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Wuhan Desheng Biochemical Technology Co., Ltd
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ADPS reagent 82611-88-9 Trinder Reagent N-Ethyl-N-(3-Sulfopropyl)-3-Methoxyaniline

Product Details

Place of Origin: EZHOU,CHINA

Brand Name: DESHENG

Certification: ISO9001:2008

Model Number: Q/HDS 810427

Payment & Shipping Terms

Minimum Order Quantity: 1 gram

Price: 55-63usd/kg

Packaging Details: 10g/bottle; 50g/bottle; 100g/bottle

Delivery Time: 1~3 DAYS AFTER RECEIVING PAYMENT

Payment Terms: T/T L/C PAYPAL

Supply Ability: 5kg/month

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Specifications
Highlight:

ADPS reagent

,

82611-88-9

,

chromogenic substrate

Appearance:
White Powder
Purity:
>98%
Molecular Weight:
313.35
Molecular Formula:
C12H18NNaO4S·H2O
Grade:
Analytical
Storage Condition:
Room Temperature(25℃)
Transportation Condition:
Room Temperature(25℃)
CAS:
82611-88-9
Appearance:
White Powder
Purity:
>98%
Molecular Weight:
313.35
Molecular Formula:
C12H18NNaO4S·H2O
Grade:
Analytical
Storage Condition:
Room Temperature(25℃)
Transportation Condition:
Room Temperature(25℃)
CAS:
82611-88-9
Description
ADPS reagent 82611-88-9 Trinder Reagent N-Ethyl-N-(3-Sulfopropyl)-3-Methoxyaniline

In the field of biochemistry, chromogenic substrates are one of the commonly used tools in laboratories, which can produce color changes under specific enzyme catalyzed reactions, thereby achieving quantitative determination of target substances. Among them, ADPS (N-ethyl-N - (3-sulfopropyl) -3-methoxyaniline sodium salt dihydrate) has received widespread attention and application as a highly sensitive and stable chromogenic substrate. This article will focus on exploring the reliability of ADPS chromogenic substrates under changes in acidity and alkalinity, and analyze their advantages in practical applications.


Product Name N-Ethyl-N-(3-sulfopropyl)-3-methoxyaniline, sodium salt, monohydrate
CAS No 82611-88-9 Appearance White Powder
Purity >98% Molecular weight 313.35
Transportation condition Room Temperature (25℃) Molecular formula C12H18NNaO4S·H2O
Storage Condition Room Temprature (25℃), avoiding direct sunlight and moisture


1, Basic principles of ADPS chromogenic substrates


ADPS chromogenic substrates undergo coupled oxidation reactions with reactants such as hydrogen peroxide (H2O2) under the catalytic action of horseradish peroxidase (HRP) or peroxidase (POD), generating quinone imine compounds. This substance exhibits a significant increase in absorbance at specific wavelengths (such as 500nm), enabling quantitative determination of the target substance.


ADPS reagent 82611-88-9 Trinder Reagent N-Ethyl-N-(3-Sulfopropyl)-3-Methoxyaniline 0

ADPS powder


2, The Effect of pH Changes on ADPS Color Reaction


In practical applications, the pH value of the reaction system is an important influencing factor. Fortunately, ADPS chromogenic substrates exhibit high stability under pH changes. Within a certain range, fluctuations in pH values do not significantly affect the color reaction of ADPS, thereby ensuring the accuracy and reliability of the measurement results.


This stability is mainly due to the structural properties of ADPS molecules. The sulfonic acid groups in ADPS molecules enable them to exhibit good solubility and stability in aqueous solutions, while the aniline groups in their molecular structure serve as key sites for interaction with key substances in enzyme catalyzed reactions. This structural characteristic enables ADPS to maintain relatively stable color development performance at different pH values.


3, Reliability analysis of ADPS chromogenic substrates under pH changes


To verify the reliability of ADPS chromogenic substrates under pH changes, we conducted a series of experiments. In the experiment, we selected buffer solutions with different pH values as the reaction system and added equal amounts of ADPS and HRP to them. Then, we added different concentrations of hydrogen peroxide to the reaction system and measured the absorbance values after the reaction.


The experimental results showed that the color reaction of ADPS exhibited a good linear relationship at different pH values, and the absorbance value also showed a corresponding increasing trend with the increase of hydrogen peroxide concentration. This indicates that ADPS chromogenic substrates can still maintain high reliability and accuracy under pH changes.


4, Practical application advantages of ADPS chromogenic substrates


Due to the high reliability and stability of ADPS chromogenic substrates under pH changes, they have many advantages in practical applications. Firstly, it can be used within a wide pH range without the need to frequently adjust the acidity or alkalinity of the reaction system, thus simplifying the experimental operation process. Secondly, ADPS chromogenic substrates have high sensitivity and accuracy, which can achieve accurate determination of target substances. In addition, ADPS also has good water solubility and stability, making it easy to store and use.


5, Conclusion


In summary, ADPS chromogenic substrates exhibit high reliability and stability under changes in acidity and alkalinity. Its molecular structure and excellent properties make it an important chromogenic substrate in the field of biochemistry. In future research and applications, ADPS chromogenic substrates will continue to play an important role in providing reliable technical support for biochemical experiments.


ADPS reagent 82611-88-9 Trinder Reagent N-Ethyl-N-(3-Sulfopropyl)-3-Methoxyaniline 1

Product packaging


Desheng, as a professional manufacturer and supplier of chromogenic substrates, is committed to providing high-quality raw materials and reagents. These reagents have excellent water solubility and high purity. Our product line is very rich, covering multiple types such as MAOS, TOOS, DA64, DA67, etc., providing customers with a wide range of choices. Provide competitive prices to supply these products, ensuring you get a value for money experience. If you are interested in our products, please feel free to visit our website for consultation and purchase at any time.

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