Candoxatril

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Candoxatril
Candoxatril.png
Names
IUPAC name
4-{[(1-{3-(2,3-dihydro-1H-inden-5-yloxy)-2-[(2-methoxyethoxy)methyl]-3-oxopropyl}cyclopentyl)carbonyl]amino}cyclohexanecarboxylic acid
Identifiers
118785-03-8
ChEMBL ChEMBL35084
ChemSpider 16736409
DrugBank DB00616
Jmol 3D model Interactive image
MeSH candoxatril
PubChem 122116
5362417
UNII ACP75508EE YesY
  • InChI=1S/C29H41NO7/c1-35-15-16-36-19-23(27(33)37-25-12-9-20-5-4-6-22(20)17-25)18-29(13-2-3-14-29)28(34)30-24-10-7-21(8-11-24)26(31)32/h9,12,17,21,23-24H,2-8,10-11,13-16,18-19H2,1H3,(H,30,34)(H,31,32)
  • O=C(NC1CCC(C(=O)O)CC1)C4(CC(C(=O)Oc2cc3c(cc2)CCC3)COCCOC)CCCC4
Properties
C29H41NO7
Molar mass 515.638
Vapor pressure {{{value}}}
Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
Infobox references

Candoxatril is the orally active prodrug[1] of candoxatrilat (UK-73967) human neutral endopeptidase (Neprilysin) as the neutral endopeptidase 24.11[2] complexed (RB-101) with phosphoramidon degrades and inactivates[3] a number of bioactive peptides. Two multiply connected folding domains[3] of the neutral endopeptidase locus[3] splicing of exons 1, 2a, or 2b to the common exon 3 composed of 24 exons of the human CALLA/NEP gene[2] containing the active site, it is known as peptidase family M13 (neprilysin family, clan MA(E)) the gluzincins a faint but significant structural relationship of the metzincins[4][5][6][7] to the thermolysin-like enzymes,[5] Zincin is the simplest descriptor of biological space.[8] The structure reveals two multiply connected folding domains which embrace a large central cavity containing the active site of the 5-indanyl ester prodrug candoxatril[9] and differs from phosphoramidon [N-(N-(((6-Deoxy-α-L-mannopyranosyl)oxy)hydroxyphosphinyl)-L- leucyl)-L-tryptophan] in several respects the structure of human neutral endopeptidase complexed with phosphoramidon is lost due to desolvation[9] of the enzyme and ligand on formation of the complex Candoxatril.

Studies

Candoxatril is the first drug of its kind to be released for clinical trials regarding heart failure. This is because Candoxatril produces favorable haemodynamic effects in patients with chronic heart failure. It has been demonstrated that Candoxatril is associated with a beneficial hemodynamic effect that is useful both in rest and exercise. In several different studies, candoxatril has been shown to improve performance in people with heart failure. In one study, 12 different patients were selected, all with moderately severe heart failure. On day one of this study, the candoxatril had increased plasma ANP levels, suppressed aldosterone and decreased right atrial and pulmonary capillary wedge pressures. After treatment for 10 days, patients health had improved with an increase of basal ANP and a decrease of aldosterone, along with a reduced body weight that could be a reflection of chronic natriuretic, diuretic effects, or both. It was decided that on day 10 of the study, the effects of candoxatril were similar to that on day one.[10]

In a separate study, patients were gathered throughout the United Kingdom from 16 different centers. Over a four-week bind, the patients were either given candoxatril or placebo for the 84 days and every 28 days, patients were reassesed. Out of the 110 patients, 56 received candoxatril and 54 received the placebo. Over the time of the study, the patients who were taking candoxatril had an overall improvement in exercise time compared to the patients taking the placebo.[11]

In a third study, there was only one patient who experienced worsening heart failure during this particular study. However, the frequency wasn’t statistically significantly different from another observed group that was on placebo. Together, the results of this study show the candoxatril offers a new, effective therapeutic in the treatment of people with mild heart failure. The beneficial effects may begin to improve the wellbeing of patients during everyday activities.[12]

See also

References

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  10. "Result Filters." National Center for Biotechnology Information. U.S. National Library of Medicine, n.d. Web. 23 Nov. 2015.
  11. McDowell, G., W. Coutie, C. Shaw, K. D. Buchanan, A. D. Struthers, and D. P. Nicholls. "The Effect of the Neutral Endopeptidase Inhibitor Drug, Candoxatril, on Circulating Levels of Two of the Most Potent Vasoactive Peptides." British Journal of Clinical Pharmacology. U.S. National Library of Medicine, n.d. Web. 23 Nov. 2015.
  12. McMurray, John. "Clinical Cardiology: New Frontiers." American Heart Association. American Heart Association, n.d. Web.