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GFP Expressing Human Retinal Microvascular Endothelial Cells

NBP-0010GFP Primary Cells
$1,000.00
Starting price per unit
GFP Expressing Human Retinal Microvascular Endothelial Cells
In Stock 1ml
Product Type Human Endothelial cells
Viability >90% viable (Post-thaw)
Storage 37°C or liquid Nitrogen Vapor Phase
Shelf Life Very stable in the Liquid Nitrogen Vapor Phase

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Product Overview

Description

GFP-Expressing Human Retinal Microvascular Endothelial Cells (HRMEC-GFP) are primary human retinal endothelial cells genetically modified to stably express Green Fluorescent Protein (GFP).

These cells retain the morphological, phenotypic, and functional characteristics of native retinal microvascular endothelial cells while providing a fluorescent marker for real-time visualization, cell tracking, migration studies, and angiogenesis research.

HRMEC-GFP cells are widely used as an in vitro model for studying retinal vascular biology, diabetic retinopathy, age-related macular degeneration (AMD), retinal neovascularization, blood-retinal barrier function, and drug screening applications.

Guarantee expansion for a minimum of 2-5 population doublings.

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)

CELLS CHARACTERIZATION

-Stable expression of Green Fluorescent Protein (GFP)
-Typical endothelial cobblestone morphology
-Derived from human retinal microvasculature
-Positive for endothelial markers:
CD31 (PECAM-1)
VE-Cadherin (CD144)
von Willebrand Factor (vWF)
VEGFR-2 (KDR)
CD34
Uptake of acetylated LDL (Ac-LDL)
Formation of capillary-like tube structures in angiogenesis assays
Responsive to VEGF, TNF-?, hypoxia, and inflammatory stimuli
Suitable for live-cell imaging and fluorescence-based assays
Mycoplasma tested and negative
High GFP fluorescence stability through multiple passages

Quick Facts
Product Type

Human Endothelial cells

Viability

>90% viable (Post-thaw)

Applications

-Blood-Retinal Barrier Models Assessment of barr…

Availability

In Stock • Global Shipping

Technical Specifications

Product Type
Human Endothelial cells
Viability
>90% viable (Post-thaw)
Proliferative Capability
Primary cells capable of multiple passages when using recommended medium and proper handling
Genetic Modifications
GFP labeled
Storage Conditions
37°C or liquid Nitrogen Vapor Phase
Shelf Life
Very stable in the Liquid Nitrogen Vapor Phase
Product Code
NBP-0010GFP
Size/Format
1ml
Primary Applications
-Blood-Retinal Barrier Models Assessment of barrier integrity Permeability and transport studies Cell-cell interaction studies with pericytes and retinal cells -Angiogenesis Studies Tube formation assays Endothelial migration and proliferation assays VEGF signaling pathway analysis Tissue Engineering Retinal organoid vascularization Vascular network formation in engineered tissues Regenerative medicine research

Applications & Use Cases

Primary Applications
-Blood-Retinal Barrier Models Assessment of barrier integrity Permeability and transport studies Cell-cell interaction studies with pericytes and retinal cells -Angiogenesis Studies Tube formation assays Endothelial migration and proliferation assays VEGF signaling pathway analysis Tissue Engineering Retinal organoid vascularization Vascular network formation in engineered tissues Regenerative medicine research

Suitable for -blood-retinal barrier models assessment of barrier integrity permeability and transport studies cell-cell interaction studies with pericytes and retinal cells -angiogenesis studies tube formation assays endothelial migration and proliferation assays vegf signaling pathway analysis tissue engineering retinal organoid vascularization vascular network formation in engineered tissues regenerative medicine research 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

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