Autoclaving and Alkaline Hydrolysis Effects on the Particle Size and Solubility of Grouper (Epinephelus sp.) Nano-calcium Powder in In Vitro Gastrointestinal Tract Simulation

Q4 Agricultural and Biological Sciences Jurnal Ilmiah Perikanan dan Kelautan Pub Date : 2022-08-30 DOI:10.20473/jipk.v14i2.36261
P. Kusumawati, P. Triwitono, S. Anggrahini, Y. Pranoto
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Abstract

Highlight Research Autoclaving for 3x3 hours followed by alkaline hydrolysis (3x3AH) may lower nano-calcium particle size into 47.47 nm 3x3AH sample contain 30.73% calcium and 18.37% phosphorus 3x3AH sample created the best calcium solubility (26.14 %) in comparison to synthesized CaCO3 (14.34 %) Grouper nano-calcium powder includes trace quantities of organic content, such as protein and fat, which enhance calcium's solubility.   Abstract Fish bone nano-calcium production may solve two challenges, providing calcium for lactose-intolerant people and recycling bone waste. Fish bone autoclaving prior to extraction reduces fat, denatures collagen, and softens bones but only few researches have compared autoclaving duration with nano-calcium product quality, particle size, and its solubility in in vitro testing. This study studied the influence of autoclaving duration followed by alkaline hydrolysis on nano-calcium characteristics to enhance calcium solubility in in vitro gastrointestinal simulation experiments. The dried grouper (Epinephelus sp.) bone was divided into four groups: 0A (no autoclaving), 3A (3 h autoclaving), 2x3A (double cycle for 3 h autoclaving), and 3x3A (triple cycle for 3 h autoclaving). Each group was followed by alkaline hydrolysis, designated as 0AH, 3AH, 2x3AH, and 3x3AH. The results showed that autoclaving for 3x3 hours followed by alkaline hydrolysis resulted in lowest nano-calcium particle size of 47.47 nm consisting of 30.73% calcium and 18.37% phosphorous. 3x3AH sample created the best calcium solubility (26.14%) in comparison to synthesized CaCO3 (14.34%). In contrast to synthetic CaCO3, grouper nano-calcium powder includes trace quantities of organic contents, such as protein and fat, which enhance calcium solubility. In vivo research should be established to study the bioavailability and influence of grouper nano-calcium powder on bone density.
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高压和碱性水解对石斑鱼纳米钙粉粒径和溶解度的影响
亮点研究高压灭菌3x3小时,然后进行碱水解(3x3AH)可以将纳米钙颗粒尺寸降低为47.47nm3x3AH样品含有30.73%的钙和18.37%的磷。与合成的CaCO3(14.34%)相比,3x3AH样本产生了最佳的钙溶解度(26.14%),这提高了钙的溶解度。摘要鱼骨纳米钙的生产可能解决两个挑战,为乳糖不耐症患者提供钙和回收骨废料。鱼骨提取前的高压灭菌可以减少脂肪,使胶原蛋白变性,软化骨骼,但只有很少的研究将高压灭菌的持续时间与纳米钙产品的质量、颗粒大小及其在体外测试中的溶解度进行比较。本研究在体外胃肠道模拟实验中研究了高压灭菌时间和碱水解对纳米钙特性的影响,以提高钙的溶解度。将干石斑鱼(Epinephlus sp.)骨分为四组:0A(无高压灭菌)、3A(高压灭菌3小时)、2x3A(高压杀菌3小时的双循环)和3x3A(高压灭菌器3小时的三循环)。每组随后进行碱性水解,命名为0AH、3AH、2x3AH和3x3AH。结果表明,高压灭菌3x3小时,然后进行碱水解,得到由30.73%的钙和18.37%的磷组成的47.47nm的最低纳米钙颗粒尺寸。与合成CaCO3(14.34%)相比,3x3AH样品产生了最佳的钙溶解度(26.14%)。与合成CaC03相比,石斑鱼纳米钙粉末含有微量的有机成分,如蛋白质和脂肪,这提高了钙的溶解度。应建立体内研究来研究石斑鱼纳米钙粉的生物利用度及其对骨密度的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Jurnal Ilmiah Perikanan dan Kelautan
Jurnal Ilmiah Perikanan dan Kelautan Agricultural and Biological Sciences-Food Science
CiteScore
1.60
自引率
0.00%
发文量
35
审稿时长
8 weeks
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