首页> 美国卫生研究院文献>Journal of Food Science and Technology >Chitosan films incorporated with Thymus capitatus essential oil: mechanical properties and antimicrobial activity against degradative bacterial species isolated from tuna (Thunnus sp.) and swordfish (Xiphias gladius)
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Chitosan films incorporated with Thymus capitatus essential oil: mechanical properties and antimicrobial activity against degradative bacterial species isolated from tuna (Thunnus sp.) and swordfish (Xiphias gladius)

机译:掺有百里香百里香精油的壳聚糖膜:对分离自金枪鱼(Thunnus sp。)和箭鱼(Xiphias gladius)的降解细菌物种的机械性能和抗菌活性

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摘要

Chitosan-based coatings and films have been widely studied, demonstrating to be an efficient and eco-friendly approach to extend the shelf life of food products. The effect of incorporating Thymus capitatus essential oil (TCEO) at different concentrations (0.5, 1.0, and 1.5% w/w) on physical, mechanical and antimicrobial properties of chitosan films was studied. The antimicrobial activity of the films was evaluated by agar diffusion method, against 23 spoiling microorganisms isolated from tuna and swordfish (ten Shewanella baltica, one S. morhuae, one S. putrefaciens, two Pseudomonas fluorescens, two P. fragi, five Serratia spp., one Aeromonas molluscorum, and one Acinetobacter radioresistens) and Shewanella putrefaciens ATCC 49138. The films exerted antimicrobial activity against all the tested strain, although not proportional to increasing TCEO concentration. In particular, S. baltica was the most sensitive species and the inhibition was stable after 72 h. In general, TCEO incorporation in chitosan films, significantly (p < 0.05) decreased the water permeability (from 0.577 ± 0.060 gmm/kPahm2 at 61% R.U. for chitosan to 0.487 ± 0.037 gmm/kPahm2 for the film with 1.5% TCEO), the elongation at brake (from 27.322 ± 2.35% for chitosan to 14.695 ± 3.99% for the film with 1.5% TCEO) and increased the tensile strength (from 1.697 ± 0.16% for chitosan to 19.480 ± 2.86% for the film with 1.5% TCEO). Moisture content and water contact angle of the films also showed a similar trend with TCEO introduction, because of crosslinking reaction among the polymer chains and TCEO components. Scanning electron microscopy confirmed structure-properties relationships. These results suggest chitosan films incorporated with TCEO as an alternative treatment to inhibit the growth of degradative bacteria with potential application in the fish industry. The importance of testing more than one strain of the same bacteria species to evaluate the effectiveness of chitosan-essential oils coatings was also demonstrated.
机译:壳聚糖基涂料和薄膜已得到广泛研究,证明是一种有效且环保的方法,可以延长食品的保质期。研究了不同浓度(0.5%,1.0%和1.5%w / w)的胸腺百里香精油(TCEO)的掺入对壳聚糖膜的物理,机械和抗菌性能的影响。通过琼脂扩散法对从金枪鱼和箭鱼中分离出的23种变质微生物(十波希瓦氏波氏菌,一株沙门氏菌,一株腐烂链球菌,两株荧光假单胞菌,两株假单胞菌,五株沙雷氏菌)的抗菌活性进行了评估。 ,一种软体动物气单胞菌和一种抗放射线不动杆菌)和腐烂希瓦氏菌ATCC49138。该膜对所有测试菌株均具有抗菌活性,尽管与增加的TCEO浓度不成比例。尤其是波罗的海草(S. baltica)是最敏感的物种,在72小时后抑制作用稳定。通常,在壳聚糖膜中掺入TCEO会显着(p <0.05)降低透水率(从壳聚糖的61%RU的水渗透率从0.577±0.060 gmm / kPahm 2 降至0.487±0.037 gmm / kPahm 2 ,制动时的伸长率(从壳聚糖的27.322±2.35%增长到TCEO为1.5%的薄膜为14.695±3.99%),拉伸强度(从1.697±0.16)增加壳聚糖的百分含量为19.480±2.86%,TCEO为1.5%)。由于聚合物链和TCEO组分之间的交联反应,薄膜的水分含量和水接触角也与TCEO的引入趋势相似。扫描电子显微镜证实了结构-性质的关系。这些结果表明,与TCEO结合在一起的壳聚糖薄膜可作为抑制降解细菌生长的替代方法,在鱼类工业中具有潜在的应用前景。还证明了测试一种以上相同细菌种类的菌株以评估壳聚糖必需油涂层的有效性的重要性。

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