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Big Kahuna Biologics formulation

Guides | 2021 | Unchained LabsInstrumentation
Sample Preparation
Industries
Pharma & Biopharma
Manufacturer
Unchained Labs

Summary

Importance of the topic


Automating biologics formulation development addresses key challenges in drug discovery and development by increasing throughput, reducing manual error, and conserving valuable material. Integrated workflows for buffer preparation, pH control, stability testing, and analytical characterization accelerate decision making and improve reproducibility in formulation science.

Aims and Study Overview


This workflow guide presents the Big Kahuna platform designed to fully automate end-to-end biologics formulation tasks. It aims to streamline buffer exchange, pH measurement, viscosity and turbidity assessment, visible particle inspection, and stress testing for accelerated stability studies, enabling rapid screening of multiple formulation candidates.

Methodology and Instrumentation


Key automated operations include:
  • Versatile liquid handling for low- and high-viscosity solutions via positive displacement tips
  • Plate-based buffer exchange and vial capping/decapping
  • Multi-channel pH measurement and viscosity station for high-throughput analysis
  • On-deck visible particle detection, turbidity, and color measurement
  • Automated agitation, temperature stress (–20 to 180 °C), and freeze/thaw cycling

Used Instrumentation


  • Big Kahuna configurable deck with modules: 4-tip pH probe, buffer exchange, viscosity station, visual inspection, vortexing, heating/cooling/stirring, capping/decapping, storage bays, wash station
  • Third-party on-deck integrations: DLS, UV-Vis plate reader, centrifuge, plate sealer, incubators, shake blocks, freeze/thaw systems
  • Virtual integration: HPLC, cIEF

Main Results and Discussion


Platform performance highlights include pH measurement of a 96-well plate in under 45 minutes (0–14 pH range, ±0.03 pH accuracy), viscosity measurements from 1 to 100 cP (±0.5 cP +10%), turbidity detection across 10–1 000 NTU (≤5% error), and visual particle sizing down to 80 µm. Automated buffer exchange and high-throughput stress studies support robust formulation screening.

Benefits and Practical Applications


By integrating multiple analytical assays on a single platform, Big Kahuna reduces hands-on time, minimizes sample consumption, and ensures consistent data capture. Applications include developability screening, design-of-experiments to optimize pH, viscosity, and stability, and regulatory-compliant particle and turbidity testing.

Future Trends and Potential Uses


Future enhancements may incorporate artificial intelligence for predictive formulation design, advanced microfluidic modules for further material reduction, real-time data analytics, and expanded connectivity with cloud-based LIMS. Continuous processing and modular add-ons will further streamline biologics development pipelines.

Conclusion


The Big Kahuna platform offers a comprehensive, configurable solution to automate biologics formulation workflows. Its high throughput, multi-assay integration, and flexible deck layout empower researchers to accelerate candidate selection, improve reproducibility, and drive innovation in biopharmaceutical development.

Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.

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