2012Food ScienceRequires access

Kinetic Model for Enzymatic Hydrolysis of Protein from Tilapia Waste

Dankui Liao

Open publisher page 0 citations

Abstract

Tilapia waste was used as the material to conduct hydrolysis by alkaline protease.The degree of hydrolysis(DH) of protein from tilapia waste was determined to explore the optimal enzymatic hydrolysis conditions.The results indicated that the optimal hydrolysis conditions for tilapia waste were hydrolysis temperature of 50 ℃,substrate concentration of 20 g/L,enzyme concentration of 0.067 g/L,hydrolysis pH of 9.50 and hydrolysis time of 180 min.Under the optimal hydrolysis conditions,the DH of tilapia waste was 22%.Meanwhile,a kinetic model of hydrolysis was established,which revealed an inactivation constant(Kd) of 37.9 min-1for enzyme,enzymatic reaction rate constant(K2) of 244.2 min-1,Michaelis-Menten constant(KM) of 29.27 g/L,and the maximum reaction rate(Vmax) of 28.41 g/(min.L) at 50 ℃.The kinetic equation of enzymatic hydrolysis of tilapia waste protein was derived.The proposed kinetic model exhibited a convenient determination of kinetic parameters by a few experiments.

About this research paper

What this paper is about

Tilapia waste was used as the material to conduct hydrolysis by alkaline protease.The degree of hydrolysis(DH) of protein from tilapia waste was determined to explore the optimal enzymatic hydrolysis conditions.The results indicated that the optimal hydrolysis conditions for tilapia waste were hydrolysis temperature of 50 ℃,substrate concentration of 20 g/L,enzyme concentration of 0.067 g/L,hydrolysis pH of 9.50 and hydrolysis time of 180 min.Under the optimal hydrolysis conditions,the DH of tilapia waste was 22%.Meanwhile,a kinetic model of hydrolysis was established,which revealed an inactivation constant(Kd) of 37.9 min-1for enzyme,enzymatic reaction rate constant(K2) of 244.2 min-1,Michaelis-Menten constant(KM) of 29.27 g/L,and the maximum reaction rate(Vmax) of 28.41 g/(min.L) at 50 ℃.The kinetic equation of enzymatic hydrolysis of tilapia waste protein was derived.The proposed kinetic model exhibited a convenient determination of kinetic parameters by a few experiments.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Tilapia waste was used as the material to conduct hydrolysis by alkaline protease.The degree of hydrolysis(DH) of protein from tilapia waste was determined to explore the optimal enzymatic hydrolysis conditions.The results indicated that the optimal hydrolysis conditions for tilapia waste were hydrolysis temperature of 50 ℃,substrate concentration of 20 g/L,enzyme concentration of 0.067 g/L,hydrolysis pH of 9.50 and hydrolysis time of 180 min.Under the optimal hydrolysis conditions,the DH of tilapia waste was 22%.Meanwhile,a kinetic model of hydrolysis was established,which revealed an inactivation constant(Kd) of 37.9 min-1for enzyme,enzymatic reaction rate constant(K2) of 244.2 min-1,Michaelis-Menten constant(KM) of 29.27 g/L,and the maximum reaction rate(Vmax) of 28.41 g/(min.L) at 50 ℃.The kinetic equation of enzymatic hydrolysis of tilapia waste protein was derived.The proposed kinetic model exhibited a convenient determination of kinetic parameters by a few experiments.

Key concepts: Hydrolysis, Tilapia, Enzymatic hydrolysis, Chemistry, Chromatography, Substrate (aquarium), Reaction rate constant, Michaelis–Menten kinetics

Related papers

Back to paper searchBrowse research topicsOriginal source
Kinetic Model for Enzymatic Hydrolysis of Protein from Tilapia Waste — Research Paper | ScholarLens