ICPMS
More information
WebinarsAbout usContact usTerms of use
LabRulez s.r.o. All rights reserved. Content available under a CC BY-SA 4.0 Attribution-ShareAlike

Mnova BioHOS

Applications |  | SciY/Mestrelab ResearchInstrumentation
Software, NMR
Industries
Pharma & Biopharma
Manufacturer
SciY/Mestrelab Research

Summary

Significance of the Topic


Nuclear magnetic resonance fingerprinting offers a direct measure of higher order structure for monoclonal antibodies, a critical determinant of their biological activity and therapeutic efficacy. Changes in conformation or dynamics can compromise drug performance, making robust analytical methods essential for quality control.

Objectives and Overview


This application note describes the development of the Mnova BioHOS software suite within MestReNova to streamline 2D NMR fingerprint analysis of monoclonal antibodies. It outlines validation steps, processing workflows, and three core comparison methods: ECHOS, CCSD, and PCA.

Methodology and Instrumentation


  • Sample preparation and validation: buffers, excipient compatibility, temperature tolerance, and concentration checks.
  • NMR experiments: natural-abundance 1H-13C HSQC on 700–900 MHz spectrometers with optimized parameters, non-uniform sampling, and noise reduction.
  • Software platform: Mnova BioHOS for data processing, interactive analysis region selection, and automated fingerprinting routines.

Main Results and Discussion


  • Validation confirmed reproducible spectra at 37 °C versus 25 °C, ensuring sample integrity under test conditions.
  • ECHOS analysis yielded correlation coefficients (R) of 0.935 for identical-temperature spectra and 0.785 for spectra at 37 °C vs 25 °C, with heat maps highlighting local peak shifts and line broadening.
  • CCSD mapping matched 80 key methyl resonances between reference and test spectra, quantifying combined chemical shift differences and amplitude changes to identify the most perturbed sites.
  • PCA of bucketed spectral intensities from multiple reference spectra and elevated-temperature tests produced scores plots that clustered similar conditions and loadings plots that pinpointed discriminating spectral regions.

Benefits and Practical Applications


NMR fingerprinting captures global conformational features of large biopharmaceuticals in a single assay, enabling rapid detection of structural variants and degradation products. Mnova BioHOS integrates acquisition, processing, and multilevel comparison in an intuitive interface suited for R&D and QA/QC environments.

Future Trends and Potential Applications


  • Development of model-based reference libraries for automated pass/fail screening.
  • Extension to other complex biologics such as fusion proteins and glycoproteins.
  • Implementation in regulated quality control workflows for lot release testing.
  • Leveraging ultra-high-field NMR and cryogenically cooled probes to shorten acquisition times and improve sensitivity.

Conclusion


Mnova BioHOS provides a robust, user-friendly solution for 2D NMR fingerprint analysis of monoclonal antibodies, demonstrating sensitivity to subtle higher order structural changes. The ECHOS, CCSD, and PCA workflows offer complementary metrics for comprehensive quality assessment.

Reference


Selected bibliography includes key studies on NMR fingerprinting of mAbs and HOS analysis published in J. Pharm. Biomed. Anal., Anal. Chem., MAbs, and J. Pharm. Sci.

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

Downloadable PDF for viewing
 

Similar PDF

Toggle
Mnova Screen
Mnova Screen
|SciY/Mestrelab Research|Brochures and specifications
Mnova Screen Automatic Mnova analysis Screen tool for fragment based drug screening by NMR Automatic analysis tool for fragment-based drug screening by NMR Mnova Screen: Automatic analysis tool for fragment-based drug screening by NMR An automation software for fast and…
Key words
compostela, compostelasantiago, santiagomnova, mnovaspain, spainscreen, screenhit, hitspectra, spectranmr, nmrhits, hitsfbs, fbsdata, dataautomatic, automaticintensity, intensitybased, basedprocessing
Mnova BioHOS (User Manual)
Mnova BioHOS (User Manual)
2023|SciY/Mestrelab Research|Manuals
BioHOS 3.1 MANUAL Document Number P/N 242 R2 Mnova BioHOS 3.1 | Manual COPYRIGHT ©2023 MESTRELAB RESEARCH S.L. All rights reserved. No parts of this work may be reproduced in any form or by any means - graphic, electronic, or…
Key words
plot, plotpls, plsscores, scoresdmod, dmodmodel, modelfile, filepca, pcaregression, regressiondata, dataobservation, observationmnova, mnovanumber, numberloadings, loadingsdistance, distanceccsd
BiologicalHOS: an opportunity for NMR
BiologicalHOS: an opportunity for NMR
|SciY/Mestrelab Research|Presentations
ECHOS The first version of the plug-in BiologicsHOS was made available in June 2019 (Mnova 14.1) PCA CCSD 2 Preamble The use of NMR to evaluate the higher order structure (HOS) of medium to high MW species has been well…
Key words
ccsd, ccsdechos, echospca, pcabasics, basicsmbiohos, mbiohosamplitude, amplitudehos, hosmnova, mnovaloadings, loadingsplots, plotssuperimpose, superimposereference, referenceregions, regionsfavourite, favouriteinteractivity
Using Mnova Screen to Process, Analyze and Report Ligand-Protein Binding Spectra for Fragment-based Lead Design
September 2014 Using Mnova Screen to Process, Analyze and Report Ligand-Protein Binding Spectra for Fragment-based Lead Design Dr Manuel Perez Senior VP - Mestrelab • 1996: A research project in University of Santiago de Compostela, Spain, developed free MestReC software…
Key words
mnova, mnovaspectra, spectraref, refscout, scoutnmr, nmrmixture, mixturestd, stdpeaks, peakssaved, savedfolder, folderscreen, screenprocessing, processingtrinomial, trinomialnames, namesdata
Other projects
GCMS
LCMS
Follow us
More information
WebinarsAbout usContact usTerms of use
LabRulez s.r.o. All rights reserved. Content available under a CC BY-SA 4.0 Attribution-ShareAlike