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Journal Abstract Search


55 related items for PubMed ID: 11971172

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  • 2. Regulation of intestinal phosphate transport. II. Metabolic acidosis stimulates Na(+)-dependent phosphate absorption and expression of the Na(+)-P(i) cotransporter NaPi-IIb in small intestine.
    Stauber A, Radanovic T, Stange G, Murer H, Wagner CA, Biber J.
    Am J Physiol Gastrointest Liver Physiol; 2005 Mar; 288(3):G501-6. PubMed ID: 15701624
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  • 3. [Na+/dicarboxylate cotransporter expression changed with aging in basolateral membrane of the renal tubular epithelial cells].
    Peng LX, Chen XM, Liu H, Hong Q, Zhang L, Shi SZ, Zhang XG, Bai XY, Zhu HY.
    Zhonghua Yi Xue Za Zhi; 2003 Jan 25; 83(2):123-7. PubMed ID: 12812680
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  • 7. Induction and targeting of the glutamine transporter SN1 to the basolateral membranes of cortical kidney tubule cells during chronic metabolic acidosis suggest a role in pH regulation.
    Solbu TT, Boulland JL, Zahid W, Lyamouri Bredahl MK, Amiry-Moghaddam M, Storm-Mathisen J, Roberg BA, Chaudhry FA.
    J Am Soc Nephrol; 2005 Apr 25; 16(4):869-77. PubMed ID: 15716335
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  • 8. Metabolic acidosis in sheep alters expression of renal and skeletal muscle amino acid enzymes and transporters.
    Xue Y, Liao SF, Son KW, Greenwood SL, McBride BW, Boling JA, Matthews JC.
    J Anim Sci; 2010 Feb 25; 88(2):707-17. PubMed ID: 19820050
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  • 9. [Significance of imbalance between matrix metalloproteinases and tissue type inhibitor of metalloproteinases in renal tubulointerstitial lesions of aging rats].
    Chen RQ, Chen XM, Cui SW, Cai GY, Shi SZ, Xie YS, Lu Y, Peng LX.
    Zhonghua Yi Xue Za Zhi; 2004 Jun 02; 84(11):937-42. PubMed ID: 15329283
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  • 10. Sodium dicarboxylate cotransporter-1 expression in renal tissues and its role in rat experimental nephrolithiasis.
    He Y, Chen X, Yu Z, Wu D, Lv Y, Shi S, Zhu H.
    J Nephrol; 2004 Jun 02; 17(1):34-42. PubMed ID: 15151257
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  • 11. Expression of rat renal Na/H antiporter mRNA levels in response to respiratory and metabolic acidosis.
    Krapf R, Pearce D, Lynch C, Xi XP, Reudelhuber TL, Pouysségur J, Rector FC.
    J Clin Invest; 1991 Feb 02; 87(2):747-51. PubMed ID: 1846882
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  • 14. Stimulation of intestinal glutamine absorption in chronic metabolic acidosis.
    Pan M, Meng Q, Choudry HA, Karinch AM, Lin C, Souba WW.
    Surgery; 2004 Aug 02; 136(2):127-34. PubMed ID: 15300171
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  • 15. Acute and chronic metabolic acidosis interferes with aquaporin-2 translocation in the rat kidney collecting ducts.
    Mouri T, Inoue T, Nonoguchi H, Nakayama Y, Miyazaki H, Matsuzaki T, Saito H, Nakanishi T, Kohda Y, Tomita K.
    Hypertens Res; 2009 May 02; 32(5):358-63. PubMed ID: 19300448
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  • 16. Acidemia alone does not stimulate rat renal Na+-H+ antiporter activity.
    Northrup TE, Garella S, Perticucci E, Cohen JJ.
    Am J Physiol; 1988 Aug 02; 255(2 Pt 2):F237-43. PubMed ID: 2841869
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  • 17. Inhibition of renal Na+/H+ exchange in cadmium-intoxicated rats.
    Ahn DW, Chung JM, Kim JY, Kim KR, Park YS.
    Toxicol Appl Pharmacol; 2005 Apr 01; 204(1):91-8. PubMed ID: 15781297
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  • 19. Cellular distribution of the renal bumetanide-sensitive Na-K-2Cl cotransporter BSC-1 in the inner stripe of the outer medulla during the development of hypertension in the spontaneously hypertensive rat.
    Sonalker PA, Tofovic SP, Jackson EK.
    Clin Exp Pharmacol Physiol; 2007 Dec 01; 34(12):1307-12. PubMed ID: 17973873
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  • 20. [The effect of basic fibroblast growth factor on myofibroblasts and its significance on wound healing].
    Cheng B, Fu X, Sheng Z, Gu X, Sun T, Sun X.
    Zhonghua Yi Xue Za Zhi; 2002 Sep 10; 82(17):1187-91. PubMed ID: 12475407
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