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超临界CO₂流体萃取与微胶囊化技术从鳀鱼副产物中提取油脂

Supercritical CO Fluid Extraction and Microencapsulation of Oil from Anchovy () By-Products.

作者信息

Bichescu Cezar Ionuț, Mihalcea Liliana, Raimondo Raffaele, Cotârleț Mihaela, Păcularu-Burada Bogdan, Barbu Vasilica, Râpeanu Gabriela, Bahrim Gabriela Elena, Stănciuc Nicoleta

机构信息

Cross-Border Faculty, Dunarea de Jos University of Galati, 111 Domnească Street, 800201 Galați, Romania.

Faculty of Food Science and Engineering, Dunarea de Jos University of Galati, 111 Domnească Street, 800201 Galați, Romania.

出版信息

Food Technol Biotechnol. 2024 Sep;62(3):302-313. doi: 10.17113/ftb.62.03.24.8336.

Abstract

RESEARCH BACKGROUND

Fish by-products are discarded as waste, which has a significant impact on the environment. They have no economic value, but there are many opportunities to turn them into high value products. Due to significant quantities generated internationally and the continuous expansion of the market for ω-3 and ω-6 fatty acids as nutraceuticals, innovative technological approaches are needed to transform this waste into marketable products with added value, while limiting the risk of environmental pollution.

EXPERIMENTAL APPROACH

In this study, two temperatures (40 and 60 °C) at a constant pressure during the extraction of anchovy by-products with supercritical CO fluid were used to determine extraction yield, fatty acid, tocopherol and phytosterol composition, followed by microencapsulation with two matrices based on the transglutaminase-mediated crosslinking reaction between whey protein isolates and casein. Before microencapsulation, the binding parameters were estimated using quenching studies.

RESULTS AND CONCLUSIONS

The results showed a higher content of total fatty acids when extracted at 40 °C, resulting in two fractions on a dry mass basis of (712±12) mg/g in the fraction obtained in the separator with code S40 and (732±10) mg/g in the fraction obtained in the separator with code S45, respectively. The monounsaturated (MUFAs) and polyunsaturated fatty acids (PUFAs) accounted for 40-44 %. The extracts showed a higher mass fraction of eicosapentaenoic acid ((28.7±1.0) mg/g) in fraction S45 when extracted at 60 °C. A minimum inhibitory and bactericidal concentration of 0.66 μg/mL against ATCC 25922 and ATCC 25923 was found for all fractions. Higher binding constants were found for palmitoleic and oleic acids than for palmitic acid. The control variant, without crosslinking, enabled the microencapsulation of a higher amount of fatty acids, while in both powders the sum of MUFAs and PUFAs was 40 %.

NOVELTY AND SCIENTIFIC CONTRIBUTION

The approaches used in our study open up new opportunities for adding value to the fish by-products through extraction and microencapsulation, extending their potential use to food, cosmetics and nutraceuticals.

摘要

研究背景

鱼类副产品作为废弃物被丢弃,对环境产生重大影响。它们没有经济价值,但有很多机会将其转化为高价值产品。由于国际上产生的数量巨大,以及ω-3和ω-6脂肪酸作为营养保健品的市场不断扩大,需要创新的技术方法将这种废弃物转化为具有附加值的适销产品,同时限制环境污染风险。

实验方法

在本研究中,使用超临界CO₂流体在恒定压力下于两个温度(40和60°C)下提取凤尾鱼副产品,以确定提取产率、脂肪酸、生育酚和植物甾醇组成,随后基于乳清蛋白分离物和酪蛋白之间的转谷氨酰胺酶介导的交联反应,用两种基质进行微胶囊化。在微胶囊化之前,使用猝灭研究估计结合参数。

结果与结论

结果表明,在40°C下提取时总脂肪酸含量较高,在分离器中获得的代码为S40的馏分中,以干质量计为(712±12)mg/g,在分离器中获得的代码为S45的馏分中分别为(732±10)mg/g。单不饱和脂肪酸(MUFAs)和多不饱和脂肪酸(PUFAs)占40 - 44%。提取物在60°C下提取时,馏分S45中的二十碳五烯酸质量分数较高((28.7±1.0)mg/g)。所有馏分对ATCC 25922和ATCC 25923的最低抑菌和杀菌浓度均为0.66μg/mL。棕榈油酸和油酸的结合常数高于棕榈酸。未交联的对照变体能够微胶囊化更多量的脂肪酸,而在两种粉末中,MUFAs和PUFAs的总和均为40%。

新颖性与科学贡献

我们研究中使用的方法为通过提取和微胶囊化增加鱼类副产品的价值开辟了新机会,将其潜在用途扩展到食品、化妆品和营养保健品领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40b1/11531679/deb91261b567/FTB-62-302-f1.jpg

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