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鱼精蛋白载海藻酸钠-壳聚糖微球在酸性胃液中的稳定性和在模拟肠道环境中活性酶的释放。

Stability of tuna trypsin-loaded alginate-chitosan beads in acidic stomach fluid and the release of active enzyme in a simulated intestinal tract environment.

机构信息

International Center of Excellence in Seafood Science and Innovation, Prince of Songkla University, Songkhla, 90110, Thailand.

Department of Food and Human Nutritional Sciences, University of Manitoba, Winnipeg, MB, Canada.

出版信息

J Food Biochem. 2020 Nov;44(11):e13455. doi: 10.1111/jfbc.13455. Epub 2020 Sep 1.

Abstract

Encapsulation properties of trypsin from tonggol tuna (Thunnus tonggol) spleen using different materials including alginate (AG), low and high molecular weight chitosan (LC and HC, respectively), and soy lecithin (SL) were studied. The highest encapsulation efficiency and greatest relative activity were found in AG/LC beads after simulated gastric phase (p < .05). AG/LC encapsulated trypsin was used in simulated in vitro gastrointestinal tract for hydrolysis of sodium caseinate, soy protein isolate and fish mince, in which all protein samples were hydrolyzed as indicated by the increased α-amino group content (p < .05). Higher degradation was attained when beads containing trypsin were added. When AG/LC beads packed in blister pack were stored for 8 weeks at refrigerated temperature, a 26% decrease in activity occurred. Therefore, encapsulated tonggol tuna spleen trypsin can be prepared using AG/LC to withstand structural breakdown in stomach, but be released as an active protease within intestinal tract. PRACTICAL APPLICATION: Spleen from tonggol tuna is a by-product, which can be used as a source of trypsin, a proteolytic enzyme. The trypsin that was encapsulated within alginate and low molecular weight chitosan beads was released in the intestinal phase and was retained proteolytic activity. Therefore, this encapsulated trypsin can be packaged in capsules and taken as a supplement to aid protein digestion in the gastrointestinal tract, especially for people that need such digestive aids.

摘要

采用不同材料(包括海藻酸钠(AG)、低和高分子量壳聚糖(LC 和 HC)以及大豆卵磷脂(SL))研究了大眼金枪鱼(Thunnus tonggol)脾脏胰蛋白酶的包封特性。在模拟胃阶段后(p<.05),在 AG/LC 珠粒中发现了最高的包封效率和最大的相对活性。AG/LC 包封的胰蛋白酶用于模拟体外胃肠道中对酪蛋白酸钠、大豆分离蛋白和鱼糜的水解,其中所有蛋白质样品的水解均通过增加α-氨基基团含量来指示(p<.05)。当添加含有胰蛋白酶的珠粒时,会达到更高的降解率。当在冷藏温度下将 AG/LC 珠粒包装在泡罩包装中储存 8 周时,活性降低了 26%。因此,可以使用 AG/LC 制备包封的大眼金枪鱼脾脏胰蛋白酶,以承受胃中的结构破坏,但在肠道中释放为活性蛋白酶。实际应用:大眼金枪鱼的脾脏是一种副产物,可用作胰蛋白酶的来源,胰蛋白酶是一种蛋白水解酶。包封在海藻酸钠和低分子量壳聚糖珠粒内的胰蛋白酶在肠内阶段被释放出来,并保持了蛋白水解活性。因此,这种包封的胰蛋白酶可以包装在胶囊中,作为一种补充剂,以帮助胃肠道消化蛋白质,特别是对于需要这种消化辅助剂的人。

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