强体内 T 细胞的扩增。值得注意的是,用灭活的GSCs脉冲DC比用非活性GCs脉冲DC更有效地控制肿瘤生长:结论:严重的热休克可在体外诱导 ICD。这些数据表明,抗 CD47 抗体与 GSC-DC 疫苗联合应用可能是临床上治疗癌症患者的一种有效免疫治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.40
自引率
4.50%
发文量
57
审稿时长
8 weeks
期刊介绍: Clinical Medicine Insights: Oncology is an international, peer-reviewed, open access journal that focuses on all aspects of cancer research and treatment, in addition to related genetic, pathophysiological and epidemiological topics. Of particular but not exclusive importance are molecular biology, clinical interventions, controlled trials, therapeutics, pharmacology and drug delivery, and techniques of cancer surgery. The journal welcomes unsolicited article proposals.
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