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采用超声辅助提取法和芬顿试剂联合从红藻和绿藻中提取降解蛋白。

Extraction of degraded proteins from red and green macroalgae using ultrasonic-assisted extraction and Fenton's reagent in combination.

作者信息

Ching I Lin, Chia Hsin Chang, Chih Hsuan Fan, Pei Chia Chiu, Shu Hsien Tsai, Chuan Chi Chien, Shih Chi Lee, Cheng Pei Chung, Ming Yi Lee

机构信息

Department of Nutrition and Health Sciences, Chang Gung University of Science and Technology, Taoyuan, 33303, Taiwan.

Research Center for Food and Cosmetic Safety, Chang Gung University of Science and Technology, Taoyuan, 33303, Taiwan.

出版信息

Curr Res Food Sci. 2025 May 27;10:101085. doi: 10.1016/j.crfs.2025.101085. eCollection 2025.

Abstract

This study utilized two common macroalgae species from Taiwanese waters, green algae () and red algae (), to evaluate the feasibility and efficacy of a novel cell wall disruption technique combining Fenton reagent and ultrasound-assisted extraction (UAE). The study analyzed protein characteristics, polysaccharide changes, and texture properties after pretreatment. Following cell wall disruption, the combined treatment of Fenton reagent and ultrasound significantly enhanced protein extraction yields, reaching 13.34 ± 0.50 % for and 3.96 ± 0.28 % for . In addition to increased yields, SDS-PAGE analysis and elevated free amino acid concentrations confirmed extensive protein degradation into low-molecular-weight peptides, indicating effective breakdown of protein structures. This enhanced degradation profile suggests that the pretreatment not only improves extraction efficiency but also promotes the production of functional protein hydrolysates. The surface hydrophobicity of the treated macroalgae significantly increased, while total and free sulfhydryl groups showed a decreasing trend, indicating that proteins were broken into smaller peptides, resulting in the destruction of sulfhydryl groups. To investigate the impact of the novel extraction technique on polysaccharides, the water-soluble total sugar and reducing sugar contents were measured. The disrupted samples showed total sugar and reducing sugar contents of 33.62 % and 2.76 mg/mL, respectively, while samples exhibited 27.00 % and 3.12 mg/mL, with significant increases observed in both macroalgae. Additionally, texture analysis and scanning electron microscopy (SEM) revealed that cell wall disruption enhanced the texture and compactness of the macroalgae. This study presents a high-efficiency cell wall disruption technique that effectively overcomes the challenges associated with macroalgae processing. By providing a robust scientific foundation, the research highlights the potential of macroalgae as valuable resources for food processing and plant-based meat production, while simultaneously contributing to sustainable practices and supporting efforts to reduce carbon emissions.

摘要

本研究利用了两种来自台湾海域的常见大型藻类,绿藻()和红藻(),来评估一种结合芬顿试剂和超声辅助提取(UAE)的新型细胞壁破坏技术的可行性和有效性。该研究分析了预处理后的蛋白质特性、多糖变化和质地特性。细胞壁破坏后,芬顿试剂和超声的联合处理显著提高了蛋白质提取率,绿藻的提取率达到13.34±0.50%,红藻的提取率达到3.96±0.28%。除了产量增加外,SDS-PAGE分析和游离氨基酸浓度升高证实蛋白质大量降解为低分子量肽,表明蛋白质结构被有效破坏。这种增强的降解情况表明,预处理不仅提高了提取效率,还促进了功能性蛋白质水解物的产生。处理后的大型藻类表面疏水性显著增加,而总巯基和游离巯基呈下降趋势,表明蛋白质被分解为较小的肽,导致巯基被破坏。为了研究这种新型提取技术对多糖的影响,测量了水溶性总糖和还原糖含量。破坏后的绿藻样品总糖和还原糖含量分别为33.62%和2.76mg/mL,而红藻样品分别为27.00%和3.12mg/mL,两种大型藻类均有显著增加。此外,质地分析和扫描电子显微镜(SEM)显示,细胞壁破坏增强了大型藻类的质地和紧实度。本研究提出了一种高效的细胞壁破坏技术,有效克服了与大型藻类加工相关的挑战。通过提供坚实的科学基础,该研究突出了大型藻类作为食品加工和植物性肉类生产宝贵资源的潜力,同时为可持续实践做出贡献,并支持减少碳排放的努力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9efb/12173600/731d9153d1d4/ga1.jpg

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