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  4. Gut microbiota-derived formate exacerbates pulmonary metastasis in cancer
 
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Gut microbiota-derived formate exacerbates pulmonary metastasis in cancer

Journal
Theranostics
Journal Volume
15
Journal Issue
15
Start Page
7693-7708
ISSN
1838-7640
Date Issued
2025-07-02
Author(s)
Prajnamitra, Ray Putra
Beh, Chaw Yee
Tang, Wen-Hung
Ruan, Shu-Chian
Cheng, Yuan-Yuan
Kuo, Pei-Teng
YU-WEN TIEN  
Hsieh, Patrick Ching-Ho
DOI
10.7150/thno.108873
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/737081
Abstract
Rationale: The gut microbiota and its metabolites significantly influence cancer development and metastasis. Among these, formate, the simplest short-chain fatty acid (SCFA), remains underexplored in the context of metastasis. This study investigates the role of microbiota-derived formate in exacerbating pulmonary metastasis in melanoma and pancreatic ductal adenocarcinoma (PDAC), aiming to elucidate its mechanistic contributions to cancer progression. Methods: Using antibiotics-induced dysbiosis in mice, we quantified plasma formate levels via nuclear magnetic resonance (NMR) metabolomics and identified gut bacterial contributors through 16S rRNA sequencing. Formate's effects on melanoma and PDAC lung metastases were evaluated through in vivo supplementation experiments. Cellular assays, metabolomics, and gene expression analyses further elucidated its mechanistic impact. Results: Dysbiosis significantly increased circulating formate levels, with Enterobacterales identified as key contributors. Formate supplementation enhanced melanoma and PDAC lung metastases by promoting cancer cell proliferation, migration, and nucleotide synthesis. Mechanistic studies revealed that formate upregulated one-carbon metabolism, critical for tumor aggressiveness, and increased the production of metabolites like glutathione, facilitating oxidative stress resistance. Conclusion: Microbiota-derived formate plays a critical role in enhancing pulmonary metastasis by modulating cancer cell metabolism. These findings highlight the therapeutic potential of targeting formate production or its associated metabolic pathways to mitigate cancer spread. Additionally, microbiome modulation emerges as a promising complementary approach to improving cancer treatment outcomes.
Subjects
Melanoma
formate
lung metastasis
metabolomics
microbiota
Publisher
Ivyspring International Publisher
Type
journal article

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To permanently archive and promote researcher profiles and scholarly works, Library integrates the services of “NTU Repository” with “Academic Hub” to form NTU Scholars.

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