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MeSH Review

Kidney Glomerulus

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High impact information on Kidney Glomerulus


Anatomical context of Kidney Glomerulus


Associations of Kidney Glomerulus with chemical compounds


Gene context of Kidney Glomerulus


  1. Endothelium-specific ablation of PDGFB leads to pericyte loss and glomerular, cardiac and placental abnormalities. Bjarnegård, M., Enge, M., Norlin, J., Gustafsdottir, S., Fredriksson, S., Abramsson, A., Takemoto, M., Gustafsson, E., Fässler, R., Betsholtz, C. Development (2004) [Pubmed]
  2. Fibrillin-1 and fibulin-2 interact and are colocalized in some tissues. Reinhardt, D.P., Sasaki, T., Dzamba, B.J., Keene, D.R., Chu, M.L., Göhring, W., Timpl, R., Sakai, L.Y. J. Biol. Chem. (1996) [Pubmed]
  3. Structural organization of the human and mouse laminin beta2 chain genes, and alternative splicing at the 5' end of the human transcript. Durkin, M.E., Gautam, M., Loechel, F., Sanes, J.R., Merlie, J.P., Albrechtsen, R., Wewer, U.M. J. Biol. Chem. (1996) [Pubmed]
  4. Glomerular dynamics. Fried, T.A., Stein, J.H. Arch. Intern. Med. (1983) [Pubmed]
  5. 11beta-hydroxysteroid dehydrogenase type 2 is expressed in the human kidney glomerulus. Kataoka, S., Kudo, A., Hirano, H., Kawakami, H., Kawano, T., Higashihara, E., Tanaka, H., Delarue, F., Sraer, J.D., Mune, T., Krozowski, Z.S., Yan, K. J. Clin. Endocrinol. Metab. (2002) [Pubmed]
  6. Characteristics of auto anti-idiotypic antibodies reactive with antibodies expressing the pathogenic idiotype, IdLNF1, in the (NZB x SWR)F1 model for lupus nephritis and its parental strains. Uner, A.H., Tatum, A.H., Knupp, C.J., Gavalchin, J. J. Autoimmun. (1998) [Pubmed]
  7. Ultracytochemistry of aminopeptidase A (angiotensinase A) in the kidney glomerulus and juxtaglomerular apparatus. Kugler, P. Histochemistry (1982) [Pubmed]
  8. Tissue expression of nephrin in human and pig. Kuusniemi, A.M., Kestilä, M., Patrakka, J., Lahdenkari, A.T., Ruotsalainen, V., Holmberg, C., Karikoski, R., Salonen, R., Tryggvason, K., Jalanko, H. Pediatr. Res. (2004) [Pubmed]
  9. Studies on the localization of the glycoprotein GP-2 within the renal glomerulus in vivo and in cultured kidney cell strains in vitro. Oberley, T.D., Chung, A.E., Murphy-Ullrich, J.E., Mosher, D.F. J. Histochem. Cytochem. (1981) [Pubmed]
  10. Urinary cystatin C as a specific marker of tubular dysfunction. Conti, M., Moutereau, S., Zater, M., Lallali, K., Durrbach, A., Manivet, P., Eschwège, P., Loric, S. Clin. Chem. Lab. Med. (2006) [Pubmed]
  11. Differential disposition of lysophosphatidylcholine in diabetes compared with raised glucose: implications for prostaglandin production in the diabetic kidney glomerulus in vivo. Dunlop, M.E., Muggli, E., Clark, S. Biochim. Biophys. Acta (1997) [Pubmed]
  12. Filtrin is a novel member of nephrin-like proteins. Ihalmo, P., Palmén, T., Ahola, H., Valtonen, E., Holthöfer, H. Biochem. Biophys. Res. Commun. (2003) [Pubmed]
  13. Specific, high affinity receptors for insulin-like growth factor II in the rat kidney glomerulus. Haskell, J.F., Pillion, D.J., Meezan, E. Endocrinology (1988) [Pubmed]
  14. SPARC and the kidney glomerulus: matricellular proteins exhibit diverse functions under normal and pathological conditions. Francki, A., Sage, E.H. Trends Cardiovasc. Med. (2001) [Pubmed]
  15. The retinol-binding protein. Rask, L., Anundi, H., Böhme, J., Eriksson, U., Fredriksson, A., Nilsson, S.F., Ronne, H., Vahlquist, A., Peterson, P.A. Scand. J. Clin. Lab. Invest. Suppl. (1980) [Pubmed]
  16. Subcellular localization of glucocorticoid receptor protein in the human kidney glomerulus. Yan, K., Kudo, A., Hirano, H., Watanabe, T., Tasaka, T., Kataoka, S., Nakajima, N., Nishibori, Y., Shibata, T., Kohsaka, T., Higashihara, E., Tanaka, H., Watanabe, H., Nagasawa, T., Awa, S. Kidney Int. (1999) [Pubmed]
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