Anise essential oil immobilized in chitosan microparticles: a novel bactericidal material for food protection.

IF 2.3 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY International Microbiology Pub Date : 2024-09-24 DOI:10.1007/s10123-024-00594-8
Carolina Rosai Mendes, Antonella Valentina Lazzari Zortea, Gabriel de Souza Laurentino, Guilherme Henrique Teixeira de Lima, Pietro Luis Coletti Casemiro de Freitas, Guilherme Dilarri, Ederio Dino Bidoia, Renato Nallin Montagnolli
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Abstract

Foodborne infections in humans are one of the major concerns of the food industries, especially for minimally processed foods (MPF). Thereby, the packaging industry applies free chlorine in the sanitization process, ensuring the elimination of any fecal coliforms or pathogenic microorganisms. However, free chlorine's propensity to react with organic matter, forming toxic compounds such as trihalomethanes and haloacetic acid. Therefore, the present work aimed to synthesize a novel organic biomaterial as an alternative to free chlorine. Chitosan microparticles were produced, with Pimpinella anisum (anise) essential oil immobilized in the biopolymer matrix (MPsQTO). The characterization of this biomaterial was done through GC-MS/MS, FT-IR, and SEM. Antimicrobial assays proved that the MPsQTO presented antibacterial activity for Escherichia coli, Salmonella typhi, Pseudomonas aeruginosa, and Bacillus subtilis at 300 µL mL-1 of concentration. The fluorescence microscope also showed the MPsQTO targets the cytoplasmatic membrane, which is responsible for cell death in the first minutes of contact. Studies with the mutant B. subtilis (amy::pspac-ftsZ-gfpmut1) and the Saccharomyces cerevisiae D7 also proved that the biomaterial did not affect the genetic material and did not have any mutagenic/carcinogenic effect on the cells. The sanitization assays with pumpkin MPF proved that the MPsQTO is more effective than free chlorine, increasing the shelf-life of the MPF. Consequently, the novel biomaterial proposed in this work is a promising alternative to traditional chemical sanitizers.

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固定在壳聚糖微粒中的茴香精油:一种用于食品保护的新型杀菌材料。
人的食源性感染是食品工业的主要关注点之一,尤其是对微加工食品(MPF)而言。因此,包装行业在消毒过程中会使用游离氯,以确保消除任何粪大肠菌群或致病微生物。然而,游离氯易与有机物发生反应,形成有毒化合物,如三卤甲烷和卤乙酸。因此,本研究旨在合成一种新型有机生物材料,作为游离氯的替代品。研究人员制备了壳聚糖微粒,并在生物聚合物基质(MPsQTO)中固定了茴芹精油。通过 GC-MS/MS、FT-IR 和 SEM 对这种生物材料进行了表征。抗菌试验证明,在 300 µL mL-1 的浓度下,MPsQTO 对大肠杆菌、伤寒沙门氏菌、铜绿假单胞菌和枯草杆菌具有抗菌活性。荧光显微镜还显示,MPsQTO 以细胞膜为靶标,在接触的最初几分钟内导致细胞死亡。对突变型枯草杆菌(amy::pspac-ftsZ-gfpmut1)和酿酒酵母 D7 的研究也证明,该生物材料不会影响遗传物质,对细胞也没有任何诱变/致癌作用。南瓜 MPF 的消毒试验证明,MPsQTO 比游离氯更有效,可延长 MPF 的保质期。因此,本研究提出的新型生物材料有望替代传统的化学消毒剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Microbiology
International Microbiology 生物-生物工程与应用微生物
CiteScore
5.50
自引率
3.20%
发文量
67
审稿时长
3 months
期刊介绍: International Microbiology publishes information on basic and applied microbiology for a worldwide readership. The journal publishes articles and short reviews based on original research, articles about microbiologists and their work and questions related to the history and sociology of this science. Also offered are perspectives, opinion, book reviews and editorials. A distinguishing feature of International Microbiology is its broadening of the term microbiology to include eukaryotic microorganisms.
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