Related Experiment Video
Updated: May 31, 2026

Method to Obtain Pattern of Breathing in Senescent Mice through Unrestrained Barometric Plethysmography
Published on: April 28, 2020
Characterisation of sleep apneas and respiratory circuitry in mice lacking CDKL5
Gabriele Matteoli1, Sara Alvente1, Stefano Bastianini1
1Department of Biomedical and Neuromotor Sciences, Alma Mater Studiorum - University of Bologna, Bologna, Italy.
Abstract:
CDKL5 deficiency disorder is a rare genetic disease caused by mutations in the CDKL5 gene. Central apneas during wakefulness have been reported in patients with CDKL5 deficiency disorder. Studies on CDKL5-knockout mice, a CDKL5 deficiency disorder model, reported sleep apneas, but it is still unclear whether these events are central (central sleep apnea) or obstructive (obstructive sleep apnea) and may be related to alterations of brain circuits that modulate breathing rhythm. This study aimed to discriminate central sleep apnea and obstructive sleep apnea in CDKL5-knockout mice, and explore changes in the somatostatin neurons expressing high levels of neurokinin-1 receptors within the preBötzinger complex. Ten adult male wild-type and 12 CDKL5-knockout mice underwent electrode implantation for sleep stage discrimination and diaphragmatic activity recording, and were studied using whole-body plethysmography for 7 hr during the light (resting) period. Sleep apneas were categorised as central sleep apnea or obstructive sleep apnea based on the recorded signals. The number of somatostatin neurons in the preBötzinger complex and their neurokinin-1 receptors expression were assessed through immunohistochemistry in a sub-group of animals. CDKL5-knockout mice exhibited a higher apnea occurrence rate and a greater prevalence of obstructive sleep apnea during rapid eye movement sleep, compared with wild-type, whereas no significant difference was observed for central sleep apnea. Moreover, CDKL5-knockout mice showed a reduced number of somatostatin neurons in the preBötzinger complex, and these neurons expressed a lower level of neurokinin-1 receptors compared with wild-type controls. These findings underscore the pivotal role of CDKL5 in regulating normal breathing, suggesting its potential involvement in shaping preBötzinger complex neural circuitry and controlling respiratory muscles during sleep.
Insights
CDKL5 deficiency disorder in mice causes more obstructive sleep apnea, particularly during REM sleep. This is linked to fewer somatostatin neurons and lower neurokinin-1 receptor expression in the brainstem
Area of Science:
- Neuroscience
- Genetics
- Respiratory Medicine
Background:
- CDKL5 deficiency disorder (CDD) is a rare genetic disorder caused by CDKL5 gene mutations.
- Patients with CDD experience central apneas during wakefulness.
- CDKL5-knockout mice models show sleep apneas, but their type (central vs. obstructive) and underlying neural mechanisms remain unclear.
Purpose of the Study:
- To differentiate between central sleep apnea (CSA) and obstructive sleep apnea (OSA) in CDKL5-knockout mice.
- To investigate alterations in somatostatin neurons expressing neurokinin-1 receptors within the preBötzinger complex in CDKL5 deficiency.
Main Methods:
- Sleep stages and diaphragmatic activity were recorded in wild-type and CDKL5-knockout mice using electrode implantation and whole-body plethysmography.
- Sleep apneas were classified as central or obstructive based on recorded physiological signals.
- Immunohistochemistry was used to quantify somatostatin neurons and neurokinin-1 receptor expression in the preBötzinger complex.
Main Results:
- CDKL5-knockout mice exhibited a higher overall apnea rate and a significantly greater prevalence of obstructive sleep apnea during REM sleep compared to wild-type mice.
- No significant differences in central sleep apnea occurrence were found between CDKL5-knockout and wild-type mice.
- CDKL5-knockout mice displayed a reduced number of somatostatin neurons in the preBötzinger complex, with lower neurokinin-1 receptor expression on these neurons.
Conclusions:
- CDKL5 plays a critical role in maintaining normal breathing patterns during sleep.
- The study suggests CDKL5 is involved in shaping the neural circuitry of the preBötzinger complex.
- Dysregulation of respiratory muscle control during sleep in CDKL5 deficiency may stem from alterations in specific neuronal populations within the brainstem respiratory centers.

