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Enzymes. Izoenzymes. Concepts of enzymatic kinetics

Enzymes. Izoenzymes. Concepts of enzymatic kinetics

Biochemical Changes in Liver Pathology, Cardiovascular Pathology and Renal Pathology
Created byTeodora Dora
Last updated 3/2025
Romanian

What you'll learn

  • Understand the Structure and Function of Enzymes
  • Explore the Role of Coenzymes
  • Study Enzyme Kinetics
  • Apply Enzyme Kinetics to Biological and Industrial Processes

Course content

1 section • 7 lectures • 49m total length
  • Enzymes. Izoenzymes. Concepts of enzymatic kinetics5:40
  • Biochemical Changes in Liver Pathology5:44
  • Biochemical Changes in Cardiovascular Pathology2:18
  • Biochemical Changes in Renal Pathology2:30
  • Enzymes. Izoenzymes. Concepts of enzymatic kinetics - video10:50
  • Biochemical changes in liver, cardiovascular and renal pathology - video17:30
  • Case Presentation - video5:02

Requirements

  • Basic Concepts About Enzymes

Description

The course titled "Enzymes, Isoenzymes, and Concepts of Enzymatic Kinetics" offers a comprehensive exploration into the critical role enzymes play in biochemical processes, focusing on their structure, function, and regulation. The curriculum provides an in-depth understanding of the different types of enzymes, including isoenzymes, which are multiple forms of an enzyme that catalyze the same biochemical reaction but differ in their molecular structure and are often specific to different tissues or organs. The course emphasizes the significance of isoenzymes in diagnostic biochemistry, as they can offer insights into tissue-specific damage or disease.


A significant portion of the course is dedicated to enzymatic kinetics, where students will learn about the various models of enzyme activity, particularly the Michaelis-Menten model. The course also covers the factors that influence enzyme reaction rates, such as temperature, pH, substrate concentration, and enzyme concentration. Students will explore how enzyme-substrate interactions occur and how the enzyme's active site contributes to catalysis, providing a fundamental understanding of how enzymatic reactions are regulated in both physiological and pathological conditions.


In addition to basic enzymology, the course also focuses on the biochemical changes that occur in liver, cardiovascular, and renal pathology. It explains how various diseases affecting these organs result in altered enzyme levels and activities, offering insights into their role as biomarkers for disease diagnosis and prognosis. For instance, liver diseases such as cirrhosis or hepatitis can lead to elevated levels of liver-specific enzymes, while myocardial infarction or kidney failure can cause distinct enzymatic changes. By studying these alterations in enzyme activity, students gain valuable knowledge in understanding the molecular mechanisms underlying these pathologies and the importance of enzymes in clinical diagnostics and therapeutic strategies.

Who this course is for:

  • medical students, resident doctors, and resident doctors specializing in laboratory medicine