CONNECTED UPSTREAM BIOPROCESSING
Brochures and specifications | 2023 | WatersInstrumentation
Direct measurement of critical process and product attributes is essential for accelerating bioprocess development and ensuring robust drug product manufacturing workflows. Integrating real-time analytical data enables faster decision making, reduces risk of batch failures, and streamlines upstream processing.
The primary goal is to demonstrate how coupling a high-throughput bioreactor system with an at-line LC-MS platform can enhance data connectivity and process understanding. By linking the Sartorius Ambr 250 HT Multi-parallel Bioreactor with the Waters BioAccord LC-MS System, laboratories can automate sample handling, achieve rapid data acquisition, and make informed decisions to accelerate development and product release.
The workflow integrates:
This integrated platform supports:
As bioprocessing workflows become more digitized, future developments may include:
The coupling of the Sartorius Ambr 250 HT system with the Waters BioAccord LC-MS platform exemplifies how seamless data connectivity enhances process insight, accelerates decision making, and promotes robust bioprocess development. This integrated approach is a key enabler for efficient, data-driven upstream operations.
LC/TOF, LC/HRMS, LC/MS
IndustriesPharma & Biopharma
ManufacturerWaters
Summary
Significance of Topic
Direct measurement of critical process and product attributes is essential for accelerating bioprocess development and ensuring robust drug product manufacturing workflows. Integrating real-time analytical data enables faster decision making, reduces risk of batch failures, and streamlines upstream processing.
Objectives and Study Overview
The primary goal is to demonstrate how coupling a high-throughput bioreactor system with an at-line LC-MS platform can enhance data connectivity and process understanding. By linking the Sartorius Ambr 250 HT Multi-parallel Bioreactor with the Waters BioAccord LC-MS System, laboratories can automate sample handling, achieve rapid data acquisition, and make informed decisions to accelerate development and product release.
Methodology and Used Instrumentation
The workflow integrates:
- Sartorius Ambr 250 HT Multi-parallel Bioreactor for small-scale cell culture and automated sampling
- Waters BioAccord LC-MS System for at-line analysis of intact mass and product quality attributes
Main Results and Discussion
- Streamlined setup and enhanced data fidelity through bi-directional connectivity
- Accelerated access to critical analytical data reducing the time to decision points
- Improved understanding of process variability, leading to more robust and de-risked upstream operations
Benefits and Practical Applications
This integrated platform supports:
- High-throughput process development with minimal manual intervention
- Real-time monitoring of product quality attributes to ensure consistent batch performance
- Data-driven decision making for faster scale-up and commercialization
Future Trends and Potential Applications
As bioprocessing workflows become more digitized, future developments may include:
- Integration with advanced data analytics and machine learning for predictive process control
- Extended automation in sampling and data interpretation to further shorten development timelines
- Cloud-based platforms for centralized data management and collaborative research
Conclusion
The coupling of the Sartorius Ambr 250 HT system with the Waters BioAccord LC-MS platform exemplifies how seamless data connectivity enhances process insight, accelerates decision making, and promotes robust bioprocess development. This integrated approach is a key enabler for efficient, data-driven upstream operations.
References
- Waters Corporation. Connected Upstream Bioprocessing brochure. Milford, MA; 2023.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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