A look under the hood of Lunatic
Technical notes | 2020 | Unchained LabsInstrumentation
The accurate quantification of proteins and nucleic acids is a cornerstone of modern life science research and diagnostics. It underpins applications from gene expression analysis to biotherapeutic development and quality control.
This technical note presents the design principles and performance of the Lunatic UV/Vis spectrophotometer, including its two formats: a plate-based system for up to 96 samples and a miniaturized chip-based device for 16 samples. It outlines how Lunatic leverages advanced optics, microfluidics, and software for rapid and reliable measurements.
The Lunatic systems apply Beer–Lambert law to full UV/Vis absorbance spectra collected from 230 to 750 nm using 2 µL samples in fixed-pathlength microcuvettes. Automated positioning, intelligent fill detection, dark current correction, stray light compensation, and real-time lamp output calibration ensure linear, accurate readings from 0.03 to 275 OD. Data processing includes Savitzky–Golay smoothing and customizable background corrections such as turbidity or single-point subtraction.
Lunatic delivers a broad dynamic range with high precision (0.001 OD at low absorbance, <1.5% CV up to 200 OD) and merges dual-pathlength data to extend measurements to 275 OD. Unmix algorithms deconvolute complex spectra to quantify targets amid common impurities, while Homebrew tools support customized calculations and standard curve assays for BCA, Bradford, and Lowry methods.
Advances in microfluidics and integration with robotics will further increase throughput. Machine-learning–driven spectral unmixing may enhance analysis of complex mixtures. Multiplexed assays and cloud-based data management will support remote collaboration and advanced QC workflows.
By combining innovative optical design, fixed-pathlength microfluidics, and advanced signal processing, Lunatic offers precise, accurate, and rapid UV/Vis quantification of proteins and nucleic acids. Its wide dynamic range, low sample requirements, and flexible software suite address diverse research and industrial demands.
Particle characterization, UV–VIS spectrophotometry
IndustriesProteomics
ManufacturerUnchained Labs
Summary
Importance of the Topic
The accurate quantification of proteins and nucleic acids is a cornerstone of modern life science research and diagnostics. It underpins applications from gene expression analysis to biotherapeutic development and quality control.
Study Objectives and Overview
This technical note presents the design principles and performance of the Lunatic UV/Vis spectrophotometer, including its two formats: a plate-based system for up to 96 samples and a miniaturized chip-based device for 16 samples. It outlines how Lunatic leverages advanced optics, microfluidics, and software for rapid and reliable measurements.
Used Instrumentation
- Lunatic: Plate reader measuring 96 samples in approx. 5 minutes with a 0.03–275 OD range.
- Little Lunatic: Chip-based unit measuring 16 samples in approx. 2 minutes.
- Xenon flashlamp: Pulsed light source covering 230–750 nm and lasting over two million flashes.
- Polychromatic spectrophotometer block: Compact design with no moving parts and 2–2.5 nm spectral resolution.
- Fixed-pathlength microfluidic consumables: COC strips and plates with 0.5 mm, 0.1 mm, and 0.7 mm microcuvettes.
Methodology and Instrumentation
The Lunatic systems apply Beer–Lambert law to full UV/Vis absorbance spectra collected from 230 to 750 nm using 2 µL samples in fixed-pathlength microcuvettes. Automated positioning, intelligent fill detection, dark current correction, stray light compensation, and real-time lamp output calibration ensure linear, accurate readings from 0.03 to 275 OD. Data processing includes Savitzky–Golay smoothing and customizable background corrections such as turbidity or single-point subtraction.
Main Results and Discussion
Lunatic delivers a broad dynamic range with high precision (0.001 OD at low absorbance, <1.5% CV up to 200 OD) and merges dual-pathlength data to extend measurements to 275 OD. Unmix algorithms deconvolute complex spectra to quantify targets amid common impurities, while Homebrew tools support customized calculations and standard curve assays for BCA, Bradford, and Lowry methods.
Benefits and Practical Applications
- Minimal sample volume (2 µL) preserves precious biomaterials.
- High throughput and fast cycle times accelerate workflows.
- Built-in apps streamline nucleic acid purity checks and protein quantification.
- Integration with liquid handlers enables automated, hands-off processing.
Future Trends and Opportunities
Advances in microfluidics and integration with robotics will further increase throughput. Machine-learning–driven spectral unmixing may enhance analysis of complex mixtures. Multiplexed assays and cloud-based data management will support remote collaboration and advanced QC workflows.
Conclusion
By combining innovative optical design, fixed-pathlength microfluidics, and advanced signal processing, Lunatic offers precise, accurate, and rapid UV/Vis quantification of proteins and nucleic acids. Its wide dynamic range, low sample requirements, and flexible software suite address diverse research and industrial demands.
Reference
- H. Perkampus, UV-VIS Spectroscopy and Its Applications, Springer Berlin Heidelberg, 2013.
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