Insulin and Its Key Role for Mitochondrial Function/Dysfunction and Quality Control: A Shared Link between Dysmetabolism and Neurodegeneration.
Giacoma GalizziMarta Di CarloPublished in: Biology (2022)
Insulin was discovered and isolated from the beta cells of pancreatic islets of dogs and is associated with the regulation of peripheral glucose homeostasis. Insulin produced in the brain is related to synaptic plasticity and memory. Defective insulin signaling plays a role in brain dysfunction, such as neurodegenerative disease. Growing evidence suggests a link between metabolic disorders, such as diabetes and obesity, and neurodegenerative diseases, especially Alzheimer's disease (AD). This association is due to a common state of insulin resistance (IR) and mitochondrial dysfunction. This review takes a journey into the past to summarize what was known about the physiological and pathological role of insulin in peripheral tissues and the brain. Then, it will land in the present to analyze the insulin role on mitochondrial health and the effects on insulin resistance and neurodegenerative diseases that are IR-dependent. Specifically, we will focus our attention on the quality control of mitochondria (MQC), such as mitochondrial dynamics, mitochondrial biogenesis, and selective autophagy (mitophagy), in healthy and altered cases. Finally, this review will be projected toward the future by examining the most promising treatments that target the mitochondria to cure neurodegenerative diseases associated with metabolic disorders.
Keyphrases
- type diabetes
- insulin resistance
- glycemic control
- quality control
- oxidative stress
- metabolic syndrome
- cell death
- resting state
- cardiovascular disease
- induced apoptosis
- climate change
- white matter
- blood glucose
- working memory
- weight loss
- high fat diet
- functional connectivity
- high fat diet induced
- mental health
- endoplasmic reticulum stress
- risk assessment
- blood pressure
- polycystic ovary syndrome
- cell proliferation
- multiple sclerosis
- cell cycle arrest
- health information
- cerebral ischemia
- human health