Vitamin D and cancer: a review of molecular mechanisms.
暂无分享,去创建一个
[1] Zhentao Zhang,et al. Dietary Vitamin D and Vitamin D Receptor Level Modulate Epithelial Cell Proliferation and Apoptosis in the Prostate , 2011, Cancer Prevention Research.
[2] M. Loda,et al. Vitamin D receptor protein expression in tumor tissue and prostate cancer progression. , 2011, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[3] J. Hipp,et al. Interleukin-1α mediates the antiproliferative effects of 1,25-dihydroxyvitamin D3 in prostate progenitor/stem cells. , 2011, Cancer research.
[4] S. Cramer,et al. The Tissue-Specific Stem Cell as a Target for Chemoprevention , 2011, Stem Cell Reviews and Reports.
[5] A. Brożyna,et al. Expression of vitamin D receptor decreases during progression of pigmented skin lesions. , 2011, Human pathology.
[6] R. Schreiber,et al. Cancer Immunoediting: Integrating Immunity’s Roles in Cancer Suppression and Promotion , 2011, Science.
[7] C. Heldin,et al. A decisive function of transforming growth factor-β/Smad signaling in tissue morphogenesis and differentiation of human HaCaT keratinocytes , 2011, Molecular biology of the cell.
[8] Fang Liu,et al. A Novel Gemini Vitamin D Analog Represses the Expression of a Stem Cell Marker CD44 in Breast Cancer , 2011, Molecular Pharmacology.
[9] C. Mayne,et al. 1,25‐Dihydroxyvitamin D3 acts directly on the T lymphocyte vitamin D receptor to inhibit experimental autoimmune encephalomyelitis , 2011, European journal of immunology.
[10] Gerald C. Chu,et al. SMAD4-dependent barrier constrains prostate cancer growth and metastatic progression , 2011, Nature.
[11] Anil V. Parwani,et al. Nuclear vitamin D receptor expression is associated with improved survival in non-small cell lung cancer , 2011, The Journal of Steroid Biochemistry and Molecular Biology.
[12] L. Nicholson,et al. Cancer stem cells: problems for therapy? , 2011, The Journal of pathology.
[13] M. Cantorna. Why do T cells express the vitamin D receptor? , 2011, Annals of the New York Academy of Sciences.
[14] Camilla A. Richmond,et al. Mouse telomerase reverse transcriptase (mTert) expression marks slowly cycling intestinal stem cells , 2010, Proceedings of the National Academy of Sciences.
[15] J. Adams,et al. T-cell cytokines differentially control human monocyte antimicrobial responses by regulating vitamin D metabolism , 2010, Proceedings of the National Academy of Sciences.
[16] S. Okada,et al. 22‐Oxa‐1,25‐dihydroxyvitamin D3 efficiently inhibits tumor growth in inoculated mice and primary histoculutre of cholangiocarcinoma , 2010, Cancer.
[17] B. Turner,et al. Epigenetic control of a VDR-governed feed-forward loop that regulates p21(waf1/cip1) expression and function in non-malignant prostate cells , 2010, Nucleic acids research.
[18] C. Weaver,et al. Lineage-specific Effects of 1,25-Dihydroxyvitamin D3 on the Development of Effector CD4 T Cells* , 2010, The Journal of Biological Chemistry.
[19] Gavin Giovannoni,et al. A ChIP-seq defined genome-wide map of vitamin D receptor binding: associations with disease and evolution. , 2010, Genome research.
[20] Bárbara Sousa,et al. Alterations in Vitamin D signalling and metabolic pathways in breast cancer progression: a study of VDR, CYP27B1 and CYP24A1 expression in benign and malignant breast lesions Vitamin D pathways unbalanced in breast lesions , 2010, BMC Cancer.
[21] F. Clavel-Chapelon,et al. Serum 25(OH) Vitamin D and Risk of Breast Cancer: A Nested Case-Control Study from the French E3N Cohort , 2010, Cancer Epidemiology, Biomarkers & Prevention.
[22] John H. White,et al. Stimulation of Sirt1-Regulated FoxO Protein Function by the Ligand-Bound Vitamin D Receptor , 2010, Molecular and Cellular Biology.
[23] Myles A Brown,et al. TCF4 and CDX2, major transcription factors for intestinal function, converge on the same cis-regulatory regions , 2010, Proceedings of the National Academy of Sciences.
[24] Zhentao Zhang,et al. Constitutive activation of the mitogen‐activated protein kinase pathway impairs vitamin D signaling in human prostate epithelial cells , 2010, Journal of cellular physiology.
[25] F. Campbell,et al. Apc(MIN) modulation of vitamin D secosteroid growth control. , 2010, Carcinogenesis.
[26] C. Morrison,et al. Epigenetic regulation of vitamin D 24-hydroxylase/CYP24A1 in human prostate cancer. , 2010, Cancer Research.
[27] R. D. Nerenz,et al. Emerging regulatory paradigms for control of gene expression by 1,25-dihydroxyvitamin D3 , 2010, The Journal of Steroid Biochemistry and Molecular Biology.
[28] M. Jäättelä,et al. Autophagy as a basis for the health-promoting effects of vitamin D. , 2010, Trends in molecular medicine.
