保健品
生物利用度
健康福利
输送系统
医学
功能性食品
风险分析(工程)
疾病预防
生化工程
纳米技术
生物技术
控制释放
药理学
药物输送
固体脂质纳米粒
患者依从性
生物信息学
疾病
临床试验
作者
Yu Xu,Fan Li,Runan Zhao,Tao Shu,Weihong Min,Bei‐Wei Zhu
摘要
Food-derived bioactive peptides (FBPs) represent a promising class of nutraceuticals for the prevention and management of chronic diseases due to their diverse bioactivities and high biocompatibility; however, their therapeutic potential is severely limited by low oral bioavailability resulting from instability during processing, sensory drawbacks such as bitterness, and extensive gastrointestinal degradation. This review systematically outlines the major bottlenecks hindering the oral delivery of FBPs, including sensitivity to environmental factors (temperature, pH, metal ions) and physiological barriers (enzymatic hydrolysis, mucus layer, and epithelial transport). To overcome these challenges, advanced delivery systems, such as nanoparticles (NPs), nanoemulsions (NEs), liposomes, hydrogels, and composite carriers, have been designed. These engineered systems have demonstrated enhanced bioactivity and targeted delivery in preclinical models of neuroprotection, anti-inflammatory therapy, metabolic regulation, and cancer treatment, often outperforming free peptides in terms of stability and intestinal absorption. However, establishing quantitative correlations between formulation parameters and in vivo peptide bioavailability remains a critical bottleneck. Future research should focus on rationally designed stimuli-responsive platforms grounded in intestinal physiology, supported by standardized frameworks for scalable manufacturing and safety evaluation. This work provides a comprehensive framework for advancing FBPs delivery platforms toward functional food and chronic disease management applications.
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