EventsThe 2nd International Electronic Conference on Biomedicines
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This submission belongs to the session S1. RNA Processing and Human Diseases of the event The 2nd International Electronic Conference on Biomedicines
Published date
12 Apr, 2023
Academic Editor
author-avatargiuseppina catanzaro
Citation
Ramadan A. Saad, Haitham MH. Qutob, Inter‐relationships of Pediatric obesity and mitochondrial dysfunction, in Proceedings of The 2nd International Electronic Conference on Biomedicines, 1 March–31 March 2023, MDPI: Basel, Switzerland, doi: 10.3390/ECB2023-14336
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Inter‐relationships of Pediatric obesity and mitochondrial dysfunction

Haitham MH. Qutob 3
1. Physiology department, Faculty of Medicine, Ain Shams university, Egypt., Saudi Arabia
2. Physiological Sciences Department, Fakeeh College for Medical Sciences, Jeddah, Saudi Arabia.
3. Department of Medical Laboratory Technology, Faculty of Applied Medical Sciences—Rabigh, King Abdulaziz University, Jeddah, Saudi Arabia
Abstract

Childhood (pediatric) obesity is becoming more common at an alarming rate. Obese children are more likely to develop insulin resistance, relative insulin insufficiency, and type 2 diabetes. Recent research suggests that mitochondrial dysfunction is related to, and may be predictive of, insulin resistance in adult relatives of type 2 diabetes patients.

Mitochondria produce ATP, which is used to create energy, especially in muscle tissue, and they play a role in glucose and fat metabolism. Mitochondrial dysfunction has a role in the development of metabolic diseases. Affected tissues include adipose, liver, and skeletal muscle, which all contribute to food metabolism. Because cells require a balance between mitochondrial ATP generation through oxidative phosphorylation (OXPHOS) and proton gradient dissipation to avoid damage from reactive oxygen species (ROS), abnormal mitochondrial function leads to fat buildup and insulin resistance. Obesity, insulin resistance, and type 2 diabetes (T2D) are all caused by growth and transcription factors that influence mitochondrial gene expression. On the other hand, obesity and hypertension both impair heart mitochondrial biogenesis and function. By promoting the expression of chaperones, SIRT1, and antioxidants, moderate weight reduction reduces systemic inflammation and improves mitochondrial dysfunction. In this review, the variables that relate mitochondrial dysfunction to pediatric obesity were discussed.

Keywords
childhood obesity
mitochondrial dynamics
gestational diabetes
Bariatric Surgery
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