发酵食品中的生物胺:从形成途径,风险分析,检测技术到控制措施的全面审查
Yaping Wang1, Bing Yan2, Haiqian Xu2
1College of Food Science and Technology, Research Center of Food Safety Risk Assessment and Control, Northwest University, Xi'an, Shaanxi 710069, China.
Food research international (Ottawa, Ont.)
|December 8, 2025
概括
发酵食品中的生物胺 (BA) 存在安全风险. 微生物策略通过抑制生产者或降解胺来控制BA提供有希望的解决方案,提高食品安全和质量.
科学领域:
- 食品科学 食品科学 食品科学
- 微生物学 微生物学
- 食品安全 食品安全
背景情况:
- 生物原胺 (BAs) 在发酵食品生产过程中形成,由于摄入过量可能对健康造成潜在危害,这引发了严重的食品安全问题.
- BA形成受到微生物脱碳酶活性,原材料,微生物群落和发酵条件的影响.
研究的目的:
- 系统地审查发酵食品中BA的形成,风险,检测和控制.
- 突出微生物策略作为一种有希望的方法来控制BA.
主要方法:
- 关于发酵食品中生物源氨酸的形成和控制现有文献的综述.
- 专注于微生物策略,包括竞争性抑制和BA的酶降解.
- 讨论挑战和未来的研究方向.
主要成果:
- 利用竞争性抑制或氨基氧化酶的微生物策略显示出控制BA和改善发酵食品质量的潜力.
- 优化微生物菌株的有效性,稳定性和可扩展性对于工业应用仍然存在挑战.
结论:
- 微生物策略是一种可行的和可持续的方法来管理发酵食品中的生物氨基.
- 未来的研究应该将微生物方法与人工智能生物传感器和合成生物学等先进技术相结合,以加强控制和应用.
相关概念视频
Amines: Introduction
5.5K
Amines are organic derivatives of ammonia. They are formed by replacing one or more ammonia protons with alkyl or aryl groups. Depending upon the number of organyl groups bonded to nitrogen, amines are classified as primary, secondary, or tertiary. Primary amines have one organyl group attached to the nitrogen atom, while secondary and tertiary amines have two and three organyl groups attached to the nitrogen atom, respectively.
5.5K
Amino Acid Biosynthetic Pathways
998
Amino acid biosynthesis is essential for cell growth, protein synthesis, and metabolic regulation. Cells generate essential and non-essential amino acids from metabolic intermediates to sustain vital biological functions. These intermediates originate from key metabolic pathways: glycolysis, the tricarboxylic acid (TCA) cycle, and the pentose phosphate pathway. Important precursors include α-ketoglutarate, pyruvate, oxaloacetate, phosphoenolpyruvate, and erythrose-4-phosphate, which...
998
Microorganisms in Agriculture and Food industry
1.2K
Microorganisms play a crucial role in agriculture and the food industry, contributing to soil fertility, crop protection, and food production. Their functions range from nitrogen fixation and biopesticide production to fermentation and food preservation, making them indispensable to sustainable farming and food safety.Role in AgricultureNitrogen-fixing bacteria, such as Rhizobium (symbiotic) and Azotobacter (free-living), convert atmospheric nitrogen into ammonia through biological nitrogen...
1.2K
Physical Properties of Amines
4.1K
Amines with low molecular weight are usually gaseous at room temperature, while those with high molecular weight are liquid or solids in nature. Usually, low molecular weight amines have a rotten fish-like smell. Diamines typically have a pungent smell. For instance, cadaverine and putrescine, depicted in Figure 1, are two molecules responsible for decaying tissue.
4.1K
Amino Acid Catabolism
952
Microorganisms rely on proteins as an essential carbon and energy source, particularly in environments with limited polysaccharides or lipids. However, proteins are too large to cross the plasma membrane unaided, necessitating enzymatic degradation. Microbes secrete extracellular proteases and peptidases that hydrolyze proteins into peptides, which can then be transported across the membrane. Once inside the cell, intracellular proteases degrade these peptides into free amino acids, which...
952
Microbial Fermentation
1.3K
Fermentation is a crucial anaerobic metabolic process that enables microbes to derive energy from sugar without relying on oxygen or an electron transport chain. This process is fundamental to various biological and industrial applications and is classified based on the metabolic products generated.Role of Pyruvate in FermentationPyruvate and its derivatives serve as key electron acceptors in fermentative pathways. The oxidation of NADH to regenerate NAD+ is essential for the continuation of...
1.3K


