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GFP MDA-MB 231

NBP-0002-MB231 Tumor Cells
$573.44
Starting price per unit
GFP MDA-MB 231
In Stock 1ml
Product Type Tumor Cells
Viability >95% viability 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 MDA-MB-231 Breast Cancer Cells are a fluorescently labeled variant of the MDA-MB-231 human breast cancer cell line, which is commonly used as a model for aggressive, triple-negative breast cancer. The original MDA-MB-231 cell line exhibits an epithelial-like morphology and may appear spindle-shaped, particularly when the cells are not fully confluent.

These cells stably express green fluorescent protein (GFP), enabling direct visualization, real-time cell tracking, and quantitative imaging in various contexts, including 2D culture, 3D spheroid models, migration assays, invasion assays, and in vivo tumor biology studies. The expression of GFP facilitates the easy monitoring of tumor cell growth, morphology, localization, and response to experimental treatments.

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: NBP-0002-MB231
Product Format: Frozen
Vial Cell Number: > 5x10[5] cells/vial
Passage:1(P1)
Storage: Liquid Nitrogen, Vapor Phase
Intended Use: Research use only (RUO)

Characteristics:

-Species: Human
-Tissue origin: Breast
-Disease: Breast adenocarcinoma / triple-negative breast cancer model
-Fluorescent marker: GFP / enhanced green fluorescent protein
-Morphology: Epithelial-like, with spindle-shaped appearance at lower confluence
--Growth pattern: Adherent monolayer culture
Research profile: Highly invasive, migratory, and commonly -used for metastatic breast cancer studies
-Imaging advantage: GFP signal enables direct visualization without additional staining
-Recommended use: Research use only; not intended for diagnostic, therapeutic, or clinical use

Quick Facts
Product Type

Tumor Cells

Viability

>95% viability post-thaw

Applications

-Breast cancer research -Triple-negative breast …

Availability

In Stock • Global Shipping

Technical Specifications

Product Type
Tumor Cells
Viability
>95% viability 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-0002-MB231
Size/Format
1ml
Primary Applications
-Breast cancer research -Triple-negative breast cancer model studies -Tumor growth and metastasis studies -Cell migration and invasion assays Drug screening and cytotoxicity testing -Fluorescence microscopy and live-cell imaging -3D tumor spheroid and organoid co-culture models -Tumor microenvironment and cancer-associated fibroblast interaction studies -In vivo xenograft imaging and tumor tracking where approved by institutional protocols

Applications & Use Cases

Primary Applications
-Breast cancer research -Triple-negative breast cancer model studies -Tumor growth and metastasis studies -Cell migration and invasion assays Drug screening and cytotoxicity testing -Fluorescence microscopy and live-cell imaging -3D tumor spheroid and organoid co-culture models -Tumor microenvironment and cancer-associated fibroblast interaction studies -In vivo xenograft imaging and tumor tracking

Suitable for -breast cancer research -triple-negative breast cancer model studies -tumor growth and metastasis studies -cell migration and invasion assays drug screening and cytotoxicity testing -fluorescence microscopy and live-cell imaging -3d tumor spheroid and organoid co-culture models -tumor microenvironment and cancer-associated fibroblast interaction studies -in vivo xenograft imaging and tumor tracking studies and research applications

where approved by institutional protocols

Suitable for where approved by institutional protocols 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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