This course will enable the students to :
Introduction to biomolecules
Types of chemical bonds, significance of asymmetric C atom
Carbohydrates Chemistry
Classification, structure and functions of carbohydrates
Properties of carbohydrates- Physical and chemical
Carbohydrate Metabolism Reactions of EMP, TCA (with structures), HMP,
Gluconeogenesis (no structures), Glycogen metabolism (no structures),
Homeostasis of blood glucose
Protein Chemistry
Classification, structure and functions of amino acids and protein
Properties of Protein- Physical and Chemical
Plasma proteins – Nature, properties and functions
Protein metabolism
General reactions of amino acids- transamination, deamination and decarboxylation
Detoxification of NH3
Krebs-Hensleit cycle, Creatinine and creatine synthesis
Lipid Chemistry
Classification, structures and functions of lipids
Properties of Lipids –Physical and Chemical
Structure and functions of Cholesterol
Lipid Metabolism
Knoop’s β-oxidation of even C fatty acid (no structures), ketone body formation
and utilization
Fatty acid biosynthesis of Palmitic acid (no structure)
Metabolism of Cholesterol
Lipid storage disorders
Enzyme Chemistry
Definition, classification IUB (up to 1 digit), Concept of active site, enzyme specificity, turnover number
Units: Katal, IU
Factors affecting enzyme activity
Definition of Km and significance
Enzyme inhibition: Definition of Holoenzyme, Coenzyme, cofactor, Allosteric
site, active site, prosthetic group, isoenzyme
Biological Oxidation
Electron transport chain; O-R potential; oxidative phosphorylation; enzymes of biological oxidation; inhibition of respiratory chain and oxidative phosphorylation.
Acid-Base balance, Buffers: definition, types of buffers, Role of lungs, kidneys and haemoglobin in Acid-Base balance Chloride shift
Disorders of Acid-Base imbalance