Investigate the relationship between Bacillus coagulans and its inhibition of chemotherapy‐induced lung cancer resistance

凝固酶杆菌 抗药性 癌症研究 肺癌 细胞凋亡 腺癌 细胞周期 生物 上皮-间质转换 癌症 医学 下调和上调 微生物学 内科学 生物化学 基因 发酵
作者
Yu‐Shan Ting,Yi‐Shiuan Wang,En‐Chi Liao,Hsiu‐Chuan Chou,Hong‐Lin Chan
出处
期刊:Biotechnology and Applied Biochemistry [Wiley]
卷期号:71 (6): 1453-1478 被引量:2
标识
DOI:10.1002/bab.2641
摘要

Lung cancer is a leading cause of death globally, with lung adenocarcinoma being the most common subtype. Despite advancements in targeted therapy, drug resistance remains a major challenge. This study investigated the impact of Bacillus coagulans on drug resistance in lung adenocarcinoma cells. The cells were pretreated with B. coagulans culture filtrate (BCCF), and functional assays were performed, including cell proliferation, cell cycle, apoptosis, and immunofluorescence staining. Results showed that BCCF induced cell cycle arrest at the S phase, reducing cell proliferation and suppressing drug resistance marker P-glycoprotein expression in BCCF-treated resistant cells rather than BCCF-treated control cells. Moreover, drug-resistant cells exhibited the ability for epithelial-mesenchymal transition, which could contribute to their necrosis through the iron-mediated cell death pathway upon BCCF treatment. Proteomic analysis identified downregulation of DNA mismatch repair protein PMS2 after BCCF treatment. These findings suggest that B. coagulans may modulate the DNA repair pathway, influencing drug resistance in lung adenocarcinoma cells. In conclusion, this study highlights the potential impact of B. coagulans on drug-resistant lung adenocarcinoma cells. Further investigation and understanding of the regulatory mechanisms by which B. coagulans modulates drug resistance in lung adenocarcinoma can aid in the development of more effective treatment strategies to improve the prognosis of lung cancer patients.
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