ORIGINAL RESEARCH article

Front. Endocrinol.

Sec. Translational and Clinical Endocrinology

Volume 16 - 2025 | doi: 10.3389/fendo.2025.1578552

This article is part of the Research TopicNaturally Occurring Compounds and Their Applications in Endocrinology: Mechanisms, Therapeutic Potential and Clinical ApplicationsView all 4 articles

Complex networks interactions between bioactive compounds and adipose tissue vis-à-vis insulin resistance

Provisionally accepted
María  Barrera EsparzaMaría Barrera Esparza1Elizabeth  Carreón TorresElizabeth Carreón Torres2Angélica Saraí  Jiménez-OsorioAngélica Saraí Jiménez-Osorio3Julieta  Angel GarcíaJulieta Angel García3Octavio  Jiménez GarzaOctavio Jiménez Garza3Olga Rocío  Flores ChávezOlga Rocío Flores Chávez3Geu S.  Mendoza CatalánGeu S. Mendoza Catalán3Diego  Estrada LunaDiego Estrada Luna3*
  • 1National Autonomous University of Mexico, México City, México, Mexico
  • 2National Institute of Cardiology Ignacio Chavez, Mexico, México, Mexico
  • 3Autonomous University of the State of Hidalgo, Pachuca, Mexico

The final, formatted version of the article will be published soon.

Fatty acids disorders may lead to insulin resistance, resulting in long-term oxidative stress and inflammatory processes, both mediated by adipose tissue. Either in normal condition or obesogenic status, adipose cells components play an important role in several physiological and metabolic conditions. It has been shown that bioactive compounds can influence the development of obesity and its pathological complications such as insulin resistance. In this study, we performed a network between bioactive compounds and adipose tissue vis-a-vis insulin resistance. We constructed a regulatory network of 62 adipocyte cell components that incorporates current evidence of cellular and molecular interactions involved in healthy and obesity states. The network incorporated information about inflammation pathways and inhibition of insulin signaling; insulin signaling and GLUT 4 translocation; triglycerides production; ATP production; M2 macrophages recruitment; adipogenesis and lipolysis as well as mitochondrial biogenesis. Our mathematical model showed a discernment between the impact of various bioactive substances on the transitions from health to obesity and vice versa. We found that anthocyanins, punicalagin, oleanolic acid, and NRG4 proved to be critical nodes in the transition from obesity to the healthy state, due to their switch-on potential to up-regulate the complex network resulting in a beneficial transition.

Keywords: complex networks, Adipose Tissue, Insulin Resistance, bioactive compounds, Inflammation, Oxidative Stress

Received: 17 Feb 2025; Accepted: 21 Apr 2025.

Copyright: © 2025 Barrera Esparza, Carreón Torres, Jiménez-Osorio, Angel García, Jiménez Garza, Flores Chávez, Mendoza Catalán and Estrada Luna. This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.

* Correspondence: Diego Estrada Luna, Autonomous University of the State of Hidalgo, Pachuca, Mexico

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