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January 1, 2003SLAS DISCOVERY222 citationsOpen Access

IonWorks™ HT: A New High-Throughput Electrophysiology Measurement Platform

KSKirk S. SchroederBNBrad NeagleDTDerek J. Trezise

Key Result

The IonWorks HT platform enables high-throughput voltage clamp recordings of up to 384 individual cells in minutes, providing measurement fidelity comparable to traditional electrophysiology techniques.

Structured PICO

P
Population
CHO cells exogenously expressing a recombinant voltage-dependent sodium channel (hNav1.3) and a voltage-gated potassium channel (hKv1.5)
I
Intervention
IonWorks HT device (plate-based high-throughput electrophysiology measurement platform)
C
Comparator
Traditional electrophysiology techniques (classical patch clamp)
O
Outcome
Throughput, measurement fidelity, stability, and comparative pharmacologysurrogate

The IonWorks HT platform provides a high-throughput alternative to classical patch clamp electrophysiology for biophysical and pharmacological profiling of ion channels.

Abstract

To address the throughput restrictions of classical patch clamp electrophysiology, Essen Instruments has developed a plate-based electrophysiology measurement platform. The instrument is an integrated platform that consists of computer-controlled fluid handling, recording electronics, and processing tools capable of voltage clamp whole-cell recordings from thousands of individual cells per day. To establish a recording, the system uses a planar, multiwell substrate (a PatchPlate). The system effectively positions 1 cell into a hole separating 2 fluid compartments in each well of the substrate. Voltage control and current recordings from the cell membrane are made subsequent to gaining access to the cell interior by applying a permeabilizing agent to the intracellular side. Based on the multiwell design of the PatchPlate, voltage clamp recordings of up to 384 individual cells can be made in minutes and are comparable to measurements made using traditional electrophysiology techniques. An integrated pipetting system allows for up to 2 additions of modulation agents. Typical throughput, measurement fidelity, stability, and comparative pharmacology of a recombinant voltage-dependent sodium channel (hNav1.3) and a voltage-gated potassium channel (hKv1.5) exogenously expressed in CHO cells are presented. The IonWorks HT device can be used in biophysical and pharmacological profiling of ion channels in an environment compatible with high-capacity screening.

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Cite This Study

Schroeder et al. (2003) studied this question. IonWorks HT platform vs. traditional electrophysiology techniques was evaluated on throughput, measurement fidelity, stability, and comparative pharmacology. The IonWorks HT platform enables high-throughput voltage clamp recordings of up to 384 individual cells in minutes, providing measurement fidelity comparable to traditional electrophysiology techniques.

synapsesocial.com/papers/6aa435582a8b97871321d7e2https://doi.org/10.1177/1087057102239667
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