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Research Article Open access CC BY 4.0

Unifying Equation and Rate Constant for Amylolysis of Glycosidic Bond

Ikechukwu Iloh Udema

Journal of Applied Life Sciences International · pp. 1–16 · Published 30 Oct 2017

10.9734/JALSI/2017/36862

Abstract

Objectives: The objectives of this research were mainly to determine the rate of amylolysis of glycosidic bond and to formulate a dimensionally consistent quadratic equation for the determination of the changes in the concentration of substrate, molar concentration of product and the parameter exp (k t) where k and t are the pseudo-first order rate constant and duration of assay respectively. Study Design: Theoretical and Experimental. Place and Duration of Study: Chemistry & Biochemistry Department, Research Division of Ude International Concepts limited (RC: 862217). The research lasted for about 3 months between May and Sep, 2017. Methodology: Bernfeld method of enzyme assay was adopted for the generation of data. Results: The quadratic form of the equation for the quantification of the product of amylolysis gave results that were not significantly different from the use of usual equations (P > 0.05). The rate of hydrolysis of the glycosidic bond was 11851/min and the rate of formation of the product was 23686/min. Conclusion: The quadratic form of the equation for the quantification of the product of amylolysis has a unifying value. It gives results that are similar to that obtainable from the usual equations. The rate of hydrolysis of the glycosidic bond is ~ 1/2nd the rate of formation of the product. The making and breaking of bond seem to be the rate limiting step.

Quadratic equations rate of hydrolysis of glycosidic bond rate constant for product formation pseudo-first order constant

Cited by 1

Detailed Unification Equations for Kinetic Parameters: A Case Study on Human Salivary Alpha Amylase

Ikechukwu Iloh Udema · Journal of Analytical & Pharmaceutical Research · 2017

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