[29] J. Reichrath,et al. VDR microRNA expression and epigenetic silencing of vitamin D signaling in melanoma cells , 2010, The Journal of Steroid Biochemistry and Molecular Biology.
[30] A. Muñoz,et al. The effects of 1,25-dihydroxyvitamin D3 on colon cancer cells depend on RhoA-ROCK-p38MAPK-MSK signaling , 2010, The Journal of Steroid Biochemistry and Molecular Biology.
[31] M. Fackler,et al. DNA methylation-related vitamin D receptor insensitivity in breast cancer , 2010, Cancer biology & therapy.
[32] J. Welsh,et al. Tumor progression in the LPB-Tag transgenic model of prostate cancer is altered by vitamin D receptor and serum testosterone status , 2010, The Journal of Steroid Biochemistry and Molecular Biology.
[33] R. Schiestl,et al. Mechanisms of intestinal inflammation and development of associated cancers: lessons learned from mouse models. , 2010, Mutation research.
[34] J. Pike,et al. Genome-wide analysis of the VDR/RXR cistrome in osteoblast cells provides new mechanistic insight into the actions of the vitamin D hormone , 2010, The Journal of Steroid Biochemistry and Molecular Biology.
[35] F. Hoellen,et al. Expression of vitamin D receptor (VDR), cyclooxygenase-2 (COX-2) and 15-hydroxyprostaglandin dehydrogenase (15-PGDH) in benign and malignant ovarian tissue and 25-hydroxycholecalciferol (25(OH2)D3) and prostaglandin E2 (PGE2) serum level in ovarian cancer patients , 2010, The Journal of Steroid Biochemistry and Molecular Biology.
[36] M. Campbell,et al. Transcription factor co‐repressors in cancer biology: roles and targeting , 2010, International journal of cancer.
[37] Huiqing Yuan,et al. MicroRNAs and prostate cancer. , 2010, Acta biochimica et biophysica Sinica.
[38] V. Lagishetty,et al. Vitamin D deficiency in mice impairs colonic antibacterial activity and predisposes to colitis. , 2010, Endocrinology.
[39] E. Jacobs,et al. Vitamin D receptor ligands, adenomatous polyposis coli, and the vitamin D receptor FokI polymorphism collectively modulate β‐catenin activity in colon cancer cells , 2010, Molecular carcinogenesis.
[40] I. Simon,et al. Modulation of the vitamin D3 response by cancer-associated mutant p53. , 2010, Cancer cell.
[41] H. DeLuca,et al. Identification of a highly specific and versatile vitamin D receptor antibody. , 2010, Archives of biochemistry and biophysics.
[42] J. Auwerx,et al. The intestinal nuclear receptor signature with epithelial localization patterns and expression modulation in tumors. , 2010, Gastroenterology.
[43] Jun Lu,et al. Vitamin D stimulates apoptosis in gastric cancer cells in synergy with trichostatin A /sodium butyrate‐induced and 5‐aza‐2′‐deoxycytidine‐induced PTEN upregulation , 2010, The FEBS journal.
[44] Zhentao Zhang,et al. 1,25 dihydroxyvitamin D-mediated orchestration of anticancer, transcript-level effects in the immortalized, non-transformed prostate epithelial cell line, RWPE1 , 2010, BMC Genomics.
[45] M. McCullough,et al. Effects of Supplemental Vitamin D and Calcium on Oxidative DNA Damage Marker in Normal Colorectal Mucosa: A Randomized Clinical Trial , 2010, Cancer Epidemiology, Biomarkers & Prevention.
[46] John H. White,et al. Direct and Indirect Induction by 1,25-Dihydroxyvitamin D3 of the NOD2/CARD15-Defensin β2 Innate Immune Pathway Defective in Crohn Disease* , 2009, The Journal of Biological Chemistry.
[47] J. Welsh,et al. Control of TCF-4 Expression by VDR and Vitamin D in the Mouse Mammary Gland and Colorectal Cancer Cell Lines , 2009, PloS one.
[48] J. L. Costa,et al. Anti-proliferative action of vitamin D in MCF7 is still active after siRNA-VDR knock-down , 2009, BMC Genomics.
[49] R. Bostick,et al. Effects of Vitamin D and Calcium on Proliferation and Differentiation In Normal Colon Mucosa: a Randomized Clinical Trial , 2009, Cancer Epidemiology, Biomarkers & Prevention.
[50] S. Takagi,et al. Human CYP24 Catalyzing the Inactivation of Calcitriol Is Post-Transcriptionally Regulated by miR-125b , 2009, Molecular Pharmacology.
[51] Shuji Ogino,et al. Vitamin D Receptor Expression Is Associated with PIK3CA and KRAS Mutations in Colorectal Cancer , 2009, Cancer Epidemiology, Biomarkers & Prevention.
[52] Shingo Takagi,et al. MicroRNA regulates human vitamin D receptor , 2009, International journal of cancer.
[53] H. Cross,et al. Modulation of vitamin D synthesis and catabolism in colorectal mucosa: a new target for cancer prevention. , 2009, Anticancer research.
