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Sample Release Reagent: How To Use It To Pretreat Nucleic Acids

Sample Release Reagent is a unique reagent used to release nucleic acids in the first step of extracting DNA or RNA. In this article, we’ll discuss what it is and how it is used for DNA extraction.

What is the Sample Release Reagent?

The Sample Release Reagent is a reagent used to pretreat nucleic acids and can be used to remove DNA and RNA from a sample, making it useful for sample preparation.

The Sample Release Reagent is a concentrated SDS, EDTA, and HCl solution that can be used to pretreat nucleic acids. The reagent is typically used to denature DNA and RNA, making them easier to extract and analyze. It can also be used to remove impurities from nucleic acids. The Sample Release Reagent can pretreat nucleic acids before sequencing or other genetic analyses. It can also be used to clean DNA specimens before analysis.

Benefits of using the Sample Release Reagent

The Sample Release Reagent is a versatile tool that can be used to pretreat nucleic acids. Benefits of using the Sample Release Reagent include:

-Preventing degradation of DNA and RNA samples

-Reducing the amount of sample required for analysis

-Making nucleic acid isolation more efficient

-Enhancing DNA and RNA quantification

A Quality Sample Release Reagent Supplier: Sansure

Sansure Biotech Inc. is an in vitro diagnostic solution provider integrating diagnostic reagents, instruments, and independent clinic laboratory services with its innovative gene technology as its core. The company is committed to becoming a genetic technology provider. It is a National Demonstration Centre for the Application of Genetic Testing Technology and a National Joint Local Engineering Research Center for Genetic Diagnosis of Infection Diseases and Tumours.

Sample release reagent developed based on the Sansure one-tube fast release technology platform. Adopting Sansure patent nucleic acid release technology can quickly lyse pathogens at room temperature without heating, centrifuging, or replacing tubes; the sample DNA/RNA can be extracted quickly through simple operations.

Conclusion

When working with nucleic acids, it is important to use a pretreatment method to reduce the number of crosslinks and inhibit DNA damage. The Sample Release Reagent can be used for this purpose. This reagent contains ethidium bromide and hydroxylamine, which break down the bonds in the nucleic acid double helix. This reduces the chance of genetic mutations and makes the DNA easier to extract.

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