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Yu, De-Chen; Chen, Xiang-Yi; Zhou, Hai-Yu; Yu, De-Quan; Yu, Xiao-Lei; Hu, Yi-Cun; Zhang, Rui-Hao; Zhang, Xiao-Bo; Zhang, Kun; Lin, Mao-Qiang; Gao, Xi-Dan; Guo, Tao-Wen
Molecular biology reports, 04/2022, Volume: 49, Issue: 4Journal Article
Background Although osteosarcoma (OS) is the most common malignant bone tumor, the biological mechanism underlying its incidence and improvement remains unclear. This study investigated early diagnosis and treatment objectives using bioinformatics strategies and performed experimental verification. Methods and results The top 10 OS hub genes— CCNA2 , CCNB1 , AURKA , TRIP13 , RFC4 , DLGAP5 , NDC80 , CDC20 , CDK1 , and KIF20A —were screened using bioinformatics methods. TRIP13 was chosen for validation after reviewing literature. TRIP13 was shown to be substantially expressed in OS tissues and cells, according to Western blotting (WB) and quantitative real-time polymerase chain reaction data. Subsequently, TRIP13 knockdown enhanced apoptosis and decreased proliferation, migration, and invasion in U2OS cells, as validated by the cell counting kit-8 test, Hoechst 33,258 staining, wound healing assay, and WB. In addition, the levels of p-PI3K/PI3K and p-AKT/AKT in U2OS cells markedly decreased after TRIP13 knockdown. Culturing U2OS cells, in which TRIP13 expression was downregulated, in a medium supplemented with a PI3K/AKT inhibitor further reduced their proliferation, migration, and invasion and increased their apoptosis. Conclusions TRIP13 knockdown reduced U2OS cell proliferation, migration, and invasion via a possible mechanism involving the PI3K/AKT signaling pathway.
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