3D BioSol™ AT models are based on 3D BioSol™ mini-organs technology. They are engineered to incorporate the most relevant human adipose tissue cells required to recapitulate the naïve adipose tissue.
Using our proprietary methods and media formulations, it is possible to generate mini tissues from different fat deposits, including visceral and subcutaneous adipose tissue.
Our advanced models are designed for high-throughput screening and efficacy and safety testing of drugs affecting adipogenesis, lipid metabolism, and glucose metabolism, as well as adipose tissue's thermogenic and metabolic activity.
The 3D BioSol™ Platform also includes Bonds Biosystems' 2D-to-3D BioSol™ AT transition kit to make the transition between 2D and 3D cultures as seamless as possible. Also, we offer the 3D BioSol™ progenitors kit (undifferentiated), stromal vascular fraction (SVF) spheroids ready to use, and a culture media kit with proprietary formulations for inducing high-yield adipose tissue differentiation.
Bonds Biosystems 3D human adipose tissue models are produced from the human tissue stromal vascular fraction cells of visceral, subcutaneous and breast fat. We designed our AT mini-organs to mimic native visceral and subcutaneous tissues. A high-end QC process ensures uniformity, robust functionality, and reproducibility.
For more info, Contact us!
Using our kit, you can easily transition from 2D to 3D culture workflows. A cell differentiation program is induced by seeding and synchronizing the same batch of stromal vascular fraction cells simultaneously in 2D and 3D using our 3D BioSol™ Platform.
For more information, Contact us!
The 3D BioSol™ progenitors kit was designed to help you gain a deeper understanding of adipogenesis and the mechanisms that drive adipocyte differentiation under standard or special conditions (e.g., disease environment, drug treatment, etc.).
For more information, Contact us!
Copyright © 2024 Bonds Biosystems Corporation - All Rights Reserved.
We use cookies to analyze website traffic and optimize your website experience. By accepting our use of cookies, your data will be aggregated with all other user data.