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Bioscibex

<name>Bioscibex</name> <description>Bioscibex offers the SW1NGO platform, an automated seed‑train solution that consolidates cell culture from vial thawing to pilot‑scale volumes in a single step. The system eliminates multiple manual passaging steps, reduces contamination risk, and incorporates built‑in single‑use cell density measurement to minimize sampling. By streamlining upstream bi

Founded 20245300+ followers
Updated 16 months ago

Funding

$100K 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.

FF
Funding rounds are not available yet.

Founders

Product

Problem

Traditional bioprocessing methods for biologics and cell therapies often involve multiple vessels and manual steps, increasing the risk of contamination and process variability. Existing bioreactor systems can be inflexible, requiring significant capital investment and extensive cleanroom space.

Solution

Bioscibex offers a single-use bioreactor system designed to simplify and automate cell culture processes, reducing manual interventions and minimizing contamination risks. The system accommodates volumes from 30 mL to 30 L within the same vessel, providing a 1000:1 turndown ratio for seamless scalability across the entire product lifecycle, from research to manufacturing. Integrated sensors and data-driven predictive models enable precise control and proactive monitoring of cell expansion, ensuring optimal growth conditions. The modular design allows for customization with perfusion, Raman analytics, and additional components to meet specific process requirements.

Target Audience

The primary target audience includes biopharmaceutical companies, cell therapy manufacturers, and research institutions involved in biologics development and cell-based therapies.

Features

  • Single-use vessel with a 1000:1 turndown ratio for cell expansion from 30mL to 30L
  • Fully automated, closed system to streamline cell expansion from vial thawing to large-scale production
  • Integrated sensors for real-time monitoring of DO, pH, pCO2, and capacitance-based cell counting
  • Modular design allowing integration of perfusion, Raman analytics, and additional pumps and gases
  • Data science-driven predictive models for anticipating cell behavior and identifying potential problems
  • Minimized cleanroom surface requirements and reduced manual work through automation
  • Simplified consumable design with integrated mixing technology, eliminating the need for complex single-use bags
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