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Human breast adenocarcinoma cells (SK-BR-3-Luc)

Catalog Number: LC0031

Price:
$1191.67
Specifications Overview Application Downloads Related products

Specifications

Product Information
Product Name Human breast adenocarcinoma cells (SK-BR-3-Luc)
Specifications 1*10^6
Storage and transportation Dry ice preservation/T25 live cell transportation.
Cell name SK-BR-3-Luc
Cell morphology Epithelioid, adherent cell
Passage ratio 1:2~1:3
species Human
Construction method Virus Method
Mycoplasma testing negative
Cultivation System 90%McCOYs 5A+10%FBS

Overview

SK-BR-3-Luc human breast adenocarcinoma cells are a sophisticated and versatile line of epithelioid adherent cells that facilitate groundbreaking cancer research offering researchers a robust high-quality model for studying breast cancer mechanisms and developing therapeutic strategies Cryopreserved in dry ice for optimal viability during transportation these cells are cultivated in a nutrient-rich medium comprising 90% McCoy's 5A and 10% FBS enabling a reliable environment for proliferation and experimentation With a negative virus method and a recommended dilution ratio of 1:2 to 1:3 SK-BR-3-Luc cells provide an essential tool for innovative scientific exploration in oncology

Application

The Human breast adenocarcinoma cells (SK-BR-3-Luc) are pivotal for cancer research serving as essential models to investigate the mechanisms of breast cancer progression and to evaluate the efficacy of novel therapeutic agents in vitro By utilizing the efficient preservation method of dry ice for live cell transportation these epithelial adherent cells ensure optimal viability and functionality upon delivery enabling researchers to conduct experiments without compromising cell integrity Furthermore cultured in a medium comprising 90% McCoy's 5A and 10% fetal bovine serum (FBS) SK-BR-3-Luc cells exhibit robust growth and luciferase expression facilitating real-time monitoring of drug response and tumor behavior in experimental settings Ultimately these cells support advancements in breast cancer treatment by fostering a deeper understanding of tumor biology and accelerating the translation of research findings into clinical applications

Downloads

Please note that all services are for research use only. Not intended for any clinical use.

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