• Nanion Technologies: Smart Tools for Ion Channel Research

    Nanion Technologies: Smart Tools for Ion Channel Research

  • SyncroPatch 384i: HTS Automated Patch Clamp

    SyncroPatch 384i: HTS Automated Patch Clamp

  • SURFE²R 96SE: Label-free HTS Transporter Screening

    SURFE²R 96SE: Label-free HTS Transporter Screening

  • Dynamic Clamp: Patchliner

    Dynamic Clamp: Patchliner

  • Bilayer recordings: Orbit product family

    Bilayer recordings: Orbit product family

  • CardioExcyte 96 SOL: Pacing Cardiomyocytes with Light

    CardioExcyte 96 SOL: Pacing Cardiomyocytes with Light

Our Product Portfolio

SyncroPatch 384

SyncroPatch 384

Patchliner

Patchliner

Port-a-Patch

Port-a-Patch

Port-a-Patch mini

Port-a-Patch mini

CardioExcyte 96

CardioExcyte 96

FLEXcyte 96

FLEXcyte 96

SURFE²R 96SE

SURFE²R 96SE

SURFE²R N1

SURFE²R N1

Orbit 16 TC

Orbit 16 TC

Orbit Mini

Orbit Mini

Vesicle Prep Pro

Vesicle Prep Pro

Buffer Solution

Buffer Solution

P2X2/ P2X3 - Activation by ATP on the SyncroPatch 384PE

P2X23 CHOCells ATP SP384icon sp96   SyncroPatch 384PE (a predecessor model of the SyncroPatch 384) data and applications: 
Cells were kindly supplied by Axxam

P2X2/3 recorded from CHO cells on the SyncroPatch 384PE (a predecessor model of the SyncroPatch 384). P2X2/3 was activated by increasing concentrations of ATP with an EC50 = 1.1 µM (n = 191). ATP was applied for approximately 1.5 s using the ‘Ligand Puff’ function of the SyncroPatch 384PE. Average traces and concentration response curve shown for 191 cells. Success rate was 99% for completed experiment (191 wells from a possible 192). Multi-hole (4 holes per well) chips were used.

 

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