The Profile of Gut Microbiota in Carcinogenesis Driven by Mutant EGFR in Non-Small Cell Lung Cancer.

IF 3.8 2区 医学 Q2 ONCOLOGY Cancer Research and Treatment Pub Date : 2026-01-01 Epub Date: 2025-03-04 DOI:10.4143/crt.2024.1177
Da-Som Kim, Eun Hye Kim, Ji Yong Kim, Dong Ha Kim, Yun Jung Choi, Jaeyi Jeong, Young Hoon Sung, Dong-Cheol Woo, Chong Jai Kim, Jae Cheol Lee, Miyong Yun, Jin-Yong Jeong, Jin Kyung Rho
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Abstract

Purpose: Accumulating evidence has clarified that gut dysbiosis is involved in lung cancer development and progression. Although the relationship between tumors and gut microbiota has been extensively studied using clinical samples, no studies have examined the association between mutant epidermal growth factor receptor (EGFR)-induced lung carcinogenesis and dysbiosis in gut microbiota. Therefore, we investigated the gut microbiota profiles in stool samples from human lung-specific conditional EGFR-mutant transgenic mice during lung tumor carcinogenesis.

Materials and methods: Stool samples were collected before tamoxifen treatment (V1) and at each time point following mutant EGFR expression in lung tissue (V2) and lung tumor appearance (V3). Fecal 16S rRNA taxonomy was analyzed to assess microbial diversity, composition, and dynamic changes at each time point.

Results: We found that microbiota richness and diversity were significantly elevated when tumors developed and grew in the lung. Phylogenetic analysis of the microbial community revealed that Lachnospiraceae, Ruminococcaceae, Porphyromonadaceae, Rhodospirillaceae, Odoribacteraceae, and Desulfovibrionaceae showed a significant increase at the V3 stage compared to the V1 stage at the family level. In contrast, Lactobacillaceae, Bacteroidaceae, Muribaculaceae, Coriobacteriaceae, and Rikenellaceae significantly decreased at the V3 stage compared to the V1 stage. Furthermore, Lactobacillus species, also known as short chain fatty acid-producing bacteria, were relatively abundant at the V1 stage but were depleted with the occurrence of lung tumors at the V3 stage.

Conclusion: Changes in gut microbiota, such as Lactobacillus species, may be a predictive factor for the emergence and progression of tumors in an animal model of lung adenocarcinoma induced by mutant EGFR.

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非小细胞肺癌中由EGFR突变驱动的癌变中肠道微生物群的特征。
目的:越来越多的证据表明,肠道生态失调参与肺癌的发生和发展。尽管肿瘤与肠道菌群之间的关系已经通过临床样本进行了广泛的研究,但尚未有研究检测突变型egfr诱导的肺癌发生与肠道菌群失调之间的关系。因此,我们研究了人肺特异性条件egfr突变转基因小鼠在肺癌发生过程中粪便样本中的肠道微生物群特征。材料和方法:收集他莫昔芬治疗前(V1)和肺组织EGFR突变表达(V2)和肺肿瘤出现(V3)后各时间点的粪便样本。分析粪便16S rRNA分类学,评估各时间点微生物多样性、组成及动态变化。结果:我们发现,当肿瘤在肺部发生和生长时,微生物群的丰富度和多样性显著升高。微生物群落系统发育分析显示,在科水平上,Lachnospiraceae、Ruminococcaceae、Porphyromonadaceae、Rhodospirillaceae、Odoribacteraceae和Desulfovibrionaceae在V3期较V1期显著增加。乳酸菌科(Lactobacillaceae)、拟杆菌科(Bacteroidaceae)、乳酸菌科(Muribaculaceae)、科里杆菌科(Coriobacteriaceae)和里氏杆菌科(Rikenellaceae)在V3期与V1期相比显著减少。此外,乳酸菌种类,也被称为产生scfa的细菌,在V1期相对丰富,但在V3期随着肺肿瘤的发生而减少。结论:在突变型EGFR诱导的肺腺癌动物模型中,肠道菌群(如乳酸杆菌种类)的变化可能是肿瘤出现和发展的预测因素。
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来源期刊
CiteScore
8.00
自引率
2.20%
发文量
126
审稿时长
>12 weeks
期刊介绍: Cancer Research and Treatment is a peer-reviewed open access publication of the Korean Cancer Association. It is published quarterly, one volume per year. Abbreviated title is Cancer Res Treat. It accepts manuscripts relevant to experimental and clinical cancer research. Subjects include carcinogenesis, tumor biology, molecular oncology, cancer genetics, tumor immunology, epidemiology, predictive markers and cancer prevention, pathology, cancer diagnosis, screening and therapies including chemotherapy, surgery, radiation therapy, immunotherapy, gene therapy, multimodality treatment and palliative care.
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