[54] C. Bonorino,et al. Tumor immunosuppressive environment: effects on tumor-specific and nontumor antigen immune responses , 2009, Expert review of anticancer therapy.
[55] Michael R. Green,et al. Identification of a protein, G0S2, that lacks Bcl-2 homology domains and interacts with and antagonizes Bcl-2. , 2009, Cancer research.
[56] A. G. de Herreros,et al. Snail2 cooperates with Snail1 in the repression of vitamin D receptor in colon cancer. , 2009, Carcinogenesis.
[57] S. Mohr,et al. Ecological studies of ultraviolet B, vitamin D and cancer since 2000. , 2009, Annals of epidemiology.
[58] M. Aldea,et al. 1,25-dihydroxyvitamin D3 regulates VEGF production through a vitamin D response element in the VEGF promoter. , 2009, Atherosclerosis.
[59] Heather R. Roberts,et al. The COX-2/PGE2 pathway: key roles in the hallmarks of cancer and adaptation to the tumour microenvironment. , 2009, Carcinogenesis.
[60] C. Mathieu,et al. Impact of vitamin D receptor activity on experimental autoimmune prostatitis. , 2009, Journal of autoimmunity.
[61] L. Nagy,et al. 1,25-Dihydroxyvitamin D3 Is an Autonomous Regulator of the Transcriptional Changes Leading to a Tolerogenic Dendritic Cell Phenotype12 , 2009, The Journal of Immunology.
[62] Bryan M. Gillard,et al. Role of vitamin D receptor in the antiproliferative effects of calcitriol in tumor-derived endothelial cells and tumor angiogenesis in vivo. , 2009, Cancer research.
[63] S. Tretli,et al. Association between serum 25(OH)D and death from prostate cancer , 2009, British Journal of Cancer.
[64] D. Bruce,et al. Failure of T cell homing, reduced CD4/CD8αα intraepithelial lymphocytes, and inflammation in the gut of vitamin D receptor KO mice , 2008, Proceedings of the National Academy of Sciences.
[65] Carly M. Kemmis,et al. Mammary epithelial cell transformation is associated with deregulation of the vitamin D pathway , 2008, Journal of cellular biochemistry.
[66] Andreas Radbruch,et al. 1,25‐dihydroxyvitamin D3 promotes IL‐10 production in human B cells , 2008, European journal of immunology.
[67] C. Carlberg,et al. DICKKOPF-4 is induced by TCF/β-catenin and upregulated in human colon cancer, promotes tumour cell invasion and angiogenesis and is repressed by 1α,25-dihydroxyvitamin D3 , 2008, Oncogene.
[68] G. Chaudhuri,et al. In vivo binding to and functional repression of the VDR gene promoter by SLUG in human breast cells. , 2008, Biochemical and biophysical research communications.
[69] M. Day,et al. The role of Nrf2 in increased reactive oxygen species and DNA damage in prostate tumorigenesis , 2008, Oncogene.
[70] J. Milner,et al. Diet, Autophagy, and Cancer: A Review , 2008, Cancer Epidemiology Biomarkers & Prevention.
[71] B. Bao,et al. Protective role of 1α, 25‐dihydroxyvitamin D3 against oxidative stress in nonmalignant human prostate epithelial cells , 2008, International journal of cancer.
[72] D. Hommes,et al. The bone morphogenetic protein pathway is inactivated in the majority of sporadic colorectal cancers. , 2008, Gastroenterology.
[73] B. Burgering,et al. A brief introduction to FOXOlogy , 2008, Oncogene.
[74] R. Gallo,et al. Histone acetylation in keratinocytes enables control of the expression of cathelicidin and CD14 by 1,25-dihydroxyvitamin D3. , 2008, The Journal of investigative dermatology.
[75] T. Ratliff,et al. Prostate inflammation and its potential impact on prostate cancer: A current review , 2008, Journal of cellular biochemistry.
[76] S. Soker,et al. Characterization of Adult Prostatic Progenitor/Stem Cells Exhibiting Self‐Renewal and Multilineage Differentiation , 2008, Stem cells.
[77] Sungtae Kim,et al. Molecular Actions of 1,25‐Dihydroxyvitamin D3 on Genes Involved in Calcium Homeostasis , 2007, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[78] M. Bissonnette,et al. A vitamin D analogue inhibits colonic carcinogenesis in the AOM/DSS model. , 2007, The Journal of surgical research.
[79] R. Benya,et al. CYP27A1 and CYP24 Expression as a Function of Malignant Transformation in the Colon , 2007, Journal of Histochemistry and Cytochemistry.
[80] M. Fraga,et al. The Wnt antagonist DICKKOPF-1 gene is induced by 1alpha,25-dihydroxyvitamin D3 associated to the differentiation of human colon cancer cells. , 2007, Carcinogenesis.
[81] Wei Wu,et al. 1alpha,25-Dihydroxyvitamin D(3) antiproliferative actions involve vitamin D receptor-mediated activation of MAPK pathways and AP-1/p21(waf1) upregulation in human osteosarcoma. , 2007, Cancer letters.
[82] K. Müller-Decker,et al. The cyclooxygenase‐2‐mediated prostaglandin signaling is causally related to epithelial carcinogenesis , 2007, Molecular carcinogenesis.
