摘要:微生物群在炎症和肺癌中的作用

A. Robles, T. Cooks, Eleazar Vega-Valle, Marie Vetizou, Uriel Rose, A. Miyanaga, Akriti Trehan, T. Oike, B. Ryan, S. Sen, L. Greathouse, G. Trinchieri, C. Harris
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引用次数: 3

摘要

我们最近首次对肺癌微生物组进行了全面表征,利用来自对照和癌症病例的肺组织的16S rRNA基因测序,并通过对癌症基因组图谱中肺癌样本的RNA-seq未映射reads的宏基因组学分析进行了验证。来自16S rRNA和宏基因组学分析的证据表明,特定细菌与人类肺癌的发展有关。然而,细菌在肺部炎症微环境中的功能作用以及肺癌的发生和进展尚不清楚。吸烟是肺癌的主要危险因素,它会降低上皮屏障的完整性,增加对感染的易感性。我们假设选定菌株的肺定植会影响免疫微环境,加速肺癌小鼠模型的肿瘤发展速度。具体来说,我们重点研究了Acidovorax,这是一个我们发现在吸烟者的肺鳞状细胞癌(SCC)和TP53突变中富集的分类群。Kras LSL-G12D/+和Trp53 LSL-R172H/+小鼠(KPC小鼠模型)有条件地表达致癌Kras和功能获得突变p53(人类肺癌中常见的突变组合),通过鼻内给药暴露于酸多肽。暴露于5 x 10 6 PFU Ad-Cre(特异性激活肺部条件等位基因)两周后,小鼠被随机分配到治疗组。在PBS中每两周滴入10 9 CFU Acidovorax temperans (ATCC #49666),并与假治疗(单独PBS)进行比较,共6次滴入。最后一次细菌滴注后1周(Ad-Cre治疗后13周),小鼠进行磁共振成像(MRI)。我们发现,与假治疗的动物相比,接种了嗜酸菌的动物的肿瘤体积显著增加(p=0.03),肺重量占总体重的百分比也增加了。为了描述细菌与宿主免疫系统之间的相互作用,我们将嗜酸性巨噬细胞与人原代巨噬细胞共培养。我们的研究结果表明,当巨噬细胞吞噬巨噬细胞时,巨噬细胞的吞噬活性减弱。此外,当T细胞与预暴露于酸卵黄的M2巨噬细胞共培养时,它们的细胞毒性受到抑制。这种抑制是由CD47-SIRPα“不要吃我”信号控制的。这些初步数据表明,在激活的Kras和突变的p53存在下,嗜酸菌有助于肺肿瘤的发生。我们正在进行额外的实验,以研究这一观察结果的特异性,并更好地了解微生物群在癌症发生和发展中的作用。此摘要也以海报B19的形式呈现。引文格式:Ana I. Robles, Tomer Cooks, Eleazar Vega-Valle, Marie Vetizou, Uriel Rose, Akihiko Miyanaga, Akriti Trehan, Takahiro Oike, Brid M. Ryan, Shurjo Sen, Leigh Greathouse, Giorgio Trinchieri, Curtis C. Harris。微生物群在炎症和肺癌中的作用[摘要]。第五届AACR-IASLC国际联合会议论文集:肺癌转化科学从实验室到临床;2018年1月8日至11日;费城(PA): AACR;临床肿瘤杂志,2018;24(17 -增刊):摘要nr PR07。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Abstract PR07: Role of the microbiota in inflammation and lung cancer
We recently conducted the first comprehensive characterization of the lung cancer microbiome, utilizing 16S rRNA gene sequencing of lung tissue from controls and cancer cases, with validation by metagenomics analysis of RNA-seq unmapped reads from lung cancer samples in The Cancer Genome Atlas. Evidence from 16S rRNA and metagenomics analysis indicated that specific bacteria are associated with the development of lung cancer in humans. However, the functional role of bacteria in the inflammatory microenvironment of the lung and the incidence and progression of lung cancer is unknown. Cigarette smoke, the primary risk factor in lung cancer, reduces epithelial barrier integrity and increases susceptibility to infections. We hypothesized that lung colonization with selected bacterial strains will affect the immune microenvironment and accelerate the rate of tumor development in an autochthonous mouse model of lung cancer. Specifically, we focused on Acidovorax , a taxon we found to be enriched in lung squamous cell carcinoma (SCC) from smokers and with TP53 mutations. Kras LSL-G12D/+ and Trp53 LSL-R172H/+ mice (KPC mouse model), conditionally expressing oncogenic Kras and a gain-of-function mutant p53 (a combination of mutations commonly found in human lung cancer), were exposed to Acidovorax temperans via intranasal delivery. Two weeks after exposure to 5 x 10 6 PFU Ad-Cre (specifically activating the conditional alleles in the lungs), mice were randomly assigned to treatment groups. A biweekly intranasal instillation of 10 9 CFU Acidovorax temperans (ATCC #49666) was administered in PBS and compared with a sham treatment (PBS alone) for a total of six instillations. One week after the last bacteria instillation (13 weeks after Ad-Cre treatment), mice were subjected to magnetic resonance imaging (MRI). We found a significant increase in tumor volume in animals inoculated with Acidovorax temperans as compared to sham-treated animals (p=0.03), and increased lung weight as a percent of total body weight. To delineate the interactions between the bacteria and the immune system of the host, we co-cultured Acidovorax temperans with human primary macrophages. Our findings show that when Acidovorax temperans is engulfed by M2-like macrophages, the phagocytotic activity of the macrophages is attenuated. In addition, when T cells were co-cultured with M2 macrophages pre-exposed to Acidovorax temperans , their cytotoxicity was inhibited. This inhibition was governed by the CD47-SIRPα “Don’t eat me” signal. These preliminary data indicate that Acidovorax temperans contributes to lung tumorigenesis in the presence of activated Kras and mutant p53. We are conducting additional experiments to investigate the specificity of this observation with respect to Acidovorax temperans and to better understand the role of the microbiota in cancer initiation and progression. This abstract is also being presented as Poster B19. Citation Format: Ana I. Robles, Tomer Cooks, Eleazar Vega-Valle, Marie Vetizou, Uriel Rose, Akihiko Miyanaga, Akriti Trehan, Takahiro Oike, Brid M. Ryan, Shurjo Sen, Leigh Greathouse, Giorgio Trinchieri, Curtis C. Harris. Role of the microbiota in inflammation and lung cancer [abstract]. In: Proceedings of the Fifth AACR-IASLC International Joint Conference: Lung Cancer Translational Science from the Bench to the Clinic; Jan 8-11, 2018; San Diego, CA. Philadelphia (PA): AACR; Clin Cancer Res 2018;24(17_Suppl):Abstract nr PR07.
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