• 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

  • 脂双层记录: Orbit产品系列

    脂双层记录: Orbit产品系列

  • CardioExcyte 96 SOL:用光遗传的手段起搏心肌细胞

    CardioExcyte 96 SOL:用光遗传的手段起搏心肌细胞

我们的产品目录

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

Orbit 16

Orbit Mini

Orbit Mini

Vesicle Prep Pro

Vesicle Prep Pro

CaV1.3 - Characterization of CaV1.3 on Nanion's SyncroPatch 96

icon sp96   SyncroPatch 96 (a predecessor model of the SyncroPatch 384PE) application note:  logo pdf   (0.5 MB)

Summary:

HEK-cells expressing CaV1.3 channels were investigated with the SyncroPatch 96. CaV1.3 is an L-type, high voltage activated (HVA) calcium channel found in certain neuronal dendrites. Four L-type voltage gated Ca2+ channels (LTCC) isoforms are known (CaV1.1, CaV1.2, CaV1.3, and CaV1.4). All of them are characterized by high sensitivity to dihydropyridine (DHP) Ca2+ channel modulators, although differences in their voltage-dependence of DHP block exist. Furthermore, they own different biophysical and pharmacological properties and different cellular distribution. The unique DHP sensitivity distinguishes them from other voltage-gated Ca2+ channel types. Gating differences are intrinsic properties of their pore-forming a-1 subunits which assemble with accessory a-2-d and b-subunits (in some tissues also a g-subunit) to form a functional channel.

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