Spontaneous contraction, such as beating, of HL-1 cells may not be observable by bright-field microscopic inspection due to its subtlety. The beating phenotype can be observed using a fluorescent calcium flux dye, Fluo-8®.
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Informacje o tej pozycji
Nazwa produktu
HL-1 Cardiac Muscle Cell Line, HL-1 Cardiac Muscle Cell Line has been extensively characterized and is a valuable model system to address questions of cardiac biology at the cellular & molecular levels.
biological source
mouse
Quality Segment
technique(s)
cell based assay: suitable, cell culture | mammalian: suitable
General description
HL-1 Cardiac Muscle Cell Line is an immortalized mouse cardiomyocyte cell line able to continuously divide and spontaneously contract while maintaining a differentiated cardiac phenotype. HL-1 can be serially passaged without losing its differentiated cardiac myocyte phenotype, including morphological, biochemical, and electrophysiological properties. HL-1 cells have been used to study normal cardiomyocyte function with regard to signaling, electrical, metabolic, and transcriptional regulation as well as to address pathological conditions such as hypoxia, hyperglycemia-hyperinsulinemia, apoptosis, and ischemia-reperfusion.
The HL-1 line was derived from AT-1 subcutaneous tumor excised from an adult female C57BL/6J mouse. The parental AT-1 line was originally derived from an atrial tumor growing in a transgenic mouse in which expression of the SV40 large T-antigen was targeted to atrial cardiomyocytes via the atrial natriuretic factor (ANF) promoter.
Application
Cardiac
Cardiovascular Disease
Toxicity
Biochem/physiol Actions
Preparation Note
Analysis Note
• Cells tested negative for infectious diseases by the Mouse Essential CLEAR panel PCR panel by Charles River Animal Diagnostic Services.
• Cells are negative for mycoplasma contamination.
• Functional Assay: Fluo-8 calcium dye fluorescent based assay for detecting changes in intracellular calcium
Disclaimer
This product contains genetically modified organisms (GMO). Within the EU GMOs are regulated by Directives 2001/18/EC and 2009/41/EC of the European Parliament and of the Council and their national implementation in the member States respectively. This legislation obliges {HCompany} to request certain information about you and the establishment where the GMOs are being handled. Click here for Enduser Declaration (EUD) Form.
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Ta pozycja | |||
|---|---|---|---|
| description HL-1 Cardiac Muscle Cell Line has been extensively characterized and is a valuable model system to address questions of cardiac biology at the cellular & molecular levels. | description HMC-1.1 human mast cell line is a variant subline of the HMC-1 cell line and possesses the V560G KIT mutation. | description HMC-1.2 human mast cell line is a variant subline of the HMC-1 cell line and possesses both the V560G and D816V KIT mutations. | description The N27 rat dopaminergic neural cell line has been used as a dopaminergic neuron model for in vitro and in vivo studies. |
| biological source mouse | biological source human | biological source human | biological source rat |
| technique(s) cell based assay: suitable, cell culture | mammalian: suitable | technique(s) cell culture | mammalian: suitable | technique(s) cell culture | mammalian: suitable | technique(s) cell culture | stem cell: suitable, cell culture: suitable using | mammalian |
| Quality Level 100 | Quality Level 100 | Quality Level 100 | Quality Level 100 |
Klasa składowania
10 - Combustible liquids
Temperatura zapłonu (°F)
Not applicable
Temperatura zapłonu (°C)
Not applicable
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Hello, Are these HL1 cells the type that do not beat in culture? Please answer, yes or no.
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Hello, Are these HL1 cells the type that do not beat in culture?
1 answer-
HL-1 Cardiac Muscle Cell Line is an immortalized mouse cardiomyocyte cell line able to continuously divide and spontaneously contract while maintaining a differentiated cardiac phenotype. HL-1 can be serially passaged without losing its differentiated cardiac myocyte phenotype, including morphological, biochemical, and electrophysiological properties. HL-1 cells have been used to study normal cardiomyocyte function with regard to signaling, electrical, metabolic, and transcriptional regulation as well as to address pathological conditions such as hypoxia, hyperglycemia-hyperinsulinemia, apoptosis, and ischemia-reperfusion.
The HL-1 line was derived from AT-1 subcutaneous tumor excised from an adult female C57BL/6J mouse. The parental AT-1 line was originally derived from an atrial tumor growing in a transgenic mouse in which expression of the SV40 large T-antigen was targeted to atrial cardiomyocytes via the atrial natriuretic factor (ANF) promoter.
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