Home » MBE – Magnetic Bead Extractor

MBE - Magnetic Bead Extractor

A well designed manual tool for magnetic bead transfer

Specification

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OEM

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Magnetic beads act as assistants in molecular biology in helping to separate and purify different types of biomolecules. The expertly designed hand held Magnetic Bead Extractor aids in making the process faster and less complicated. The use of strong magnets enables an efficient separation of micrometer-sized paramagnetic particles.

RELIABLE

We gather years of experience and develop the most reliable product that will improve your efficiency. Our products are engineered, manufactured, and tested in Estonia. We globally support our customers and offer a twoyear warranty globally.

OEM

As a turnkey solutions provider, we offer the full process chain from concept, through prototyping, development, production, installation, and after-sales service. The interdisciplinary in-house team of designers, engineers, and software experts, keeps Ariumlab constantly ahead of its competitors and assures attractive lead times and costeffective solutions

For your specific needs and applications, we can build customized devices according to your requirement and business needs. Our design team and specialist are always available to help you achieve the best results.

Please contact us for your customized needs such as under deck integration, more optimized space and performance.

Ariumlab Extractors are designed to streamline the process of transferring magnetic beads between source and destination plate, making bead washing and elution more efficient. This device enhances magnetic bead assays, such as Next Generation Sequencing (NGS) sample preparation, by reducing the need for disposable plastic pipet tips and minimizing multiple pipetting steps.

Key Features and Workflow

01

Design and Structure

  • Ariumlab Extractors contains 96 or 24 magnetic pins. Depending on the working volume, user choses the most suitable magnet formation.
  • Standard consumables like combs are used as a sterile barrier, fitting over the magnetic pins.

02

Process Overview

  • Bead Attraction:
    • The Cover Plate is clipped over the magnetic pins of the extractor.
    • The assembly is dipped into a source microplate containing magnetic beads in suspension.
    • The beads are attracted to the magnetic pins and adhere to the outside of the comb’s pointed wells.

 

  • Transfer Mechanism:
  • Strong neodium magnetic pins enable fast and efficient bead extraction with minimal loss.
  • Magetic beads are collected at the tip of the combs’ surface.
  • Once the beads are bound to the comb, the extractor is moved from the source plate to the destination plate.

 

 

  • Bead Release:
    • The beads are released into the liquid in the wells of the destination plate by removing the comb from the magnetic pins using the push plate.

03

Extraction Stand

  • Precision and Effortlessness

○ The extraction stand is designed to facilitate more precise and effortless bead transfers.

○ It provides stability and support, particularly beneficial for repetitive use over extended periods.

  • Increased Reproducibility

○ Even though the Ariumlab Extractors are lightweight, the stand enhances user comfort and consistency.

○ It helps maintain consistent technique, improving the reproducibility of bead transfers.

BENEFITS

Efficiency

The process eliminates the need for multiple tedious pipetting steps.

Speed and Precision

Ensures fast bead extraction and minimal bead loss due to the strong magnetic pins and large surface area of the combs.

Cost-effective

Reduces the use of disposable plastic pipet tips.

Sterility

The combs acts as a sterile barrier, preventing contamination.

Ariumlab Extractors enhances the efficiency and reliability of magnetic bead assays, particularly in applications like NGS sample preparation.

0.2mL 96 Well Extractor

1.620,002.340,00
Select options This product has multiple variants. The options may be chosen on the product page
Product

0.2mL 96 Well Extractor

,

0.2mL 96 Well Extractor with Stand

Wells

96

Brand

Ariumlab

10mL 24 Deep-Well Extractor

1.980,002.700,00
Select options This product has multiple variants. The options may be chosen on the product page
Product

10mL 24 Deep-Well Extractor

,

10ml 24 Deep-Well Extractor with Stand

Wells

24

Brand

Ariumlab

2.2mL 96 Deep-Well Extractor

2.070,002.790,00
Select options This product has multiple variants. The options may be chosen on the product page
Product

2.2mL 96 Deep-Well Extractor

,

2.2mL 96 Deep-Well Extractor with Stand

Wells

96

Brand

Ariumlab

0.2mL 96 Well Extractor

Catalog Number S096-E002-00
Product Name 0.2mL 96 Well Extractor
Usage Manual - Benchtop Use
Comb Plate PCR Plate
Bottom Plate Flat Bottom Plate
Magnet Type Neodymium N50 V Shape
Weight 0.7kg
Dimension 93mm x 121mm x 145mm

2.2mL 96 Deep-Well Extractor

Catalog Number S096-E002-ST
Product Name 0.2mL 96 Well Extractor with Stand
Usage Manual - Benchtop Use
Comb Plate PCR Plate
Bottom Plate Flat Bottom Plate
Magnet Type Neodymium N50 V Shape
Weight 2.5kg
Dimension 110mm x 153mm x 255mm

10mL 24 Deep-Well Extractor

Catalog Number S024-E001-00
Product Name 10mL 24 Deep-Well Extractor
Usage Manual - Benchtop Use
Comb Plate Comb Plate
Bottom Plate Deep-Well Plate
Magnet Type Neodymium N50 Cylindrical
Weight 0.7kg
Dimension 93mm x 128mm x 160mm

Downloads

Applications

Precise temperature control is critical for successful molecular diagnostic assays. Cooling and heating technologies, such as thermal cyclers and temperature-controlled incubators, are essential for achieving accurate and reliable results in molecular diagnostics.

Why cooling and heating is important for molecular diagnostics:

  1. Enzyme activity: Many molecular diagnostic techniques rely on enzymes, such as polymerases, ligases, and restriction enzymes, to catalyze reactions. Enzymes are susceptible to temperature, and their activity can be affected by even small changes in temperature. Therefore, it is important to carefully control the temperature during the reaction to ensure optimal enzyme activity.
  2. Stability of reagents: Some reagents used in molecular diagnostics are sensitive to temperature and can degrade over time if not stored at the proper temperature. For example, Taq polymerase, a commonly used enzyme in PCR, is sensitive to heat and can lose activity if not stored properly.
  3. Reproducibility: Accurate temperature control is essential for ensuring the reproducibility of results in molecular diagnostic assays. Even slight variations in temperature can lead to differences in reaction efficiency, yield, and specificity, which can affect the accuracy and reliability of the results.

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