低酸素症と高炭酸ガス血症が引き起こす骨格筋毒性の重複と違い
Joseph Balnis1, Ariel Jaitovich1,2
1Department of Molecular and Cellular Physiology, Albany medical College, Albany, NY, USA.
Abstract:
Skeletal muscle dysfunction is strongly associated with elevated mortality in acute and chronic pulmonary diseases. Hypoxaemia and hypercapnia, which are central hallmarks of respiratory failure, represent critical cellular signals regulating muscle loss, causing disruption of skeletal muscle mass, myofibre metabolic profile and oxidative capacity, and regenerative potential after injury. Both hypoxaemia and hypercapnia elicit alterations in protein synthesis and degradation, myogenesis and autophagy - key cellular processes that significantly impact skeletal muscle integrity. Recent data have also implicated epigenetic mechanisms such as microRNAs and DNA methylation as regulators of skeletal muscle phenotypes following hypoxic and hypercapnic insults. Hypoxia and hypercapnia engage overlapping pathways, including hypoxia-inducible factor 1 and AMP-activated protein kinase, suggesting that despite being distinct phenomena, hypoxaemia and hypercapnia share mechanisms orchestrating cellular programmes regulating various skeletal muscle adaptations. Both CO2 and O2 modulate key cellular hubs controlling muscle mass, including AKT, mammalian target of rapamycin complex 1 and others. Finally, in this article we outline some current gaps in knowledge in the field that we believe merit future research.
さらに関連する動画
09:04Skeletal Muscle Neurovascular Coupling, Oxidative Capacity, and Microvascular Function with 'One Stop Shop' Near-infrared Spectroscopy
Published on: February 20, 2018
09:33Using Near-Infrared Spectroscopy Wearable Devices to Identify Central Versus Peripheral Limitations During Exercise
Published on: December 19, 2024
関連する概念動画
Hypoxia
Types of Hypoxia
There are four primary types of hypoxia, each resulting from a different cause:
1. Anemic hypoxia: This type occurs due to insufficient oxygen delivery caused by a lack of red blood cells (RBCs) or RBCs with abnormal or...
Acute Respiratory Failure-III
Skeletal Muscle Relaxants: Adverse Effects
Unlike...
Hyperpnea and Hyperventilation
Acute Respiratory Failure-II
The underlying physiological abnormalities that contribute to hypoxemic respiratory failure include:
Oxygen Transport in the Blood
