NeoFull-Thickness™ 3D Human Melanoma Skin Mode
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Product Data Sheet
Technical Documentation
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Product Overview
Description
The NeoFull-Thickness™ 3D Human Melanoma Skin Model is a fully stratified, organotypic in vitro model that accurately replicates the structural and functional complexity of human skin containing melanoma tumors. This advanced 3D model integrates human dermal fibroblasts, epidermal keratinocytes, and melanoma cells within a native-like extracellular matrix, providing a physiologically relevant platform for cancer research and preclinical drug development.
The model expresses all key 3D skin cancer markers and offers a reliable, human-relevant alternative to animal testing, aligning with global regulatory initiatives such as the FDA Modernization Act 2.0 and the EU Cosmetics Regulation.
Key Features
NeoFull-Thickness™ 3D Human Melanoma Skin Mode
Product #: NEP3D2-6
Format: 6-well plates
Storage Conditions: 37°C incubator with 5% CO2
Storage & Handling
• Storage: Maintain plates at 37°C in a humidified 5% CO2 incubator
• Media Replacement: Replace maintenance media every 48-72 hours
• Shipping: Models shipped in specialized transport media at ambient temperature (receive and process within 24-48 hours)
Quick Facts
Product Type
3D Tissue Model
Viability
High viability
Applications
-Oncology Research: Melanoma progression, metasta…
Availability
In Stock • Global Shipping
Technical Specifications
Primary Applications
Applications & Use Cases
Primary Applications
-Oncology Research: Melanoma progression
Suitable for -oncology research: melanoma progression studies and research applications
metastasis
Suitable for metastasis studies and research applications
and drug resistance studies -Drug Screening: High-throughput efficacy and toxicity testing -Immuno-oncology: Immune cell infiltration and checkpoint inhibitor evaluation -Personalized Medicine: Patient-derived tumor models for tailored therapy selection
Suitable for and drug resistance studies -drug screening: high-throughput efficacy and toxicity testing -immuno-oncology: immune cell infiltration and checkpoint inhibitor evaluation -personalized medicine: patient-derived tumor models for tailored therapy selection 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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