NucleoSpin 96 RNA Binding Plate (4x96)

Catalog nr. 7407094S
Macherey-Nagel

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Sale price€671,60
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Description

NucleoSpin 96 RNA Binding Plate (4×96) is a set of 96-well plates designed for the isolation of RNA in high-throughput laboratory workflows. Each plate provides a dedicated binding surface for RNA purification steps within multiwell formats, supporting parallel sample processing across 96 positions per plate. Supplied as a pack of four plates, the configuration corresponds to four full 96-well runs and suits laboratories that routinely prepare multiple RNA isolation batches. These binding plates from manufacturer Macherey-Nagel integrate into NucleoSpin RNA plate-based protocols where a stable, well-defined binding matrix is required for capture and subsequent wash and elution steps. The format is intended for use with compatible vacuum or centrifugation setups typical of 96-well nucleic acid workflows. With a net weight of 0,51 kg per pack and compact outer dimensions, the plates are practical to store and handle on the bench. They offer a straightforward consumable option for molecular biology, genomics, and life-science laboratories that rely on plate-based RNA isolation rather than single-column formats.

This article is part of DNA & RNA extraction kits, in Molecular biology.

Key features

  • Pack size: 4 pc(s)
  • Storage temperature: 18–25 °C
  • Product type: 96-well RNA binding plates
  • Format: 96-well plates
  • EAN: 4046681158155

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Questions about NucleoSpin 96 RNA Binding Plate (4x96)

What is this article?

NucleoSpin 96 RNA Binding Plate (4x96) is the article on this page. Luminix Health distributes Macherey-Nagel for laboratory use. It sits in DNA & RNA extraction kits, inside Molecular biology, in Life Science & Microbiology.

An extraction kit lyses the sample and then binds the nucleic acid, usually on a column or on a bead, and washes the rest away. Kits for blood, tissue, soil or a PCR cleanup are different chemistries. Yield and the size of fragments they keep are in the protocol. An RNA kit has to protect against RNase.

Molecular biology here is the handling of DNA and RNA. Extraction kits break the cell and then separate the nucleic acid from protein and from the other nucleic acid. PCR and qPCR reagents copy a chosen sequence so it can be seen. The enzymes and the nucleotides are what the copy depends on. Nuclease contamination destroys the sample before the kit can save it. Sequences are on NCBI Nucleotide. Papers are on PubMed.

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