GFP Expressing Human Internal Mammary Artery Endothelial Cells
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Product Overview
Description
GFP Expressing Human Internal Mammary Artery Endothelial Cells (HIMAEC-GFP) are primary human endothelial cells isolated from the internal mammary artery and genetically modified to stably express Green Fluorescent Protein (GFP). These cells retain the morphological, phenotypic, and functional characteristics of vascular endothelial cells while providing continuous fluorescent visualization for live-cell imaging, angiogenesis studies, and vascular biology research.
HIMAEC-GFP cells exhibit the classic cobblestone morphology of endothelial cells and express endothelial-specific markers, making them an excellent model for studying arterial endothelial function, vascular remodeling, inflammation, and cardiovascular disease mechanisms.
IMPORTANT: Quality warranty requires use of NeoBioPharma media. Biohazardous material despite negative pathogen testing. Quality claims must be reported within 1 month.
Key Features
Catalog Number: NBP0018GFP
Product Format: Frozen
Vial Cell Number: > 5x10[5] cells/vial
Passage:1(P1)
Storage: Liquid Nitrogen, Vapor Phase
Intended Use: Research use only (RUO)
Endothelial Markers
Positive for:
CD31 (PECAM-1)
VE-Cadherin (CD144)
von Willebrand Factor (vWF)
eNOS (Endothelial Nitric Oxide Synthase)
VEGFR-2 (KDR)
-Quality Control
Tested for:
Mycoplasma (Negative)
Bacterial contamination (Negative)
Fungal contamination (Negative)
Cell viability (>85% post-thaw recommended)
GFP expression verification
Quick Facts
Product Type
Human Endothelial cells
Viability
>90% viability post-thaw
Applications
-Drug Discovery and Toxicity Testing Screening a…
Availability
In Stock • Global Shipping
Technical Specifications
Primary Applications
Applications & Use Cases
Primary Applications
-Drug Discovery and Toxicity Testing Screening anti-angiogenic compounds Vascular toxicity assessments Cardiovascular drug development Endothelial permeability studies -Tissue Engineering Vascular graft development Bioengineered blood vessel models Organ-on-a-chip platforms
Suitable for -drug discovery and toxicity testing screening anti-angiogenic compounds vascular toxicity assessments cardiovascular drug development endothelial permeability studies -tissue engineering vascular graft development bioengineered blood vessel models organ-on-a-chip platforms studies and research applications
Research Areas
In Vitro Studies
Cell culture and screening applications
Molecular Biology
Gene expression & signaling studies
Drug Discovery
Screening & validation studies
Disease Modeling
Pathophysiology research
Support & Resources
Technical Support
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