| Literature DB >> 34140559 |
Yasuto Yoneshima1, Eiji Iwama1, Shingo Matsumoto2, Taichi Matsubara3, Testuzo Tagawa4, Keiichi Ota1, Kentaro Tanaka1, Mitsuhiro Takenoyama3, Tatsuro Okamoto3, Koichi Goto2, Masaki Mori4, Isamu Okamoto5.
Abstract
Genetic alterations underlying the development of lung cancer in individuals with idiopathic pulmonary fibrosis (IPF) have remained unclear. To explore whether genetic alterations in IPF tissue contribute to the development of IPF-associated lung cancer, we here evaluated tumor mutation burden (TMB) and somatic variants in 14 paired IPF and tumor samples from patients with IPF-associated lung adenocarcinoma. We also determined TMB for 22 samples of lung adenocarcinoma from patients without IPF. TMB for IPF-associated lung adenocarcinoma was significantly higher than that for matched IPF tissue (median of 2.94 vs. 1.26 mutations/Mb, P = 0.002). Three and 102 somatic variants were detected in IPF and matched lung adenocarcinoma samples, respectively, with only one pair of specimens sharing one somatic variant. TMB for IPF-associated lung adenocarcinoma was similar to that for lung adenocarcinoma samples with driver mutations (median of 2.94 vs. 2.51 mutations/Mb) and lower than that for lung adenocarcinoma samples without known driver mutations (median of 2.94 vs. 5.03 mutations/Mb, P = 0.130) from patients without IPF. Our findings suggest that not only the accumulation of somatic mutations but other factors such as inflammation and oxidative stress might contribute to the development and progression of lung cancer in patients with IPF.Entities:
Year: 2021 PMID: 34140559 DOI: 10.1038/s41598-021-92098-y
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379