Ramadoss Aparna, Poosarla Venkata Giridhar, Sadiya Shaik, Shivshetty Nagaveni
Department of Life Sciences, GITAM School of Science, GITAM (Deemed to be University), Visakhapatnam, Andhra Pradesh, India.
J Food Sci. 2025 Apr;90(4):e70179. doi: 10.1111/1750-3841.70179.
Recently, there has been an increasing interest in biodegradable films for extending food's shelf life. This study developed pectin-potato starch-based films incorporating varying pyrogallol concentrations and evaluated shelf life their physical, antioxidant, mechanical, optical, antibacterial, structural, biodegradation, and shelf-life properties. Among the tested films (F1, pectin; F2, pectin + potato starch; F3, pectin + potato starch + 0.5%pyrogallol; and F4, pectin + potato starch + 1%pyrogallol), F4 exhibited superior antibacterial activity against Staphylococcus aureus (42 mm), Klebsiella pneumoniae (20.5 mm), and Escherichia coli (25.5 mm), antioxidant activity (AA) (95% (diphenylpicrylhydrazyl), 76% (metal chelating activity), and 87% (hydroxyl radical scavenging assay)), mechanical, and soil biodegradation. Fourier transform infrared spectroscopy and field emission scanning electron microscopy confirmed biocompatibility, whereas differential scanning calorimetry studies showed thermal stability. Shelf-life studies on tomatoes at 30°C demonstrated that F4 film coating extended shelf life to 21 days by reducing weight loss (14.5%), total phenolic content (25 mg/100 g), AA (53.5%), firmness (46 N), and titratable acidity (0.38%) while maintaining the total soluble solids, pH, lycopene content, color, and microbial inhibition. This study introduces a novel active biodegradable film with enhanced antimicrobial, mechanical, and antioxidant properties for sustainable food packaging applications. PRACTICAL APPLICATION: This study introduces an eco-friendly biopolymer coating formulated to extend the shelf life of food by reducing spoilage and maintaining quality during storage. The coating is cost-effective, easy to produce, and can be used for industrial-scale applications by giving a sustainable alternative to synthetic packaging. It can provide consumers with long-lasting produce by maintaining freshness, reducing food waste, and promoting environmentally conscious food preservation practices.
近年来,人们对可生物降解薄膜以延长食品保质期的兴趣日益浓厚。本研究开发了含有不同浓度邻苯三酚的果胶 - 马铃薯淀粉基薄膜,并评估了它们的物理、抗氧化、机械、光学、抗菌、结构、生物降解和保质期特性。在测试的薄膜(F1,果胶;F2,果胶 + 马铃薯淀粉;F3,果胶 + 马铃薯淀粉 + 0.5%邻苯三酚;F4,果胶 + 马铃薯淀粉 + 1%邻苯三酚)中,F4对金黄色葡萄球菌(42毫米)、肺炎克雷伯菌(20.5毫米)和大肠杆菌(25.5毫米)表现出优异的抗菌活性、抗氧化活性(AA)(95%(二苯基苦味酰基自由基)、76%(金属螯合活性)和87%(羟基自由基清除试验))、机械性能和土壤生物降解性。傅里叶变换红外光谱和场发射扫描电子显微镜证实了生物相容性,而差示扫描量热法研究表明具有热稳定性。在30°C下对番茄进行的保质期研究表明,F4薄膜涂层通过减少重量损失(14.5%)、总酚含量(25毫克/100克)、AA(53.5%)、硬度(46牛)和可滴定酸度(0.38%),同时保持总可溶性固形物、pH值、番茄红素含量、颜色和微生物抑制,将保质期延长至21天。本研究引入了一种新型的具有增强抗菌、机械和抗氧化性能的活性可生物降解薄膜,用于可持续食品包装应用。实际应用:本研究引入了一种生态友好型生物聚合物涂层,其配方旨在通过减少变质和在储存期间保持质量来延长食品保质期。该涂层具有成本效益,易于生产,并且通过提供合成包装的可持续替代品可用于工业规模应用。它可以通过保持新鲜度、减少食物浪费和促进注重环保的食品保鲜实践,为消费者提供保质期长的农产品。