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Induction of Atherosclerotic Plaques Through Activation of Mineralocorticoid Receptors in Apolipoprotein E-deficient Mice
Published on: September 26, 2018
[Thyroid dysfunction and disorders in deamination of nitrogenous compounds in experimental atherosclerosis]
Abstract:
A decrease in monoamine deamination with simultaneous appearance of cadaverine deaminating activity in the mitochondrial fractions of the rabbit liver, brain and heart was more noticeable under conditions of hypothyroidism combined with hypercholesterolemia developing in the presence of normal function of the thyroid. A decrease in monoamine deamination, the appearance of cadaverine deaminating activity and a significant increase in AMP deamination were observed in the mitochondrial fraction of the rabbit heart muscle under conditions of hyperthyroidism.
Insights
Hypothyroidism with hypercholesterolemia decreased monoamine deamination and increased cadaverine activity in rabbit tissues. Hyperthyroidism also altered these enzyme activities, particularly in heart muscle.
Area of Science:
- Biochemistry
- Enzymology
- Metabolic pathways
Context:
- Investigates the impact of altered thyroid states on enzymatic activity in rabbit tissues.
- Focuses on mitochondrial fractions of liver, brain, and heart.
- Examines the interplay between thyroid function, cholesterol levels, and amine metabolism.
Purpose:
- To elucidate changes in monoamine and cadaverine deamination activities under induced hypothyroidism and hyperthyroidism.
- To assess the effect of combined hypercholesterolemia on these enzymatic processes.
- To characterize alterations in AMP deamination in the heart under hyperthyroidism.
Summary:
- Hypothyroidism combined with hypercholesterolemia led to decreased monoamine deamination and increased cadaverine deaminating activity in rabbit liver, brain, and heart mitochondria.
- Hyperthyroidism induced a decrease in monoamine deamination and an increase in cadaverine deaminating activity in the heart muscle mitochondria.
- A significant increase in AMP deamination was also noted in the heart mitochondria during hyperthyroidism.
Impact:
- Provides insights into the biochemical adaptations of key organs to metabolic disturbances.
- Highlights the differential effects of hypo- and hyperthyroidism on amine metabolism.
- Suggests potential targets for therapeutic interventions in metabolic and endocrine disorders.
Related Concept Videos
Coronary Artery Disease II: Pathophysiology
Atherosclerosis I: Introduction
Atherosclerosis II: Clinical Manifestations and Diagnostic Tests
Atherosclerosis III: Management
Hyperthyroidism II: Pathophysiology
Graves' Disease I: Introduction

