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Capsicum baccatum Red Pepper Prevents Cardiometabolic Risk in Rats Fed with an Ultra-Processed Diet
Aline Rigon Zimmer1, Bianca Franco Leonardi1, Eduardo Rigon Zimmer2,3
1Pharmaceutical Sciences Graduate Program (PPGCF), Faculty of Pharmacy, Federal University of Rio Grande do Sul (UFRGS), Porto Alegre 90610-000, RS, Brazil.
Abstract:
Metabolic syndrome is a serious health condition reaching epidemic proportions worldwide and is closely linked to an increased risk of cardiovascular problems. The lack of appropriate treatment paves the way for developing new therapeutic agents as a high priority in the current research. In this study, we evaluated the protective effects of Capsicum baccatum red pepper on metabolic syndrome scenarios induced by an ultra-processed diet in rats. After four months, the ultra-processed diet increased central obesity, triglycerides, total cholesterol, LDL-cholesterol plasma levels, and impaired glucose tolerance. The oral administration of C. baccatum concomitantly with the ultra-processed diet avoided the accumulation of adipose tissue in the visceral region, reduced the total cholesterol and LDL fraction, and improved glucose homeostasis, factors commonly associated with metabolic syndrome. The data presented herein reveal an important preventive action of C. baccatum in developing metabolic disorders among animals fed a hypercaloric diet, significantly reducing their cardiometabolic risk. Allied with the absence of toxic effects after chronic use, our study suggests C. baccatum red pepper as a secure and enriched source of bioactive compounds promising to protect against pathological processes associated with metabolic syndrome.
Insights
Capsicum baccatum red pepper may protect against metabolic syndrome. Studies show it reduces obesity, improves cholesterol, and enhances glucose tolerance in rats fed an unhealthy diet, with no toxic effects.
Area of Science:
- Nutritional Science
- Cardiovascular Health
- Pharmacology
Background:
- Metabolic syndrome is a global health crisis linked to cardiovascular disease.
- Developing new therapeutic agents for metabolic syndrome is a research priority.
- Ultra-processed diets contribute significantly to metabolic dysfunction.
Purpose of the Study:
- To evaluate the protective effects of Capsicum baccatum (red pepper) against metabolic syndrome induced by an ultra-processed diet in rats.
- To investigate the impact of C. baccatum on obesity, lipid profiles, and glucose homeostasis.
Main Methods:
- Rats were fed an ultra-processed diet for four months.
- C. baccatum was administered orally alongside the diet.
- Key metabolic parameters including obesity, lipid levels, and glucose tolerance were measured.
Main Results:
- The ultra-processed diet induced central obesity, dyslipidemia, and impaired glucose tolerance.
- C. baccatum administration prevented visceral adipose tissue accumulation.
- C. baccatum reduced total and LDL cholesterol and improved glucose homeostasis.
Conclusions:
- Capsicum baccatum demonstrates significant preventive action against metabolic disorders induced by hypercaloric diets.
- C. baccatum effectively reduces cardiometabolic risk factors in animal models.
- C. baccatum is a safe source of bioactive compounds for protecting against metabolic syndrome.
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