Adipose tissue extracellular matrix remodeling in response to dietary patterns and exercise : molecular landscape, mechanistic insights, and therapeutic approaches
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| מחבר ראשי: | |
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| Publication Date: | 2022 |
| מחברים אחרים: | , , |
| פורמט: | Article |
| שפה: | eng |
| Source: | Repositório Institucional da UnB |
| Download full: | https://repositorio.unb.br/handle/10482/44019 https://doi.org/10.3390/biology11050765 https://orcid.org/ 0000-0002-1479-5866 https://orcid.org/ 0000-0002-9679-8357 |
סיכום: | The extracellular matrix (ECM) is a 3-dimensional network of molecules that play a central role in differentiation, migration, and survival for maintaining normal homeostasis. It seems that ECM remodeling is required for adipose tissue expansion. Despite evidence indicating that ECM is an essential component of tissue physiology, adipose tissue ECM has received limited attention. Hence, there is great interest in approaches to neutralize the harmful effects of ECM enlargement. This review compiles and discusses the current literature on adipose tissue ECM remodeling in response to different dietary patterns and exercise training. High-calorie diets result in substantial adipose tissue ECM remodeling, which in turn could lead to fibrosis (excess deposition of collagens, elastin, and fibronectin), inflammation, and the onset of metabolic dysfunction. However, combining a nutritionally balanced diet with exercise is a remarkable potential strategy for lipolytic activity, preventing rapid ECM expansion in different adipose tissue depots. Despite the distinct exercise modalities (aerobic or resistance exercise) reversing adipose tissue fibrosis in animal models, the beneficial effect on humans remains controversial. Defining molecular pathways and specific mechanisms that mediate the positive effects on adipose tissue, ECM is essential in developing optimized interventions to improve health and clinical outcomes. |
פריטים דומים: Adipose tissue extracellular matrix remodeling in response to dietary patterns and exercise : molecular landscape, mechanistic insights, and therapeutic approaches
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