Asian Journal of Research in Pharmaceutical Science
  • Year: 2014
  • Volume: 4
  • Issue: 3

Molecular Mechanics Potential Energy Function of Angiotensin-Converting Enzyme (ACE) inhibitor, Lisinopril.

  • Author:
  • I.E. Otuokere
  • Total Page Count: 7
  • Page Number: 118 to 124

Department of Chemistry, Michael Okpara University of Agriculture, Umudike

*Corresponding Author E-mail: tosmanbaba@yahoo.com

Online published on 22 October, 2014.

Abstract

Lisinopril (N2-[(1S)-1-carboxy-3-phenylpropyl]-L-lysyl-L-proline) is a drug of the angiotensin-converting enzyme (ACE) inhibitor class used primarily in treatment of hypertension, congestive heart failure, and heart attacks, and also in preventing renal and retinal complications of diabetes. Molecular mechanics potential energy function of Lisinopril was performed by conformational analysis and geometry optimization method using ArgusLab 4.0.1 software. The minimum potential energy was calculated by geometry convergence function. The most feasible potential energy for lisinopril to act as angiotensin-converting enzyme (ACE) inhibitor was found to be 78.73178401 kcal/mol

Keywords

Angiotensin-converting enzyme, lisinopril, Arguslab 4.0.1, potential energy, geometry optimization