Canonical Question

Applied Resp – Gases

V5 C8.ii Historical V4 F10.ii 1 appearance

Master answer

Normal Ranges

Sensors

Central Chemoreceptor (CCR)Peripheral Chemoreceptor (PCR)
LocationBelow the ventral surface of the medulla Within the BBBIn Glomus cells of:

• Carotid bodies:  At the bifurcation of the common carotid arteries
• Aortic bodies: Above and below the aortic arch.
MechanismCO2 rapidly diffuses into CSF

• Converted to H+ by carbonic anhydrased
• Δ ECF [H+] closes pH sensitive K-channels
• ↑ ECF [H+] stimulates ↑ ventilation
• CSF has:
– Low CSF protein and HCO3 (c.f. plasma)
– Poor buffering capacity
– Thus ΔCSF pH per ΔPaCO2 is GREATER than that of blood
Type 2 cells:
• ↓ PaO2, ↑ PaCO2 and/or ↓pH
• ↓ IC [ATP] which leads to ↑ NT production and release
• ↑ AP firing rate of AB or CB afferent fibres
Contribution to ↑MV80%20%
Response SpeedFastRelatively fast compared with CCR

Physiological effects of Hypercaponea

Moderate 45mmHg < PaCO₂<100mmHg

  1. Resp
    • CO₂ strongest determinant of ↑MV (2-3 L/min per mmHg)
    • Hypoxaemia has a synergistic effect on hypercapnoeic-ventilatory drive
    • CO₂ is a potent pulmonary vasoconstrictor → ↑ pulmonary vascular resistance
  2. CVS
    • Direct depression of cardiac muscle and vascular SM
      • Peripheral vasodilation → ↓ SVR and ↑ regional BF
      • ↓ heart rate/contractility
    • ↑ RV Afterload due to effect on PVR
    • ↑ circulating catecholamines
  3. Neuro
    • ↑ CBF (4% per mmHg ↑PaCO2) → ↑ ICP
  4. Haeme
    • Right shift in OHDC

Severe (PaCO₂ >100mmHg)

  1. SNS stimulation
    • hyperkinetic circulation →
    • ↑ C.O., ↑ BP and arrhythmias
    • ↑ cardiac MRO2 demand
    • ↓ cardiac blood supply
  2. “CO2 nacrosis”
    • PaCO2 > 80 mmHg → ↓ CSF pH
    • Disorientation, confusion, headache, unconsciousness
  1. Hypoxia due to displacement of O2 from alveoli (as per Alveolar gas equation) → further ↑MV as above
  2. Respiratory acidosis →
    • ↑ PaCO2 overwhelms buffering capacity of blood
    • ↑ serum K+ and Ca2+ (stewart)
  3. ↑PaCO2 can cause anuria

Gladwin 2016

Exam appearances

ExamExact wordingRelationshipSuccess
2012B Q21 Describe the physiological consequences of a progressive rise in blood carbon dioxide levels. historical_member