The Cellanova SVF Kit provides an innovative system that allows you to isolate a high concentration of mesenchymal stem cells (MSCs) without the use of enzymes.
Compared to enzymatic systems, it offers faster processing times and significantly lower investment costs — all while ensuring high cellular yield and purity.
With Cellanova SVF, stromal vascular fraction (SVF) cells are completely isolated from adipose tissue, delivering a product that is rich in nucleated and viable regenerative cells.
The final output is devoid of fibrotic tissue, adipocytes, and triglycerides, ensuring a clean and safe concentrate.
Using a 41-micron filtration system, the kit guarantees a smooth, clog-free injection experience.
Process Overview:
| Stage | Description | Volume (approx.) |
|---|---|---|
| Lipoaspirate Material | Collected adipose tissue | 40 cc |
| Decanted Fat | Refined fat, separated from debris | 20 cc |
| Condensed Product | Triglyceride-, RBC-, and WBC-free | 6–8 cc |
| Final SVF-Rich Fraction | High-purity regenerative cell concentrate | — |
The isolated SVF fraction contains mesenchymal stem cells capable of rapid proliferation and differentiation into various cell types within the body’s natural microenvironment.
Unlike conventional fat grafting, Cellanova SVF offers a truly regenerative therapeutic approach, supporting tissue repair and rejuvenation at the cellular level.
With Cellanova SVF, your final product contains countable, viable cells that can be visually verified under any microscope.
Using fluorescence microscopy, you can easily distinguish nucleated vs. non-nucleated cells, count them, and assess their viability in real time — providing tangible evidence of your regenerative yield.
| Feature | Description |
|---|---|
| Enzyme-free isolation | Preserves cell integrity and viability |
| High MSC concentration | Enriched in mesenchymal stem cells |
| 41-μm filtration system | Ensures clean and safe injectable product |
| Fast & cost-effective | Shorter procedure time, lower system cost |
| Microscopic verification | Visual confirmation of live SVF cells |