Tanase Apetroaei Virginia, Istrati Daniela Ionela, Vizireanu Camelia
Faculty of Food Science and Engineering, Dunarea de Jos University of Galati, 111 Domneasca Street, 800201 Galati, Romania.
Molecules. 2024 Dec 31;30(1):124. doi: 10.3390/molecules30010124.
The growing demand for plant-based protein and natural food ingredients has further fueled interest in exploring hemp seeds ( L.) as a sustainable source of and nutrition. In addition to the content of proteins and healthy fats (linoleic acid and alpha-linolenic acid), hemp seeds are rich in phytochemical compounds, especially terpenoids, polyphenols, and phytosterols, which contribute to their bioactive properties. Scientific studies have shown that these compounds possess significant antioxidant, antimicrobial, and anti-inflammatory effects, making hemp seeds a promising ingredient for promoting health. Since THC (tetrahydrocannabinol) and CBD (cannabidiol) are found only in traces, hemp seeds can be used in food applications because the psychoactive effects associated with cannabis are avoided. Therefore, the present article reviews the scientific literature on traditional and modern extraction methods for obtaining active substances that meet food safety standards, enabling the transformation of conventional foods into functional foods that provide additional health benefits and promote a balanced and sustainable diet. Also, the identification methods of biologically active compounds extracted from hemp seeds and their bioactivity were evaluated. Mechanical pressing extraction, steam distillation, solvent-based methods (Soxhlet, maceration), and advanced techniques such as microwave-assisted and supercritical fluid extraction were evaluated. Identification methods such as high-performance liquid chromatography (HPLC) and mass spectrometry (MS) allowed for detailed chemical profiling of cannabinoids, terpenes, and phenolic substances. Optimizing extraction parameters, including solvent type, temperature, and time, is crucial for maximizing yield and purity, offering the potential for developing value-added foods with health benefits.
对植物性蛋白质和天然食品成分的需求不断增长,进一步激发了人们探索大麻籽(L.)作为可持续营养来源的兴趣。除了蛋白质和健康脂肪(亚油酸和α-亚麻酸)含量外,大麻籽还富含植物化学化合物,尤其是萜类化合物、多酚和植物甾醇,这些成分赋予了它们生物活性。科学研究表明,这些化合物具有显著的抗氧化、抗菌和抗炎作用,使大麻籽成为促进健康的有前景的成分。由于四氢大麻酚(THC)和大麻二酚(CBD)仅以痕量存在,大麻籽可用于食品应用,因为避免了与大麻相关的精神活性作用。因此,本文综述了关于获得符合食品安全标准的活性物质的传统和现代提取方法的科学文献,从而能够将传统食品转化为具有额外健康益处并促进均衡和可持续饮食的功能性食品。此外,还评估了从大麻籽中提取的生物活性化合物的鉴定方法及其生物活性。评估了机械压榨提取、水蒸气蒸馏、基于溶剂的方法(索氏提取、浸渍法)以及微波辅助和超临界流体萃取等先进技术。高效液相色谱(HPLC)和质谱(MS)等鉴定方法能够对大麻素、萜类化合物和酚类物质进行详细的化学分析。优化提取参数,包括溶剂类型、温度和时间,对于最大化产量和纯度至关重要,这为开发具有健康益处的增值食品提供了潜力。