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Human Primary Diabetic Skeletal Muscle Cells

NBPDS011 Primary Cells
$900.00
Starting price per unit
Human Primary Diabetic Skeletal Muscle Cells
In Stock 1ml
Product Type Human Type II Diabetes E…
Viability >95% viable (Trypan Blue exclusion)
Storage Store in liquid nitrogen vapor phase (-196°C) for long-term. Ship on dry ice (-80°C).
Shelf Life Very stable in the Liquid Nitrogen Vapor Phase

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Quality Certified
Global Shipping Available
Technical Support Included
Documentation 1 files

Product Overview

Description

Human Primary Skeletal Muscle Cells derived from individuals with diabetes. These specialized cells are significant for studying the effects of diabetes on muscle metabolism, insulin sensitivity, and overall cellular function.

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

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: NBPDS011
Product Format: Frozen
Vial Cell Number: > 5x10[5] cells/vial
Passage:1(P1)
Storage: Liquid Nitrogen, Vapor Phase
Intended Use: Research use only (RUO)

Characterization Markers 

Characterized by positive expression of smooth muscle cell-specific alpha-actin )

Quick Facts
Product Type

Human Type II Diabetes Endothelial Cells

Viability

>95% viable (Trypan Blue exclusion)

Applications

Drug Discovery: Screening novel anti-diabetic com…

Availability

In Stock • Global Shipping

Technical Specifications

Product Type
Human Type II Diabetes Endothelial Cells
Viability
>95% viable (Trypan Blue exclusion)
Proliferative Capability
Primary cells capable of multiple passages when using recommended medium and proper handling
Storage Conditions
Store in liquid nitrogen vapor phase (-196°C) for long-term. Ship on dry ice (-80°C).
Shelf Life
Very stable in the Liquid Nitrogen Vapor Phase
Product Code
NBPDS011
Size/Format
1ml
Primary Applications
Drug Discovery: Screening novel anti-diabetic compounds (e.g. investigating if a drug can resensitize these cells to insulin independent of the pancreas). Mechanistic Studies: Using siRNA or CRISPR-Cas9 to knock down specific genes (e.g. GLUT4 PGC-1) to understand their role in the maintenance of the diabetic phenotype. Exercise Mimetics: Studying how electrical pulse stimulation (EPS) or pharmacological agents affect contraction-mediated glucose uptake in a "diabetic" environment. Inflammation: Investigating the role of pro-inflammatory cytokines (IL-6 TNF-) secreted by diabetic muscle.

Applications & Use Cases

Primary Applications
Drug Discovery: Screening novel anti-diabetic compounds (e.g.

Suitable for drug discovery: screening novel anti-diabetic compounds (e.g. studies and research applications

investigating if a drug can resensitize these cells to insulin independent of the pancreas). Mechanistic Studies: Using siRNA or CRISPR-Cas9 to knock down specific genes (e.g.

Suitable for investigating if a drug can resensitize these cells to insulin independent of the pancreas). mechanistic studies: using sirna or crispr-cas9 to knock down specific genes (e.g. studies and research applications

GLUT4

Suitable for glut4 studies and research applications

PGC-1) to understand their role in the maintenance of the diabetic phenotype. Exercise Mimetics: Studying how electrical pulse stimulation (EPS) or pharmacological agents affect contraction-mediated glucose uptake in a "diabetic" environment. Inflammation: Investigating the role of pro-inflammatory cytokines (IL-6

Suitable for pgc-1) to understand their role in the maintenance of the diabetic phenotype. exercise mimetics: studying how electrical pulse stimulation (eps) or pharmacological agents affect contraction-mediated glucose uptake in a "diabetic" environment. inflammation: investigating the role of pro-inflammatory cytokines (il-6 studies and research applications

TNF-) secreted by diabetic muscle.

Suitable for tnf-) secreted by diabetic muscle. 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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