• Nanion Technologies: イオンチャネル研究のスマートツール

    Nanion Technologies: イオンチャネル研究のスマートツール

  • SyncroPatch 384i: HTS Automated Patch Clamp

    SyncroPatch 384i: HTS Automated Patch Clamp

  • SURFE²R 96SE: ラベルフリーのトランスポーターHTS

    SURFE²R 96SE: ラベルフリーのトランスポーターHTS

  • Dynamic Clamp: Patchliner

    Dynamic Clamp: Patchliner

  • 脂質二分子膜実験: Orbitシリーズ

    脂質二分子膜実験: Orbitシリーズ

  • CardioExcyte 96 SOL: 心筋の光ペーシング

    CardioExcyte 96 SOL: 心筋の光ペーシング

Our Product Portfolio

SyncroPatch 384i

SyncroPatch 384i

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

2015 - Studying Electrogenic Transporters of the SLC Family in a Parallel Way Utilizing Solid Supported Membrane Technology

Icon 96SE   SURFE²R N96 poster (a predecessor model of the SURFE²R 96SE) Biophysics 2015   logo pdf   (0.8 MB)

Abstract:

The solute carrier (SCL) family of membrane transport proteins includes over 300 members. Many of them are related to conditions and diseases, or are involved in the transport of pharmacological agents.  Therefore, there is a strong need for efficient and flexible assays to study properties and interactions of those transporters. 
We utilized solid supported membrane based electrophysiology to study real-time SLC-transporter activity in a 96-well based format, introducing a method  also suitable for drug screenings and safety tests. Here applications to study activation and inhibition properties of the SLC transporters PepT1, SGLT1, OCT2 and ANT are presented.

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