Derkach Svetlana R, Voron'ko Nikolay G, Kuchina Yulia A, Kolotova Daria S, Grokhovsky Vladimir A, Nikiforova Alena A, Sedov Igor A, Faizullin Dzhigangir A, Zuev Yuriy F
Laboratory of Chemistry and Technology of Marine Bioresources, Institute of Natural Science and Technology, Murmansk Arctic University, Sportivnaya Str. 13, 183010 Murmansk, Russia.
Kazan Institute of Biochemistry and Biophysics, FRC Kazan Scientific Center of RAS, Lobachevsky Str. 2/31, 420111 Kazan, Russia.
Gels. 2024 Jul 23;10(8):486. doi: 10.3390/gels10080486.
Hydrogels have the ability to retain large amounts of water within their three-dimensional polymer matrices. These attractive materials are used in medicine and the food industry; they can serve as the basis for structured food products, additives, and various ingredients. Gelatin is one of widely used biopolymers to create hydrogels that exhibit biocompatibility and tunable rheological properties. In this study, we offer a comparative analysis of rheological properties of gelatin-based hydrogels (C = 6.67%), including mammalian gelatins from bovine and porcine skins and fish gelatins from commercial samples and samples extracted from Atlantic cod skin. Mammalian gelatins provide high strength and elasticity to hydrogels. Their melting point lies in the range from 22 to 34 °C. Fish gelatin from cod skin also provides a high strength to hydrogels. Commercial fish gelatin forms weak gels exhibiting low viscoelastic properties and strength, as well as low thermal stability with a melting point of 7 °C. Gelatins were characterized basing on the analysis of amino acid composition, molecular weight distribution, and biopolymer secondary structure in gels. Our research provides a unique rheological comparison of mammalian and fish gelatin hydrogels as a tool for the re-evaluation of fish skin gelatin produced through circular processes.
水凝胶能够在其三维聚合物基质中保留大量水分。这些具有吸引力的材料被用于医学和食品工业;它们可以作为结构化食品、添加剂和各种成分的基础。明胶是用于制造具有生物相容性和可调流变学特性的水凝胶的广泛使用的生物聚合物之一。在本研究中,我们对基于明胶的水凝胶(C = 6.67%)的流变学特性进行了比较分析,包括来自牛皮和猪皮的哺乳动物明胶以及来自商业样品和从大西洋鳕鱼皮中提取的样品的鱼明胶。哺乳动物明胶为水凝胶提供高强度和弹性。它们的熔点在22至34°C范围内。来自鳕鱼皮的鱼明胶也为水凝胶提供高强度。商业鱼明胶形成弱凝胶,表现出低粘弹性和强度,以及低热稳定性,熔点为7°C。基于对氨基酸组成、分子量分布和凝胶中生物聚合物二级结构的分析对明胶进行了表征。我们的研究提供了哺乳动物和鱼明胶水凝胶独特的流变学比较,作为重新评估通过循环工艺生产的鱼皮明胶的工具。