Canonical Question
PK – Distribution
Master answer
Proteins and drugs may be bound together by weak bonds. These include ionic bonds, van der Waal’s forces, and hydrogen bonds.
Protein Binding:
- Refers to the degree to which drugs attach to proteins in the body.
- most drugs which are protein bound, bind either albumin or a1-acid glycoprotein according to their pKa
- some bind specialized proteins e.g. steroid binding globulin, transcortin etc
- increases Vd and reduces free fraction of drug
- reduces renal clearance by filtration but not active secretion
- is a source of interactions
- E.g: Phenytoin 95%, Warfarin 97%
Drugs may bind to proteins in:
- Plasma
- Albumin: Binds acid and neutral drugs.
- High capacity
- Three major binding sites (six total)
- Site I: warfarin, bilirubin, salicylates, phenytoin, sulfonamides
- Site II: benzodiazepine, NSAIDs, penicillin
- digoxin, verapamil, quinidine
- level is reduced by
- catabolic states: burns, malignancy, renal/hepatic disease, pregnancy, old age, neonates
- α1-acid glycoprotein: Binds basic drugs (e.g. lidocaine, propranolol, TCA’s)
- Single binding site
- Low capacity
Typically results in lower total binding (compared to albumin) of alkaline drugs, despite its increased affinity. - level increased in catabolic states: burns, renal transplant, malignancy, trauma, inflammatory diseases: RA, UC, Crohn’s, myocardial infarct
- level decreased in pregnancy, neonates
- Lipoprotein E.g. Steroid binding globulin, transcortin
For lipid soluble drugs. - Alpha, beta and gamma globulins
- Albumin: Binds acid and neutral drugs.
- Tissue
- Receptor
Protein binding is important as:
- Only unbound drugs are able to:
- Cross cell membranes
- Interact with receptors
- Undergo metabolism
- Reduced protein binding increases clearance of drugs with low extraction ratios.
- Be filtered by the kidney
- Highly tissue bound drugs:
- Have a long duration of action
- Have a high volume of distribution, prolonging their elimination
- May build up in tissues, leading to adverse effects
e.g. Corneal deposition, lung fibrosis.
Protein binding is affected by:
- Affinity of drug for protein
- Ionised drugs do not bind to protein
pH. - Competition between drugs for binding sites
- Ionised drugs do not bind to protein
- Amount of protein
- Disease: Due to:
- Hypoalbuminaemia: Negative acute phase reactant.
- Increased α1-acid glycoprotein: Acute phase reactant.
- Competition: Source of pharmacokinetic interactions.
- Disease: Due to:
Protein binding typically:
- Correlates with lipid solubility
- Is important only when it is very high
- Results in a decreased VDss when plasma binding is high
- Results in an increased VDss when tissue binding is high
- Is important in duration of action as it also relates to affinity for tissue proteins
JC 2019
Exam appearances
| Exam | Exact wording | Relationship | Success |
|---|---|---|---|
| 2018B Q07 | Describe protein binding and its significance in pharmacology. | historical_member | — |