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Difference Between Kinetic and End Point Reaction

July 6, 2018Posted byMadhu

Thekey differencebetween kinetic and end point reaction is thatin kinetic reaction method, we measure the difference in吸光度between two points during the progression of the reaction whereas, in end point reaction method, we measure the total amount of analytes that participate in the reaction.

The kinetic reaction method and the end point reaction method are useful in酶analysis. We mainly use these methods in clinical chemistry. Other than these two methods, there is another method; fixed time method.

CONTENTS

1.Overview and Key Difference
2.What is Kinetic Reaction
3.What is End Point Reaction
4.Side by Side Comparison – Kinetic vs End Point Reaction in Tabular Form
5.Summary

What is Kinetic Reaction?

动能reaction method is an analysis method used in clinical chemistry to determine the difference in absorbance between two points of the progression of a reaction. Here, we use a specified time period for this determination. We should assume this determination; a constant amount of product forms during the time interval being monitored. Usually, we consider a short time period (20 seconds to 1 minute). That is to avoid any effect comes from enzyme degradation during the progression of the reaction.

Before starting the reaction, we should perform a pre-incubation in order to avoid any interferences comes from substances other than the analyte. During the pre-incubation, these substances completely react with the reagent system. There are two major types as;

  1. Increasing type: the reaction proceeds in a positive Here the initial absorbance is always a lower value than the final absorbance.
  2. Decreasing type: the reaction proceeds in the negative The initial absorbance is a higher value than the final absorbance.

What is End Point Reaction?

End point reaction method is an analysis method useful in clinical chemistry to determine the total amount of analytes consumed during the progression of a reaction. in this method, we consider the end point of reaction rather than two specific points as in kinetic method. Usually, the end point comes within 5 to 15 minutes at 37 ◦C.

Difference Between Kinetic and End Point Reaction

Figure 01: We can use Spectrophotometers to measure the Absorbance

The reaction may give either a colored product or a colorless product at the end. However, we can measure the absorbance of this product using a spectrophotometer. The absorbance of the sample increases with time. It reaches a stable value which will not change further with time. This is the end point of the reaction.

什么是the Difference Between Kinetic and End Point Reaction?

动能reaction method is an analysis method used in clinical chemistry to determine the difference in absorbance between two points of the progression of a reaction. Here, we measure the difference in absorbance between two points during the progression of the reaction. Moreover, the time taken for this reaction is around 20 seconds to 1 minute. Whereas, the end point reaction method is an analysis method used in clinical chemistry to determine the total amount of analytes consumed during the progression of a reaction. In this method we measure the total amount of analytes that participate in the reaction. Furthermore, the time period taken for this reaction is 5 to 15 minutes.

Difference Between Kinetic and End Point Reaction in Tabular Form

总结——动力学和反应终点

There are three main reaction methods that we use in clinical chemistry for the analysis of enzymatic reactions; kinetic method, fixed time method and end point method. The difference between kinetic and end point reaction is that in kinetic reaction method, we measure the difference in absorbance between two points during the progression of the reaction whereas in end point reaction method, we measure the total amount of analytes that participate in the reaction.

Reference:

1. “Climical Chemistry Methodologies.” The Verdict of Circuit Court in Lomza in 1949 – Piotr Gontarczyk.Available here

Image Courtesy:

1.’7152514131′ by Vivien Rolfe(CC BY-SA 2.0)viaFlickr

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Filed Under:Physical Chemistry

About the Author:Madhu

Madhu is a graduate in Biological Sciences with BSc (Honours) Degree and currently persuing a Masters Degree in Industrial and Environmental Chemistry. With a mind rooted firmly to basic principals of chemistry and passion for ever evolving field of industrial chemistry, she is keenly interested to be a true companion for those who seek knowledge in the subject of chemistry.

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