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Journal Abstract Search


151 related items for PubMed ID: 20478370

  • 1. Chronic cadmium exposure induces transcriptional activation of the Wnt pathway and upregulation of epithelial-to-mesenchymal transition markers in mouse kidney.
    Chakraborty PK, Scharner B, Jurasovic J, Messner B, Bernhard D, Thévenod F.
    Toxicol Lett; 2010 Sep 15; 198(1):69-76. PubMed ID: 20478370
    [Abstract] [Full Text] [Related]

  • 2. Chronic exposure to nanoparticulate TiO2 causes renal fibrosis involving activation of the Wnt pathway in mouse kidney.
    Hong F, Hong J, Wang L, Zhou Y, Liu D, Xu B, Yu X, Sheng L.
    J Agric Food Chem; 2015 Feb 11; 63(5):1639-47. PubMed ID: 25603832
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  • 3. Wnt-dependent beta-catenin signaling is activated after unilateral ureteral obstruction, and recombinant secreted frizzled-related protein 4 alters the progression of renal fibrosis.
    Surendran K, Schiavi S, Hruska KA.
    J Am Soc Nephrol; 2005 Aug 11; 16(8):2373-84. PubMed ID: 15944336
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  • 4. Wnt signaling inhibits cementoblast differentiation and promotes proliferation.
    Nemoto E, Koshikawa Y, Kanaya S, Tsuchiya M, Tamura M, Somerman MJ, Shimauchi H.
    Bone; 2009 May 11; 44(5):805-12. PubMed ID: 19442631
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  • 5. Changes in expression of fibrotic markers and histopathological alterations in kidneys of mice chronically exposed to low and high Cd doses.
    Thijssen S, Lambrichts I, Maringwa J, Van Kerkhove E.
    Toxicology; 2007 Sep 05; 238(2-3):200-10. PubMed ID: 17646041
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  • 6. Changes in the structure and function of the kidney of rats chronically exposed to cadmium. I. Biochemical and histopathological studies.
    Brzóska MM, Kamiński M, Supernak-Bobko D, Zwierz K, Moniuszko-Jakoniuk J.
    Arch Toxicol; 2003 Jun 05; 77(6):344-52. PubMed ID: 12799774
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  • 10. D-Serine exposure resulted in gene expression changes indicative of activation of fibrogenic pathways and down-regulation of energy metabolism and oxidative stress response.
    Soto A, DelRaso NJ, Schlager JJ, Chan VT.
    Toxicology; 2008 Jan 14; 243(1-2):177-92. PubMed ID: 18061331
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  • 11. SFRP1 and SFRP2 suppress the transformation and invasion abilities of cervical cancer cells through Wnt signal pathway.
    Chung MT, Lai HC, Sytwu HK, Yan MD, Shih YL, Chang CC, Yu MH, Liu HS, Chu DW, Lin YW.
    Gynecol Oncol; 2009 Mar 14; 112(3):646-53. PubMed ID: 19095296
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  • 12. Quercetin inhibit human SW480 colon cancer growth in association with inhibition of cyclin D1 and survivin expression through Wnt/beta-catenin signaling pathway.
    Shan BE, Wang MX, Li RQ.
    Cancer Invest; 2009 Jul 14; 27(6):604-12. PubMed ID: 19440933
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  • 13. Phases of canonical Wnt signaling during the development of mouse intestinal epithelium.
    Kim BM, Mao J, Taketo MM, Shivdasani RA.
    Gastroenterology; 2007 Aug 14; 133(2):529-38. PubMed ID: 17681174
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  • 14. STAT3-induced WNT5A signaling loop in embryonic stem cells, adult normal tissues, chronic persistent inflammation, rheumatoid arthritis and cancer (Review).
    Katoh M, Katoh M.
    Int J Mol Med; 2007 Feb 14; 19(2):273-8. PubMed ID: 17203201
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  • 17. Heavy metal poisoning: the effects of cadmium on the kidney.
    Johri N, Jacquillet G, Unwin R.
    Biometals; 2010 Oct 14; 23(5):783-92. PubMed ID: 20354761
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  • 18. Bone morphogenetic protein-2 modulates Wnt and frizzled expression and enhances the canonical pathway of Wnt signaling in normal keratinocytes.
    Yang L, Yamasaki K, Shirakata Y, Dai X, Tokumaru S, Yahata Y, Tohyama M, Hanakawa Y, Sayama K, Hashimoto K.
    J Dermatol Sci; 2006 May 14; 42(2):111-9. PubMed ID: 16442268
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  • 19. Epigenetic alterations of CDH1 and APC genes: relationship with activation of Wnt/beta-catenin pathway in invasive ductal carcinoma of breast.
    Prasad CP, Mirza S, Sharma G, Prashad R, DattaGupta S, Rath G, Ralhan R.
    Life Sci; 2008 Aug 29; 83(9-10):318-25. PubMed ID: 18662704
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  • 20. Epithelial-mesenchymal transition in ovarian cancer progression: a crucial role for the endothelin axis.
    Bagnato A, Rosanò L.
    Cells Tissues Organs; 2007 Aug 29; 185(1-3):85-94. PubMed ID: 17587812
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