Tu Jia, Peng Jie, Wen Li, Li Changzhu, Xiao Zhihong, Wu Ying, Xu Zhou, Hu Yuxi, Zhong Yan, Miao Yongjun, Xiao Jingjing, Liu Sisi
State Key Laboratory of Utilization of Woody Oil Resource, Hunan Academy of Forestry, Changsha 410004, China.
Lipid Molecular Structure and Function Key Laboratory of Hunan Province, Changsha 410004, China.
Pharmaceuticals (Basel). 2025 Jun 4;18(6):842. doi: 10.3390/ph18060842.
Antioxidant peptides derived from woody oil resource by-products exhibit strong free radical scavenging abilities and offer potential applications in functional foods, nutraceuticals, and cosmetics. This review summarizes the latest advances in preparation technologies, including enzymatic hydrolysis, microbial fermentation, chemical synthesis, recombinant expression, and molecular imprinting, each with distinct advantages in yield, selectivity, and scalability. The structure-activity relationships of antioxidant peptides are explored with respect to amino acid composition, molecular weight, and 3D conformation, which collectively determine their bioactivity and stability. Additionally, emerging delivery systems-such as nanoliposomes, microencapsulation, and cell-penetrating peptides-are discussed for their role in enhancing peptide stability, absorption, and targeted release. Mechanistic studies reveal that antioxidant peptides from woody oil resources act through network pharmacology, engaging core signaling pathways, including Nrf2/ARE, PI3K/Akt, AMPK, and JAK/STAT, to regulate oxidative stress, mitochondrial health, and inflammation. Preliminary safety data from in vitro, animal, and early clinical studies suggest low toxicity and favorable tolerability. The integration of omics technologies, molecular docking, and bioinformatics is accelerating the mechanism-driven design and functional validation of peptides. In conclusion, antioxidant peptides derived from woody oil resources represent a sustainable, multifunctional, and scalable solution for improving human health and promoting a circular bioeconomy. Future research should focus on structural optimization, delivery enhancement, and clinical validation to facilitate their industrial translation.
从木本油料资源副产品中提取的抗氧化肽具有很强的自由基清除能力,在功能性食品、营养保健品和化妆品中具有潜在应用价值。本文综述了制备技术的最新进展,包括酶解、微生物发酵、化学合成、重组表达和分子印迹,每种技术在产量、选择性和可扩展性方面都有独特优势。从氨基酸组成、分子量和三维构象方面探讨了抗氧化肽的构效关系,这些因素共同决定了它们的生物活性和稳定性。此外,还讨论了新兴的递送系统,如纳米脂质体、微囊化和细胞穿透肽,它们在提高肽的稳定性、吸收和靶向释放方面的作用。机理研究表明,木本油料资源中的抗氧化肽通过网络药理学发挥作用,参与核心信号通路,包括Nrf2/ARE、PI3K/Akt、AMPK和JAK/STAT,以调节氧化应激、线粒体健康和炎症。体外、动物和早期临床研究的初步安全性数据表明其毒性低且耐受性良好。组学技术、分子对接和生物信息学的整合正在加速肽的机制驱动设计和功能验证。总之,木本油料资源中的抗氧化肽是改善人类健康和促进循环生物经济的可持续、多功能和可扩展的解决方案。未来的研究应集中在结构优化、递送增强和临床验证上,以促进其工业转化。