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抗 EGFR 生物工程菌外膜囊泡作为三阴性乳腺肿瘤小鼠模型中的靶向免疫治疗候选药物

英文原题:Anti-EGFR bioengineered bacterial outer membrane vesicles as targeted immunotherapy candidate in triple-negative breast tumor murine model.

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Anti-EGFR bioengineered bacterial outer membrane vesicles as targeted immunotherapy candidate in triple-negative breast tumor murine model.

PubMed 2023/09/29(内容时间) Sci Rep Q1 · IF 4.9(JCR 2025)

研究概要

采用检查点抑制剂的癌症免疫治疗在多种癌症中具有巨大前景;然而,相当一部分患者(55%至87%)仍对该治疗无反应。

中文摘要

利用检查点抑制剂的癌症免疫治疗在多种癌症中具有巨大前景;然而,相当一部分患者(55%至87%)仍对该治疗无反应。为提高治疗效率,我们提出一种协同治疗策略,即将携带Toll样受体(TLR)激动剂的靶向纳米颗粒递送至肿瘤部位。这一创新方法旨在利用源自革兰氏阴性菌的生物工程化外膜囊泡(OMVs)激活瘤内抗原呈递细胞。这些OMVs具有表面暴露的免疫刺激物和TLR激活成分的固有特性,使其成为引人关注的研究候选物。这些OMVs经过精心设计,可选择性靶向过表达表皮生长因子受体(EGFR)的癌细胞。为评估该靶向的精确性,所进行的基于亲和力的试验旨在测定用于此目的的单链可变片段的平衡解离常数。体外实验证实了OMVs与EGFR过表达癌细胞黏附的能力。此外,评估还扩展至体内环境,在 triple-negative breast cancer 小鼠模型的肿瘤微环境中评价了纳米囊泡的治疗效果。值得注意的是,腹腔内和瘤内给予纳米囊泡均表现出激活NK 细胞并将M2巨噬细胞偏向M1表型的能力。对体外和体内研究结果的综合审视,凸显了OMVs作为未来抗肿瘤努力中一种有前景策略的潜在效率。

展开英文摘要原文

Cancer immunotherapy employing checkpoint inhibitors holds great promise across diverse cancers; nonetheless, a substantial proportion of patients (ranging from 55 to 87%) remain unresponsive to this treatment. To amplify therapeutic efficiency, we propose a synergistic therapeutic strategy that entails the deployment of targeted nano-sized particles carrying Toll-like receptor (TLR) agonists to the tumor site. This innovative approach seeks to activate intratumoral antigen-presenting cells using bioengineered outer membrane vesicles (OMVs) derived from gram-negative bacteria. These OMVs possess inherent attributes of surface-exposed immune stimulators and TLR-activating components, rendering them intriguing candidates for investigation. These OMVs were meticulously designed to selectively target cancer cells exhibiting an overexpression of epidermal growth factor receptor (EGFR). To gauge the precision of this targeting, the conducted affinity-based assays aimed at determining the equilibrium dissociation constant of the single-chain variable fragment employed for this purpose. In vitro experiments confirmed the OMVs' proficiency in adhering to EGFR-overexpressed cancer cells. Moreover, the evaluation extended to an in vivo context, where the therapeutic effect of nanovesicles was appraised within the tumor microenvironment of the triple-negative breast cancer mouse model. Notably, both intraperitoneal and intratumoral administrations of nanovesicles exhibited the ability to activate natural killer cells and skew M2 macrophage towards an M1 phenotype. The combined scrutiny of in vitro and in vivo findings underscores the potential efficiency of OMVs as a promising strategy for future anti-tumor endeavors.

论文信息

作者
Rezaei Adriani R、Mousavi Gargari SL、Bakherad H、Amani J
第一作者单位
Department of Biology, Shahed University, Tehran, Iran.Iran
通讯作者单位
Department of Biology, Shahed University, Tehran, Iran. slmousavi@shahed.ac.ir.Iran
文献类型
非美国政府资助研究
期刊
Scientific reports2023 Sep 29
原文标识
PubMed 37775519 · DOI 10.1038/s41598-023-43762-y