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一种用镓-多酚网络功能化的益生菌可调节肿瘤内微生物群,并促进胰腺癌的抗肿瘤免疫反应。

Probiotics functionalized with a gallium-polyphenol network modulate the intratumor microbiota and promote anti-tumor immune responses in pancreatic cancer.

机构信息

Key Laboratory of Biomedical Polymers of Ministry of Education & Department of Chemistry, Wuhan University, Wuhan, 430072, P. R. China.

出版信息

Nat Commun. 2024 Aug 17;15(1):7096. doi: 10.1038/s41467-024-51534-z.

Abstract

The intratumor microbiome imbalance in pancreatic cancer promotes a tolerogenic immune response and triggers immunotherapy resistance. Here we show that Lactobacillus rhamnosus GG probiotics, outfitted with a gallium-polyphenol network (LGG@Ga-poly), bolster immunotherapy in pancreatic cancer by modulating microbiota-immune interactions. Upon oral administration, LGG@Ga-poly targets pancreatic tumors specifically, and selectively eradicates tumor-promoting Proteobacteria and microbiota-derived lipopolysaccharides through a gallium-facilitated disruption of bacterial iron respiration. This elimination of intratumor microbiota impedes the activation of tumoral Toll-like receptors, thus reducing immunosuppressive PD-L1 and interleukin-1β expression by tumor cells, diminishing immunotolerant myeloid populations, and improving the infiltration of cytotoxic T lymphocytes in tumors. Moreover, LGG@Ga-poly hampers pancreatic tumor growth in both preventive and therapeutic contexts, and amplifies the antitumor efficacy of immune checkpoint blockade in preclinical cancer models in female mice. Overall, we offer evidence that thoughtfully designed biomaterials targeting intratumor microbiota can efficaciously augment immunotherapy for the challenging pancreatic cancer.

摘要

肿瘤内微生物组失衡促进胰腺癌耐受免疫反应并引发免疫治疗耐药性。在这里,我们表明,经过改造装载镓多酚网络的鼠李糖乳杆菌 GG 益生菌(LGG@Ga-poly)通过调节微生物组-免疫相互作用,增强了胰腺癌的免疫治疗效果。口服 LGG@Ga-poly 后,它能特异性地靶向胰腺肿瘤,并通过镓促进的细菌铁呼吸中断,选择性地根除促进肿瘤生长的变形菌和微生物衍生的脂多糖。这种肿瘤内微生物组的消除阻碍了肿瘤 Toll 样受体的激活,从而降低了肿瘤细胞中免疫抑制性 PD-L1 和白细胞介素-1β的表达,减少了免疫耐受的髓样细胞群,并改善了肿瘤中细胞毒性 T 淋巴细胞的浸润。此外,LGG@Ga-poly 可在预防和治疗两种情况下阻碍胰腺肿瘤的生长,并增强女性小鼠临床前癌症模型中免疫检查点阻断的抗肿瘤疗效。总的来说,我们提供的证据表明,精心设计的针对肿瘤内微生物组的生物材料可以有效地增强免疫治疗,以应对胰腺癌这一极具挑战性的疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bdb/11330462/ee6b6d7769fd/41467_2024_51534_Fig1_HTML.jpg

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