Related Experiment Video
Updated: Jul 26, 2026

Mammary Transplantation of Stromal Cells and Carcinoma Cells in C57BL/6J Mice
Published on: August 12, 2011
Supercharged Mechanical Stromal-cell Transfer (MEST)
1Mest Health Services, Aesthetic and Plastic Surgery Department, Izmir, Turkey.
This study introduces a novel "supercharged" regenerative medicine technique by combining platelet-rich plasma (PRP) with fat-derived stromal cells. The innovative method significantly increases cell yield and volume, enhancing therapeutic potential.
Area of Science:
- Regenerative Medicine
- Biotechnology
- Cell Biology
Background:
- Platelet-rich plasma (PRP) and fat-derived stromal cells are leading methods in regenerative medicine.
- Mechanical processing enhances fat-derived stromal cell applications.
- Combining PRP and stromal cells improves outcomes, but current methods involve separate product mixing.
Purpose of the Study:
- To develop and evaluate a novel method for combining PRP and fat-derived stromal cells.
- To enhance cell yield and viability in regenerative medicine applications.
- To investigate the efficacy of pre-mixing plasma with adipose tissue before mechanical stromal cell isolation.
Main Methods:
- Adipose tissue and blood samples from eight volunteers were used.
- Fat tissue was mixed with platelet-poor plasma (PPP) before mechanical stromal cell isolation using sharp blades.
- Isolated PRP was added to the processed stromal cells, creating a "supercharged" product.
- Cell number and viability were assessed using dual fluoroscopy and statistical analysis.
Main Results:
- The novel method yielded twice the volume and 4.7 times more cells compared to the saline control group (P < 0.001).
- The enhanced cell yield is attributed to the "binding" effect of plasma proteins.
- Utilizing PPP, a "waste product," increased cell count and overall potential efficiency when combined with PRP.
Conclusions:
- The "supercharged" method significantly boosts cell yield and volume by integrating PRP with fat-derived stromal cells early in the process.
- This innovative approach optimizes the use of biological "waste" products like PPP to enhance regenerative therapies.
- Further clinical studies are necessary to validate the clinical efficacy of this novel technique.
More Related Videos
10:03Transplantation of Induced Pluripotent Stem Cell-derived Mesoangioblast-like Myogenic Progenitors in Mouse Models of Muscle Regeneration
Published on: January 20, 2014
10:30Mesenchymal Stromal Cell Culture and Delivery in Autologous Conditions: A Smart Approach for Orthopedic Applications
Published on: December 8, 2016