Sayenza Biosciences has developed a fully automated platform for the efficient extraction and processing of adipose tissue to enrich regenerative stem cells for therapeutic applications. This technology addresses the challenges of limited fat volume, labor-intensive procedures, and slow processing times, enabling enhanced patient outcomes in regenerative medicine.
Funding
$3.9M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Current methods for processing adipose tissue for regenerative medicine and aesthetic applications face challenges including limited fat volume, labor-intensive procedures, slow processing times, and unpredictable graft outcomes. These inefficiencies hinder the effective utilization of fat's regenerative potential.
Solution
Sayenza Biosciences offers a fully automated, reusable platform designed for efficient extraction and processing of adipose tissue, enriching regenerative cells for diverse therapeutic applications. The platform integrates solutions to address the key challenges in fat utilization, including limited volumes, labor-intensive steps, slow processing, and unpredictable graft quality. By automating the processing and refinement stages, the system enhances regenerative cell enrichment, ensuring a ready-to-use therapeutic fat graft. This comprehensive approach unlocks a new universe of personalized medical applications by harnessing the power of fat.
Target Audience
The primary target audience includes medical professionals in aesthetics and regenerative medicine, such as plastic surgeons and orthopedic surgeons, seeking efficient and reliable solutions for adipose tissue processing.
Features
- Minimally invasive fat extraction and collection
- Automated processing with regenerative cell enrichment
- Fully automated, reusable, and self-contained platform
- High-precision processing for consistent results
- Streamlined preparation of lipoaspirate for large-volume fat grafting and nanofat applications
- Integrated washing and mechanical processing to preserve stem cell viability