RFP-hTert Immortalized Human Retinal Microvascular Pericytes
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Product Overview
Description
RFP-hTert Immortalized Human Retinal Microvascular Pericytes (RFP-hTert-HRMVP) are stably red fluorescent protein (RFP)-expressing, telomerase-immortalized human retinal microvascular pericytes engineered for long-term in vitro use. These cells combine the physiological relevance of primary human retinal pericytes with the extended proliferative capacity conferred by ectopic hTert expression, making them a powerful and reproducible tool for retinal vascular research.
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: NBP0025-IChTert-RFP
Product Format: Frozen
Vial Cell Number: > 5x10[5] cells/vial
Passage:1(P1)
Storage: Liquid Nitrogen, Vapor Phase
Intended Use: Research use only (RUO)
QUALITY AND CHARACTERIZATION
Cells are tested for expression of key pericyte markers, including alpha-smooth muscle actin (-SMA), platelet-derived growth factor receptor beta (PDGFR-), and NG2 proteoglycan. Stable RFP expression and hTert-mediated telomerase activity are confirmed before release. Cells are verified to be free of mycoplasma, bacteria, and other microbial contaminants.
Quick Facts
Product Type
Immortalized Endothelial
Viability
>95% viable (Trypan Blue exclusion)
Applications
* Modeling diabetic retinopathy and other retinal…
Availability
In Stock • Global Shipping
Technical Specifications
Primary Applications
Applications & Use Cases
Primary Applications
* Modeling diabetic retinopathy and other retinal vascular diseases in vitro. * Pericyte-endothelial cell co-culture and blood-retinal barrier studies. * Angiogenesis and neovascularization research. * Drug screening and therapeutic target identification for ocular vascular disorders. * Live-cell fluorescence imaging and real-time cell tracking. * Investigation of pericyte dropout
Suitable for * modeling diabetic retinopathy and other retinal vascular diseases in vitro. * pericyte-endothelial cell co-culture and blood-retinal barrier studies. * angiogenesis and neovascularization research. * drug screening and therapeutic target identification for ocular vascular disorders. * live-cell fluorescence imaging and real-time cell tracking. * investigation of pericyte dropout studies and research applications
dysfunction
Suitable for dysfunction studies and research applications
and signaling pathways.
Suitable for and signaling pathways. 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
Our experts are available for technical questions and protocol assistance.
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