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Chemistry

D-Index
55
Citations
8866
World Ranking
12350
National Ranking
184

Overview

Owe Orwar is affiliated with Chalmers University of Technology in Sweden and has contributed to the fields of Biochemistry, Genetics and Molecular Biology as well as Medicine. Their work encompasses a range of topics including molecular biology, oncology, sensory systems, biomedical engineering, and cell biology.

The scientist's research focuses on themes such as ion channels and receptors, 3D printing in biomedical research, cancer cells and metastasis, cellular mechanics and interactions, toxin mechanisms and immunotoxins, ion channel regulation and function, and protein kinase regulation and GTPase signaling.

Recent papers authored or co-authored by Orwar include the following:

  • 3D micro-organisation printing of mammalian cells to generate biological tissues, 2020, Scientific Reports
  • Rational antibody design for undruggable targets using kinetically controlled biomolecular probes, 2021, Science Advances
  • Novel druggable space in human KRAS G13D discovered using structural bioinformatics and a P-loop targeting monoclonal antibody, 2024, Scientific Reports
  • 841 Targeting the intersection of immunology and redox biology: therapeutic potential of an anti-thioredoxin antibody, 2021, Regular and Young Investigator Award Abstracts
  • RETRACTED: A moduli-selective antibody inhibits the pain receptor TRPV1 in cynomolgus monkeys without adverse temperature dysregulation, 2023, Research Square (Research Square)

Frequent co-authors who have collaborated with Orwar include Carolina L. Trkulja, Max Davidson, Gavin D. M. Jeffries, Oscar Jungholm, and Kent Jardemark.

Orwar's research has been published predominantly in the following venues:

  • Scientific Reports
  • Science Advances
  • Regular and Young Investigator Award Abstracts
  • Research Square (Research Square)

Best Publications

  • Liposomes: technologies and analytical applications.

    Aldo Jesorka;Owe Orwar

  • Rapid preparation of giant unilamellar vesicles

    Alexander Moscho;Owe Orwar;Daniel T. Chiu;Biren P. Modi

  • Molecular engineering: Networks of nanotubes and containers

    Anders Karlsson;Roger Karlsson;Mattias Karlsson;Ann-Sofie Cans

  • Chemical transformations in individual ultrasmall biomimetic containers.

    Daniel T. Chiu;Clyde F. Wilson;Frida Ryttsén;Anette Strömberg

  • Irreversible inhibition of cytosolic thioredoxin reductase 1 as a mechanistic basis for anticancer therapy.

    William C. Stafford;Xiaoxiao Peng;Maria Hägg Olofsson;Xiaonan Zhang

  • Biomimetic nanoscale reactors and networks.

    Mattias Karlsson;Max Davidson;Roger Karlsson;Anders Karlsson

  • Use of 2,3-naphthalenedicarboxaldehyde derivatization for single-cell analysis of glutathione by capillary electrophoresis and histochemical localization by fluorescence microscopy

    Owe. Orwar;Harvey A. Fishman;Noam E. Ziv;Richard H. Scheller

  • Single-cell electroporation

    Jessica Olofsson;Kerstin Nolkrantz;Frida Ryttsén;Bradley A Lambie

  • Artificial cells: unique insights into exocytosis using liposomes and lipid nanotubes.

    Ann Sofie Cans;Nathan Wittenberg;Roger Karlsson;Leslie Sombers

  • Electroinjection of Colloid Particles and Biopolymers into Single Unilamellar Liposomes and Cells for Bioanalytical Applications

    Mattias Karlsson;Kerstin Nolkrantz;Maximilian J. Davidson;Anette Strömberg

  • Altering the biochemical state of individual cultured cells and organelles with ultramicroelectrodes

    J. A. Lundqvist;F. Sahlin;M. A. I. Aberg;A. Stromberg

  • Formation of geometrically complex lipid nanotube-vesicle networks of higher-order topologies.

    Mattias Karlsson;Kristin Sott;Maximillian Davidson;Ann-Sofie Cans

  • Characterization of Single-Cell Electroporation by Using Patch-Clamp and Fluorescence Microscopy

    Frida Ryttsén;Cecilia Farre;Carrie Brennan;Stephen G. Weber

  • Microfluidic Gradient-Generating Device for Pharmacological Profiling

    Johan Pihl;Jon Sinclair;Eskil Sahlin;Mattias Karlsson

  • Probing Single Secretory Vesicles with Capillary Electrophoresis

    Daniel T. Chiu;Sheri J. Lillard;Richard H. Scheller;Richard N. Zare

  • A multifunctional pipette

    Alar Ainla;Gavin D. M. Jeffries;Ralf Brune;Owe Orwar

  • Molecular phospholipid films on solid supports

    Ilja Czolkos;Aldo Jesorka;Owe Orwar

  • Changes in extracellular amino acids and spontaneous neuronal activity during ischemia and extended reflow in the CA1 of the rat hippocampus.

    Peter Andiné;Owe Orwar;Ingemar Jacobson;Mats Sandberg

  • Method and apparatus for manipulation of cells and cell-like structures focused electric fields in microfludic systems and use thereof

    Owe Orwar;Mattias Karlsson;Daniel Chiu;Anette Stromberg

  • Effect of cell size and shape on single-cell electroporation.

    Aparna Agarwal;Imants Zudans;Emily A. Weber;Jessica Olofsson

  • Method, apparatus and flow cell for high sensitivity detection of fluorescent molecules

    Peter Eriksson;Owe Orwar;Daniel T. Chiu

  • Single-cell electroporation

    Manyan Wang;Owe Orwar;Jessica Olofsson;Stephen G. Weber

Frequent Co-Authors

Daniel T. Chiu
Daniel T. Chiu University of Washington
Richard N. Zare
Richard N. Zare Stanford University
Jean-François Joanny
Jean-François Joanny Collège de France
Bo Albinsson
Bo Albinsson Chalmers University of Technology
Andrew G. Ewing
Andrew G. Ewing University of Gothenburg
Per Lincoln
Per Lincoln Chalmers University of Technology
Tom Brown
Tom Brown University of Oxford
Henrik Hagberg
Henrik Hagberg University of Gothenburg
Holger Wigström
Holger Wigström University of Gothenburg

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