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鳄梨籽脂肪酸衍生物(产乙酸素)对单核细胞增生李斯特菌的抑制活性。

Inhibitory Activity of Avocado Seed Fatty Acid Derivatives (Acetogenins) Against Listeria Monocytogenes.

作者信息

Salinas-Salazar Carmen, Hernández-Brenes Carmen, Rodríguez-Sánchez Dariana Graciela, Castillo Elena Cristina, Navarro-Silva Jesús Manuel, Pacheco Adriana

机构信息

Tecnologico de Monterrey, Campus Monterrey, Ave. Eugenio Garza Sada 2501, Monterrey, N.L., 64849, Mexico.

Tecnologico de Monterrey, Escuela de Medicina, Ave. Batallón de San Patricio 112, San Pedro, N.L., 66278, Mexico.

出版信息

J Food Sci. 2017 Jan;82(1):134-144. doi: 10.1111/1750-3841.13553. Epub 2016 Nov 21.

Abstract

High standards regarding Listeria monocytogenes control and consumer demands for food products without synthetic additives represent a challenge to food industry. We determined the antilisterial properties of an enriched acetogenin extract (EAE) from avocado seed, compared it to two commercial antimicrobials (one enriched in avocado acetogenins), and tested purified molecules. Acetogenin composition in pulp and seed of Hass avocado was quantified. EAE were obtained by two sequential centrifuge partition chromatography separations and molecules purified by preparative chromatography and quantified by HPLC-MS-TOF and HPLC-PDA. Avocado seed extracts which are the following two: 1) EAE and 2) the commercially available antimicrobial Avosafe®, presented similar inhibition zones and chemical profiles. Minimum inhibitory concentration (MIC) values of extracts and two isolated acetogenins varied between 7.8 and 15.6 mg/L, were effective at 37 and 4 °C, and showed a bactericidal effect probably caused by increased membrane permeability and lytic effects, evidenced by flow cytometry at 10 and 100× MIC. Activity was comparable to Mirenat®. Most potent acetogenins were Persenone C (5) and A (6), and AcO-avocadenyne (1), the latter exclusively present in seed. Common features of bioactive molecules were the acetyl moiety and multiple unsaturations (2 to 3) in the aliphatic chain, some persenones also featured a trans-enone group. Seeds contained 1.6 times higher levels of acetogenins than pulp (5048.1 ± 575.5 and 3107.0 ± 207.2 mg/kg fresh weight, respectively), and total content in pulp was 199 to 398 times higher than MIC values. Therefore, acetogenin levels potentially consumed by humans are higher than inhibitory concentrations. Results document properties of avocado seed acetogenins as natural antilisterial food additives.

摘要

对单核细胞增生李斯特菌的高标准控制以及消费者对无合成添加剂食品的需求,对食品行业构成了挑战。我们测定了鳄梨籽富集产乙酸素提取物(EAE)的抗李斯特菌特性,将其与两种商业抗菌剂(一种富含鳄梨产乙酸素)进行比较,并测试了纯化后的分子。对哈斯鳄梨果肉和种子中的产乙酸素成分进行了定量分析。通过两次连续的离心分配色谱分离获得EAE,分子通过制备色谱法纯化,并通过HPLC-MS-TOF和HPLC-PDA进行定量分析。鳄梨籽提取物有以下两种:1)EAE和2)市售抗菌剂Avosafe®,它们呈现出相似的抑菌圈和化学特征。提取物和两种分离出的产乙酸素的最低抑菌浓度(MIC)值在7.8至15.6 mg/L之间,在37℃和4℃时均有效,并且显示出杀菌作用,这可能是由膜通透性增加和裂解作用引起的,通过流式细胞术在10倍和100倍MIC时得到了证实。其活性与Mirenat®相当。最有效的产乙酸素是Persenone C(5)和A(6)以及乙酰氧基鳄梨二烯炔(1),后者仅存在于种子中。生物活性分子的共同特征是乙酰基部分和脂肪链中的多个不饱和键(2至3个),一些Persenone还具有反式烯酮基团。种子中的产乙酸素含量比果肉高1.6倍(分别为5048.1±575.5和3107.0±207.2 mg/kg鲜重),果肉中的总含量比MIC值高199至398倍。因此,人类潜在摄入的产乙酸素水平高于抑制浓度。研究结果证明了鳄梨籽产乙酸素作为天然抗李斯特菌食品添加剂的特性。

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