Garnet Beads / Flakes – 0.7 mm

Product Overview

The 0.7 mm Garnet Beads / Flakes are durable homogenisation media designed for the efficient disruption of particularly fibrous, resilient or difficult-to-lyse samples.

With a density of 2.4 g/cc, the 0.7 mm garnet flakes provide effective mechanical disruption during homogenisation, making them particularly suitable for challenging tissue samples and hard-to-lyse cell suspensions.

Supplied in a convenient 1 lb (0.45 kg) package, these garnet flakes are ideal for laboratories requiring reliable homogenisation media for demanding sample preparation applications.

 

Product Details

Key Features

  • 0.7 mm garnet flakes – designed for effective mechanical sample disruption.
  • Ideal for challenging samples – recommended for particularly fibrous or resilient materials.
  • Suitable for hard-to-lyse cells – assists with the disruption of difficult cell suspensions.
  • High-density media – density of 2.4 g/cc provides effective homogenisation performance.
  • Versatile laboratory use – suitable for a range of biological sample preparation and homogenisation workflows.
  • Convenient bulk pack – supplied in a 1 lb (0.45 kg) package

 

Applications

Recommended for homogenisation and sample preparation applications involving:

  • Fibrous tissue samples
  • Resilient biological samples
  • Hard-to-lyse cell suspensions
  • Tough tissue homogenisation
  • Cell disruption
  • Biological sample preparation
  • Molecular biology workflows

Technical Specifications

  • Media Type: Garnet Beads / Flakes
  • Particle Size: 0.7 mm
  • Density: 2.4 g/cc
  • Pack Size: 1 lb (0.45 kg)
  • Recommended Use: Fibrous, resilient and hard-to-lyse samples

Shipping Information

Shipping Weight: 1 lb
Shipping Dimensions: 6 × 5 × 1.5 in

Why Choose 0.7 mm Garnet Beads / Flakes?

The 0.7 mm Garnet Beads / Flakes provide an effective homogenisation solution for samples that can be difficult to disrupt using standard media.

Their combination of 0.7 mm particle size and 2.4 g/cc density makes them particularly suited to fibrous tissues, resilient biological materials and hard-to-lyse cell suspensions, providing reliable mechanical disruption during sample preparation.