Canonical Question

Acid Base – Buffers

V5 G1.iii Historical V4 J1.iii 1 appearance

Master answer

Buffer

Effectiveness:

Buffer Systems

NameLocation
ProteinIntra cellular
Haemo globinBlood
BicarbPlasma, Interstitium, Urine (minimal)
AmmoniaUrine
PhosphateUrine, Bone
CaCO3Bone

Compare and Contrast:
Bicarbonate, Phosphate, Protein buffer systems

BicarbonatePhosphateProtein
H+ + HCO3 ⇌ H2CO3
H2O + CO2
H+ + HPO42- ⇌ H2PO4H+ + Prot ⇌ HProt
Extracellular
(80% of plasma buffer capacity)
Nil extracellular.
Important in tubular fluid  
Extracellular
(20% of plasma buffer capacity)
poor intracellular buffers
(poor membrane diffusion of H+, HCO3 (except RBC))
Some Intracellular buffering
Major Intracellular
(60~70% of total body buffering
capacity occurs intracellularly and most of this is due to proteins)
pKa 6.1pKa 6.8pKa of histidine residues 6.8
pKa far from physiological pH (7.4)

However
Good buffer due to abundance of substrates
pKa close to physiological pH

However
extracellular concentration 1.8 of bicarbonate
pKa close to physiological pH
Open ended system
– CO2 eliminated by lungs
– HCO3 eliminated renally

Requires carbonic anhydrase
Becomes important buffer in renal tubules
due to H2O reabsorption
and consequent concetration of phosphate.
Hb important buffer in blood due to 38 histidine
residues per tetramer

Deoxyhaemoglobin further increases buffering capacity
by increasing pKa to 7.8

Gladwin / Sakurai / JC 2020

Exam appearances

ExamExact wordingRelationshipSuccess
2008B Q03 Compare and contrast the body’s bicarbonate, phosphate and protein buffer systems. historical_member