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Enhancement of the productivity of the potent bacteriocin avicin A and improvement of its stability using nanotechnology approaches

机译:使用纳米技术提高有效的细菌素阿维菌素A的生产率并提高其稳定性

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摘要

Herein, enhancements of the yield and antimicrobial activity duration of the bacteriocin avicin A were accomplished using fractional factorial design (FFD) and layered double hydroxide (LDH) nanoparticles. Firstly, potential factors affecting bacteriocin production were selected for preliminary study. By a 25-1 FFD, high pH was shown to have a positive effect on avicin A yield, while temperature and duration of incubation, as well as peptone nitrogen sources all had negative effects. The highest bacteriocin production and activity (2560 BU/ml) were observed after 30 h of incubation at 30 °C, with pH adjustment at 7, and in the presence of 2 g mannitol as carbon source and 2.2 g peptone as nitrogen source. Secondly, avicin A nanocomposites with different LDH precursors were tested. Only avicin A-ZnAl-CO3 LDH demonstrated a potent antimicrobial activity against Lactobacillus sakei LMGT 2313 that lasted for at least 24 days, as compared to the values of 6 and 15 days observed with the free avicin A that has been stored at room temperature and at 4 °C, respectively. In conclusion, avicin A production and stability can be improved by manipulating the growth conditions and media composition, together with conjugation to LDHs.
机译:在本文中,使用分数因子设计(FFD)和层状双氢氧化物(LDH)纳米颗粒可提高细菌素阿维菌素A的产量和抗菌活性持续时间。首先,选择影响细菌素产生的潜在因素进行初步研究。通过2 5-1 FFD显示,高pH值对阿维菌素A产量具有积极影响,而温度和孵育时间以及蛋白nitrogen氮源均具有负面影响。在2 g甘露醇作为碳源和2.2 g蛋白ept作为氮源存在下,于30 C孵育30 h,调节pH值为7,观察到最高的细菌素产量和活性(2560 BU / ml)。其次,测试了具有不同LDH前体的阿维菌素A纳米复合材料。与在室温下储存的免费阿维菌素A观察到的6天和15天的值相比,只有阿维奇霉素A-ZnAl-CO3 LDH表现出了对清酒乳杆菌LMGT 2313的有效抗菌作用,该活性持续了至少24天。分别在4°C。总之,通过控制生长条件和培养基组成以及与LDH的结合,可以提高阿维菌素A的产量和稳定性。

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