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Overview

Richard F. Collins is affiliated with the University of Manchester in the United Kingdom. Their research spans multiple fields, particularly Materials Science, Biochemistry, Genetics and Molecular Biology, and Medicine, with notable contributions across related subfields.

The primary subfields of study include Materials Chemistry, Molecular Biology, Oncology, Organic Chemistry, and Pulmonary and Respiratory Medicine. These areas reflect a broad engagement with both fundamental chemical sciences and applied biomedical research.

The scientist's main research topics cover crystallization and solubility studies, X-ray diffraction in crystallography, magnetism in coordination complexes, lanthanide and transition metal complexes, metal complexes synthesis and properties, drug transport and resistance mechanisms, and advanced biosensing and bioanalysis techniques.

Richard F. Collins has contributed to several publication venues, with multiple papers appearing in The Cambridge Structural Database. Other venues include Angewandte Chemie International Edition, Vaccine, MDPI, and Scientific Reports.

  • Spin-Crossover Properties of an Iron(II) Coordination Nanohoop, 2020, Angewandte Chemie International Edition
  • An assessment of the use of Hepatitis B Virus core protein virus-like particles to display heterologous antigens from Neisseria meningitidis, 2020, Vaccine
  • Structure of ABCB1/P-Glycoprotein in the Presence of the CFTR Potentiator Ivacaftor, 2021, MDPI (MDPI AG)
  • Assembly of the Respiratory Mucin MUC5B: A NEW MODEL FOR A GEL-FORMING MUCIN, 2020, UNC Libraries
  • The Tmem16a chloride channel is required for mucin maturation after secretion from goblet-like cells in the Xenopus tropicalis tadpole skin, 2024, Scientific Reports

Frequent co-authors collaborating with Richard F. Collins include Richard A. Layfield, María José Heras Ojea, Stephen M. Prince, Robert C. Ford, and Jeff M. Van Raden. The regularity of these collaborations indicates ongoing research partnerships.

Best Publications

  • Fmoc-diphenylalanine self assembles to a hydrogel via a novel architecture based on π–π interlocked β-sheets

    Andrew M. Smith;Richard J. Williams;Claire Tang;Paolo Coppo

  • Self-assembled peptide-based hydrogels as scaffolds for anchorage-dependent cells

    Mi Zhou;Andrew M. Smith;Apurba K. Das;Apurba K. Das;Nigel W. Hodson

  • Enzyme-assisted self-assembly under thermodynamic control.

    Richard J. Williams;Andrew M. Smith;Richard Collins;Nigel Hodson

  • Fmoc-Diphenylalanine Self-Assembly Mechanism Induces Apparent pKa Shifts

    Claire Tang;Andrew M. Smith;Richard F. Collins;Rein V. Ulijn;Rein V. Ulijn

  • In Vivo Biomolecule Corona around Blood-Circulating, Clinically Used and Antibody-Targeted Lipid Bilayer Nanoscale Vesicles.

    Marilena Hadjidemetriou;Zahraa Al-Ahmady;Mariarosa Mazza;Richard F Collins

  • Structure of LIMP-2 provides functional insights with implications for SR-BI and CD36

    Dante Neculai;Michael Schwake;Michael Schwake;Mani Ravichandran;Friederike Zunke

  • Cytoskeletal Control of CD36 Diffusion Promotes Its Receptor and Signaling Function

    Khuloud Jaqaman;Hirotaka Kuwata;Nicolas Touret;Richard Collins

  • Detergent-free purification of ABC (ATP-binding-cassette) transporters

    Sonali Gulati;Mohammed Jamshad;Timothy J Knowles;Kerrie A Morrison

  • Identification of a Major Epitope Recognized by PLA2R Autoantibodies in Primary Membranous Nephropathy

    Maryline Fresquet;Thomas A. Jowitt;Jennet Gummadova;Richard Collins

  • Transmembrane Pickets Connect Cyto- and Pericellular Skeletons Forming Barriers to Receptor Engagement.

    Spencer A. Freeman;Anthony Vega;Magdalena Riedl;Richard F. Collins

  • 3-D structural and functional characterization of the purified KATP channel complex Kir6.2–SUR1

    Michael V Mikhailov;Jeff D Campbell;Heidi de Wet;Kenju Shimomura

  • Inhibition of Phosphatidylinositol-4-phosphate 5-Kinase Iα Impairs Localized Actin Remodeling and Suppresses Phagocytosis

    Marc G. Coppolino;Renee Dierckman;Joost Loijens;Richard F. Collins

  • Self-assembly and gelation properties of α-helix versus β-sheet forming peptides

    A. Saiani;A. Mohammed;H. Frielinghaus;R. Collins

  • Purification and 3D Structural Analysis of Oligomeric Human Multidrug Transporter ABCG2

    Christopher A. McDevitt;Richard F. Collins;Michael Conway;Szabolcs Modok

  • The 3D structure of a periplasm-spanning platform required for assembly of group 1 capsular polysaccharides in Escherichia coli

    Richard F. Collins;Konstantinos Beis;Changjiang Dong;Catherine H. Botting

  • Structure of the Neisseria meningitidis outer membrane PilQ secretin complex at 12 A resolution.

    Richard F. Collins;Stephan A. Frye;Ashraf Kitmitto;Robert C. Ford

  • Exploiting Enzymatic (Reversed) Hydrolysis in Directed Self‐Assembly of Peptide Nanostructures

    Apurba K. Das;Richard Collins;Rein V. Ulijn

  • An investigation of the conductivity of peptide nanotube networks prepared by enzyme-triggered self-assembly

    Haixia Xu;Apurba K. Das;Masaki Horie;Majeed S. Shaik

  • Conformational activation of ADAMTS13

    Kieron South;Brenda M. Luken;James T. B. Crawley;Rebecca Phillips

  • Multimolecular Signaling Complexes Enable Syk-Mediated Signaling of CD36 Internalization

    Bryan Heit;Hani Kim;Gabriela Cosío;Diana Castaño

Frequent Co-Authors

Robert C. Ford
Robert C. Ford University of Manchester
Sergio Grinstein
Sergio Grinstein Hospital for Sick Children
Rein V. Ulijn
Rein V. Ulijn City University of New York
William S. Trimble
William S. Trimble University of Toronto
Chris Whitfield
Chris Whitfield University of Guelph
James H. Naismith
James H. Naismith Rosalind Franklin Institute
David J. Thornton
David J. Thornton Wellcome Centre for Cell-Matrix Research
Richard Callaghan
Richard Callaghan Australian National University
Alberto Saiani
Alberto Saiani University of Manchester
Mark Achtman
Mark Achtman University of Warwick

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