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α-二羰基及相关化合物的抗菌特性。

Antimicrobial Properties of α-Dicarbonyl and Related Compounds.

作者信息

Jay J M, Rivers G M, Boisvert W E

机构信息

Department of Biological Sciences, Wayne State University, Detroit, Michigan 48202.

出版信息

J Food Prot. 1983 Apr;46(4):325-329. doi: 10.4315/0362-028X-46.4.325.

Abstract

By surface plating on plate count agar, 0.005 M (430 ppm) of the α-dicarbonyl compound, diacetyl, inhibited 28 of 40 organisms with the medium at pH 6 but only 11 at pH 8. Diacetyl was more effective against gram-negative bacteria and yeasts than non-lactic gram-positive bacteria and least effective against lactic acid bacteria. Acetoin, butanedioldiacetate and five butanediol isomers were considerably less effective than diacetyl, although all were more effective at pH 6 than 8. Diacetylmonoxime and diacetyldioxime were more effective than the diols and were less affected by pH of medium than diacetyl. Phenylglyoxal (PG) and 1,2-cyclohexanedione (CHD) ranked closest to diacetyl but, unlike the latter, they were more effective against gram-positive bacteria and less so against fungi and gram-negative bacteria. All 12 compounds were more effective against selected organisms by pour plating and in broth culture than by surface plating. Like diacetyl, CHD and PG are α, α-dicarbonyls and are widely used as arginine reactive agents resulting in the blockage of enzyme-substrate reactions. Although their antimicrobial activity may be due to this property, they apparently affect different enzymes than diacetyl because their antimicrobial spectra were different. The possibility of a class of food-use antimicrobial agents bearing α-dicarbonyl groups is suggested by the findings of this study.

摘要

通过在平板计数琼脂上进行表面接种培养,0.005 M(430 ppm)的α-二羰基化合物双乙酰,在pH值为6的培养基中抑制了40种微生物中的28种,但在pH值为8时仅抑制了11种。双乙酰对革兰氏阴性菌和酵母菌的效果比对非乳酸革兰氏阳性菌更有效,对乳酸菌的效果最差。乙偶姻、丁二醇二乙酸酯和五种丁二醇异构体的效果比双乙酰差得多,尽管它们在pH值为6时都比在pH值为8时更有效。双乙酰一肟和双乙酰二肟比二醇更有效,并且与双乙酰相比,受培养基pH值的影响更小。苯乙二醛(PG)和1,2-环己二酮(CHD)的效果最接近双乙酰,但与双乙酰不同的是,它们对革兰氏阳性菌更有效,对真菌和革兰氏阴性菌的效果则较差。通过倾注平板法和肉汤培养法,所有12种化合物对选定微生物的效果都比对表面接种培养法更有效。与双乙酰一样,CHD和PG都是α,α-二羰基化合物,被广泛用作精氨酸反应剂,导致酶-底物反应受阻。尽管它们的抗菌活性可能归因于此特性,但它们显然影响的酶与双乙酰不同,因为它们的抗菌谱不同。本研究结果表明了一类带有α-二羰基基团的食品用抗菌剂的可能性。

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