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银鱼鱼鳔胶原蛋白的深共晶溶剂提取:增强对 pH 值和 NaCl 胁迫的溶解性。

Silver carp swim bladder collagen derived from deep eutectic solvents: Enhanced solubility against pH and NaCl stresses.

机构信息

Beijing Laboratory for Food Quality and Safety, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, China.

Experimental Seafood Processing Laboratory, Coastal Research and Extension Center, Mississippi State University, Pascagoula, MS 39567, USA.

出版信息

Int J Biol Macromol. 2024 Nov;281(Pt 2):136315. doi: 10.1016/j.ijbiomac.2024.136315. Epub 2024 Oct 5.

Abstract

Deep eutectic solvents (DESs) are renowned in chemical and food industries for their eco-friendly extraction efficacy. Silver carp swim bladders, a collagen-rich byproduct of surimi production, are underutilized, resulting in considerable protein waste. Traditionally, collagen extraction has relied on harsh acids, contributing to environmental pollution and producing collagens with limited solubility, thus constraining their applications. This study evaluated DESs compared to conventional acids in extracting collagen, focusing on structural and solubility variations. Notably, urea-based DESs (urea-lactic acid: U-LA, 1:10, w/v) achieved the highest hydroxyproline recovery rates (∼ 94 %), comparable to acetic acid (AA, 1:20, w/v), but with half the solid-liquid ratio. Unlike acid-extracted collagen, which preserved the triple-helical structure, urea-based DESs partially disrupted this configuration by reducing intramolecular hydrogen bonding within collagen. However, these solvents simultaneously increased intermolecular hydrogen bonding. This alteration significantly enhanced collagen's solubility, maintaining over 60 % across a broad pH range (1-10) and various NaCl concentrations (0-6 %, w/v). Furthermore, urea-acetic acid (U-AA) extracted collagen exhibited the highest maximum transition temperature (solid state, T = 101.94 °C) and gel strength (165 g). The findings suggest that urea-based DESs not only enhance collagen recovery rates but also its solubility and gelation properties, broadening its potential applications in cosmetics, food products, and biomaterials.

摘要

深共熔溶剂(DESs)在化学和食品工业中因其环保的提取效果而闻名。银鱼鱼鳔是鱼糜生产的一种富含胶原蛋白的副产物,但利用率很低,导致大量蛋白质浪费。传统上,胶原蛋白的提取依赖于苛刻的酸,这导致了环境污染,并产生了溶解度有限的胶原蛋白,从而限制了它们的应用。本研究评估了 DESs 与传统酸在提取胶原蛋白方面的效果,重点研究了结构和溶解度的变化。值得注意的是,基于尿素的 DESs(尿素-乳酸:U-LA,1:10,w/v)实现了最高的羟脯氨酸回收率(约 94%),与乙酸(AA,1:20,w/v)相当,但固液比减半。与保留三螺旋结构的酸提取胶原蛋白不同,基于尿素的 DESs 通过减少胶原蛋白内的分子间氢键,部分破坏了这种结构。然而,这些溶剂同时增加了分子间氢键。这种改变显著提高了胶原蛋白的溶解度,在广泛的 pH 值范围(1-10)和各种 NaCl 浓度(0-6%,w/v)下都保持超过 60%。此外,尿素-乙酸(U-AA)提取的胶原蛋白表现出最高的最大转变温度(固态,T=101.94°C)和凝胶强度(165 g)。这些发现表明,基于尿素的 DESs 不仅提高了胶原蛋白的回收率,还提高了其溶解度和胶凝性能,拓宽了其在化妆品、食品产品和生物材料中的潜在应用。

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