Primary Cells

Rat Cardiac Cells-Neonatal

  • For research use only

Cat No.

ABC-TC4104

Product Type

Rat Primary Cells

Cell Type

Cardiac Cell

Species

Rat

Growth Conditions

37 ℃, 5% CO2

Source Organ

Heart

Disease

Normal

Storage

Liquid Nitrogen

Rat primary cardiac cells (RPCACs) are isolated from heart tissue of 1-day-old neonatal Sprague-Dawley rats.

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Description

Neonatal Rat Cardiac Cells (NRVMs) are primary cells isolated from the ventricles of neonatal rats. These cells exhibit the characteristic elongated, striated morphology of cardiomyocytes and display spontaneous, rhythmic contractions in culture. Functionally, NRVMs demonstrate well defined electrophysiological properties including L and T type calcium currents, as well as distinct action potentials. On a molecular level, neonatal cardiomyocytes harbor a large proportion of stable, post translationally modified microtubules, contributing to their structural and contractile integrity. Each lot undergoes rigorous screening and isolation procedures, and is rigorously tested to ensure it is free of contamination from Mycoplasma, Fungi, Yeast, and Bacteria.
Product Code

Rat Cardiac Cells-Neonatal, Rat Neonatal Cardiac Cells, Neonatal Cardiomyocytes, Cardiac Cells

Species

Rat

Cat.No

ABC-TC4104

Product Category

Primary Cells

Size/Quantity

1 vial

Cell Type

Cardiac Cell

Growth Mode

Adherent

Shipping Info

Dry Ice

Growth Conditions

37 ℃, 5% CO2

Source Organ

Heart

Disease

Normal

Biosafety Level

1

Storage

Liquid Nitrogen

Product Type

Rat Primary Cells

Quality Control

All cells test negative for mycoplasma, bacteria, yeast, and fungi.

Application

  • Neonatal rat cardiac cells serve as a versatile in vitro model for investigating cardiac development, cell-cycle regulation, electrophysiology, and drug-induced toxicity. They are frequently used to study the mechanisms of arrhythmias (e.g., sustained reentry in monolayers), calcium handling, hypertrophy, and circadian rhythm–related gene oscillations (e.g., Bmal1/Per2) under stress conditions such as hypoxia or chemotherapeutic exposure. NRVM cultures are also compatible with live-cell imaging and genetic manipulation via viral transduction, allowing precise analysis of sarcomeric dynamics, signal transduction pathways, and contractile responses.

Citation

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