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Effect of various acids on physicochemical and functional characteristics of gelatin from swim bladder of rohu (Labeo rohita)

机译:各种酸对Rohu游泳膀胱糊化蛋白的物理化学和功能特征的影响(Labeorohita)

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Influence of various acids (acetic acid, phosphoric acid, and propionic acid) at different concentrations (0.05, 0.1, and 0.2 M) on the extraction yield, physicochemical and functional properties of gelatin from Labeo rohita swim bladder were investigated. Highest gelatin yield (44.22%, dry weight basis) was obtained in a sample prepared by without acid pretreatment (GWA) of swim bladder as compared to acid pretreatment counterparts. Amongst the acid pretreatments, propionic acid (GPrA) showed the highest gelatin yield, followed by acetic acid (GAA) and phosphoric acid (GPA) at all concentrations used, respectively. Moreover, with increased concentrations of all acids, the decrease in gelatin yield was observed for all the acids. GWA showed higher protein and hydroxyproline content than that of acid counterparts (P 0.05). Amino acid analysis of gelatins showed glycine as the major amino acid in all gelatins followed by proline, glutamic acid and alanine, respectively. GWA showed alpha (alpha(1) and alpha(2)) and beta-chains as the predominant components with low molecular weight peptides. However, GPrA, GAA, and GPA had alpha(1) and alpha(2) dominant constituents. FTIR spectra of gelatins revealed that the loss of the triple-helix was found in GPA, GAA, and GPrA, compared to GWA. Among gelatin samples, GWA showed the highest solubility at all pH tested followed by GPrA, GPA, and GAA respectively. Furthermore, GWA exhibited higher emulsifying, foaming and gelling properties as compared to GPrA, GPA, and GAA, respectively. Therefore, the acid pretreatment of swim bladder had a negative impact on the extraction yield, physicochemical and functional properties of gelatin from rohu swim bladder.
机译:研究了各种酸(乙酸,磷酸和丙酸)对不同浓度(0.05,0.1和0.2μm)的影响,从Labeo Rohita游泳膀胱糊涂的萃取产率,明胶的物理化学和功能性质上进行了影响。与酸预处理对应物相比,在没有酸预处理(GWA)制备的样品中获得最高明胶产率(44.22%,干重基)。在酸预处理中,丙酸(GPRA)分别显示出最高的明胶产率,然后分别在所有浓度下进行乙酸(GaA)和磷酸(GPA)。此外,随着所有酸的浓度增加,对所有酸都观察到明胶产率的降低。 GWA显示出高于酸性对应物的蛋白质和羟脯氨酸含量(P <0.05)。明胶的氨基酸分析显示甘氨酸作为所有明胶中的主要氨基酸,然后是脯氨酸,谷氨酸和丙氨酸。 GWA显示α(α(1)和α(2))和β链作为具有低分子量肽的主要组分。然而,GPRA,GaA和GPA具有α(1)和α(2)显性成分。 Gelatins的FTIR光谱显示,与GWA相比,GPA,Gaa和GPRA中发现了三螺旋的丧失。在明胶样品中,GWA分别在测试后的所有pH中显示出最高的溶解度,然后分别由GPRA,GPA和GaA进行。此外,与GPRA,GPA和Gaa相比,GWA分别表现出更高的乳化,发泡和胶凝性质。因此,游泳膀胱的酸预处理对来自Rohu游泳膀胱的明胶的提取产率,物理化学和功能性具有负面影响。

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