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Nader G. Abraham

New York Medical College

Department of Pharmacology

Valhalla

NY 10595

USA

[email]@nymc.edu

Name/email consistency: high

 
 
 
 
 
 
 

Affiliation

  • New York Medical College, Department of Pharmacology, Valhalla, NY 10595, USA. 2002 - 2009

References

  1. Heme oxygenase: the key to renal function regulation. Abraham, N.G., Cao, J., Sacerdoti, D., Li, X., Drummond, G. Am. J. Physiol. Renal Physiol. (2009) [Pubmed]
  2. Bone marrow stem cell transplant into intra-bone cavity prevents type 2 diabetes: role of heme oxygenase-adiponectin. Abraham, N.G., Li, M., Vanella, L., Peterson, S.J., Ikehara, S., Asprinio, D. J. Autoimmun. (2008) [Pubmed]
  3. Pharmacological and clinical aspects of heme oxygenase. Abraham, N.G., Kappas, A. Pharmacol. Rev. (2008) [Pubmed]
  4. Heme oxygenase: a target gene for anti-diabetic and obesity. Abraham, N.G., Tsenovoy, P.L., McClung, J., Drummond, G.S. Curr. Pharm. Des. (2008) [Pubmed]
  5. Heme oxygenase -1 gene therapy: recent advances and therapeutic applications. Abraham, N.G., Asija, A., Drummond, G., Peterson, S. Curr. Gene. Ther (2007) [Pubmed]
  6. Metabolic syndrome: psychosocial, neuroendocrine, and classical risk factors in type 2 diabetes. Abraham, N.G., Brunner, E.J., Eriksson, J.W., Robertson, R.P. Ann. N. Y. Acad. Sci. (2007) [Pubmed]
  7. Heme oxygenase and the cardiovascular-renal system. Abraham, N.G., Kappas, A. Free Radic. Biol. Med. (2005) [Pubmed]
  8. Expression of human heme oxygenase-1 in the thick ascending limb attenuates angiotensin II-mediated increase in oxidative injury. Quan, S., Yang, L., Shnouda, S., Schwartzman, M.L., Nasjletti, A., Goodman, A.I., Abraham, N.G. Kidney Int. (2004) [Pubmed]
  9. Overexpression of human heme oxygenase-1 attenuates endothelial cell sloughing in experimental diabetes. Abraham, N.G., Rezzani, R., Rodella, L., Kruger, A., Taller, D., Li Volti, G., Goodman, A.I., Kappas, A. Am. J. Physiol. Heart Circ. Physiol. (2004) [Pubmed]
  10. Heme oxygenase-1 attenuates glucose-mediated cell growth arrest and apoptosis in human microvessel endothelial cells. Abraham, N.G., Kushida, T., McClung, J., Weiss, M., Quan, S., Lafaro, R., Darzynkiewicz, Z., Wolin, M. Circ. Res. (2003) [Pubmed]
  11. Therapeutic applications of human heme oxygenase gene transfer and gene therapy. Abraham, N.G. Curr. Pharm. Des. (2003) [Pubmed]
  12. Heme oxygenase attenuated angiotensin II-mediated increase in cyclooxygenase activity and decreased isoprostane F2alpha in endothelial cells. Abraham, N.G. Thromb. Res. (2003) [Pubmed]
  13. Human heme oxygenase: cell cycle-dependent expression and DNA microarray identification of multiple gene responses after transduction of endothelial cells. Abraham, N.G., Scapagnini, G., Kappas, A. J. Cell. Biochem. (2003) [Pubmed]
  14. Modulation of cGMP by human HO-1 retrovirus gene transfer in pulmonary microvessel endothelial cells. Abraham, N.G., Quan, S., Mieyal, P.A., Yang, L., Burke-Wolin, T., Mingone, C.J., Goodman, A.I., Nasjletti, A., Wolin, M.S. Am. J. Physiol. Lung Cell Mol. Physiol. (2002) [Pubmed]
  15. Differential effect of cobalt protoporphyrin on distributions of heme oxygenase in renal structure and on blood pressure in SHR. Abraham, N.G., Botros, F.T., Rezzani, R., Rodella, L., Bianchi, R., Goodman, A.I. Cell. Mol. Biol. (Noisy-le-grand) (2002) [Pubmed]
 
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