Multichannel Systems IonFlux System User Manual

Ionflux, System

Advertising
background image

IonFlux

System

High Throughput Automated Patch Clamp with Plate Reader Simplicity

Optimized for throughput,
flexibility, and superior
performance

Plate reader simplicity: Fluxion’s
proprietary microfluidic flow control
technology eliminates the need for
pipetting and washing; it’s all handled
automatically within the reader. The
design ensures reliability and consis-
tency.

Ligand-gated channel capability:
Compound application takes less than
100ms. Multiple compounds or con-
centrations can be applied in rapid
succession to the same group of cells.
Ideal for assaying ligand-gated chan-
nels.

Continuous recording: The IonFlux
reader continuously records from the
whole plate during all phases of the
protocol. Cells are continuously
clamped.

Highest throughput: Available with
64 multiplexed amplifiers, the system
can deliver 1,000 data points per hour.

Cost-effective: Optimized design
significantly reduces the cost per data
point and initial system cost.

Compact: The IonFlux system can sit
on a benchtop, making it ideal for the
typical lab environment. The system is
designed to integrate with existing
liquid handlers for fully automated,
unattended operation. The IonFlux
system integrates easily into high
throughput screening workflows.

The IonFlux System delivers a high throughput electrophysiology solution for
ligand-gated and voltage-gated ion channels with “plate reader” simplicity. The
system’s unique microfluidic well plate format eliminates pipetting steps, allows
continuous recording of cell ensembles, and rapidly delivers compounds.

The IonFlux System delivers outstanding patch clamp performance in a complete, easy-to-use system.
Designed for higher throughput screening, the system uses parallel-cell ensemble recording to improve
reliability and minimize variability. Workflow is greatly simplified: once IonFlux plates are filled with cells
and compounds - by any standard liquid handling system - the plates are loaded automatically into the
IonFlux reader. The system’s unique microfluidic design automates all aspects of the compound
application and recording protocol. No additional pipetting or washing steps are required. Voltage
clamping occurs continuously throughout the entire experiment. This optimized design offers
significant advantages in throughput and speed of compound application.

Better System, Better Workflow

The IonFlux system is a benchtop instrument which provides up to 64 ion channel recordings in parallel.
The system consists of 1) a “reader” for running the voltage protocol and managing fluid flow, 2)
software for experiment set-up, control, and analysis, and 3) IonFlux microfluidic plates for cell and
compound handling. The use of a simple reader format, active fluidics, and 64 integrated amplifiers
provides throughput capability of 1,000 data points per hour.

IonFlux plates combine the ease of use of an SBS-standard well plate with the benefits of integrated
fluidics. Plates are filled in the same way as traditional well plates. However, the plate bottom has been
replaced by a microfluidic network. Cell introduction, seal formation, and rapid compound addition and
exchange (<100 ms) are all accomplished using a pneumatic interface that seals automatically to the
IonFlux plate inside the reader. Since the interface also includes the electrodes, fluid control and
recording occur simultaneously; there is no need for a test-add-test discontinuous workflow.

1.

The IonFlux reader has been
designed for ease of use,
reliability, and workflow sim-
plicity – just like a traditional
plate reader.

2.

IonFlux plates look and handle
exactly like standard well
plates. They can be filled by
standard liquid handling sys-
tems.

3.

In place of a solid bottom, the
IonFlux plate has a microflu-
idic network connecting wells.
The IonFlux reader includes
an interface that seals to the
wells and controls cell intro-
duction, trapping, seal forma-
tion, and compound introduc-
tion via software control.

1

2

3

Advertising