Purpose of the assay is to determine the functionality of the SLC1A3 transporter, stably expressed in the HEK-293 JumpIn TREx cell line (SLC1A3 OverExpressing - OE - cell line). SLC1A3 (EAAT1) is a sodium-dependent, high-affinity amino acid transporter that mediates the uptake of L- glutamate, L-aspartate, and L-Cysteine. It plays an essential role in transporting these amino acids across plasma membrane in neurons, and it functions as a symporter that co-transports one amino acid together with 2 or 3 Na+ ions. The transport mediated by SLC1A3 is therefore electrogenic. For this reason, the HEK-293 JumpIn TREx/SLC1A3 OE cell line was tested using the Membrane Potential (MP) dye read-out, which is described in the section below
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
Purpose of the assay is to determine the functionality of the SLC1A3 transporter, stably expressed i...
Purpose of the assay is to determine the functionality of the SLC7A3 transporter, stably expressed i...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
Human SLC1A3 (solute carrier family 1 member 3) or EAAT1 (excitatory amino acid transporter 1), is a...
Human SLC1A3 (solute carrier family 1 member 3) or EAAT1 (excitatory amino acid transporter 1), is a...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
<p>This assay detects aspartate uptake using a biosensor for aspartate, cyto-iAspSnFR (Addgene...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
Purpose of the assay is to determine the functionality of the SLC1A3 transporter, stably expressed i...
Purpose of the assay is to determine the functionality of the SLC7A3 transporter, stably expressed i...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
Human SLC1A3 (solute carrier family 1 member 3) or EAAT1 (excitatory amino acid transporter 1), is a...
Human SLC1A3 (solute carrier family 1 member 3) or EAAT1 (excitatory amino acid transporter 1), is a...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
<p>This assay detects aspartate uptake using a biosensor for aspartate, cyto-iAspSnFR (Addgene...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...
FLIPR® membrane potential dye measures changes of charges across the cell membrane, upon activation ...