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Resveratrol-Induced Signal Transduction in Wound Healing
Anna-Lisa Pignet, Marlies Schellnegger, Andrzej Hecker, Michael Kohlhauser, Petra Kotzbeck, Lars‐Peter Kamolz
International Journal of Molecular Sciences · 2021 · ▲ 79 citations
Abstract
Resveratrol is a well-known polyphenol that harbors various health benefits. Besides its well-known anti-oxidative potential, resveratrol exerts anti-inflammatory, pro-angiogenic, and cell-protective effects. It seems to be a promising adjuvant for various medical indications, such as cancer, vascular, and neurodegenerative diseases. Additionally, resveratrol was shown to display beneficial effects on the human skin. The polyphenol is discussed to be a feasible treatment approach to accelerate wound healing and prevent the development of chronic wounds without the drawback of systemic side effects. Despite resveratrol's increasing popularity, its molecular mechanisms of action are still poorly understood. To take full advantage of resveratrol's therapeutic potential, a profound knowledge of its interactions with its targets is needed. Therefore, this review highlights the resveratrol-induced molecular pathways with particular focus on the most relevant variables in wound healing, namely inflammation, oxidative stress, autophagy(definition), collagen proliferation and angiogenesis.
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- 10.3390/ijms222312614
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- 2026-07-06 MST
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APA
Pignet, A., Schellnegger, M., Hecker, A., Kohlhauser, M., Kotzbeck, P., & Kamolz, L. (2021). Resveratrol-Induced Signal Transduction in Wound Healing. <em>International Journal of Molecular Sciences</em>. https://doi.org/10.3390/ijms222312614
Vancouver
Pignet A, Schellnegger M, Hecker A, Kohlhauser M, Kotzbeck P, Kamolz L. Resveratrol-Induced Signal Transduction in Wound Healing. International Journal of Molecular Sciences. 2021. doi:10.3390/ijms222312614.
BibTeX
@article{annalisa2021Resver,
title = {Resveratrol-Induced Signal Transduction in Wound Healing},
author = {Anna-Lisa Pignet and Marlies Schellnegger and Andrzej Hecker and Michael Kohlhauser and Petra Kotzbeck and Lars‐Peter Kamolz},
journal = {International Journal of Molecular Sciences},
year = {2021},
doi = {10.3390/ijms222312614},
}
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