• Nanion技术: 离子通道研究的智能工具

    Nanion技术: 离子通道研究的智能工具

  • SyncroPatch 384i: HTS Automated Patch Clamp

    SyncroPatch 384i: HTS Automated Patch Clamp

  • SURFE²R 96SE: 非标记高通量转运体筛选

    SURFE²R 96SE: 非标记高通量转运体筛选

  • Dynamic Clamp: Patchliner

    Dynamic Clamp: Patchliner

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    脂双层记录: Orbit产品系列

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    CardioExcyte 96 SOL:用光遗传的手段起搏心肌细胞

我们的产品目录

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

2020 - Unattended Screening Workflow in a 384-well Automated Patch Clamp System

 icon sp96   SyncroPatch 384i  (a predecessor model of SyncroPatch 384) poster, SPS 2020   logo pdf   (1.3 MB)

Abstract:

Within ion channel working group efforts (Fermini et al., 2015), reference compounds were tested across multiple sites and automated patch clamp (APC) platforms (Kramer et al., 2020). Resulting IC50 values were variable between drugs and platforms. In general, as Iversen et al. (2012) outlined, the quality of an assay is defined by the robustness and reproducibility of the measurement signal in the absence of any test compounds. Data robustness and reliability using an APC instrumentation should be proven carefully before an unattended full-day screening workflow is implemented.

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