Case based discussions
OurBiochemistry > Case based discussions
Clinical Biochemistry Case Studies: Master Carbohydrate, Amino Acid Metabolism & Enzyme Dynamics
24
Nov

Through 25 hypothetical clinical cases and scenarios, this activity challenges learners to integrate concepts of carbohydrate metabolism, amino acid metabolism, oxidative phosphorylation, and enzyme dynamics. Participants will encounter questions highlighting real-world clinical relevance, such as the role of glycolytic intermediates, gluconeogenesis regulation, enzyme inhibition, and metabolic dysfunction in diseases like vitamin deficiencies and hyperammonemia. This engaging exploration enhances critical thinking and bridges biochemical theory with clinical practice.
“Comprehensive Guide: Acid-Base Imbalance, Anion Gap, and Clinical Cases”
12
Nov

"Understand acid-base imbalances and their clinical significance. This guide includes cases on metabolic acidosis, respiratory alkalosis, and normal anion gap metabolic acidosis, along with ABG interpretation and renal handling of acids."
Posted in:
Acid-base balance and imbalance ,
Multiple-choice questions ,
Multiple-choice questions ,
USMLE Style questions ,
USMLE styled question bank ,
Water and electrolytes ,
Tags:
ABG interpretation,
Anion gap,
Case based discussions,
Causes of hyponatremia,
Compensated metabolic acidosis,
Compensated metabolic alkalosis,
Henderson-Hassel Balch equation,
Henderson-Hasselbalch equation,
high anion gap metabolic acidosis,
Hypokalemia,
Metabolic acidosis with respiratory compensation,
metabolic alkalosis,
Potassium balance in health,
renal handling of acids,
Renal physiology,
respiratory acidosis,
Uncompensated metabolic acidosis,
Uncompensated respiratory acidosis,
Uncompensated respiratory alkalosis,