Vitamin D Impacts on Skeletal Muscle Dysfunction in Patients with COPD Promoting Mitochondrial Health.
Cristina RussoMaria Stella ValleAntonino CasabonaLucia SpicuzzaGianluca SambataroLucia MalaguarneraPublished in: Biomedicines (2022)
Skeletal muscle dysfunction is frequently associated with chronic obstructive pulmonary disease (COPD), which is characterized by a permanent airflow limitation, with a worsening respiratory disorder during disease evolution. In COPD, the pathophysiological changes related to the chronic inflammatory state affect oxidant-antioxidant balance, which is one of the main mechanisms accompanying extra-pulmonary comorbidity such as muscle wasting. Muscle impairment is characterized by alterations on muscle fiber architecture, contractile protein integrity, and mitochondrial dysfunction. Exogenous and endogenous sources of reactive oxygen species (ROS) are present in COPD pathology. One of the endogenous sources of ROS is represented by mitochondria. Evidence demonstrated that vitamin D plays a crucial role for the maintenance of skeletal muscle health. Vitamin D deficiency affects oxidative stress and mitochondrial function influencing disease course through an effect on muscle function in COPD patients. This review will focus on vitamin-D-linked mechanisms that could modulate and ameliorate the damage response to free radicals in muscle fibers, evaluating vitamin D supplementation with enough potent effect to contrast mitochondrial impairment, but which avoids potential severe side effects.
Keyphrases
- skeletal muscle
- chronic obstructive pulmonary disease
- oxidative stress
- lung function
- reactive oxygen species
- insulin resistance
- dna damage
- cell death
- public health
- ischemia reperfusion injury
- end stage renal disease
- diabetic rats
- newly diagnosed
- drinking water
- induced apoptosis
- mental health
- air pollution
- chronic kidney disease
- type diabetes
- ejection fraction
- early onset
- health information
- small molecule
- metabolic syndrome
- signaling pathway
- computed tomography
- social media
- risk assessment
- climate change
- smooth muscle