
inSEIT designs and develops immobilized enzymes to help biotech companies overcome the limitations of current immobilization methods. The company addresses the lack of universal solutions by providing tailored enzyme immobilization services that improve stability, reusability, and integration into industrial processes. Their approach reduces the need for slow, trial-and-error wet-lab iterations by focusing on enzyme-specific optimization.
Funding
Funding not disclosed
Founders
Product
Problem
Enzyme immobilization is a critical step for many industrial bioprocesses, yet there is no universal technology that works for every enzyme. Each enzyme has unique optimal immobilization conditions, and generic approaches often fail to deliver the required stability, reusability, or activity. Current workflows rely heavily on guesswork and lengthy wet-lab trial-and-error, which is slow, inefficient, and frequently results in protein leaching or poor integration into existing processes.
Solution
inSEIT provides design and development services for immobilized enzymes, offering a tailored approach that accounts for the unique characteristics of each enzyme. Instead of applying a one-size-fits-all method, the company works to identify the optimal immobilization strategy for each specific protein, improving its stability and reusability. This approach helps clients avoid the inefficiencies of trial-and-error experimentation and reduces the risk of protein leaching or incompatibility with downstream applications. By focusing on enzyme-specific optimization, inSEIT enables more reliable and effective integration of immobilized enzymes into industrial workflows.
Target Audience
Primary customers are biotechnology and pharmaceutical companies, as well as industrial enzyme users, that require stable, reusable immobilized enzymes for manufacturing, diagnostics, or research applications.
Features
- Custom immobilization design tailored to the specific biochemical properties of each enzyme
- Focus on enhancing enzyme stability, reusability, and resistance to leaching
- Development of immobilization protocols that are compatible with existing industrial processes
- Services aimed at reducing the time and cost associated with traditional wet-lab trial-and-error approaches