[83] A. Zannettino,et al. Metabolism of vitamin D3 in human osteoblasts: evidence for autocrine and paracrine activities of 1 alpha,25-dihydroxyvitamin D3. , 2007, Bone.
[84] R. Kumar,et al. Vitamin D receptor-mediated suppression of RelB in antigen presenting cells: a paradigm for ligand-augmented negative transcriptional regulation. , 2007, Archives of biochemistry and biophysics.
[85] D. Dang,et al. 1α,25-dihydroxyvitamin D3 (Calcitriol) inhibits hypoxia-inducible factor-1/vascular endothelial growth factor pathway in human cancer cells , 2007, Molecular Cancer Therapeutics.
[86] Donald L. Trump,et al. CYP24 splicing variants are associated with different patterns of constitutive and calcitriol-inducible CYP24 activity in human prostate cancer cell lines , 2007, The Journal of Steroid Biochemistry and Molecular Biology.
[87] A. Muñoz,et al. The inhibition of Wnt/β-catenin signalling by 1α,25-dihydroxyvitamin D3 is abrogated by Snail1 in human colon cancer cells , 2007 .
[88] M. Tang,et al. Synergism between vitamin D and secreted protein acidic and rich in cysteine–induced apoptosis and growth inhibition results in increased susceptibility of therapy-resistant colorectal cancer cells to chemotherapy , 2007, Molecular Cancer Therapeutics.
[89] M. Lucia,et al. Prostate derived factor in human prostate cancer cells: Gene induction by vitamin D via a p53‐dependent mechanism and inhibition of prostate cancer cell growth , 2006, Journal of cellular physiology.
[90] Jorge Yao,et al. 1 a , 25-dihydroxyvitamin D 3 suppresses interleukin-8-mediated prostate cancer cell angiogenesis , 2006 .
[91] D. Notterman,et al. Gene expression profiling changes induced by a novel Gemini Vitamin D derivative during the progression of breast cancer. , 2006, Biochemical pharmacology.
[92] J. Behrens,et al. The canonical Wnt signalling pathway and its APC partner in colon cancer development , 2006, Gut.
[93] C. Benz,et al. Optimized high-throughput microRNA expression profiling provides novel biomarker assessment of clinical prostate and breast cancer biopsies , 2006, Molecular Cancer.
[94] M. Toyota,et al. Comparative genome analysis identifies the vitamin D receptor gene as a direct target of p53-mediated transcriptional activation. , 2006, Cancer research.
[95] D. Peehl,et al. Inhibition of p38 by vitamin D reduces interleukin-6 production in normal prostate cells via mitogen-activated protein kinase phosphatase 5: implications for prostate cancer prevention by vitamin D. , 2006, Cancer research.
[96] Yan Liu,et al. Prospective study of predictors of vitamin D status and cancer incidence and mortality in men. , 2006, Journal of the National Cancer Institute.
[97] J. Welsh,et al. The Molecular Basis of Vitamin D Receptor and β-Catenin Crossregulation , 2006 .
[98] M. Valko,et al. Free radicals, metals and antioxidants in oxidative stress-induced cancer. , 2006, Chemico-biological interactions.
[99] John H. White,et al. Convergence of vitamin D and retinoic acid signalling at a common hormone response element , 2006, EMBO reports.
[100] J. Trosko. Dietary Modulation of the Multistage, Multimechanisms of Human Carcinogenesis: Effects on Initiated Stem Cells and Cell–Cell Communication , 2006, Nutrition and cancer.
[101] Robert D. Cardiff,et al. Selective Evolution of Stromal Mesenchyme with p53 Loss in Response to Epithelial Tumorigenesis , 2005, Cell.
[102] José Miguel García,et al. E-cadherin and vitamin D receptor regulation by SNAIL and ZEB1 in colon cancer: clinicopathological correlations. , 2005, Human molecular genetics.
[103] Xianquan Zhan,et al. Novel molecular signaling and classification of human clinically nonfunctional pituitary adenomas identified by gene expression profiling and proteomic analyses. , 2005, Cancer research.
[104] S. Nicosia,et al. Suppression of Death Receptor-mediated Apoptosis by 1,25-Dihydroxyvitamin D3 Revealed by Microarray Analysis* , 2005, Journal of Biological Chemistry.
[105] M. Holick,et al. Vitamin D deficiency enhances the growth of MC-26 colon cancer xenografts in Balb/c mice. , 2005, The Journal of nutrition.
[106] D. Feldman,et al. Molecular mechanisms mediating the anti-proliferative effects of Vitamin D in prostate cancer , 2005, The Journal of Steroid Biochemistry and Molecular Biology.
[107] M. Jäättelä,et al. Vitamin D analog EB1089 triggers dramatic lysosomal changes and Beclin 1-mediated autophagic cell death , 2005, Cell Death and Differentiation.
[108] R. Benya,et al. Expression of Vitamin D Receptor and 25-Hydroxyvitamin D3-1α-Hydroxylase in Normal and Malignant Human Colon , 2005, Cancer Epidemiology Biomarkers & Prevention.
