Description
Specifications Table
| Product Name | Hi-dECM™, Liver Tissue (LdECM), Lyophilizate |
|---|---|
| Quantity/Pack Size | 1GX1 |
| Form | Lyophilizate |
| Grade | Research Grade |
| Application | Cell Culture, Tissue Engineering |
Product Description
Hi-dECM™, Liver Tissue (LdECM), Lyophilizate is a premium-grade decellularized matrix designed for advanced research applications. This product is meticulously processed to retain the natural extracellular matrix (ECM) structure, making it ideal for cell culture and tissue engineering studies. The lyophilized form ensures long-term stability and ease of use.
At eqipped, we understand the importance of high-quality lab supplies in research and educational settings. Our Hi-dECM™, Liver Tissue (LdECM), Lyophilizate is sourced from reliable suppliers and undergoes rigorous quality checks to ensure it meets the highest standards. Whether you are a student, researcher, or educator, this product is a valuable addition to your lab.
Order Now to experience the difference that high-quality decellularized liver matrix can make in your research projects. Shop Now and elevate your scientific endeavors with eqipped.
FAQs
What is the shelf life of Hi-dECM™, Liver Tissue (LdECM), Lyophilizate?
The shelf life of this product is typically 2 years from the date of manufacture when stored properly at -20°C.
Can this product be used for in vivo studies?
While this product is primarily designed for in vitro applications such as cell culture and tissue engineering, it can be used for in vivo studies with proper validation and ethical considerations.
How should I store Hi-dECM™, Liver Tissue (LdECM), Lyophilizate?
Store the product at -20°C. Avoid repeated freeze-thaw cycles to maintain its integrity and effectiveness.
Is this product suitable for clinical research?
Yes, this product is suitable for clinical research. However, it is essential to follow all relevant guidelines and regulations for clinical studies.
What are the applications of Hi-dECM™, Liver Tissue (LdECM), Lyophilizate?
This product is widely used in cell culture, tissue engineering, and regenerative medicine research. It provides a natural scaffold for cell growth and differentiation.





