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Start Over You searched for: "Carver BS" Remove constraint "Carver BS" Topic prostate cancer Remove constraint Topic: prostate cancer Publisher biomed central Remove constraint Publisher: biomed central
153 results on '"Carver BS"'

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1. Unveiling the molecular profile of a prostate carcinoma: implications for personalized medicine.

2. Targeting mRNA-coding genes in prostate cancer using CRISPR/Cas9 technology with a special focus on androgen receptor signaling.

3. JUN mediates the senescence associated secretory phenotype and immune cell recruitment to prevent prostate cancer progression.

4. TP63–TRIM29 axis regulates enhancer methylation and chromosomal instability in prostate cancer.

5. Integrated analysis identifies GABRB3 as a biomarker in prostate cancer.

6. A pathway activity-based proteomic classifier stratifies prostate tumors into two subtypes.

7. Integrative multi-omics analysis unveils stemness-associated molecular subtypes in prostate cancer and pan-cancer: prognostic and therapeutic significance.

8. Analysis of genetic biomarkers, polymorphisms in ADME-related genes and their impact on pharmacotherapy for prostate cancer.

9. Recent advances and future perspectives in the therapeutics of prostate cancer.

10. The heterogeneity and clonal evolution analysis of the advanced prostate cancer with castration resistance.

11. STAT3/LKB1 controls metastatic prostate cancer by regulating mTORC1/CREB pathway.

12. GATA2 co-opts TGFβ1/SMAD4 oncogenic signaling and inherited variants at 6q22 to modulate prostate cancer progression.

13. METTL1 promotes tumorigenesis through tRNA-derived fragment biogenesis in prostate cancer.

14. Integrative analysis of the ST6GALNAC family identifies GATA2-upregulated ST6GALNAC5 as an adverse prognostic biomarker promoting prostate cancer cell invasion.

15. Aspartoacylase suppresses prostate cancer progression by blocking LYN activation.

16. ScRNA-seq revealed an immunosuppression state and tumor microenvironment heterogeneity related to lymph node metastasis in prostate cancer.

17. Nitazoxanide inhibits acetylated KLF5-induced bone metastasis by modulating KLF5 function in prostate cancer.

18. ncRNA-mediated overexpression of ubiquitin-specific proteinase 13 contributes to the progression of prostate cancer via modulating AR signaling, DNA damage repair and immune infiltration.

19. Optical genome mapping identifies clinically relevant genomic rearrangements in prostate cancer biopsy sample.

20. The architecture of clonal expansions in morphologically normal tissue from cancerous and non-cancerous prostates.

21. Accumulation of copy number alterations and clinical progression across advanced prostate cancer.

22. Evaluation of cystoprostatectomy on patients with prostate cancer extending to bladder: a retrospective study from single center.

23. SLC26A4 correlates with homologous recombination deficiency and patient prognosis in prostate cancer.

24. Endothelial nitric oxide synthase (eNOS)-NO signaling axis functions to promote the growth of prostate cancer stem-like cells.

25. Androgen receptor reprogramming demarcates prognostic, context-dependent gene sets in primary and metastatic prostate cancer.

26. KMT2C methyltransferase domain regulated INK4A expression suppresses prostate cancer metastasis.

27. O-GlcNAc transferase couples MRE11 to transcriptionally active chromatin to suppress DNA damage.

28. Aggressive variants of prostate cancer: underlying mechanisms of neuroendocrine transdifferentiation.

29. Prostate cancer cell proliferation is influenced by LDL-cholesterol availability and cholesteryl ester turnover.

30. TMPRSS4 promotes cancer stem–like properties in prostate cancer cells through upregulation of SOX2 by SLUG and TWIST1.

31. Repurposing FDA approved drugs as radiosensitizers for treating hypoxic prostate cancer.

32. ETV4 promotes late development of prostatic intraepithelial neoplasia and cell proliferation through direct and p53-mediated downregulation of p21.

33. PIM1 accelerates prostate cancer cell motility by phosphorylating actin capping proteins.

34. Independence of HIF1a and androgen signaling pathways in prostate cancer.

35. Comprehensive metabolomics analysis of prostate cancer tissue in relation to tumor aggressiveness and TMPRSS2-ERG fusion status.

36. Upregulation of pERK and c-JUN by γ-tocotrienol and not α-tocopherol are essential to the differential effect on apoptosis in prostate cancer cells.

37. Alterations in the methylome of the stromal tumour microenvironment signal the presence and severity of prostate cancer.

38. SIRT7 depletion inhibits cell proliferation and androgen-induced autophagy by suppressing the AR signaling in prostate cancer.

39. DeepShape: estimating isoform-level ribosome abundance and distribution with Ribo-seq data.

40. miR-221-5p regulates proliferation and migration in human prostate cancer cells and reduces tumor growth in vivo.

41. A TMEFF2-regulated cell cycle derived gene signature is prognostic of recurrence risk in prostate cancer.

42. Aberrant expression of the microtubule-associated protein tau is an independent prognostic feature in prostate cancer.

43. Genomic analysis of DNA repair genes and androgen signaling in prostate cancer.

44. PSCA expression is associated with favorable tumor features and reduced PSA recurrence in operated prostate cancer.

45. High BCAR1 expression is associated with early PSA recurrence in ERG negative prostate cancer.

46. Cribriform and intraductal prostate cancer are associated with increased genomic instability and distinct genomic alterations.

47. The EEF1A2 gene expression as risk predictor in localized prostate cancer.

48. Increased ERCC1 expression is linked to chromosomal aberrations and adverse tumor biology in prostate cancer.

49. Towards targeted combinatorial therapy design for the treatment of castration-resistant prostate cancer.

50. miRNAs associated with prostate cancer risk and progression.

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