Buonaiuto Giovanni, Federiconi Alessia, Vecchiato Carla Giuditta, Benini Elisa, Mordenti Attilio Luigi
Dipartimento di Scienze Mediche Veterinarie (DIMEVET), Alma Mater Studiorum-Università di Bologna, Via Tolara di Sopra 50, 40064 Ozzano Emilia, BO, Italy.
Dipartimento di Scienze Mediche Veterinarie (DIMEVET), Alma Mater Studiorum-Università di Bologna-Unità Operativa di Sede (Cesenatico), Viale Vespucci 2, 47042 Cesenatico, FC, Italy.
Antioxidants (Basel). 2025 Jun 23;14(7):771. doi: 10.3390/antiox14070771.
Betaine, a naturally occurring compound primarily derived from sugar beet by-products, has attracted increasing attention for its multifaceted roles in human and animal nutrition. Acting as both an osmolyte and a methyl group donor, betaine contributes to cellular hydration, methylation balance, antioxidant defense, and metabolic regulation. This review provides a comprehensive overview of betaine's biological functions and its health-promoting effects across species. In humans, betaine supports hepatic function, cardiovascular health, renal protection, and physical performance, mainly by modulating homocysteine metabolism, lipid profiles, and oxidative stress. In animal production systems, it enhances growth, feed efficiency, reproductive performance, and resilience to heat stress, with species-specific applications in monogastrics, ruminants, aquaculture species, and companion animals. The review also explores the molecular mechanisms underlying betaine's effects, including epigenetic regulation and mitochondrial function, and presents updated evidence on its biosynthesis, bioavailability, and nutrient interactions. Furthermore, the use of betaine derived from agro-industrial by-products aligns with the principles of the circular economy, promoting the sustainable reuse of valuable compounds within the agri-food chain. Despite promising findings, further research is needed to standardize effective dosages and clarify species-specific responses under different physiological and environmental conditions. Overall, betaine emerges as a promising and sustainable functional ingredient with wide-ranging applications in nutrition and health.
甜菜碱是一种主要从甜菜副产品中提取的天然化合物,因其在人类和动物营养中的多方面作用而受到越来越多的关注。作为一种渗透调节剂和甲基供体,甜菜碱有助于细胞水合作用、甲基化平衡、抗氧化防御和代谢调节。本文综述全面概述了甜菜碱的生物学功能及其在不同物种中的健康促进作用。在人类中,甜菜碱主要通过调节同型半胱氨酸代谢、血脂水平和氧化应激来支持肝功能、心血管健康、肾脏保护和身体机能。在动物生产系统中,它能促进生长、提高饲料效率、改善繁殖性能并增强对热应激的抵抗力,在单胃动物、反刍动物、水产养殖物种和伴侣动物中有特定的应用。本文综述还探讨了甜菜碱作用的分子机制,包括表观遗传调控和线粒体功能,并介绍了其生物合成、生物利用度和营养相互作用的最新证据。此外,使用源自农业工业副产品的甜菜碱符合循环经济原则,促进了农业食品链中有价值化合物的可持续再利用。尽管有一些有前景的研究结果,但仍需要进一步研究来规范有效剂量,并阐明不同生理和环境条件下的物种特异性反应。总体而言,甜菜碱作为一种有前景的可持续功能性成分,在营养和健康领域有着广泛的应用。