食品科学 ›› 2025, Vol. 46 ›› Issue (17): 385-346.doi: 10.7506/spkx1002-6630-20250228-162

• 专题论述 • 上一篇    

谷维素制备及生物活性功能研究进展

苏娟,牟代臣,吴昊,程云辉,许宙,黄庆明,廖娟,胡剑,文李   

  1. (1.长沙理工大学食品与生物工程学院,湖南?长沙 410014;2.湖南助农米业有限公司,湖南?益阳 413200)
  • 发布日期:2025-08-18
  • 基金资助:
    湖南省科技创新计划资助项目(2023RC3137);湖南省益阳市重点研发计划项目(2024YY19)

Recent Advances in the Preparation and Bioactive Properties of γ-Oryzanol

SU Juan, MU Daichen, WU Hao, CHENG Yunhui, XU Zhou, HUANG Qingming, LIAO Juan, HU Jian, WEN Li   

  1. (1. School of Food Science and Bioengineering, Changsha University of Science & Technology, Changsha 410014, China; 2. Hunan Zhunong Rice Industry Co. Ltd., Yiyang 413200, China)
  • Published:2025-08-18

摘要: 谷维素是水稻加工副产物中含量最丰富的生物活性物质之一,主要从米糠油等谷物副产物中提取。本文综述谷维素传统提取方法(溶剂提取法,碱溶酸沉法,在传统溶剂提取法的基础上辅以微波、超声或欧姆加热的提取方法,超临界CO2萃取法,亚临界萃取法)和分离纯化方法(膜分离技术、吸附技术、层析技术、蒸馏与结晶技术)的优缺点。近年对谷维素制备方法的改进主要集中在绿色提取技术和分离技术的优化以提高谷维素的提取效率和产品纯度。其中超临界CO2萃取法和亚临界二甲醚法作为新型绿色提取技术,显著提高了谷维素的提取率。半制备色谱法作为最新型谷维素纯化方法,纯化后的谷维素纯度高达99%。谷维素具有降血脂、抗氧化、抗炎症等多种生物活性功能,目前对于谷维素生物活性功能的研究重点是谷维素抗氧化、抗炎症以及神经保护与调节机制的研究,但神经-代谢-免疫网络多靶点协同机制还未明确。最新研究发现,谷维素在食品领域主要应用于添加剂,在医药领域的应用多集中于作为其他药物的辅助治疗手段,但在抗衰老、皮肤修复等新兴领域的应用不足。除此之外,谷维素在农业和新兴医疗材料领域表现出潜力。根据我国节粮减损、健康中国、高质量发展等重大发展战略,提议加强我国稻米加工副产物活性组分的分离研究。

关键词: 谷维素来源及结构;提取;分离纯化;生物活性功能;应用

Abstract: γ-Oryzanol, one of the most abundant bioactive compounds in rice processing by-products, is primarily extracted from cereal-derived materials such as rice bran oil. This review systematically summarizes the advantages and limitations of conventional γ-oryzanol extraction methods (including solvent extraction, alkaline extraction followed by acid precipitation, solvent extraction assisted by microwave, ultrasound or ohmic heating, supercritical CO2 extraction, and subcritical extraction) and purification techniques (such as membrane separation, adsorption, chromatography, distillation, and crystallization). Recent improvements in γ-oryzano preparation methods have focused on optimizing green extraction technologies and separation technologies to enhance the extraction efficiency and product purity. As novel green extraction techniques, supercritical CO2 extraction and subcritical dimethyl ether extraction result in much improved yield of γ-oryzanol. As a state-of-the-art purification method, semi-preparative chromatography yields 99% pure γ-oryzanol. This compound exhibits multifaceted bioactivities, including hypolipidemic, antioxidant, and anti-inflammatory properties. Current research focuses on its antioxidant, anti-inflammatory, and neuroprotective/regulatory mechanisms; however, the neuro-metabolic-immune network multi-target synergistic mechanism is unclear yet. While γ-oryzanol is predominantly utilized as a food additive and dietary supplement, its pharmaceutical application remains largely confined to adjuvant therapy and it has been insufficiently applied in emerging fields such as anti-aging treatment and skin repair. In addition, γ-oryzanol shows potential in agriculture and emerging medical materials. In alignment with China’s national strategies for grain conservation and loss reduction, Healthy China, and high-quality development, this article calls for more research on the isolation of bioactive components from rice processing by-products.

Key words: sources and structure of γ-oryzanol; extraction; separation and purification; bioactive functions; application

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