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Functional Properties of Antimicrobial Neem Leaves Extract Based Macroalgae Biofilms for Potential Use as Active Dry Packaging Applications

机译:基于抗菌性干燥包装应用的抗微生物新泻叶片提取物的功能性能

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摘要

Antimicrobial irradiated seaweed–neem biocomposite films were synthesized in this study. The storage functional properties of the films were investigated. Characterization of the prepared films was conducted using SEM, FT-IR, contact angle, and antimicrobial test. The macroscopic and microscopic including the analysis of the functional group and the gas chromatography-mass spectrometry test revealed the main active constituents present in the neem extract, which was used an essential component of the fabricated films. Neem leaves’ extracts with 5% w/w concentration were incorporated into the matrix of seaweed biopolymer and the seaweed–neem bio-composite film were irradiated with different dosages of gamma radiation (0.5, 1, 1.5, and 2 kGy). The tensile, thermal, and the antimicrobial properties of the films were studied. The results revealed that the irradiated films exhibited improved functional properties compared to the control film at 1.5 kGy radiation dosage. The tensile strength, tensile modulus, and toughness exhibited by the films increased, while the elongation of the irradiated bio-composite film decreased compared to the control film. The morphology of the irradiated films demonstrated a smoother surface compared to the control and provided surface intermolecular interaction of the neem–seaweed matrix. The film indicated an optimum storage stability under ambient conditions and demonstrated no significant changes in the visual appearance. However, an increase in the moisture content was exhibited by the film, and the hydrophobic properties was retained until nine months of the storage period. The study of the films antimicrobial activities against Staphylococcus aureus (SA), and Bacillus subtilis (BS) indicated improved resistance to bacterial activities after the incorporation of neem leaves extract and gamma irradiation. The fabricated irradiated seaweed–neem bio-composite film could be used as an excellent sustainable packaging material due to its effective storage stability.
机译:在本研究中合成了抗微生物辐射的海藻 - 纽约生物复合薄膜。研究了薄膜的储存功能性质。使用SEM,FT-IR,接触角和抗微生物测试进行制备的膜的表征。包括官能团的分析和气相色谱 - 质谱试验的宏观和微观揭示了NeeM提取物中存在的主要活性成分,其使用制造薄膜的必需组分。 Neem Leak'提取物的提取物掺入海藻生物聚合物的基质中,并用不同剂量的γ辐射(0.5,1,1,15和2kGy)照射海藻 - 雷中生物复合膜。研究了薄膜的拉伸,热和抗微生物性质。结果表明,与1.5 kgy辐射剂量的对照膜相比,辐照薄膜表现出改善的功能性。由膜表现出的拉伸强度,拉伸模量和韧性增加,而与对照膜相比,辐照的生物复合膜的伸长率降低。与Neem-Seaweed基质的对照和提供的表面分子间相互作用相比,辐照薄膜的形态表现出更平滑的表面。该薄膜在环境条件下表明了最佳的储存稳定性,并证明了视觉外观的显着变化。然而,通过膜表现出水分含量的增加,并保留疏水性能直至储存期的九个月。对葡萄球菌(SA)和枯草芽孢杆菌(BS)的薄膜抗菌活性的研究表明在纳入NEEM叶提取物和γ辐照后,提高了对细菌活性的改善。由于其有效的储存稳定性,所制造的照射海藻 - 雷姆生物复合膜可用作优异的可持续包装材料。

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