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中国精品科技期刊2020

姜黄素对NFC苹果汁中酸土脂环酸芽孢杆菌的抑制活性研究

Inhibitory Activity of Curcumin against Alicyclobacillus acidoterrestris in NFC Apple Juice

  • 摘要: 酸土脂环酸芽孢杆菌(Alicyclobacillus acidoterrestris)是一种嗜酸耐热菌,可在苹果汁等酸性饮料中生长并使其产生不良气味和沉淀,最终导致腐败变质。为控制苹果汁中A. acidoterrestris的污染,本研究以天然抑菌剂姜黄素为对象,通过最小抑菌浓度(Minimal Inhibitory Concentrations,MIC)测定、电导率分析、细胞膜损伤评价、胞内ATP以及胞内pH测定等实验,探究其对A. acidoterrestris的抑制活性及潜在作用方式,并进一步探究了在4 ℃(冷链运输温度)和25 ℃(室温)下姜黄素添加对苹果汁理化指标的影响。结果表明,姜黄素对该菌的MIC为0.1 mg/mL,主要通过破坏细菌细胞膜完整性、降低胞内ATP含量与pH实现抑菌作用。在苹果汁中添加姜黄素,结合低温储存,可有效抑制A. acidoterrestris,并可使苹果汁的理化指标pH(3.29±0.01)、糖度(13.33±0.06 °Brix)、总酚含量(202.22±1.80 μg/mL)、色差(ΔE≤0.63)维持在正常范围内。上述发现证实了姜黄素可有效预防苹果汁中A. acidoterrestris的侵染,为酸性饮料中嗜酸耐热菌的污染控制提供理论依据。

     

    Abstract: Alicyclobacillus acidoterrestris is an acidophilic and thermotolerant bacterium, which can grow in acidic beverages such as apple juice, causing off-flavors and even sedimentation, ultimately leading to spoilage. To control the contamination of A. acidoterrestris in apple juice, this study focused on the natural antibacterial agent curcumin. Through experiments including the determination of the minimum inhibitory concentration (MIC), conductivity analysis, evaluation of cell membrane damage, intracellular ATP content, and intracellular pH, the inhibitory activity and potential mode of action of curcumin against A. acidoterrestris were investigated. Additionally, the effects of curcumin addition on the physicochemical properties of apple juice at 4 ℃ (cold chain transportation temperature) and 25 ℃ (room temperature) were explored. The results showed that the MIC of curcumin against this bacterium was 0.1 mg/mL, and its antibacterial effect was mainly achieved by disrupting the integrity of the bacterial cell membrane, reducing intracellular ATP content and pH. The addition of curcumin to apple juice, combined with low-temperature storage, effectively inhibited A. acidoterrestris while maintaining key physicochemical parameters, such as pH (3.29±0.01), sugar content (13.33±0.06 °Brix), total phenolic content (202.22±1.80 μg/mL), and color difference (ΔE≤0.63), within normal ranges. These findings demonstrate that curcumin can effectively prevent A. acidoterrestris contamination in apple juice, providing a theoretical basis for the control of thermophilic acidophilic bacteria in acidic beverages.

     

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