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Measurement of Chitinase Activity in Biological Samples
Published on: August 22, 2019
Cardiac chymase: pathophysiological role and therapeutic potential of chymase inhibitors
Sheila A Doggrell1, Janet C Wanstall
1School of Biomedical Sciences, The University of Queensland, Australia. s_doggrell@yahoo.com
Insights
Cardiac alpha-chymase contributes to heart disease by activating inflammatory pathways. Inhibiting this enzyme shows promise for treating conditions like myocardial infarction and cardiomyopathy.
Area of Science:
- Cardiovascular Biology
- Enzymology
- Pharmacology
Background:
- Cardiac mast cells release alpha-chymase, an enzyme with diverse functions.
- Alpha-chymase converts angiotensin I to Ang II and activates TGF-beta1 and IL-1beta.
- Its role in normal heart function is unclear, but it's implicated in cardiac pathology.
Purpose of the Study:
- To investigate the potential of alpha-chymase inhibition in treating cardiac diseases.
- To review the development and preclinical efficacy of selective chymase inhibitors.
Main Methods:
- Review of existing literature on alpha-chymase activity in cardiac conditions.
- Summary of preclinical studies involving selective chymase inhibitors (TY-51076, SUN-C8257, BCEAB, NK320, TEI-E548).
Main Results:
- Increased chymase mRNA and activity observed in animal models of cardiomyopathy, pressure overload, and myocardial infarction.
- Altered chymase activity reported in human diseased heart homogenates.
- Preclinical studies show promising results for chymase inhibitors in models of myocardial infarction, cardiomyopathy, and heart failure.
Conclusions:
- Alpha-chymase plays a significant role in cardiac pathology.
- Selective chymase inhibitors demonstrate therapeutic potential for cardiac diseases.
- Orally active chymase inhibitors may benefit conditions involving mast cell degranulation.
Abstract:
On release from cardiac mast cells, alpha-chymase converts angiotensin I (Ang I) to Ang II. In addition to Ang II formation, alpha-chymase is capable of activating TGF-beta1 and IL-1beta, forming endothelins consisting of 31 amino acids, degrading endothelin-1, altering lipid metabolism, and degrading the extracellular matrix. Under physiological conditions the role of chymase in the mast cells of the heart is uncertain. In pathological situations, chymase may be secreted and have important effects on the heart. Thus, in animal models of cardiomyopathy, pressure overload, and myocardial infarction, there are increases in both chymase mRNA levels and chymase activity in the heart. In human diseased heart homogenates, alterations in chymase activity have also been reported. These findings have raised the possibility that inhibition of chymase may have a role in the therapy of cardiac disease. The selective chymase inhibitors developed to date include TY-51076, SUN-C8257, BCEAB, NK320, and TEI-E548. These have yet to be tested in humans, but promising results have been obtained in animal models of myocardial infarction, cardiomyopathy, and tachycardia-induced heart failure. It seems likely that orally active inhibitors of chymase could have a place in the treatment of cardiac diseases where injury-induced mast cell degranulation contributes to the pathology.
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