[109] J. Welsh,et al. Vitamin D receptor (VDR) ablation alters carcinogen-induced tumorigenesis in mammary gland, epidermis and lymphoid tissues , 2005, The Journal of Steroid Biochemistry and Molecular Biology.
[110] Marta García,et al. 1α,25-Dihydroxyvitamin D3 regulates the expression of Id1 and Id2 genes and the angiogenic phenotype of human colon carcinoma cells , 2005, Oncogene.
[111] David Feldman,et al. Regulation of prostaglandin metabolism by calcitriol attenuates growth stimulation in prostate cancer cells. , 2005, Cancer research.
[112] H. Koeffler,et al. Human cathelicidin antimicrobial peptide (CAMP) gene is a direct target of the vitamin D receptor and is strongly up‐regulated in myeloid cells by 1,25‐dihydroxyvitamin D3 , 2005, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[113] G. Wong,et al. CD14 and toll-like receptors: potential contribution of genetic factors and mechanisms to inflammation and allergy. , 2005, Current drug targets. Inflammation and allergy.
[114] Chuan-xin Wu,et al. The U937 cell line induced to express CD14 protein by 1,25-dihydroxyvitamin D3 and be sensitive to endotoxin stimulation. , 2005, Hepatobiliary & Pancreatic Diseases International.
[115] M. Holick,et al. P12 Analysis of 25-hydroxyvitamin d3-1a-hydroxylase in normal and malignant breast tissue , 2005 .
[116] M. Cantorna,et al. Mounting Evidence for Vitamin D as an Environmental Factor Affecting Autoimmune Disease Prevalence , 2004, Experimental biology and medicine.
[117] Yan Zhu,et al. Vitamin D status, 1,25-dihydroxyvitamin D3, and the immune system. , 2004, The American journal of clinical nutrition.
[118] H. DeLuca,et al. Gene expression profiles in rat intestine identify pathways for 1,25-dihydroxyvitamin D3 stimulated calcium absorption and clarify its immunomodulatory properties , 2004, Archives of Biochemistry and Biophysics.
[119] J. Brooks,et al. Molecular activity of 1,25-dihydroxyvitamin D3 in primary cultures of human prostatic epithelial cells revealed by cDNA microarray analysis , 2004, The Journal of Steroid Biochemistry and Molecular Biology.
[120] R. Mehta. Stage-specific inhibition of mammary carcinogenesis by 1α-hydroxyvitamin D5 , 2004 .
[121] John H. White,et al. Cutting Edge: 1,25-Dihydroxyvitamin D3 Is a Direct Inducer of Antimicrobial Peptide Gene Expression1 , 2004, The Journal of Immunology.
[122] D. Teegarden,et al. 1α,25-Dihydroxycholecalciferol Increases the Expression of Vascular Endothelial Growth Factor in C3H10T½ Mouse Embryo Fibroblasts , 2004 .
[123] A. Bernad,et al. The transcription factor SNAIL represses vitamin D receptor expression and responsiveness in human colon cancer , 2004, Nature Medicine.
[124] E. Meese,et al. Analysis of the vitamin D system in basal cell carcinomas (BCCs) , 2004, Laboratory Investigation.
[125] J. Brooks,et al. Analysis of vitamin D‐regulated gene expression in LNCaP human prostate cancer cells using cDNA microarrays , 2004, The Prostate.
[126] M. Chatterjee,et al. 1alpha, 25-dihydroxyvitamin D3 prevents DNA damage and restores antioxidant enzymes in rat hepatocarcinogenesis induced by diethylnitrosamine and promoted by phenobarbital. , 2004, World journal of gastroenterology.
[127] P. Malloy,et al. Identification of a functional vitamin D response element in the human insulin-like growth factor binding protein-3 promoter. , 2004, Molecular endocrinology.
[128] J. Welsh,et al. Vitamin D Receptor and p21/WAF1 Are Targets of Genistein and 1,25-Dihydroxyvitamin D3 in Human Prostate Cancer Cells , 2004, Cancer Research.
[129] P. Tuohimaa,et al. 25‐Hydroxyvitamin D3 is an active hormone in human primary prostatic stromal cells , 2004, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[130] G. Weigel,et al. Molecular analysis of p21 promoter activity isolated from squamous carcinoma cell lines of the head and neck under the influence of 1,25(OH)2 vitamin D3 and its analogs , 2004, Acta oto-laryngologica.
[131] B. De Moor,et al. The Effects of 1α,25‐Dihydroxyvitamin D3 on the Expression of DNA Replication Genes , 2003 .
[132] J. Welsh,et al. A crucial role for the vitamin D receptor in experimental inflammatory bowel diseases. , 2003, Molecular endocrinology.
[133] S. Nicosia,et al. G2/M Arrest by 1,25-Dihydroxyvitamin D3 in Ovarian Cancer Cells Mediated through the Induction of GADD45 via an Exonic Enhancer* , 2003, Journal of Biological Chemistry.
[134] C. Cordon-Cardo,et al. Genetic signatures of differentiation induced by 1alpha,25-dihydroxyvitamin D3 in human colon cancer cells. , 2003, Cancer research.
[135] M. Hediger,et al. Calcium transporter 1 and epithelial calcium channel messenger ribonucleic acid are differentially regulated by 1,25 dihydroxyvitamin D3 in the intestine and kidney of mice. , 2003, Endocrinology.
