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March 3, 2026Molecular Nutrition & Food Research0 citationsOpen Access

Lycopene's Role in Mitigating Obesity‐Induced Cardiac Remodeling: Insights Into Inflammatory and MMP‐2 Pathways

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CSCarol Cristina Vagula de Almeida de SilvaInstituto de Estudos do Mar Almirante Paulo MoreiraAFArtur Junio Togneri FerronFFFabiane Valentini Francisqueti‐FerronUniversidade Estadual Paulista (Unesp)

Key Points

  • Lycopene supplementation improved cardiac function by reversing insulin resistance and mitigating myocardial remodeling, indicating its potential cardioprotective effects.
  • After 10 weeks of treatment, lycopene significantly reduced inflammatory markers such as TNF-α and IL-6, as well as decreased mmp-2 activation in male Wistar rats.

Structured PICO

Does lycopene supplementation mitigate obesity-induced cardiac remodeling and improve cardiac function in a rat model of high-sugar, high-fat diet-induced obesity?

P
Population
Male Wistar rats fed a high-sugar, high-fat (HSF) diet to induce obesity and cardiac remodeling, after the onset of cardiac dysfunction
I
Intervention
Lycopene supplementation 10 mg/kg/day for 10 weeks
C
Comparator
High-sugar, high-fat (HSF) diet alone (implied control)
O
Outcome
Myocardial remodeling, systolic and diastolic cardiac function, inflammatory markers (TNF-α, IL-6, NF-κB, TLR-4), MMP-2 activation, TIMP-2, and type I collagen expressionsurrogate

In a rat model of obesity-induced cardiac dysfunction, lycopene supplementation demonstrated cardioprotective effects by mitigating cardiac remodeling, improving function, and reducing inflammation and extracellular matrix degradation.

Abstract

Obesity, characterized by chronic low-grade inflammation, promotes cardiac structural and functional abnormalities. This study evaluated the therapeutic potential of lycopene in attenuating obesity-induced cardiac remodeling, based on its antioxidant and anti-inflammatory properties and its ability to inhibit matrix metalloproteinase-2 (MMP-2) activation, thereby preserving myocardial collagen integrity. Male Wistar rats were fed a high-sugar, high-fat (HSF) diet to induce obesity and cardiac remodeling. After the onset of cardiac dysfunction, animals received lycopene supplementation (10 mg/kg/day) for 10 weeks. The HSF diet caused metabolic disturbances, including hypertension, increased adiposity, and insulin resistance, accompanied by myocardial remodeling, inflammation, and elevated MMP-2 activity. Lycopene supplementation reversed insulin resistance, mitigated myocardial remodeling, and improved both systolic and diastolic cardiac function. It also reduced inflammatory markers (TNF-α, IL-6, NF-κB, TLR-4), decreased MMP-2 activation, and enhanced TIMP-2 and type I collagen expression. Lycopene demonstrated cardioprotective and anti-inflammatory effects in obesity-induced cardiac remodeling. By targeting inflammation and extracellular matrix degradation, lycopene may serve as an effective adjunctive therapeutic approach for preventing or treating obesity-related cardiac disorders.

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Cite This Study

Silva et al. (2026) studied this question.

synapsesocial.com/papers/69a75aa8c6e9836116a20c1dhttps://doi.org/10.1002/mnfr.70395
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