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Natural bioactive peptides in photoaging: Multi-target mechanisms, clinical progress, and future anti-aging
Diandian Wang1, Yang Li1, Jiamin Lu1
1College of Biochemical Engineering, Beijing Union University, Beijing 100023, China; Beijing Key Laboratory of Bioactive Substances and Functional Food, Beijing Union University, Beijing 100023, China.
Abstract:
Photoaging is a process of accelerated skin aging induced by ultraviolet radiation (UVR) and other exogenous factors, characterized by deepened wrinkles, collagen degradation, and inflammatory responses. With increasing public interest in maintaining healthy skin and delaying aging, natural proteins and their bioactive peptides have emerged as promising candidates in anti-photoaging research due to their potent antioxidant, anti-inflammatory, and extracellular matrix (ECM) metabolism-regulating activities. Therefore, this review focuses on natural anti-photoaging peptides (APPs) and summarizes the latest research advances in their application in skin photoaging, covering their sources, preparation methods, clinical studies, and anti-photoaging mechanisms. It places particular emphasis on the roles of different types of bioactive peptides in skin protection, functional regulation, and aging intervention, while also conducting an in-depth discussion on the current challenges faced in their practical applications and their prospects. The results showed that APPs can significantly alleviate skin damage caused by ultraviolet radiation through multi-target mechanisms of action, and some peptides have completed clinical validation. In the future, APPs are expected to demonstrate broad application potential in dietary nutritional interventions and anti-aging strategies.
Insights
Natural anti-photoaging peptides (APPs) combat skin aging caused by UV radiation. This review highlights their sources, mechanisms, and clinical validation, showing promising applications in skincare and anti-aging strategies.
Area of Science:
- Dermatology and Cosmeceutical Science
- Biochemistry and Molecular Biology
Background:
- Photoaging, accelerated skin aging from UV radiation, causes wrinkles and collagen degradation.
- Natural bioactive peptides offer antioxidant and anti-inflammatory properties for skin health.
- Extracellular matrix (ECM) regulation is crucial for anti-aging interventions.
Purpose of the Study:
- To review natural anti-photoaging peptides (APPs) for skin health.
- To summarize research on APP sources, preparation, and clinical applications.
- To discuss APP mechanisms, challenges, and future prospects in anti-aging.
Main Methods:
- Literature review of scientific studies on natural anti-photoaging peptides.
- Analysis of peptide sources, extraction, and purification techniques.
- Evaluation of clinical studies and mechanistic investigations of APPs.
Main Results:
- APPs demonstrate significant efficacy in alleviating UV-induced skin damage.
- Multi-target mechanisms of action contribute to the protective effects of APPs.
- Several APPs have successfully completed clinical validation for anti-aging benefits.
Conclusions:
- Natural anti-photoaging peptides show broad potential for treating skin aging.
- APPs can be applied through various strategies, including dietary interventions.
- Further research and development are expected to enhance APP applications in the anti-aging market.
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