| Literature DB >> 29928235 |
Sandy MacMillan1, A Mark Evans1.
Abstract
The hypoxic ventilatory response (HVR) is markedly attenuated by AMPK-α1 deletion conditional on the expression of Cre-recombinase in tyrosine hydroxylase (TH) expressing cells, precipitating marked increases in apnea frequency and duration. It was concluded that ventilatory dysfunction caused by AMPK deficiency was driven by neurogenic mechanisms. However, TH is transiently expressed in other cell types during development, and it is evident that central respiratory depression can also be triggered by myogenic mechanisms that impact blood supply to the brain. We therefore assessed the effect on the HVR and systemic arterial blood pressure of AMPK deletion in vascular smooth muscles. There was no difference in minute ventilation during normoxia. However, increases in minute ventilation during severe hypoxia (8% O2) were, if affected at all, augmented by AMPK-α1 and AMPK-α2 deletion in smooth muscles; despite the fact that hypoxia (8% O2) evoked falls in arterial SpO2 comparable with controls. Surprisingly, these mice exhibited no difference in systolic, diastolic or mean arterial blood pressure during normoxia or hypoxia. We conclude that neither AMPK-α1 nor AMPK-α2 are required in smooth muscle for the regulation of systemic arterial blood pressure during hypoxia, and that AMPK-α1 deficiency does not impact the HVR by myogenic mechanisms.Entities:
Keywords: AMPK; blood pressure; hypoxia; smooth muscle; ventilation
Year: 2018 PMID: 29928235 PMCID: PMC5997817 DOI: 10.3389/fphys.2018.00655
Source DB: PubMed Journal: Front Physiol ISSN: 1664-042X Impact factor: 4.566
Means ± SEM of percentage changes in breathing frequency, tidal volume, and minute ventilation and values for apnea frequency, apnea duration and apnea duration index during exposures to hypoxia (8%O2) across all genotypes.
| Genotype | Frequency | Tidal volume | Minute ventilation | Apnea frequency (min-1) | Apnea duration (ms) | Apnea duration index |
|---|---|---|---|---|---|---|
| AMPK-α1/α2 floxed | A 61 ± 7% | A -3 ± 2% | A 53 ± 6% | 3.0 ± 0.5 | 936 ± 40 | 2.9 ± 0.5 |
| RO 11 ± 4% | RO -1 ± 3% | RO 8 ± 6% | ||||
| SP 12 ± 4% | SP -2 ± 3% | SP 8 ± 5% | ||||
| SM AMPK-α1 knockouts | A 62 ± 4% | A 12 ± 1% | A 79 ± 7% | 3.4 ± 1 | 1021 ± 86 | 3.4 ± 1 |
| RO -13 ± 4% | RO 17 ± 6% | RO -1 ± 4% | ||||
| SP -2 ± 7% | SP 22 ± 5% | SP 16 ± 5% | ||||
| SM AMPK-α2 knockouts | A 68 ± 6% | A 10 ± 2% | A 84 ± 7% | 2.4 ± 0.9 | 900 ± 90 | 2.3 ± 1 |
| RO 7 ± 5% | RO 12 ± 2% | RO 19 ± 6% | ||||
| SP 20 ± 4% | SP 11 ± 1% | SP 33 ± 4% |
Means ± SEM of values obtained by tail cuff blood pressure measurements and percentage changes in arterial SpO2 before, during, and after exposures to hypoxia (8%O2) across all genotypes.
| Genotype | Resting BP | (mmHg) | Mean BP | (mmHg) | Sys BP | (mmHg) | Dias BP | (mmHg) | |
|---|---|---|---|---|---|---|---|---|---|
| AMPK-α1/α2 floxed | M 112 ± 6 | N 104 ± 3 | N 123 ± 4 | N 95 ± 3 | N 89 ± 5% | ||||
| Sys 131 ± 7 | H 94 ± 3.5 | H 116 ± 3.5 | H 84 ± 4 | H 69 ± 5% | |||||
| Dias 103 ± 6 | R 100 ± 2 | R 121 ± 1 | R 91 ± 2 | R 92 ± 2% | |||||
| AMPK-α1 knockouts | M 101 ± 4 | N 108 ± 8 | N 132 ± 7.5 | N 97 ± 8 | N 96 ± 2% | ||||
| Sys 126 ± 3 | H 94 ± 5 | H 123 ± 5 | H 79 ± 6 | H 75 ± 4% | |||||
| Dias 89 ± 4 | R 89 ± 12 | R 133 ± 7 | R 87 ± 7.5 | R 94 ± 1% | |||||
| AMPK-α2 knockouts | M 96 ± 6 | N 91 ± 12 | N111 ± 13 | N 81 ± 11 | N 97 ± 0.5% | ||||
| Sys 117 ± 8 | H 77 ± 7 | H 102 ± 9.5 | H 66 ± 6.5 | H 71 ± 3% | |||||
| Dias 86 ± 5 | R 102 ± 7 | R 112 ± 13 | R 79 ± 12 | R 92 ± 2% |