Hypoxic ventilatory response in Tac1-/- neonatal mice following exposure to opioids

J Berner1, Y Shvarev, A Zimmer

  • 1Department of Woman and Child Health, Karolinska Institutet, Stockholm, Sweden. Jonas.Berner@ki.se

Insights

Newborn mice lacking substance P and neurokinin A showed altered respiratory responses to morphine during hypoxia. This suggests the substance P-ergic system influences opioid effects on breathing in neonates.

Area of Science:

  • Neuroscience
  • Pharmacology
  • Respiratory Physiology

Background:

  • Morphine is a key neonatal analgesic, but its use is limited by respiratory depression.
  • The tachykinin system, involving substance P and neurokinin A, plays a role in respiratory control.
  • Newborns with Tac1 gene knockout (Tac1-/-) lack substance P and neurokinin A.

Purpose of the Study:

  • To investigate the effects of morphine on respiration during intermittent hypoxia in newborn Tac1-/- mice.
  • To understand the interaction between the tachykinin system and opioid-induced respiratory effects.

Main Methods:

  • In vivo plethysmography to measure respiratory parameters (tidal volume, respiratory frequency, minute ventilation, apneas) during normoxia and hypoxia.
  • In vitro brain stem preparations to assess the impact of morphine on neuronal activity and anoxic responses.

Main Results:

  • Tac1-/- mice exhibited a blunted hypoxic ventilatory response (HVR) compared to wild-type.
  • Morphine depressed HVR in wild-type mice but increased minute ventilation in Tac1-/- mice during hypoxia.
  • In vitro, morphine suppressed inspiratory rhythm during normoxia and worsened posthypoxic neuronal arrest in Tac1-/- preparations.

Conclusions:

  • Newborn Tac1-/- mice display an altered HVR and a reversed response pattern to morphine during hypoxia.
  • The substance P-ergic system interacts with opioids in regulating the HVR.
  • Modulating the tachykinin system may impact the respiratory safety of opioid therapy in neonates.

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