Fast & accurate protein quantification with Lunatic
Technical notes | 2020 | Unchained LabsInstrumentation
Protein quantification underpins research, quality control and biotherapeutic development. Traditional methods relying on individual measurements and manual dilutions are time-consuming, sample-intensive and prone to error. A high-throughput, low-volume, dilution-free approach that accurately measures a broad concentration range would significantly improve efficiency and data reliability across analytical chemistry and bioprocess workflows.
This technical note evaluates the Lunatic UV/Vis protein quantification platform. Key goals include:
The Lunatic platform streamlines routine and high-concentration protein assays by:
Opportunities for advancing protein quantification include:
The Lunatic UV/Vis platform offers a versatile, high-throughput solution for precise protein quantification across a broad dynamic range. By combining microfluidic sampling, full-spectrum acquisition and advanced algorithms, it reduces manual intervention and sample requirements while ensuring reproducible, accurate results for research and biomanufacturing applications.
Particle characterization, UV–VIS spectrophotometry
IndustriesProteomics
ManufacturerUnchained Labs
Summary
Importance of the Topic
Protein quantification underpins research, quality control and biotherapeutic development. Traditional methods relying on individual measurements and manual dilutions are time-consuming, sample-intensive and prone to error. A high-throughput, low-volume, dilution-free approach that accurately measures a broad concentration range would significantly improve efficiency and data reliability across analytical chemistry and bioprocess workflows.
Objectives and Study Overview
This technical note evaluates the Lunatic UV/Vis protein quantification platform. Key goals include:
- Assessing performance across a wide dynamic range (0.02–200 mg/mL).
- Comparing conventional single-wavelength and turbidity-corrected A280 measurements.
- Demonstrating spectral deconvolution in complex lysates.
- Validating standard colorimetric assays (BCA) on the system.
Methodology and Instrumentation
- Lunatic UV/Vis reader (SBS-compatible 96-well plate) and Little Lunatic chip (16-sample format).
- Full spectra acquisition from 230–750 nm using 2 µL sample volumes.
- Microfluidic plates with fixed path lengths (0.1 & 0.7 mm) to prevent cross-contamination and evaporation.
- Applications and algorithms: Protein (Turbidity), Protein (Single point), IgG high concentration extrapolation, Unmix spectral deconvolution, and Standard Curve assays (BCA).
Main Results and Discussion
- Classic A280: Turbidity subtraction in the Protein (Turbidity) application yielded higher and more accurate BSA concentrations versus single-wavelength correction.
- High-concentration IgG: Extrapolation of full-length antibody spectra gave a linear response from 0.1 to 200 mg/mL with low variability (≤4 replicates).
- Complex lysates: The Unmix algorithm effectively separated protein absorbance from nucleic acids, detergents and other impurities, accurately quantifying BSA in DNA-contaminated samples.
- Colorimetric assays: The BCA application produced reproducible standard curves (0.02–2 mg/mL) and matched expected dilutions with octuplicate precision.
Benefits and Practical Applications
The Lunatic platform streamlines routine and high-concentration protein assays by:
- Eliminating manual dilutions and cuvette cleaning.
- Requiring minimal sample volume (2 µL) and microplate consumables.
- Delivering high throughput: 16 samples in 2 minutes or 96 in 5 minutes.
- Ensuring compliance with optional 21 CFR Part 11 software.
Future Trends and Potential Applications
Opportunities for advancing protein quantification include:
- Integration with automated liquid-handling for end-to-end workflows.
- Extension of spectral deconvolution to other biomolecules (nucleic acids, lipids).
- Real-time monitoring of upstream bioprocesses using microfluidic sampling.
- AI-driven data analysis to refine extinction coefficients and improve accuracy.
Conclusion
The Lunatic UV/Vis platform offers a versatile, high-throughput solution for precise protein quantification across a broad dynamic range. By combining microfluidic sampling, full-spectrum acquisition and advanced algorithms, it reduces manual intervention and sample requirements while ensuring reproducible, accurate results for research and biomanufacturing applications.
References
- Walker JM. The Bicinchoninic Acid (BCA) Assay for Protein Quantification. In: Walker JM (ed) The Protein Protocols Handbook. Humana Press, 1996.
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