Cre-Expressing Human Primary Bladder Smooth Muscle Cells
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Product Overview
Description
Cre-Expressing Human Primary Bladder Smooth Muscle Cells (BSMCs) are specialized cells isolated from the bladder wall. These cells are genetically modified to express Cre recombinase, allowing for targeted genetic manipulation in studies focused on bladder function, smooth muscle biology, and related pathologies.
BSMCs are critical for understanding bladder contraction mechanisms and the role of smooth muscle in bladder disorders.
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-1984Cre
Product Format: Frozen
Vial Cell Number: > 5x10[5] cells/vial
Passage:1(P1)
Storage: Liquid Nitrogen, Vapor Phase
Intended Use: Research use only (RUO)
Cell Characteristics:
- Cell Line Name: Cre-Expressing Human Primary Bladder Smooth Muscle Cells
- Cell Type: Smooth muscle cells
- Origin: Primary cells isolated from human bladder smooth muscle tissue
- Morphology: Typically elongated, spindle-shaped morphology, characteristic of smooth muscle cells
Quick Facts
Product Type
Endothelial Cells (Cre-expressing)
Viability
>95% viable (Trypan Blue exclusion)
Applications
Gene editing studies using the Cre-loxP system fo…
Availability
In Stock • Global Shipping
Technical Specifications
Primary Applications
Applications & Use Cases
Primary Applications
Gene editing studies using the Cre-loxP system for targeted gene manipulation. - Investigation of smooth muscle pathophysiology in bladder disorders like overactive bladder or bladder outlet obstruction. - Research into the role of smooth muscle in bladder function and dysregulation.
Suitable for gene editing studies using the cre-loxp system for targeted gene manipulation. - investigation of smooth muscle pathophysiology in bladder disorders like overactive bladder or bladder outlet obstruction. - research into the role of smooth muscle in bladder function and dysregulation. 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
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