Canonical Question
Gas Transport – CO2
Master answer
PaCO₂ is determined by the balance of production and elimination.
CO2 production:
- Normally 200ml/min (compared to average oxygen intake of 250ml/min)
- Byproduct of aerobic metabolism
- Produced in the cell mitochondria via TCA
- Entry to TCA as acetyl CoA (from CHO, FA, aa)
- TCA products
- CO2
- Reduced compounds FADH and NADH
- H+ ions
- 2 molecules of CO₂produced for each 1 molecule of ATP
- Amount of CO2 produce per molecule of substrate varies with the substrate.
- 1.5 Mole CO₂ per mole of Glucose
- Respiratory quotient
- R = CO2 production / O2 consumption
- Depends on fuel substrate
- 0.7 for fat, 1.0 for CHO
- 0.8 for typical western diet
CO2 Storage and transport
- ~ 120 litres predominantly as bicarbonate ion
- CO2 is carried in the blood in 3 forms – bicarbonate (70-80%), carbamino compounds (20-25%), dissolved (5%)
- Bicarbonate:
- Main form of CO2 delivery in blood
Via Hendersen-hasselbach:
CO2 + H2O ⇔ H2CO3 ⇔ H+ + HCO3–
- Main form of CO2 delivery in blood
- Carbamino compounds:
- CO2 combines with terminal amines (mainly Hb) to form carbamic acid dissosciates → at physiological pH to carbamate
- Dissolved:
- CO2 ~20 x more soluble than O2
- Henry’s law: p=kHc (Given a constant temperature, the amount of gas dissolved in a liquid, is proportional to the partial pressure of that gas. where c=solubility of a gas at a fixed temp, k=Henry’s Law (equilibrium) constant p = partial pressure of the gas))
- thus via Henry’s Law more CO2 is dissolved
Elimination:
- Small amount dissolved in sweat
- Most via lungs
- PaCO₂ ~ PACO₂
- PACO₂ determined by alveolar ventilation equation
Control of Ventilation
Afferents
- Chemoreceptors
- Central: retrotrapezoidal nucleus – sensitive to changes in CSF [H+]
– ↑CO2 → ↑[H+] → stimulates respiration - Peripheral: Aortic bodies (Vagus) and Carotid bodies (Glossopharyngeal)
– sensitive to PO2, [H+], PCO2 and blood flow, CO2
– ↑CO2 → ↑ respiration
- Central: retrotrapezoidal nucleus – sensitive to changes in CSF [H+]
- Baroreceptors:
- Aortic arch and carotid sinuses
- ↓MAP → less stretch → ↑ sympathetic outflow from medullary vasomotor centre → ↑respiration
Pulmonary Receptors
- Stretch receptors:
- Inflation reflex: ↑stretch inhibits inspiration
- Deflation reflex: collapse inhibits expiration
- J Fibers:
- Nociceptive mechano-chemoreceptors
- On stimulation → Bronchospasm, apnoea, bradycardia and hypotension
Others: Joint and muscle receptors, pain and temperature
Central control of breathing
- Central input: Hypothalamus and cortex (cortex can overrise medulla)
- Controller:
- Medullary resp centre: Dorsal resp group (Nucleus tractus solitarius – inspiration and timing), Ventral resp group (Pre-botzinger, Botzinger – control of respiration, airway dilatation, central pattern generation)
- Pontine respiratory group: Pneumotaxic centre (resp rate and pattern of breathing), Apneustic centre (intensity of breathing)
- Efferents:
- Phrenic nerve – diaphragm
- Spinal nerves to intercostal muscles
- Brachial plexus to pec major
- Accessory muscle to sternocleidomastoid
- Spinal nerves to abdo muscles
Factors which ↑PaCO₂
- ↑Shunts or ↑V/Q scatter → ↑PaCO₂
- ↑ Alveolar CO2 → ↑PaCO2
- ↑ Production (VCO2)
- During vigorous exercise
- Moderate exercise doesn’t effect pCO2 and may actually result in ↓pCO2 due to ↑MV
- Hypermetabolic states (Sepsis, Fever, MH, neurolept malignant syndrome)
- Altered (ie pure carb) diet
- ↑ Barometric pressure/↓Pressure of water
- ↑ Inspired CO₂
- Determined predominantly via alveolar ventilation which depends on:
- Dead space (DS):
- PE, low CO state, ↑d PEEP → ↑West’s zone
- ↑DS → ↓Alveolar Vent → ↑Alveolar CO2 → ↑PaCO2
- Respiratory Rate: ↓RR → ↓Alveolar Vent → ↑Alveolar CO2 → ↑PaCO2
- Tidal Volume (Tv): ↓Tv → ↓Alveolar Vent → ↑Alveolar CO2 → ↑PaCO2
- Dead space (DS):
- ↑ Production (VCO2)
Gladwin / Mooney / Sakurai / JC 2020
Exam appearances
| Exam | Exact wording | Relationship | Success |
|---|---|---|---|
| 2025A Q11 | Outline the physiological factors that affect arterial carbon dioxide tension (PaCO2). (Measurement factors are NOT required.) | safe_repeat | 39.00% |
| 2024B Q12 | Describe the physiological factors that affect the arterial partial pressure of carbon dioxide. (Measurement factors are not required). | historical_member | — |