Chaudhary Narayan, Mishra Gourav, Yadav Tushar, Srivastava Nishant, Maurya Vimal K, Saxena Shailendra K
Nanotoxicity & Drosophila Research Laboratory, Department of Biotechnology, Meerut Institute of Engineering and Technology, Meerut 250005, India.
Department of Zoology, Jawaharlal Nehru Smriti Government Postgraduate College, Shujalpur 465333, India.
Antibiotics (Basel). 2022 Dec 15;11(12):1820. doi: 10.3390/antibiotics11121820.
Increasing health concerns regarding the use of plasticware have led to the development of ecofriendly biodegradable packaging film from natural polymer and food additives. In the present study, basil essential oil (BEO) loaded halloysite nanotubes (HNTs) composite films were synthesized using a solution casting method. The effects of BEO and nanotube concentration on the mechanical, physical, structural, barrier, and antioxidant properties of films were evaluated. Scanning electron microscopy (SEM), X-ray diffraction (XRD) and Fourier transform infrared (FTIR) demonstrated well-dispersed HNTs and BEO in tailored composite films. The addition of BEO in Chitosan (Ch) film caused darkening of the film color; furthermore, the incorporation of HNTs in varied concentrations increased opaqueness in Ch/BEO film. The Ch/BEO film, upon adding HNTs 5-30 wt%, exhibited a corresponding increase in the film thickness (0.108-0.135 mm) when compared with the Ch/BEO film alone (0.081 mm). The BEO-loaded HNTs composite films displayed reduced moisture content and characteristic barrier and UV properties. The Ch/BEO film with 15 wt% HNTs was found to have enhanced antioxidant activity. The Ch/BEO/HNTs composite also managed to prevent broccoli florets from losing weight and firmness during storage. The enhanced barrier and antioxidant qualities of the nanocomposite film suggest its potential application in the food processing and packaging sector. This is the first ever report on the fabrication of nanocomposite film using BEO and HNTs for food packaging. The low production cost and ecofriendly approach make the film acceptable for further research and commercialization thereafter.
人们对塑料制品使用的健康担忧日益增加,促使了由天然聚合物和食品添加剂制成的环保型可生物降解包装薄膜的发展。在本研究中,采用溶液浇铸法合成了负载罗勒精油(BEO)的埃洛石纳米管(HNTs)复合薄膜。评估了BEO和纳米管浓度对薄膜的机械、物理、结构、阻隔和抗氧化性能的影响。扫描电子显微镜(SEM)、X射线衍射(XRD)和傅里叶变换红外光谱(FTIR)表明,HNTs和BEO在定制的复合薄膜中分散良好。在壳聚糖(Ch)薄膜中添加BEO会导致薄膜颜色变深;此外,不同浓度的HNTs的加入增加了Ch/BEO薄膜的不透明度。与单独的Ch/BEO薄膜(0.081mm)相比,添加5-30wt%HNTs的Ch/BEO薄膜的厚度相应增加(0.108-0.135mm)。负载BEO的HNTs复合薄膜显示出降低的水分含量以及独特的阻隔和紫外线性能。发现含有15wt%HNTs的Ch/BEO薄膜具有增强的抗氧化活性。Ch/BEO/HNTs复合材料还成功地防止了西兰花小花在储存期间失重和变软。纳米复合薄膜增强的阻隔和抗氧化性能表明其在食品加工和包装领域的潜在应用。这是首次关于使用BEO和HNTs制备用于食品包装的纳米复合薄膜的报道。低生产成本和环保方法使该薄膜适合进一步研究及后续商业化。