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Nano-oleanolic acid alleviates metabolic dysfunctions in rats with high fat and fructose diet
Shuai Wang1, Li-Bo Du2, Lei Jin1
1Department of Toxicology, Shaanxi Key Lab of Free Radical Biology and Medicine, School of Public Health, Fourth Military Medical University, Xi'an 710032, Shaanxi Province, China.
Abstract:
Obesity, diabetes and related metabolic disorders are among the top prevalent metabolism-related diseases with increasing threat to human health throughout the world. Oleanolic acid (OA) is a natural triterpenoid and an aglycone of many saponins possessing anti-diabetic, antioxidant, hypolipidemic and anti-inflammatory activities. A nano-formulation of OA was recently developed to evaluate the efficiency of nano-OA in the treatment of insulin-resistance and metabolic disorders in high fat and fructose (HFF) diet-fed rats. This study further identified that nano-OA could reduce the increase of body weights, serum insulin, insulin sensitivity index, serum triglycerides, and cholesterol in HFF-fed rats. In consistence, nano-OA was able to attenuate HFF diet-induced lipid accumulation in the liver and improve the structural integrity of mitochondria and endoplasmic reticulum in liver and pancreas in animals fed with HFF diet. In addition, nan-OA can efficaciously mitigate the increase of levels of malondialdehyde (MDA) and nitric oxide (NO), and serum superoxide dismutase (SOD) and catalase (CAT) activities in blood samples. The beneficial effects of nano-OA was further evidenced to be superior to OA formulated in arabic gum and rosiglitazone treatment. Together, this study provides the evidence that nano-OA can effectively improve HFF diet-induced metabolic dysfunctions in rats by improving its bioavailability and pharmacodynamic properties and thus nano-OA may be a potentially efficient agent to treat obesity-related diabetes and metabolic disorders.
Insights
Nano-formulated oleanolic acid (OA) effectively treats metabolic disorders in rats fed a high-fat, high-fructose diet. This nano-OA formulation demonstrates superior efficacy compared to traditional OA and rosiglitazone in managing obesity and insulin resistance.
Area of Science:
- Metabolic disorders
- Pharmacology
- Nanotechnology
Background:
- Obesity and diabetes are prevalent global health threats.
- Oleanolic acid (OA) exhibits anti-diabetic and metabolic benefits.
- Nano-formulations can enhance drug bioavailability and efficacy.
Purpose of the Study:
- To evaluate the efficacy of nano-formulated oleanolic acid (nano-OA) in treating metabolic disorders.
- To assess nano-OA's impact on insulin resistance in a high-fat, high-fructose (HFF) diet rat model.
- To compare nano-OA's effectiveness against traditional OA and rosiglitazone.
Main Methods:
- Administered nano-OA to HFF diet-fed rats.
- Measured body weight, serum insulin, insulin sensitivity index, triglycerides, and cholesterol.
- Assessed liver lipid accumulation and organelle integrity (mitochondria, endoplasmic reticulum).
- Monitored oxidative stress markers (MDA, NO, SOD, CAT).
Main Results:
- Nano-OA reduced body weight gain, improved insulin sensitivity, and lowered serum lipids in HFF rats.
- Attenuated liver lipid accumulation and improved mitochondrial and endoplasmic reticulum structure.
- Reduced oxidative stress markers (MDA, NO) and enhanced antioxidant enzyme activities (SOD, CAT).
- Nano-OA demonstrated superior effects compared to OA in arabic gum and rosiglitazone.
Conclusions:
- Nano-OA effectively improves HFF diet-induced metabolic dysfunctions in rats.
- Enhanced bioavailability and pharmacodynamic properties contribute to nano-OA's efficacy.
- Nano-OA shows potential as an efficient therapeutic agent for obesity-related diabetes and metabolic disorders.
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