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Träfflista för sökning "WFRF:(Penney Kathryn L.) srt2:(2015-2019);srt2:(2017)"

Sökning: WFRF:(Penney Kathryn L.) > (2015-2019) > (2017)

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1.
  • Lu, Donghao, et al. (författare)
  • Expression and Genetic Variation in Neuroendocrine Signaling Pathways in Lethal and Nonlethal Prostate Cancer among Men Diagnosed with Localized Disease
  • 2017
  • Ingår i: Cancer Epidemiology, Biomarkers and Prevention. - : American Association for Cancer Research. - 1055-9965 .- 1538-7755. ; 26:12, s. 1781-1787
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND: Recent data suggest that neuroendocrine signaling pathways may play a role in the progression of prostate cancer, particularly for early-stage disease. We aimed to explore whether expression of selected genes in the adrenergic, serotoninergic, glucocorticoid, and dopaminergic pathways differs in prostate tumor tissue from men with lethal disease compared to men with nonlethal disease.METHODS: Based on the Swedish Watchful Waiting Cohort, we included 511 men diagnosed with incidental prostate cancer through TURP during 1977-1998 with follow-up up to 30 years. For those with tumor tissue (N=262), we measured mRNA expression of 223 selected genes included in neuroendocrine pathways. Using DNA from normal prostate tissue (N=396), we genotyped 36 SNPs from 14 receptor genes. Lethal prostate cancer was the primary outcome in analyses with pathway gene expression and genetic variants.RESULTS: Differential expression of genes in the serotoninergic pathway was associated with risk of lethal prostate cancer (P=0.007); similar but weaker associations were noted for the adrenergic (P=0.014) and glucocorticoid (P=0.020) pathways. Variants of the HTR2A (rs2296972; P=0.002) and NR3CI (rs33388; P=0.035) genes (within the serotoninergic and glucocorticoid pathways) were associated with lethal cancer in over-dominant models. These genetic variants were correlated with expression of several genes in corresponding pathways (P<0.05).CONCLUSIONS: Our findings lend support to hypothesis that the neuroendocrine pathways, particularly serotoninergic pathway, are associated with lethal outcome in the natural course of localized prostate cancer.IMPACT: The current study provides evidence of the role of neuroendocrine pathways in prostate cancer progression which may have clinical utility.
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2.
  • Tyekucheva, Svitlana, et al. (författare)
  • Stromal and epithelial transcriptional map of initiation progression and metastatic potential of human prostate cancer
  • 2017
  • Ingår i: Nature Communications. - London, United Kingdom : Nature Publishing Group. - 2041-1723. ; 8:1
  • Tidskriftsartikel (refereegranskat)abstract
    • While progression from normal prostatic epithelium to invasive cancer is driven by molecular alterations, tumor cells and cells in the cancer microenvironment are co-dependent and co-evolve. Few human studies to date have focused on stroma. Here, we performed gene expression profiling of laser capture microdissected normal non-neoplastic prostate epithelial tissue and compared it to non-transformed and neoplastic low-grade and high-grade prostate epithelial tissue from radical prostatectomies, each with its immediately surrounding stroma. Whereas benign epithelium in prostates with and without tumor were similar in gene expression space, stroma away from tumor was significantly different from that in prostates without cancer. A stromal gene signature reflecting bone remodeling and immune-related pathways was upregulated in high compared to low-Gleason grade cases. In validation data, the signature discriminated cases that developed metastasis from those that did not. These data suggest that the microenvironment may influence prostate cancer initiation, maintenance, and metastatic progression.Stromal cells contribute to tumor development but the mechanisms regulating this process are still unclear. Here the authors analyze gene expression profiles in the prostate and show that stromal gene signature changes ahead of the epithelial gene signature as prostate cancer initiates and progresses.
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