CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Live biotherapeutic enterococcus lactis MNC-168 promotes the efficacy of immune checkpoint blockade in cancer therapy by activating STING pathway via bacterial membrane vesicles.
Live biotherapeutic enterococcus lactis MNC-168 promotes the efficacy of immune checkpoint blockade in cancer therapy by activating STING pathway via bacterial membrane vesicles.
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肠道微生物组具有影响肿瘤发展及影响癌症治疗疗效的潜力,尤其是免疫治疗。然而,通过调节全身免疫或肿瘤微环境中TIL(肿瘤浸润淋巴细胞)(TILs)的功能来促进抗肿瘤免疫的具体物种和菌株,而非所有微生物,仍有待阐明。
在本研究中,我们分析了临床队列中PD-1阻断治疗应答者和无应答者的微生物组组成,发现Enterococcus spp.在应答者中富集。通过体外筛选,我们鉴定出Enterococcus lactis MNC-168,这是一种从健康个体中分离的共生细菌,其通过促进抗肿瘤免疫显著抑制肿瘤生长并增强抗PD-1治疗的疗效。在机制上,MNC-168通过释放细菌膜囊泡(MVs)以STING-IFN-I(干扰素基因刺激因子-I型干扰素)依赖途径激活先天免疫,并靶向肿瘤组织,从而增强抗肿瘤免疫应答。
此外,我们已在多个临床前模型中证实了MNC-168的安全性及其增强抗PD-1活性的效果,以及其与抗PD-1治疗潜在的临床相关性。这些发现表明,MNC-168可能代表一种有前景的癌症治疗策略,并具有提高当前免疫治疗疗效的潜力。
The gut microbiome has the potential to influence tumor development and affect the efficacy of cancer therapeutics, particularly immunotherapy.
However, the specific species and strains rather than all microbes that promote antitumor immunity by modulating the function of systemic immunity or tumor-infiltrating lymphocytes (TILs) in tumor environments remain to be elucidated. In this study, we analyzed the microbiome composition of responders and non-responders to PD-1 blockade therapy from a clinical cohort and found that Enterococcus spp .
were abundant in the responders. Through in vitro screening, we identified Enterococcus lactis MNC-168, a commensal bacterium isolated from a healthy individual, which significantly inhibited tumor growth and enhanced the efficacy of anti-PD-1 treatment by promoting antitumor immunity.
Mechanistically, MNC-168 activates innate immunity through a STING-IFN-I (stimulator of interferon genes-type I interferons) dependent pathway by releasing bacterial membrane vesicles (MVs), and targeting tumor tissue, thereby augmenting the antitumor immune response.
Furthermore, we have confirmed the safety profile of MNC-168 and its enhancing effect on Anti-PD-1 activity across multiple preclinical models, as well as its potential clinical relevance to Anti-PD-1 therapy.
These findings suggest that MNC-168 could represent a promising strategy for cancer therapy and has the potential to improve the efficacy of current immunotherapies.
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