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Published on: April 3, 2017
Anthocyanins ameliorate obesity-associated metainflammation: Preclinical and clinical evidence
Aline B Santamarina1, Philip C Calder2, Debora Estadella1
1Biosciences Department, Institute of Health and Society, Federal University of São Paulo, Campus Baixada Santista - UNIFESP, Santos, São Paulo, Brazil.
Abstract:
The growing rates of obesity worldwide call for intervention strategies to help control the pathophysiological consequences of weight gain. The use of natural foods and bioactive compounds has been suggested as such a strategy because of their recognized antioxidant and anti-inflammatory properties. For example, polyphenols, especially anthocyanins, are candidates for managing obesity and its related metabolic disorders. Obesity is well known for the presence of metainflammation, which has been labeled as an inflammatory activation that leads to a variety of metabolic disorders, usually related to increased oxidative stress. Considering this, anthocyanins may be promising natural compounds able to modulate several intracellular mechanisms, mitigating oxidative stress and metainflammation. A wide variety of foods and extracts rich in anthocyanins have become the focus of research in the field of obesity. Here, we bring together the current knowledge regarding the use of anthocyanins as an intervention tested in vitro, in vivo, and in clinical trials to modulate metainflammation. Most recent research applies a wide variety of extracts and natural sources of anthocyanins, in diverse experimental models, which represents a limitation of the research field. However, the literature is sufficiently consistent to establish that the in-depth molecular analysis of gut microbiota, insulin signaling, TLR4-triggered inflammation, and oxidative stress pathways reveals their modulation by anthocyanins. These targets are interconnected at the cellular level and interact with one another, leading to obesity-associated metainflammation. Thus, the positive findings with anthocyanins observed in preclinical models might directly relate to the positive outcomes in clinical studies. In summary and based on the entirety of the relevant literature, anthocyanins can mitigate obesity-related perturbations in gut microbiota, insulin resistance, oxidative stress and inflammation and therefore may contribute as a therapeutic tool in people living with obesity.
Insights
Anthocyanins, natural compounds found in foods, show promise in combating obesity. They help reduce inflammation, oxidative stress, and improve gut health, offering a potential therapeutic approach for obesity management.
Area of Science:
- Nutrition Science
- Biochemistry
- Metabolic Health
Background:
- Rising global obesity rates necessitate effective intervention strategies.
- Natural bioactive compounds, particularly polyphenols like anthocyanins, possess antioxidant and anti-inflammatory properties.
- Obesity is characterized by metainflammation, a state of chronic inflammation linked to metabolic disorders and oxidative stress.
Purpose of the Study:
- To review current knowledge on anthocyanins as an intervention for obesity-related metainflammation.
- To explore the effects of anthocyanins on molecular pathways involved in obesity.
- To assess the potential of anthocyanins as a therapeutic tool for managing obesity.
Main Methods:
- Literature review of in vitro, in vivo, and clinical trial studies.
- Analysis of molecular targets including gut microbiota, insulin signaling, and oxidative stress pathways.
- Examination of toll-like receptor 4 (TLR4)-triggered inflammation.
Main Results:
- Anthocyanins modulate key pathways implicated in obesity-associated metainflammation.
- Evidence suggests anthocyanins can mitigate perturbations in gut microbiota and improve insulin signaling.
- Studies indicate anthocyanins reduce oxidative stress and inflammation.
Conclusions:
- Anthocyanins demonstrate potential in mitigating obesity-related metabolic dysfunction.
- These natural compounds may serve as a valuable therapeutic strategy for individuals with obesity.
- Further research into diverse anthocyanin sources and models is warranted.

