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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
Abstract:
Morphine is the dominating analgetic drug used in neonates, but opioid-induced respiratory depression limits its therapeutic use. In this study, we examined acute morphine effects on respiration during intermittent hypoxia in newborn Tac1 gene knockout mice (Tac1-/-) lacking substance P and neurokinin A. In vivo, plethysmography revealed a blunted hypoxic ventilatory response (HVR) in Tac1-/- mice. Morphine (10 mg/kg) depressed the HVR in wild-type animals through an effect on respiratory frequency, whereas it increased tidal volumes in Tac1-/- during hypoxia, resulting in increased minute ventilation. Apneas were reduced during the first hypoxic episode in both morphine-exposed groups, but were restored subsequently in Tac1-/- mice. Morphine did not affect ventilation or apnea prevalence during baseline conditions. In vitro, morphine (50 nM) had no impact on anoxic response of brain stem preparations of either strain. In contrast, it suppressed the inspiratory rhythm during normoxia and potentiated development of posthypoxic neuronal arrest, especially in Tac1-/-. Thus this phenotype has a higher sensitivity to the depressive effects of morphine on inspiratory rhythm generation, but morphine does not modify the reactivity to oxygen deprivation. In conclusion, although Tac1-/- mice are similar to wild-type animals during normoxia, they differed by displaying a reversed pattern with an improved HVR during intermittent hypoxia both in vivo and in vitro. These data suggest that opioids and the substance P-ergic system interact in the HVR, and that reducing the activity in the tachykinin system may alter the respiratory effects of opioid treatment in newborns.
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.
