Clinical Significance of Chromosome 8p, 10q, and 16q Deletions in Prostate Cancer
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Background: We lack simple and reliable diagnostic tools to predict pathological staging as well as further progression of prostate cancer in individual cases.
Methods: We studied deletions on 8p (8p22 and 8p23-pter), 10q (10q24-qter), and 16q (16q24) by fluorescence in situ hybridization in 53 specimens from patients with prostate cancer, and compared the status of these deletions with various clinical parameters. Forty-five cases were further evaluated regarding disease progression with a median follow-up period of 62 months.
Results: The overall frequencies of deletions for 8p, 10q, and 16q were 74, 55, and 55%, respectively. The frequency of 8p and 16q deletions increased significantly in parallel with tumor grade (P < 0.01 and < 0.05, respectively), while that of 10q deletions did not. Patients whose tumors showed 8p22 deletions had a significantly higher frequency in pT3 or metastatic tumors than in pT2 tumors. Patients whose tumors showed both 8p22 and 16q24 deletions had a significantly higher frequency of nodal metastases than non-metastases. A Cox hazard proportional model revealed 8p22 deletion to be the strongest parameter predictive of disease progression (hazard ratio = 6.624; P = 0.0001).
Conclusion: Estimation of 8p22 and 16q24 deletions may serve as a genetic diagnosis for predicting pathological staging as well as disease progression in prostate cancer.
Watanabe N, Harada S, Sato S, Fukuda Y, Tanaka Y, Yanashima K Case Rep Oncol. 2024; 17(1):1201-1207.
PMID: 39474529 PMC: 11521521. DOI: 10.1159/000541552.
Proteogenomic characterization of skull-base chordoma.
Zhang Q, Xu Z, Han R, Wang Y, Ye Z, Zhu J Nat Commun. 2024; 15(1):8338.
PMID: 39333076 PMC: 11436687. DOI: 10.1038/s41467-024-52285-7.
Deficiency of factor-inhibiting HIF creates a tumor-promoting immune microenvironment.
Ma J, Al Moussawi K, Lou H, Chan H, Wang Y, Chadwick J Proc Natl Acad Sci U S A. 2024; 121(10):e2309957121.
PMID: 38422022 PMC: 10927516. DOI: 10.1073/pnas.2309957121.
Normal and Neoplastic Growth Suppression by the Extended Myc Network.
Prochownik E, Wang H Cells. 2022; 11(4).
PMID: 35203395 PMC: 8870482. DOI: 10.3390/cells11040747.
Bhagirath D, Yang T, Tabatabai Z, Shahryari V, Majid S, Dahiya R Carcinogenesis. 2019; 40(5):633-642.
PMID: 30874288 PMC: 7331454. DOI: 10.1093/carcin/bgz058.