Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Carotid bodies and ventilatory response to hypoxia in aminophylline‐treated piglets

View through CrossRef
AbstractPeripheral chemoreceptors may be immature in neonatal animals, exhibiting maturational changes in the perinatal period. Even though methylxanthines are respiratory stimulants, many premature neonates do not respond to them. Thus, we hypothesized that carotid body activity is necessary for aminophylline to reverse hypoxia‐induced respiratory depression. We exposed 16 anesthetized newborn piglets (age 2‐7 days) to hypoxia (inhalation of 12% oxygen) for 5 min. Aminophylline (15 mg/kg iv) was administered either prior to (11 piglets) or following (5 piglets) carotid body denervation (CBD). Before CBD, hypoxia elicited transient initial increases in tidal volume (from 79 ± 4 to 99 ± 1% of maximum, mean ± SE), minute ventilation (from 64 ± 5 to 93 ± 4%), and peak phrenic electroneurogram (from 63 ± 8 to 91 ± 6%, all P < 0.05). This was followed by a decrease in tidal volume, minute ventilation and phrenic electroneurogram (all P < 0.05). Prior to CBD, aminophylline pretreatment prevented the decrease in all the measures of respiratory output during late hypoxia. After CBD, hypoxia induced an initial and sustained depression of ventilation (tidal volume from 100 to 33 ± 14%; frequency from 94 ± 4 to 42 ± 17%; minute ventilation from 100 to 32 ± 14%, all P < 0.05)and phrenic electroneurogram (peak phrenic from 100 to 47 ± 18%; minute phrenic from 85 ± 6 to 55 ± 21%, both P < 0.05). Administration of aminophylline after CBD did not prevent the profound respiratory depression elicited by hypoxia in the chemodenervated piglets. We conclude that aminophylline prevents respiratory depression during late hypoxia, however, in the absence of afferent input generated by the carotid bodies, aminophylline does not reverse respiratory depression induced by hypoxia in anesthetized newborn piglets. Pediatr Pulmonol. 1995; 20:94–100. © 1995 Wiley‐Liss, Inc.
Title: Carotid bodies and ventilatory response to hypoxia in aminophylline‐treated piglets
Description:
AbstractPeripheral chemoreceptors may be immature in neonatal animals, exhibiting maturational changes in the perinatal period.
Even though methylxanthines are respiratory stimulants, many premature neonates do not respond to them.
Thus, we hypothesized that carotid body activity is necessary for aminophylline to reverse hypoxia‐induced respiratory depression.
We exposed 16 anesthetized newborn piglets (age 2‐7 days) to hypoxia (inhalation of 12% oxygen) for 5 min.
Aminophylline (15 mg/kg iv) was administered either prior to (11 piglets) or following (5 piglets) carotid body denervation (CBD).
Before CBD, hypoxia elicited transient initial increases in tidal volume (from 79 ± 4 to 99 ± 1% of maximum, mean ± SE), minute ventilation (from 64 ± 5 to 93 ± 4%), and peak phrenic electroneurogram (from 63 ± 8 to 91 ± 6%, all P < 0.
05).
This was followed by a decrease in tidal volume, minute ventilation and phrenic electroneurogram (all P < 0.
05).
Prior to CBD, aminophylline pretreatment prevented the decrease in all the measures of respiratory output during late hypoxia.
After CBD, hypoxia induced an initial and sustained depression of ventilation (tidal volume from 100 to 33 ± 14%; frequency from 94 ± 4 to 42 ± 17%; minute ventilation from 100 to 32 ± 14%, all P < 0.
05)and phrenic electroneurogram (peak phrenic from 100 to 47 ± 18%; minute phrenic from 85 ± 6 to 55 ± 21%, both P < 0.
05).
Administration of aminophylline after CBD did not prevent the profound respiratory depression elicited by hypoxia in the chemodenervated piglets.
We conclude that aminophylline prevents respiratory depression during late hypoxia, however, in the absence of afferent input generated by the carotid bodies, aminophylline does not reverse respiratory depression induced by hypoxia in anesthetized newborn piglets.
Pediatr Pulmonol.
1995; 20:94–100.
© 1995 Wiley‐Liss, Inc.

Related Results

Ageing and cardiorespiratory response to hypoxia
Ageing and cardiorespiratory response to hypoxia
Key points A previous study showed that an older age could be associated with a lower risk of...
Does lifting female piglets by one hind leg increase the risk of umbilical and hind leg lesions?
Does lifting female piglets by one hind leg increase the risk of umbilical and hind leg lesions?
Abstract Background Umbilical lesions in pigs have a negative impact on animal welfare and productivity. It has been suggested that lifting young pi...
Short- and Long-Term Effects of Split-Suckling in Pigs According to Birth Weight
Short- and Long-Term Effects of Split-Suckling in Pigs According to Birth Weight
Forty-eight litters were used, with a total number of 645 piglets involved in the study. The split-suckling technique was applied to half of the litters at the end of farrowing by ...
Effect of Aminophylline on the Protective Action of Common Antiepileptic Drugs Against Electroconvulsions in Mice
Effect of Aminophylline on the Protective Action of Common Antiepileptic Drugs Against Electroconvulsions in Mice
Summary: The increasing amount of data tends to suggest that adenosine‐mediated inhibition may play a role in the anticonvulsant activity of a number of antiepileptic drugs. Conse...
Morphological characteristics of the external carotid artery
Morphological characteristics of the external carotid artery
Abstract The morphological characteristics at the level of the bifurcation of the common carotid artery were studied on 46 cases, finding that the most frequent, in 52.17% of ...
Patients with carotid intraplaque hemorrhage have higher incidence of cerebral microbleeds
Patients with carotid intraplaque hemorrhage have higher incidence of cerebral microbleeds
Abstract Background Carotid intraplaque hemorrhage (IPH) is considered a strong marker of histologically defined plaque vulnerab...
Efficacy of Oral Toltrazuril in Newborn Piglet
Efficacy of Oral Toltrazuril in Newborn Piglet
Drug in piglets has a protective effect against dysentery. The aims of this study were determined the efficacy of toltrazuril in newborn-piglets. In 2 piglets of 819 piglets were d...
Intestinal Absorption of Calcium in Newborn Piglets
Intestinal Absorption of Calcium in Newborn Piglets
The role of vitamin D for intestinal absorption of Ca was studied in neonatal piglets. Piglets of normal phenotype (heterozygotes) and piglets which suffered from pseudo-vitamin D ...

Back to Top