[136] N. Raghavachari,et al. Vitamin D Growth Inhibition of Breast Cancer Cells: Gene Expression Patterns Assessed by cDNA Microarray , 2003, Breast Cancer Research and Treatment.
[137] G. Oades,et al. Nitrogen containing bisphosphonates induce apoptosis and inhibit the mevalonate pathway, impairing Ras membrane localization in prostate cancer cells. , 2003, The Journal of urology.
[138] H. Mukhtar,et al. Cyclooxygenase-2 and prostate carcinogenesis. , 2003, Cancer letters.
[139] M. Holick,et al. Prostatic 25‐hydroxyvitamin D‐1α‐hydroxylase and its implication in prostate cancer , 2003, Journal of cellular biochemistry.
[140] L. Coussens,et al. Inflammation and cancer , 2002, Nature.
[141] J. Rhim,et al. Targeted Disruption of the 25-Hydroxyvitamin D3 1α-Hydroxylase Gene in ras-Transformed Keratinocytes Demonstrates That Locally Produced 1α,25-Dihydroxyvitamin D3 Suppresses Growth and Induces Differentiation in an Autocrine Fashion11 Canadian Institutes of Health Research Grant MT10839 (to R.K.). , 2002 .
[142] H. Hurst,et al. Targeting of SWI/SNF chromatin remodelling complexes to estrogen‐responsive genes , 2002, The EMBO journal.
[143] J. Barsony,et al. Retinoid X receptor dominates the nuclear import and export of the unliganded vitamin D receptor. , 2002, Molecular endocrinology.
[144] John H. White,et al. Expression profiling in squamous carcinoma cells reveals pleiotropic effects of vitamin D3 analog EB1089 signaling on cell proliferation, differentiation, and immune system regulation. , 2002, Molecular endocrinology.
[145] D. Heber,et al. 1α, 25-(OH)2-D3 and its synthetic analogue decrease tumor load in the Apcmin mouse , 2002 .
[146] S. De Flora,et al. ‘Angioprevention’: angiogenesis is a common and key target for cancer chemopreventive agents , 2002, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[147] C. Mathieu,et al. In Vitro and In Vivo Analysis of the Immune System of Vitamin D Receptor Knockout Mice , 2001, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[148] G. Miller,et al. Growth inhibitory effects of 1alpha, 25-dihydroxyvitamin D(3) are mediated by increased levels of p21 in the prostatic carcinoma cell line ALVA-31. , 2001, Cancer research.
[149] S. Plymate,et al. Regulation of proliferation of prostate epithelial cells by 1,25-dihydroxyvitamin D3 is accompanied by an increase in insulin-like growth factor binding protein-3. , 2001, The Journal of endocrinology.
[150] L. Yang,et al. Autocrine TGFβ signaling mediates vitamin D3 analog‐induced growth inhibition in breast cells , 2001, Journal of cellular physiology.
[151] S. Kato,et al. Characterization of a vitamin D receptor knockout mouse as a model of colorectal hyperproliferation and DNA damage. , 2001, Carcinogenesis.
[152] R. Wood,et al. 1,25-Dihydroxyvitamin D3 increases the expression of the CaT1 epithelial calcium channel in the Caco-2 human intestinal cell line , 2001, BMC Physiology.
[153] A. G. de Herreros,et al. Vitamin D3 promotes the differentiation of colon carcinoma cells by the induction of E-cadherin and the inhibition of β-catenin signaling , 2001, The Journal of cell biology.
[154] John H. White,et al. Regulation of Gene Expression by 1α,25-Dihydroxyvitamin D3 and Its Analog EB1089 under Growth-Inhibitory Conditions in Squamous Carcinoma Cells , 2001 .
[155] P. Cohen,et al. Insulin-like growth factor binding protein-3 mediates 1 alpha,25-dihydroxyvitamin d(3) growth inhibition in the LNCaP prostate cancer cell line through p21/WAF1. , 2001, The Journal of urology.
[156] J. McNeal,et al. Reduced 1alpha-hydroxylase activity in human prostate cancer cells correlates with decreased susceptibility to 25-hydroxyvitamin D3-induced growth inhibition. , 2001, Cancer research.
[157] A. Howie,et al. Extrarenal Expression of 25-Hydroxyvitamin D3-1α-Hydroxylase1 , 2001 .
[158] Grace C. Lin,et al. Dimerization with Retinoid X Receptors Promotes Nuclear Localization and Subnuclear Targeting of Vitamin D Receptors* , 2000, The Journal of Biological Chemistry.
[159] M. Hakama,et al. Prostate cancer risk and prediagnostic serum 25-hydroxyvitamin D levels (Finland) , 2000, Cancer Causes & Control.
[160] P. White,et al. The Multifunctional Properties and Characteristics of Vitamin D-binding Protein , 2000, Trends in Endocrinology & Metabolism.
[161] D. Zehnder,et al. 1alpha-Hydroxylase and the action of vitamin D. , 2000, Journal of molecular endocrinology.
