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Thermo Fisher Invitrogen EDTA (0.5 M), pH 8.0, RNase-free Thermo Fisher Invitrogen EDTA (0.5 M), pH 8.0, RNase-free
Thermo Fisher Invitrogen EDTA (0.5 M), pH 8.0, RNase-free
Thermo Fisher Invitrogen EDTA (0.5 M), pH 8.0, RNase-free

Thermo Fisher Invitrogen EDTA (0.5 M), pH 8.0, RNase-free

Product Details:

  • Condition New
  • Equipment Type Molecular Biology Buffer
  • Portable Yes
  • Storage Instructions 15 to 30 Degree Celsius
  • Noise Level No
  • Usage Type Laboratory
  • Wall Mounted No
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Thermo Fisher Invitrogen EDTA (0.5 M), pH 8.0, RNase-free Price And Quantity

  • 1 Unit

Thermo Fisher Invitrogen EDTA (0.5 M), pH 8.0, RNase-free Product Specifications

  • No
  • Yes
  • New
  • Molecular Biology Buffer
  • Automatic
  • 15 to 30 Degree Celsius
  • Yes
  • Used as a chelating agent in molecular biology applications
  • No
  • Laboratory

Product Description

Brand Thermo Fisher Scientific
Product Type EDTA Solution
Pack Size 500 mL
CAT No
AM9261
Thermo Fisher Invitrogen EDTA (0.5 M), pH 8.0, RNase-free is a high-purity molecular biology-grade chelating solution formulated to bind divalent metal ions such as magnesium and calcium, thereby inhibiting nuclease activity and protecting nucleic acids from degradation. The RNase-free formulation is suitable for DNA and RNA isolation, PCR, RT-PCR, qPCR, cloning, sequencing, buffer preparation, and other molecular biology applications. It is manufactured under stringent quality standards to ensure reliable performance in research laboratories, biotechnology facilities, pharmaceutical laboratories, and academic institutions.



Advanced Chelating Solution for Molecular Biology

This EDTA (0.5 M), pH 8.0 buffer is meticulously formulated to meet the stringent requirements of modern molecular biology applications. Its RNase-free quality ensures the integrity of nucleic acids, and the solution's compatibility with various laboratory protocols enhances its versatility. It is trusted by scientists as a dependable component for DNA and RNA experiments.


Versatile and Portable Laboratory Buffer

The Invitrogen EDTA solution is portable, making it easy to use across different laboratory setups. It is suited for automatic operations, providing seamless integration into workflow processes. With its storage range of 15-30C, maintaining the solution's stability and efficacy is effortless.

FAQ's of Thermo Fisher Invitrogen EDTA (0.5 M), pH 8.0, RNase-free:


Q: How is Thermo Fisher Invitrogen EDTA (0.5 M), pH 8.0, RNase-free typically used in molecular biology laboratories?

A: This EDTA buffer is mainly employed to chelate divalent metal ions, such as Mg2+ and Ca2+, which are cofactors for nucleases. By binding these ions, EDTA inhibits nuclease activity, protecting DNA and RNA during extraction, storage, and enzymatic reactions.

Q: What are the storage recommendations for this EDTA solution?

A: It is advised to store the Thermo Fisher Invitrogen EDTA (0.5 M), pH 8.0 solution at temperatures between 15 to 30 degrees Celsius. Proper storage ensures the buffer maintains its RNase-free status and functional integrity.

Q: When should I use an RNase-free EDTA buffer in my experiments?

A: An RNase-free EDTA buffer should be used whenever you are handling RNA samples or conducting experiments where nucleic acid protection from enzymatic degradation is critical, such as RNA extraction or preservation.

Q: Where can this EDTA buffer be applied within molecular biology processes?

A: This buffer can be incorporated into a variety of molecular biology workflows, including DNA and RNA extraction, PCR setup, enzymatic reactions, and sample storage protocols.

Q: What are the benefits of using RNase-free EDTA over standard EDTA solutions?

A: RNase-free EDTA minimizes the risk of RNA degradation by excluding trace RNase contamination, making it essential for sensitive molecular biology applications requiring intact RNA.

Q: Is this EDTA buffer suitable for automated and real-time laboratory equipment?

A: Yes, the solution is designed for compatibility with automatic and real-time operation systems, ensuring accuracy and efficiency in high-throughput laboratory procedures.

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