OC-100×2™

Catalogue No.

OC-100×2™
  • Description
  • Graph Details

Supplier

MaxCyte

|

Catalogue No.

OC-100×2™

OC-100×2™

Small-scale RUO Processing Assemblies
Static electroporation processing assemblies for research applications in small volume scales with both single-well and multi-well options.

Research Use Only (RUO) Processing assemblies aid the discovery and development of applications at small scales. These static electroporation consumables are made from high-grade, inert materials to protect precious cells with additional design features for easy sample loading and recovery.

OC-100×2™

  • Multi-well for increased throughput; lower cost per transfection
  • V-shaped well design for efficient cell recovery

Configuration: 2-well, 100 µL maximum volume per well
Cell Range: 2.5×105 – 2×107 per well
Volume Range: 50 – 100 µL per well
Application: Research Use Only
Catalog: SOC-1×2

Compatible with ATx™ and STx™

  • Description
  • Graph Details
Description icon

Small-scale RUO Processing Assemblies
Static electroporation processing assemblies for research applications in small volume scales with both single-well and multi-well options.

Research Use Only (RUO) Processing assemblies aid the discovery and development of applications at small scales. These static electroporation consumables are made from high-grade, inert materials to protect precious cells with additional design features for easy sample loading and recovery.

OC-100×2™

  • Multi-well for increased throughput; lower cost per transfection
  • V-shaped well design for efficient cell recovery

Configuration: 2-well, 100 µL maximum volume per well
Cell Range: 2.5×105 – 2×107 per well
Volume Range: 50 – 100 µL per well
Application: Research Use Only
Catalog: SOC-1×2

Compatible with ATx™ and STx™

Graph Details icon

OC-400-v-CL-1@2x

Graph Details: K562 cells were suspended in MaxCyte Electroporation Buffer with pGFP into each well of 3 OC-100×2 PAs and 3 OC-100 PAs. Samples were analyzed 24 hours post-electroporation and assayed for fluorescence to measure efficiency. The average for each well is shown in the graph.

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