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

BiologicalHOS: an opportunity for NMR

Presentations |  | SciY/Mestrelab ResearchInstrumentation
Software, NMR
Industries
Energy & Chemicals
Manufacturer
SciY/Mestrelab Research, Bruker

Summary

Significance of the Topic


Nuclear magnetic resonance based evaluation of higher order structure plays a critical role in ensuring the quality and consistency of medium to high molecular weight biologics. As a sensitive and robust analytical approach, 2D NMR allows fine differentiation of conformational states, making it an essential method in biopharmaceutical development and quality control.

Objectives and Study Overview


This work presents an integrated software solution for 2D NMR higher order structure assessment. It describes specialized extensions to a well established data processing platform, enabling streamlined workflows for three complementary analytical methods: pointwise intensity comparison, combined chemical shift difference analysis, and multivariate pattern recognition. The goal is to simplify sample analysis, improve reproducibility, and facilitate interpretation.

Methodology


Data processing follows a standardized pipeline with options for non uniform sampling correction apodization zero filling phase adjustment baseline correction and denoising. Regions of interest are defined to exclude noise. Multiple spectra are then stacked and superimposed to prepare for comparative methods. Users select reference and test data sets and apply three main analytical techniques:
  • Intensity correlation analysis for direct point to point comparison
  • Combined chemical shift and amplitude change measurement
  • Principal component analysis to reveal grouping patterns

Applied Instrumentation


High resolution NMR data are acquired on modern spectrometers. Data processing and analysis use Mnova version 14.1 extended with a biologics higher order structure plug in. This plug in supports interactive workflows for the described methods.

Key Results and Discussion


Intensity correlation plots yield a regression based similarity metric and residual heat maps highlight spectral regions with deviations. Combined chemical shift difference analysis quantifies peak movements and amplitude changes and provides linked views between statistical plots and spectral contours for validation of true structural changes. Principal component analysis reduces each spectrum to score points in two or more dimensions revealing clustering of reference samples and deviation of test samples. Loading plots identify spectral bins driving the differentiation.

Benefits and Practical Applications


  • Rapid detection of subtle structural changes in antibodies and other biologics
  • Quantitative similarity metrics for regulatory documentation
  • Interactive visualization to support decision making in quality control and comparability studies
  • Reproducible workflows via reusable templates and automated region selection

Future Trends and Potential Applications


Advances may include integration of additional multivariate methods machine learning driven feature extraction and cloud based collaborative analysis platforms. Extension to larger multidimensional data sets and automated reporting could further enhance throughput and robustness in biopharma analytical labs.

Conclusion


The described software extensions provide a unified environment for comprehensive higher order structure evaluation by 2D NMR. By combining pointwise comparison combined chemical shift difference metrics and multivariate clustering users gain sensitive reproducible and interpretable assessments of structural integrity in complex biologic samples.

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

Downloadable PDF for viewing
 

Similar PDF

Toggle
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, regressionobservation, observationdata, datamnova, mnovanumber, numberloadings, loadingsdistance, distanceccsd
Mnova BioHOS
Mnova BioHOS
|SciY/Mestrelab Research|Applications
Mnova BioHOS Application Note Mnova BioHOS Application Note Therapeutic pharmaceuticals (drugs) have witnessed a sea change in recent years. The large, dominant group of drugs derived from synthetic, small molecules has been joined by a new type of drug that…
Key words
compostela, compostelasantiago, santiagospain, spainbiohos, biohosmnova, mnovaccsd, ccsdfingerprinting, fingerprintingsee, seeechos, echosnotion, notionspectra, spectrainteractivity, interactivitymestrelab, mestrelabvery, veryclose
MestReNova Manual
MestReNova Manual
2024|SciY/Mestrelab Research|Manuals
MestReNova Manual © 2023 M ESTRELAB RESEARCH Last Revision: 21st Feb 2024 MestReNova 15.0.1 by MESTRELAB RESEARCH This is the manual of MestReNova 15.0.01 MestReNova © 2024 MESTRELAB RESEARCH All rights reserved. No parts of this work may be reproduced…
Key words
mestrenova, mestrenovamnova, mnovayou, younmr, nmrclicking, clickingmschrom, mschrommultiplet, multipletspectrum, spectrummenu, menumultiplets, multipletsprocessing, processingcan, canspectra, spectraprediction, predictionstacked
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