Cho Yoonho, Lee Jung-Soo, Han Jaejoon
Department of Biotechnology, College of Life Sciences and Biotechnology, Korea University, Seoul, 02841 Republic of Korea.
Institute of Control Agents for Microorganisms, Korea University, Seoul, 02841 Republic of Korea.
Food Sci Biotechnol. 2024 Jan 25;33(8):1885-1897. doi: 10.1007/s10068-023-01493-w. eCollection 2024 Jun.
This study assesses the impact of dual modification [octenyl succinylation (OSA) and heat-moisture treatment (HMT)] of sweet potato starch (SPS) on the physicochemical, mechanical, and permeability properties of SPS film. The intrinsic limitations of starch films, such as sensitivity to high humidity, inferior mechanical properties, and weak barrier capabilities, have restricted their use in sausage casings. Nonetheless, the dual-modified SPS film (OSA@HMT-SPS film) demonstrated significantly reduced solubility ( < 0.05), moisture content, water vapor permeability (WVP), and O permeability compared to the SPS film. Furthermore, its flexibility and elasticity, indicated by its elongation at break, was notably superior. When used as sausage casings, the OSA@HMT-SPS film effectively mitigated lipid oxidation in sausages better than both the SPS film and commercial collagen casings, owing to its low O permeability. As a result, the OSA@HMT-SPS casing presents significant promise as a plant-based sausage casing alternative.
本研究评估了甘薯淀粉(SPS)的双重改性[辛烯基琥珀酰化(OSA)和湿热处理(HMT)]对SPS薄膜的物理化学、机械和渗透性能的影响。淀粉薄膜存在一些固有局限性,如对高湿度敏感、机械性能较差和阻隔能力较弱,这些都限制了它们在香肠肠衣中的应用。尽管如此,与SPS薄膜相比,双重改性的SPS薄膜(OSA@HMT-SPS薄膜)的溶解度(<0.05)、水分含量、水蒸气透过率(WVP)和氧气透过率显著降低。此外,由其断裂伸长率表明的柔韧性和弹性也明显更优。当用作香肠肠衣时,由于其低氧气透过率,OSA@HMT-SPS薄膜比SPS薄膜和商业胶原蛋白肠衣更有效地减轻了香肠中的脂质氧化。因此,OSA@HMT-SPS肠衣作为一种基于植物的香肠肠衣替代品具有巨大的潜力。