GrowDex® is an animal-free hydrogel that enables complete control over the culture environment for cells.
GrowDex can be used in a wide range of cell-based assays such as microscopic imaging or metabolic activity measurement. GrowDex has been validated on various cell models and applications including primary hepatocytes, patient derived cells, 3D organoid formation, hepatocyte toxicity, stem cell proliferation and differentiation, tumour cell migration and invasion, neurite outgrowth and network formation.
For research use only. Not for use in diagnostic procedures.
GrowDex has been designed to provide a support matrix for the culture of cells in a wide range of applications. It comprises of two components, nanofibrillar cellulose (NFC) and ultra-pure water. The length of the nanofibrils ranges from 200-300 μm, with a diameter in the nanometer scale varying from 5-100 nm.
The product is supplied sterilized, ready to use and can be utilized in a variety of cell culture applications, such as 3D spheroid or organoid formation.
Benefits:
Storage and shelf-life:
Concentration
GrowDase™ enzyme breaks down GrowDex hydrogel to form a solution in an easy one step efficient cell recovery process. 3D cell structures such as spheroids, organoid or biopsies are retained with no impact on cell viability or functionality. Liberated cells can be used in gene or protein expression studies or for future experiments.
Brand |
GrowDex®
|
---|---|
Quantity |
1 x 2.5 mL
|
Shipping Conditions |
Shipped Ambient
|
Storage Conditions |
Ambient
|
Here we establish methodologies for 3D cell culture of the common neuronal cell line SH-SY5Y within the GrowDex® hydrogel to...
Here, adipose derived MSCs (ADMSCs) were cultured in nanofibrillar cellulose, GrowDex®, under various conditions for 1 week to...
In this study, the morphology development of MCF7 cells in wood-derived nanofibrillar cellulose hydrogel GrowDex® (3D), and in...
In our application note, we evaluate the compatibility of GrowDex, a wood-derived nanofibrillar cellulose hydrogel 3D cell culture...
Here we establish methodologies for 3D cell culture of human iPSC-derived neural progenitors within nanofibrillar cellulose (NFC)...
Here we establish methodologies for 3D cell culture of human iPSC-derived neural progenitors within nanofibrillar cellulose (NFC)...
We are here to answer your questions.