[162] N. Bundred,et al. 1α,25-Dihydroxyvitamin D3 Inhibits Angiogenesis In Vitro and In Vivo , 2000 .
[163] W. Kuo,et al. Quantitative mapping of amplicon structure by array CGH identifies CYP24 as a candidate oncogene , 2000, Nature Genetics.
[164] C. Paraskeva,et al. Apoptosis is induced by the active metabolite of vitamin D3 and its analogue EB1089 in colorectal adenoma and carcinoma cells: possible implications for prevention and therapy. , 2000, Cancer research.
[165] A. Badawi. The role of prostaglandin synthesis in prostate cancer , 2000, BJU international.
[166] K. Macleod. Tumor suppressor genes. , 2000, Current opinion in genetics & development.
[167] Wild Ac,et al. Regulation of gamma-glutamylcysteine synthetase subunit gene expression by the transcription factor Nrf2. , 1999 .
[168] M. Jäättelä,et al. Apoptosis induced by vitamin D compounds in breast cancer cells is inhibited by Bcl-2 but does not involve known caspases or p53. , 1999, Cancer research.
[169] R. Evans,et al. Regulation of Hormone-Induced Histone Hyperacetylation and Gene Activation via Acetylation of an Acetylase , 1999, Cell.
[170] John H. White,et al. Mitogen-activated protein kinase inhibits 1,25-dihydroxyvitamin D3–dependent signal transduction by phosphorylating human retinoid X receptor α , 1999 .
[171] Paul Tempst,et al. Ligand-dependent transcription activation by nuclear receptors requires the DRIP complex , 1999, Nature.
[172] L. Freedman. Increasing the Complexity of Coactivation in Nuclear Receptor Signaling , 1999, Cell.
[173] P. Quesenberry,et al. Expression of multiple angiogenic cytokines in cultured normal human prostate epithelial cells: Predominance of vascular endothelial growth factor , 1999, International journal of cancer.
[174] T. Craig,et al. Identification of 1α,25-Dihydroxyvitamin D3 Response Elements in the Human Transforming Growth Factor β2 Gene† , 1999 .
[175] M. Brentani,et al. Vitamin D3 receptor (VDR) expression in HC‐11 mammary cells: regulation by growth‐modulatory agents, differentiation, and Ha‐ras transformation , 1999, Breast Cancer Research and Treatment.
[176] H. Huynh,et al. Vitamin D analogue EB1089-induced prostate regression is associated with increased gene expression of insulin-like growth factor binding proteins. , 1999, The Journal of endocrinology.
[177] H. Huynh,et al. Regulation of insulin-like growth factor (IGF) II and IGF binding protein 3 autocrine loop in human PC-3 prostate cancer cells by vitamin D metabolite 1,25(OH)2D3 and its analog EB1089. , 1998, International journal of oncology.
[178] K. Burnstein,et al. Antiproliferative Effect of 1α,25-Dihydroxyvitamin D3 in Human Prostate Cancer Cell Line LNCaP Involves Reduction of Cyclin-Dependent Kinase 2 Activity and Persistent G1 Accumulation. , 1998, Endocrinology.
[179] M. Haussler,et al. The Nuclear Vitamin D Receptor: Biological and Molecular Regulatory Properties Revealed , 1998, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[180] C. Perks,et al. Growth inhibition of both MCF-7 and Hs578T human breast cancer cell lines by vitamin D analogues is associated with increased expression of insulin-like growth factor binding protein-3. , 1998, Journal of molecular endocrinology.
[181] J. Welsh,et al. Differential effects of 1,25-dihydroxyvitamin D3 and tetradecanoylphorbol acetate on cell cycle and apoptosis of MCF-7 cells and a vitamin D3-resistant variant. , 1997, Endocrinology.
[182] J. Barsony,et al. Subcellular Distribution of Normal and Mutant Vitamin D Receptors in Living Cells , 1997, The Journal of Biological Chemistry.
[183] K. Burnstein,et al. Vitamin D receptor content and transcriptional activity do not fully predict antiproliferative effects of vitamin D in human prostate cancer cell lines , 1997, Molecular and Cellular Endocrinology.
[184] G. Miller,et al. Vitamin D receptor expression is required for growth modulation by 1α,25-dihydroxyvitamin D3 in the human prostatic carcinoma cell line ALVA-31 , 1996, The Journal of Steroid Biochemistry and Molecular Biology.
[185] G. Miller,et al. Stable expression of the nuclear vitamin D receptor in the human prostatic carcinoma cell line JCA-1: evidence that the antiproliferative effects of 1 alpha, 25-dihydroxyvitamin D3 are mediated exclusively through the genomic signaling pathway. , 1996, Endocrinology.
[186] L. Freedman,et al. Transcriptional activation of the Cdk inhibitor p21 by vitamin D3 leads to the induced differentiation of the myelomonocytic cell line U937. , 1996, Genes & development.
[187] S. Fukushima,et al. Inhibition of intestinal tumor development in rat multi-organ carcinogenesis and aberrant crypt foci in rat colon carcinogenesis by 22-oxa-calcitriol, a synthetic analogue of 1 alpha, 25-dihydroxyvitamin D3. , 1995, Carcinogenesis.
