Ramzan Khadija, Zehra Syeda Hijab, Balciunaitiene Aiste, Viskelis Pranas, Viskelis Jonas
Lithuanian Research Centre for Agriculture and Forestry, Institute of Horticulture, Kaunas Str. 30, Kaunas District, 54333 Babtai, Lithuania.
Foods. 2025 Apr 18;14(8):1402. doi: 10.3390/foods14081402.
The increasing demand for functional foods has spurred interest in bioactive compounds, particularly their role in health promotion and disease prevention. This review comprehensively explores the bioavailability, mechanisms of action, and potential applications of bioactive compounds derived from natural food sources. We have systematically compiled and synthesized data from the recent scientific literature, including peer-reviewed journal articles, clinical studies, and meta-analyses, to present an in-depth evaluation of these compounds' physicochemical properties, stability, and interactions within food matrices. Furthermore, this review discusses advanced delivery systems, such as nanoencapsulation and emulsification, for enhancing bioavailability and targeted release. By addressing critical gaps in the understanding of the functional and technological aspects of bioactive compounds, this review underscores their relevance in formulating novel nutraceuticals and functional foods. The insights presented herein provide a foundation for future research and practical applications in the food industry, ultimately contributing to improving human health and well-being. Although recovering bioactive compounds from food waste is a sustainable way to reduce waste and use resources, additional research is required to make these procedures more efficient for use on an industrial scale.
对功能性食品日益增长的需求激发了人们对生物活性化合物的兴趣,尤其是它们在促进健康和预防疾病方面的作用。本综述全面探讨了源自天然食物来源的生物活性化合物的生物利用度、作用机制和潜在应用。我们系统地收集和综合了近期科学文献中的数据,包括同行评审的期刊文章、临床研究和荟萃分析,以深入评估这些化合物在食品基质中的物理化学性质、稳定性和相互作用。此外,本综述还讨论了纳米包封和乳化等先进递送系统,以提高生物利用度和靶向释放。通过填补对生物活性化合物功能和技术方面理解的关键空白,本综述强调了它们在开发新型营养保健品和功能性食品方面的相关性。本文提出的见解为食品工业的未来研究和实际应用奠定了基础,最终有助于改善人类健康和福祉。尽管从食物废料中回收生物活性化合物是减少废料和利用资源的可持续方式,但仍需要进一步研究以使这些程序在工业规模上更高效地应用。