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Methods for preventing degradation of acridine ester NSP-DMAE-NHS CAS 194357-64-7

Product Details

Place of Origin: EZHOU,CHINA

Brand Name: DESHENG

Certification: ISO9001:2008

Model Number: acridine ester NSP-DMAE-NHS

Payment & Shipping Terms

Minimum Order Quantity: 10g

Price: Negotiable

Packaging Details: Plastic Bottle or Aluminium Film

Delivery Time: 1~3 DAYS AFTER RECEIVING PAYMENT

Payment Terms: T/T,L/C,Western Union,Paypal

Supply Ability: 100kg/month

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Specifications
Highlight:

Acridine Ester NSP-DMAE-NHS

,

194357-64-7

,

chemiluminescence reagent

Appreance:
Yellow Solid Or Powder
Purity:
≥98%
MW:
594.13
Chemical Formula:
C29H26N2O10S
Name:
194357-64-7
Product Name:
NSP-DMAE-NHS
Appreance:
Yellow Solid Or Powder
Purity:
≥98%
MW:
594.13
Chemical Formula:
C29H26N2O10S
Name:
194357-64-7
Product Name:
NSP-DMAE-NHS
Description
Methods for preventing degradation of acridine ester NSP-DMAE-NHS CAS 194357-64-7

Acridine ester NSP-DMAE-NHS, as an important chemiluminescence reagent, has a wide range of applications in disease diagnosis and other fields. However, its stability is easily affected by various factors, leading to performance degradation or even failure. Therefore, adopting scientifically effective protective measures is crucial to ensure its effectiveness. The core strategies for preventing the degradation of acridine ester NSP-DMAE-NHS are systematically explained from four dimensions: storage environment, operating standards, quality control, and special handling.


Product name

Acridine ester NSP-DMAE-NHS

CAS NO

194357-64-7

Molecular weight

590.60

Molecular formula

C30H26N2O9S

Product appearance

Yellow solid/powder

Product purity

≥98%(HPLC)

Product advantages

Good water solubility, stable process, and small inter batch differences

Storage conditions

Avoid light and moisture

Product packaging

Brown glass bottle, 10mg/bottle (customizable)

Chemical property

Chemiluminescence marker

Application

Research on Immunoassay, Nucleic Acid and Peptide Detection, etc

Manufacturer

Hubei Xindesheng


1, Optimize storage environment and build a stable foundation


The storage environment is the primary factor affecting the stability of acridine ester NSP-DMAE-NHS. Research has shown that temperature, humidity, light, and pH all significantly affect its molecular structure. It is recommended to store the reagents in a low-temperature environment and use brown glass bottles or aluminum foil bags for dark sealed packaging to reduce photolysis reactions. In terms of humidity control, it is necessary to ensure the relative humidity of the storage environment, and desiccants can be added if necessary. For long-term storage needs, freeze-drying technology can be used to prepare powdered reagents, and nitrogen can be filled to isolate oxygen.


Methods for preventing degradation of acridine ester NSP-DMAE-NHS CAS 194357-64-7 0

acridine ester NSP-DMAE-NHS powder


2, Standardize operating procedures to avoid the risk of human degradation


Improper handling during experimental operations is a common cause of degradation of acridine ester NSP-DMAE-NHS. In the weighing process, a one ten thousandth balance should be used in a dry environment to avoid moisture absorption of the powder. It is recommended to use anhydrous DMSO or DMF as solvents during dissolution, and control the reaction temperature below 37 ℃ to prevent hydrolysis reactions caused by high temperatures.


The residual metal ions in the reaction system will accelerate the degradation of reagents, so it is necessary to prepare a buffer solution with ultrapure water and filter it through a 0.22 μ m membrane. After the reaction is complete, the product should be purified immediately through a desalination column to remove unreacted acridine ester.


3, Strengthen quality control and build a stability assurance system


Establishing a comprehensive quality control system is key to ensuring the stability of acridine ester NSP-DMAE-NHS. It is necessary to develop testing standards that cover indicators such as purity, luminescence intensity, hydrolysis rate, etc., and use advanced technologies such as HPLC and mass spectrometry analysis for batch testing.


Regular stability testing is equally important. It is recommended to test the luminescence intensity of stored reagents every 3 months and record environmental temperature and humidity data. Practice at a certain research institution has shown that this measure can provide early warning of potential degradation risks and avoid experimental failures.


4, Protection strategies in special scenarios


For transportation needs in high-temperature environments, a combination of ice packs and insulated boxes can be used to ensure that the reagents remain at 0-4 ℃ within 48 hours; For reagents that undergo repeated freeze-thaw cycles, it is recommended to store them in small volumes to avoid multiple thawing cycles; In addition, special attention should be paid to pH control in nucleic acid labeling applications.


Methods for preventing degradation of acridine ester NSP-DMAE-NHS CAS 194357-64-7 1

Product packaging


As an advantageous manufacturer of luminescent reagents, Desheng has a history of nearly 20 years since its establishment in 2005, with rich research and development experience. Currently, in addition to the acridine ester series products, the chemical luminescent reagents available for sale include luminol, isoluminol, and luminol monosodium salt. Desheng has professional laboratories and technicians who can provide customized services according to customer requirements. It is your trusted supplier of chemiluminescence reagents. If you have any related procurement needs in the near future, please feel free to contact me!

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