[188] J. Welsh,et al. 1,25-Dihydroxyvitamin D3 translocates protein kinase C beta to nucleus and enhances plasma membrane association of protein kinase C alpha in renal epithelial cells. , 1994, The Journal of biological chemistry.
[189] D. Peehl,et al. Vitamin D and prostate cancer: 1,25 dihydroxyvitamin D3 receptors and actions in human prostate cancer cell lines. , 1993, Endocrinology.
[190] A. Halline,et al. Dietary calcium and vitamin D modulate 1,2-dimethylhydrazine-induced colonic carcinogenesis in the rat. , 1991, Cancer research.
[191] N. Davidson,et al. K-ras mutations in 1,2-dimethylhydrazine-induced colonic tumors: effects of supplemental dietary calcium and vitamin D deficiency. , 1991, Cancer research.
[192] J. Pike,et al. Immunocytology with microwave-fixed fibroblasts shows 1 alpha,25- dihydroxyvitamin D3-dependent rapid and estrogen-dependent slow reorganization of vitamin D receptors , 1990, The Journal of cell biology.
[193] K. Norwich,et al. Role of 25-hydroxyvitamin D3 dose in determining rat 1,25-dihydroxyvitamin D3 production. , 1990, The American journal of physiology.
[194] R. Mason,et al. Tumor necrosis factor‐alpha induces vitamin D‐1‐hydroxylase activity in normal human alveolar macrophages , 1990, Journal of cellular physiology.
[195] C. Garland,et al. SERUM 25-HYDROXYVITAMIN D AND COLON CANCER: EIGHT-YEAR PROSPECTIVE STUDY , 1989, The Lancet.
[196] B. Levin,et al. The role of vitamin D3 in the proliferation of a human colon cancer cell line in vitro. , 1987, Anticancer research.
[197] R. Kumar,et al. Effect of 1,25‐dihydroxyvitamin D3 on mouse mammary tumor (GR) cells: Evidence for receptors, cellular uptake, inhibition of growth and alteration in morphology at physiologic concentrations of hormone , 1986, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[198] D. Feldman,et al. 1,25-dihydroxyvitamin D3 and malignant melanoma: the presence of receptors and inhibition of cell growth in culture. , 1981, Endocrinology.
[199] C. Garland,et al. Do sunlight and vitamin D reduce the likelihood of colon cancer? , 1980, International journal of epidemiology.
[200] M. Bissonnette,et al. Inactivation of the vitamin D receptor in APCmin/+ mice reveals a critical role for the vitamin D receptor in intestinal tumor growth , 2012, International journal of cancer.
[201] H. Ateş,et al. Treatment of K562 cells with 1,25-dihydroxyvitamin D3 induces distinct alterations in the expression of apoptosis-related genes BCL2, BAX, BCLXL, and p21 , 2009, Annals of Hematology.
[202] G. Ning,et al. Novel role of the vitamin D receptor in maintaining the integrity of the intestinal mucosal barrier. , 2008, American journal of physiology. Gastrointestinal and liver physiology.
[203] C. Weaver,et al. Calcium in Human Health , 2006 .
[204] J. Fleet. Molecular Regulation of Calcium Metabolism , 2006 .
[205] Xiaoan Ruan,et al. Expression of VDR and CYP24A1 mRNA in human tumors , 2005, Cancer Chemotherapy and Pharmacology.
[206] Andre Kajdacsy-Balla,et al. Requirement of cyclooxygenase-2 expression and prostaglandins for human prostate cancer cell invasion , 2004, Clinical & Experimental Metastasis.
[207] M. Holick,et al. Evaluation of vitamin D analogs as therapeutic agents for prostate cancer. , 2003, Recent results in cancer research. Fortschritte der Krebsforschung. Progres dans les recherches sur le cancer.
[208] J. Reichrath,et al. Analysis of the vitamin D system in cervical carcinomas, breast cancer and ovarian cancer. , 2003, Recent results in cancer research. Fortschritte der Krebsforschung. Progres dans les recherches sur le cancer.
[209] Jingsong Zhang,et al. Expression of toll-like receptors 2 and 4 and CD14 during differentiation of HL-60 cells induced by phorbol 12-myristate 13-acetate and 1 alpha, 25-dihydroxy-vitamin D(3). , 2002, Cell growth & differentiation : the molecular biology journal of the American Association for Cancer Research.
[210] D. Thurnher,et al. 1,25(OH)2 vitamin D3 induces elevated expression of the cell cycle-regulating genes P21 and P27 in squamous carcinoma cell lines of the head and neck. , 2001, Acta oto-laryngologica.
[211] D. Zehnder,et al. 1-Hydroxylase and the action of vitamin D , 2000 .
[212] N. Weigel,et al. Calcitriol-induced apoptosis in LNCaP cells is blocked by overexpression of Bcl-2. , 2000, Endocrinology.
[213] Y. Liel,et al. Estrogen increases 1,25-dihydroxyvitamin D receptors expression and bioresponse in the rat duodenal mucosa. , 1999, Endocrinology.
[214] T. Nikaido,et al. Vitamin D analogues up-regulate p21 and p27 during growth inhibition of pancreatic cancer cell lines. , 1997, British Journal of Cancer.