World's Best Scientists 2026 revealed!

D-Index & Metrics

Chemistry

D-Index
71
Citations
19245
World Ranking
5500
National Ranking
317

Biology and Biochemistry

D-Index
74
Citations
20523
World Ranking
5580
National Ranking
432

Overview

Mark R. Wormald is affiliated with the University of Oxford in the United Kingdom. Their research spans multiple fields, including Biochemistry, Genetics and Molecular Biology, Chemistry, and Engineering, with a concentration on Molecular Biology and Physical and Theoretical Chemistry as prominent subfields.

Their academic output includes 20 publications in Biochemistry, Genetics and Molecular Biology, 18 in Chemistry, and 4 in Engineering, with notable emphasis on Molecular Biology, Spectroscopy, Organic Chemistry, and Electrical and Electronic Engineering within sub-disciplines. Key research topics covered by Wormald include various chemistry research topics, electron spin resonance studies, molecular junctions and nanostructures, molecular spectroscopy and chirality, thermodynamics and calorimetric analyses, analytical chemistry and chromatography, as well as microbial metabolic engineering and bioproduction.

Wormald has contributed to publications in venues such as the International Journal of Molecular Sciences and the Journal of Chemical Education. Two recent papers include:

  • "A Review of Alpha-1 Antitrypsin Binding Partners for Immune Regulation and Potential Therapeutic Application" published in 2022 in the International Journal of Molecular Sciences
  • "Benefits of Simulations as Remote Exercises During the COVID-19 Pandemic: An Enzyme Kinetics Case Study" published in 2020 in the Journal of Chemical Education

The scientist has collaborated extensively with several co-authors, including Peter Atkins, R. George Ratcliffe, and Julio de Paula, reflecting a broad collaborative network within their research fields.

In addition to articles, Wormald has worked on book publications. Notably, they authored "Physical Chemistry for the Life Sciences" published by Oxford University Press in 2023, which has received citations in the academic community.

Best Publications

  • The Impact of Glycosylation on the Biological Function and Structure of Human Immunoglobulins

    James N. Arnold;Mark R. Wormald;Robert B. Sim;Pauline M. Rudd

  • Antibody Domain Exchange Is an Immunological Solution to Carbohydrate Cluster Recognition

    Daniel A. Calarese;Christopher N. Scanlan;Michael B. Zwick;Songpon Deechongkit

  • Glycosylation changes of IgG associated with rheumatoid arthritis can activate complement via the mannose-binding protein.

    Rajneesh Malhotra;Mark R. Wormald;Pauline M. Rudd;Per B. Fischer

  • The Broadly Neutralizing Anti-Human Immunodeficiency Virus Type 1 Antibody 2G12 Recognizes a Cluster of α1→2 Mannose Residues on the Outer Face of gp120

    Christopher N. Scanlan;Ralph Pantophlet;Mark R. Wormald;Erica Ollmann Saphire

  • Antibodies inhibit prion propagation and clear cell cultures of prion infectivity

    David Peretz;R. Anthony Williamson;Kiotoshi Kaneko;Julie Vergara

  • High Throughput Isolation and Glycosylation Analysis of IgG–Variability and Heritability of the IgG Glycome in Three Isolated Human Populations

    Maja Pucić;Ana Knezević;Jana Vidic;Barbara Adamczyk

  • Statistical analysis of the protein environment of N-glycosylation sites: implications for occupancy, structure, and folding.

    Andrei-J. Petrescu;Adina-L. Milac;Stefana M. Petrescu;Raymond A. Dwek

  • The Glycosylation and Structure of Human Serum IgA1, Fab, and Fc Regions and the Role of N-Glycosylation on Fcα Receptor Interactions

    Taj S. Mattu;Richard J. Pleass;Antony C. Willis;Mogens Kilian

  • Use of hydrazine to release in intact and unreduced form both N- and O-linked oligosaccharides from glycoproteins.

    T Patel;J Bruce;A Merry;C Bigge

  • Conformational studies of oligosaccharides and glycopeptides: complementarity of NMR, X-ray crystallography, and molecular modelling.

    Mark R. Wormald;Andrei J. Petrescu;Ya-Lan Pao;Ann Glithero

  • Secretory IgA N- and O-glycans provide a link between the innate and adaptive immune systems.

    Louise Royle;Anja Roos;David J. Harvey;Mark R. Wormald

  • Glycoproteins: glycan presentation and protein-fold stability

    Mark R Wormald;Raymond A Dwek

  • Glycosylation differences between the normal and pathogenic prion protein isoforms.

    Pauline M. Rudd;Tama Endo;Cristina Colominas;Darlene Groth

  • Roles for glycosylation of cell surface receptors involved in cellular immune recognition.

    Pauline M Rudd;Mark R Wormald;Robyn L Stanfield;Mingdong Huang

  • Changes in IgG glycoform levels are associated with remission of arthritis during pregnancy.

    G.A.W. Rook;J. Steele;R. Brealey;A. Whyte

  • Variations in oligosaccharide-protein interactions in immunoglobulin G determine the site-specific glycosylation profiles and modulate the dynamic motion of the Fc oligosaccharides

    Mark R. Wormald;Pauline M. Rudd;David J. Harvey;Su-Chen Chang

  • ANALYSIS OF GLYCOPROTEIN-ASSOCIATED OLIGOSACCHARIDES

    Raymond A. Dwek;Christopher J. Edge;David J. Harvey;Mark R. Wormald

  • Human Serum IgM Glycosylation IDENTIFICATION OF GLYCOFORMS THAT CAN BIND TO MANNAN-BINDING LECTIN

    James N. Arnold;Mark R. Wormald;David M. Suter;Catherine M. Radcliffe

  • maternally expressed gene1 Is a Novel Maize Endosperm Transfer Cell–Specific Gene with a Maternal Parent-of-Origin Pattern of Expression

    Jose F. Gutiérrez-Marcos;Liliana M. Costa;Corinne Biderre-Petit;Bouchaib Khbaya

  • Challenges of glycosylation analysis and control: an integrated approach to producing optimal and consistent therapeutic drugs.

    Peiqing Zhang;Susanto Woen;Tianhua Wang;Brian Liau

  • Glycosylation changes on serum glycoproteins in ovarian cancer may contribute to disease pathogenesis

    Radka Saldova;Mark R. Wormald;Raymond A. Dwek;Pauline M. Rudd

Frequent Co-Authors

Raymond A. Dwek
Raymond A. Dwek University of Oxford
George W. J. Fleet
George W. J. Fleet University of Oxford
Pauline M. Rudd
Pauline M. Rudd University College Cork
Terry D. Butters
Terry D. Butters University of Oxford
Robert J. Nash
Robert J. Nash Aberystwyth University
Atsushi Kato
Atsushi Kato University of Toyama
Ghislain Opdenakker
Ghislain Opdenakker Rega Institute for Medical Research
Louise Royle
Louise Royle University College Dublin
Naoki Asano
Naoki Asano Hokuriku University
Frances M. Platt
Frances M. Platt University of Oxford

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