Brul S, Coote P
Unilever Research Division, Foods Laboratories, Vlaardingen, The Netherlands.
Int J Food Microbiol. 1999 Sep 15;50(1-2):1-17. doi: 10.1016/s0168-1605(99)00072-0.
Preservative agents are required to ensure that manufactured foods remain safe and unspoiled. In this review, we will discuss the mode of action of both chemical and biological (nature-derived) preservatives and the stress response mechanisms induced by these compounds in microorganisms of concern to the food industry. We will discuss the challenges that food manufacturers face with respect to the assurance of food safety and the prevention of spoilage. Following this, chemical preservatives will be discussed, in particular, weak organic acids such as sorbic and benzoic acid which are widely used in preservation. Furthermore. the mechanisms of microbial inactivation with hydrogen peroxide mediated systems and chelators such as citric acid and EDTA and their potential use in preservation will be covered. We will then address the potential of naturally occurring "preservatives". Of the antimicrobial compounds present in nature, first to be discussed will be the nonproteinaceous compounds often present in herbs and spices and we will speculate on the stress response(s) that microorganisms may elicit to these natural compounds. Next to be addressed will be compounds that attack cell walls and membranes, for example, peptides, proteins and lytic enzymes. In discussing the resistance mechanisms against membrane and wall perturbation, the extensive knowledge of stress responses against osmotic stress and temperature stress will be refered to. Finally, in the concluding paragraphs, options for combination preservation systems are evaluated.
防腐剂是确保加工食品保持安全且未变质所必需的。在本综述中,我们将讨论化学防腐剂和生物(天然来源)防腐剂的作用方式,以及这些化合物在食品工业关注的微生物中诱导的应激反应机制。我们将讨论食品制造商在确保食品安全和防止食品变质方面面临的挑战。在此之后,将讨论化学防腐剂,特别是广泛用于防腐的山梨酸和苯甲酸等弱有机酸。此外,还将涵盖过氧化氢介导体系以及柠檬酸和乙二胺四乙酸等螯合剂的微生物灭活机制及其在防腐中的潜在用途。然后,我们将探讨天然“防腐剂”的潜力。在自然界中存在的抗菌化合物中,首先要讨论的是通常存在于草药和香料中的非蛋白质化合物,并且我们将推测微生物可能对这些天然化合物引发的应激反应。接下来要讨论的是攻击细胞壁和细胞膜的化合物,例如肽、蛋白质和裂解酶。在讨论针对膜和壁扰动的抗性机制时,将参考针对渗透应激和温度应激的应激反应的广泛知识。最后,在结论段落中,评估组合保鲜系统的选择。