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Published on: March 11, 2017
Liver alpha-amylase gene expression as an early obesity biomarker
Marzieh Mojbafan1, Zohreh Afsartala2, Mahsa M Amoli3
1Endocrinology and Metabolism Research Center, Endocrinology and Metabolism Clinical Sciences Institute, Tehran University of Medical Sciences, Tehran, Iran.
Background:
Obesity is a major health problem worldwide, for which preventive and therapeutic means are still needed. Alpha-amylase is a digestive enzyme whose inhibition has been targeted as a potential anti-obesity strategy. However, alpha-amylase gene expression has not been particularly attended to, and in contrast with pancreatic and salivary amylases, fewer studies have focused on liver alpha-amylase. The present study aimed at investigating the expression of alpha-amylase gene in obese and normal mice at RNA and protein level as well as acarbose effect on this gene expression in hepatocyte cell culture.
Methods:
Control and case groups were fed by normal mouse pellet and high-fat diet respectively, during 8 weeks. After this period, serum biochemical parameters including glucose, cholesterol, triglycerides, AST, ALT and alpha-amylase were assayed. Liver alpha-amylase gene was analyzed by real time PCR, and liver enzyme was assayed with Bernfeld and ELISA methods Hepatocyte cell culture derived from both group were also treated by acarbose and alpha-amylase activity and gene expression was analyzed by above mentioned methods.
Results:
All biochemical factors showed an increase in obese mice, but the increase in ALT and AST were not statistically significant. Alpha-amylase levels were also increased in obese mice, both at RNA and protein level, while a decrease was seen in obese mice derived hepatocytes after acarbose treatment.
Conclusions:
Elevated liver alpha-amylase levels may be indicative of initial stages of obesity and the use of acarbose could be considered as a treatment of obesity which could be potentially effective at multiple levels.
Insights
Obesity is linked to increased liver alpha-amylase (enzyme) at the RNA and protein levels. Acarbose treatment reduced this enzyme activity in obese mice hepatocytes, suggesting a potential obesity therapy.
Area of Science:
- Biochemistry
- Molecular Biology
- Metabolic Diseases
Background:
- Obesity presents a global health challenge requiring novel preventive and therapeutic strategies.
- Alpha-amylase inhibition is a known anti-obesity approach, but liver alpha-amylase gene expression remains understudied.
- This research focuses on liver alpha-amylase, distinct from pancreatic and salivary amylase.
Purpose of the Study:
- To investigate liver alpha-amylase gene expression in obese versus normal mice at both RNA and protein levels.
- To evaluate the effect of acarbose on liver alpha-amylase gene expression in hepatocyte cell cultures derived from obese and normal mice.
Main Methods:
- Mice were fed high-fat diets for 8 weeks to induce obesity, with control groups on normal diets.
- Key biochemical parameters, including glucose, lipids, liver enzymes (AST, ALT), and alpha-amylase, were measured.
- Liver alpha-amylase gene expression was quantified using real-time PCR, and enzyme activity was assessed via Bernfeld and ELISA methods.
Main Results:
- Obese mice exhibited elevated levels of glucose, cholesterol, triglycerides, and alpha-amylase (both RNA and protein) compared to controls.
- While ALT and AST increased in obese mice, the changes were not statistically significant.
- Acarbose treatment led to a decrease in alpha-amylase activity in hepatocytes derived from obese mice.
Conclusions:
- Increased liver alpha-amylase expression may serve as an early indicator of obesity.
- Acarbose demonstrates potential as a multi-level therapeutic agent for obesity management.
- Further research into liver alpha-amylase's role in obesity is warranted.
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