World's Best Scientists 2026 revealed!

Overview

Kenneth T. Douglas is affiliated with the University of Manchester in the United Kingdom. Their academic work primarily focuses on the intersection of biomedical engineering and 3D printing technologies, specifically within biomedical research applications.

Their research contributions include publications concentrated in the journal Bioprinting, where they have published two papers. These works address topics related to 3D printing techniques used in biomedical contexts.

Recent publications by Kenneth T. Douglas are:

  • A Note to the Reader, 2021, Bioprinting
  • Copyright Page, 2021, Bioprinting

Their main subfield of study is Biomedical Engineering, and their research topics have been centered on 3D Printing in Biomedical Research.

There are no frequent co-authors listed for Kenneth T. Douglas, and no book publications are associated with their profile.

Best Publications

  • Quantum dot FRET biosensors that respond to pH, to proteolytic or nucleolytic cleavage, to DNA synthesis, or to a multiplexing combination.

    Miho Suzuki;Yuzuru Husimi;Hirokazu Komatsu;Koji Suzuki

  • Self-Assembly of Heterobimetallic d-f Hybrid Complexes: Sensitization of Lanthanide Luminescence by d-Block Metal-to-Ligand Charge-Transfer Excited States

    Simon J. A. Pope;Benjamin J. Coe;Stephen Faulkner;Elena V. Bichenkova

  • Phenothiazine inhibitors of trypanothione reductase as potential antitrypanosomal and antileishmanial drugs.

    Cecil Chan;Hong Yin;Jacqui Garforth;James H. McKie

  • Rationally designed selective inhibitors of trypanothione reductase. Phenothiazines and related tricyclics as lead structures.

    T J Benson;J H McKie;J Garforth;A Borges

  • Improved efficiency and selectivity in peptide synthesis: Use of triethylsilane as a carbocation scavenger in deprotection of t-butyl esters and t-butoxycarbonyl-protected sites

    Anita Mehta;Rabih Jaouhari;Timothy J. Benson;Kenneth T. Douglas

  • Minor-groove recognition of the self-complementary duplex d(CGCGAATTCGCG)2 by hoechst 33258 : a high-field NMR study

    John A. Parkinson;Jill Barber;Kenneth T. Douglas;John Rosamond

  • Transfer of biologically derived nanometer-scale patterns to smooth substrates.

    Kenneth Douglas;Genevieve Devaud;Noel A. Clark

  • Kinetics of substrate recognition and cleavage by human 8-oxoguanine-DNA glycosylase

    Nikita A. Kuznetsov;Vladimir V. Koval;Dmitry O. Zharkov;Georgy A. Nevinsky

  • Antitrypanosomal, Antileishmanial, and Antimalarial Activities of Quaternary Arylalkylammonium 2-Amino-4-Chlorophenyl Phenyl Sulfides, a New Class of Trypanothione Reductase Inhibitor, and of N-Acyl Derivatives of 2-Amino-4-Chlorophenyl Phenyl Sulfide

    Seheli Parveen;Mohammed O F Khan;Susan E. Austin;Simon L. Croft

  • Chemical cleavage of plasmid DNA by glutathione in the presence of Cu(II) ions. The Cu(II)-thiol system for DNA strand scission.

    C J Reed;K T Douglas

  • Use of an additional hydrophobic binding site, the Z site, in the rational drug design of a new class of stronger trypanothione reductase inhibitor, quaternary alkylammonium phenothiazines

    M. O. F. Khan;S. E. Austin;C. Chan;Hong Yin

  • Nanometer molecular lithography

    Kenneth Douglas;Noel A. Clark;Kenneth J. Rothschild

  • Thallium in biochemistry.

    Kenneth T. Douglas;Marlene A. Bunni;Swati R. Baindur

  • Rational drug design approach for overcoming drug resistance: Application to pyrimethamine resistance in malaria

    James H. McKie;Kenneth T. Douglas;Cecil Chan;Simon A. Roser

  • Evidence for gene duplication forming similar binding folds for NAD(P)H and FAD in pyridine nucleotide-dependent flavoenzymes.

    James H. McKie;Kenneth T. Douglas

  • Kinetic Conformational Analysis of Human 8-Oxoguanine-DNA Glycosylase

    Nikita A. Kuznetsov;Nikita A. Kuznetsov;Vladimir V. Koval;Vladimir V. Koval;Georgy A. Nevinsky;Georgy A. Nevinsky;Kenneth T. Douglas

  • VI. Applications of S-layers

    Uwe B Sleytr;Hagan Bayley;Margit Sára;Andreas Breitwieser

  • Stopped-flow kinetic studies of the interaction between Escherichia coli Fpg protein and DNA substrates

    Olga S. Fedorova;Georgy A. Nevinsky;Vladimir V. Koval;Alexander A. Ishchenko

  • Discovery of novel inhibitors of Trypanosoma cruzi trans-sialidase from in silico screening

    João Neres;Mark L. Brewer;Laura Ratier;Horacio Botti

  • Single-strand cleavage of DNA by Cu(II) and thiols: a powerful chemical DNA-cleaving system.

    Celia J. Reed;Kenneth T. Douglas

Frequent Co-Authors

Georgy A. Nevinsky
Georgy A. Nevinsky Russian Academy of Sciences
Alan H. Fairlamb
Alan H. Fairlamb University of Dundee
Ian J. Stratford
Ian J. Stratford RMIT University
Valentin V. Vlassov
Valentin V. Vlassov Russian Academy of Sciences
John Parkinson
John Parkinson University of Toronto
Pedro M. Alzari
Pedro M. Alzari Institut Pasteur
Debora S. Marks
Debora S. Marks Harvard University
Simon L. Croft
Simon L. Croft London School of Hygiene & Tropical Medicine
Yukio Sugiura
Yukio Sugiura Kyoto University
Geoffrey P. Margison
Geoffrey P. Margison University of Manchester

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