Kamthai Suthaphat, Wiriyacharee Pairote, Naruenartwongsakul Srisuwan, Khaw-On Patompong, Deenu Aree, Chaipoot Supakit, Phongphisutthinant Rewat, Tachai Kamonwan, Orpool Sawichaya
Division of Packaging Technology, School of Agro-Industry, Faculty of Agro-Industry, Chiang Mai University, Chiang Mai 50100, Thailand.
Lanna Rice Research Center, Chiang Mai University, Chiang Mai 50100, Thailand.
Gels. 2025 Mar 24;11(4):236. doi: 10.3390/gels11040236.
Growing concerns over the environmental impact of plastic packaging have driven interest in sustainable alternatives, particularly biopolymer-based films. This study developed ternary-blended polysaccharide gel films composed of carboxymethyl starch (CMS), chitosan (CS), and pectin (PT), with dialdehyde carboxymethyl cellulose (DCMC) as a crosslinker, and investigated the effects of honey bee brood protein (BBP) (0-0.4% /) on their mechanical, barrier, and thermal properties. A completely randomized design (CRD) was employed to evaluate the impact of BBP concentration on film characteristics. Results demonstrated that adding 0.4% BBP enhanced water vapor barrier properties and thermal stability while reducing hydrophilicity. The optimal formulation was observed at 0.1% BBP, providing the highest tensile strength (7.73 MPa), elongation at break (32.23%), and water-absorption capacity (369.01%). The improvements in thermal stability and hydrophilicity were attributed to BBP's hydrophobic amino acids, which interacted with DCMC to form a denser polymer network, enhancing structural integrity and moisture resistance. Additionally, BBP incorporation contributed to the biodegradability of polysaccharide gel films, improving their environmental sustainability compared to conventional biopolymers. The findings suggest that BBP can serve as a functional additive in polysaccharide-based films, balancing performance and eco-friendliness for applications in biodegradable food and medical packaging.
对塑料包装环境影响的日益关注推动了人们对可持续替代品的兴趣,特别是基于生物聚合物的薄膜。本研究开发了由羧甲基淀粉(CMS)、壳聚糖(CS)和果胶(PT)组成的三元共混多糖凝胶薄膜,以二醛羧甲基纤维素(DCMC)作为交联剂,并研究了蜜蜂幼虫蛋白(BBP)(0 - 0.4% /)对其机械性能、阻隔性能和热性能的影响。采用完全随机设计(CRD)来评估BBP浓度对薄膜特性的影响。结果表明,添加0.4%的BBP可增强水蒸气阻隔性能和热稳定性,同时降低亲水性。在BBP含量为0.1%时观察到最佳配方,此时薄膜具有最高的拉伸强度(7.73 MPa)、断裂伸长率(32.23%)和吸水能力(369.01%)。热稳定性和亲水性的提高归因于BBP的疏水氨基酸,它们与DCMC相互作用形成更致密的聚合物网络,增强了结构完整性和防潮性。此外,加入BBP有助于多糖凝胶薄膜的生物降解性,与传统生物聚合物相比,提高了它们的环境可持续性。研究结果表明,BBP可作为基于多糖的薄膜中的功能性添加剂,在可生物降解食品和医疗包装应用中平衡性能和生态友好性。