Kinetics of the enzymatic hydrolysis of hydrobiont tissue proteins: Effect of the enzyme introduction

Kinetic laws of enzyme hydrolyze for Atlantic cod tissues have been studied. Enzyme specimen produced from hepatopancreas of Kamchatka crab Paralithodes camtschatica was used for carrying out hydrolyzes (proteolysis). A new method of protein hydrolyzate production based on multiple enzyme injection...

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Main Authors: Novikov V.Yu., Derkach S.R., Shironina A.Yu., Mukhin V.A.
Format: Article
Language:Russian
Published: Murmansk State Technical University 2015-03-01
Series:Vestnik MGTU
Online Access:http://vestnik.mstu.edu.ru/v18_1_n60/100_109_novik.pdf
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spelling doaj-b38795b4ba2a40d896e4a933ba5b10542020-11-24T23:33:06ZrusMurmansk State Technical UniversityVestnik MGTU1560-92781997-47362015-03-01181100109Kinetics of the enzymatic hydrolysis of hydrobiont tissue proteins: Effect of the enzyme introductionNovikov V.Yu.0Derkach S.R. 1Shironina A.Yu.2Mukhin V.A.3Knipovich Polar Research Institute of Marine Fisheries and Oceanography (PINRO)Institute of Natural Science and Technology MSTUFaculty of Arctic Technologies MSTUKnipovich Polar Research Institute of Marine Fisheries and Oceanography (PINRO)Kinetic laws of enzyme hydrolyze for Atlantic cod tissues have been studied. Enzyme specimen produced from hepatopancreas of Kamchatka crab Paralithodes camtschatica was used for carrying out hydrolyzes (proteolysis). A new method of protein hydrolyzate production based on multiple enzyme injection (over equal time intervals) into a reactive system has been worked out. It has been shown that this method assures increase of maximum degree of hydrolyze. A kinetic model describing the mechanism for enzyme hydrolysis of fish protein in the proposed technology has been developed. The model is based on the existence of easily and hardly hydrolyzed protein fractions. In the frame of the obtained kinetic model, the second-order constants of intermediate stage rates of proteolysis have been calculated. The content of free amino acids increases 2-fold, and dispersity of aqueous dispersions increases for the hydrolysates obtained in the multiple injection process in comparison with hydrolysate obtained in a traditional single-stage processhttp://vestnik.mstu.edu.ru/v18_1_n60/100_109_novik.pdf
collection DOAJ
language Russian
format Article
sources DOAJ
author Novikov V.Yu.
Derkach S.R.
Shironina A.Yu.
Mukhin V.A.
spellingShingle Novikov V.Yu.
Derkach S.R.
Shironina A.Yu.
Mukhin V.A.
Kinetics of the enzymatic hydrolysis of hydrobiont tissue proteins: Effect of the enzyme introduction
Vestnik MGTU
author_facet Novikov V.Yu.
Derkach S.R.
Shironina A.Yu.
Mukhin V.A.
author_sort Novikov V.Yu.
title Kinetics of the enzymatic hydrolysis of hydrobiont tissue proteins: Effect of the enzyme introduction
title_short Kinetics of the enzymatic hydrolysis of hydrobiont tissue proteins: Effect of the enzyme introduction
title_full Kinetics of the enzymatic hydrolysis of hydrobiont tissue proteins: Effect of the enzyme introduction
title_fullStr Kinetics of the enzymatic hydrolysis of hydrobiont tissue proteins: Effect of the enzyme introduction
title_full_unstemmed Kinetics of the enzymatic hydrolysis of hydrobiont tissue proteins: Effect of the enzyme introduction
title_sort kinetics of the enzymatic hydrolysis of hydrobiont tissue proteins: effect of the enzyme introduction
publisher Murmansk State Technical University
series Vestnik MGTU
issn 1560-9278
1997-4736
publishDate 2015-03-01
description Kinetic laws of enzyme hydrolyze for Atlantic cod tissues have been studied. Enzyme specimen produced from hepatopancreas of Kamchatka crab Paralithodes camtschatica was used for carrying out hydrolyzes (proteolysis). A new method of protein hydrolyzate production based on multiple enzyme injection (over equal time intervals) into a reactive system has been worked out. It has been shown that this method assures increase of maximum degree of hydrolyze. A kinetic model describing the mechanism for enzyme hydrolysis of fish protein in the proposed technology has been developed. The model is based on the existence of easily and hardly hydrolyzed protein fractions. In the frame of the obtained kinetic model, the second-order constants of intermediate stage rates of proteolysis have been calculated. The content of free amino acids increases 2-fold, and dispersity of aqueous dispersions increases for the hydrolysates obtained in the multiple injection process in comparison with hydrolysate obtained in a traditional single-stage process
url http://vestnik.mstu.edu.ru/v18_1_n60/100_109_novik.pdf
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