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Molecular Biology

D-Index
99
Citations
35358
World Ranking
554
National Ranking
45

Medicine

D-Index
100
Citations
35969
World Ranking
8290
National Ranking
812

Overview

David S. Latchman is affiliated with University College London in the United Kingdom. Their research spans multiple fields related to medicine, biochemistry, genetics, and molecular biology.

The primary fields of study David S. Latchman has contributed to include:

  • Medicine
  • Biochemistry, Genetics and Molecular Biology

Within these domains, their work extends into specific subfields such as:

  • Physiology
  • Surgery
  • Genetics

The topics frequently addressed in their research encompass areas where genetics and metabolic functions intersect, including:

  • Adipose Tissue and Metabolism
  • Pancreatic function and diabetes
  • Genetic Associations and Epidemiology

David S. Latchman has collaborated regularly with other researchers, notably including Venugopalan Cheriyath, with whom they have coauthored multiple publications.

Their book contributions include two editions published by Garland Science eBooks, both entitled Gene Control, one released in 2020 and the other scheduled for 2025. The book provides insights into gene regulation and related molecular mechanisms.

Although recent research articles or frequent publication venues have not been explicitly detailed, the range of topics and subfields indicates involvement in interdisciplinary biomedical research, particularly focusing on metabolism, diabetes, and genetic epidemiology.

Best Publications

  • Hereditary Early-Onset Parkinson's Disease Caused by Mutations in PINK1

    Eriza Maria Valente;Patrick M. Abou-Sleiman;Viviana Caputo;Miratul M K Muqit

  • Transcription factors: An overview

    David S. Latchman

  • Biochemistry (4th edn)

    David S. Latchman

  • PINK1-Associated Parkinson's Disease Is Caused by Neuronal Vulnerability to Calcium-induced Cell Death

    Sonia Gandhi;Alison Wood-Kaczmar;Zhi Yao;Helene Plun-Favreau

  • Voltage-Gated Sodium Channel Expression and Potentiation of Human Breast Cancer Metastasis

    Scott P. Fraser;James K.J. Diss;Athina-Myrto Chioni;Maria E. Mycielska

  • Heat shock proteins and cardiac protection

    David S Latchman

  • Apoptosis of Endothelial Cells Precedes Myocyte Cell Apoptosis in Ischemia/Reperfusion Injury

    Tiziano Scarabelli;Anastasis Stephanou;Neil Rayment;Evasio Pasini

  • PINK1 protein in normal human brain and Parkinson's disease

    S Gandhi;M M K Muqit;L Stanyer;D G Healy

  • PINK1 is necessary for long term survival and mitochondrial function in human dopaminergic neurons.

    Alison Wood-Kaczmar;Sonia Gandhi;Zhi Yao;Andrey S. Y. Abramov

  • Dysregulation of Histone Acetylation in the APP/PS1 Mouse Model of Alzheimer's Disease

    Yitshak I. Francis;Mauro Fà;Haider Ashraf;Hong Zhang

  • Urocortin inhibits Beclin1-mediated autophagic cell death in cardiac myocytes exposed to ischaemia/reperfusion injury

    Lauren Valentim;Kevin M. Laurence;Paul A. Townsend;Christopher J. Carroll

  • Novel cell lines display properties of nociceptive sensory neurons.

    John Nicholas Wood;S. J. Bevan;P. R. Coote;P. M. Dunn

  • STAT-1 Interacts with p53 to Enhance DNA Damage-induced Apoptosis

    Paul A. Townsend;Tiziano M. Scarabelli;Sean M. Davidson;Richard A. Knight

  • Urocortin protects against ischemic and reperfusion injury via a MAPK-dependent pathway.

    Bhawanjit K. Brar;Anna K. Jonassen;Anastasis Stephanou;Giorgia Santilli

  • Protection of Neuronal Cells from Apoptosis by Hsp27 Delivered with a Herpes Simplex Virus-based Vector

    Marcus J.D. Wagstaff;Yollanda Collaço-Moraes;Yollanda Collaço-Moraes;Jill Smith;Jaqueline S. de Belleroche

  • Ischemia-induced STAT-1 Expression and Activation Play a Critical Role in Cardiomyocyte Apoptosis

    Anastasis Stephanou;Bhawanjit K. Brar;Tiziano M. Scarabelli;Anna K. Jonassen

  • The Transcriptional Co-activators CREB-binding Protein (CBP) and p300 Play a Critical Role in Cardiac Hypertrophy That Is Dependent on Their Histone Acetyltransferase Activity

    Rosalind J. Gusterson;Elen Jazrawi;Ian M. Adcock;David S. Latchman

  • Effect of aging on the ability of preconditioning to protect rat hearts from ischemia-reperfusion injury.

    Daniel Schulman;Daniel Schulman;David S. Latchman;Derek M. Yellon

  • The protective role of heat stress in the ischaemic and reperfused rabbit myocardium.

    Derek M. Yellon;Evasio Pasini;Anna Cargnoni;Michael S. Marber;Michael S. Marber

  • Molecular cloning and expression of the Fabs of human autoantibodies in Escherichia coli. Determination of the heavy or light chain contribution to the anti-DNA/-cardiolipin activity of the Fab.

    Sanjeev Kumar;Jatinderpal Kalsi;Chelliah T. Ravirajan;Anisur Rahman

Frequent Co-Authors

Anastasis Stephanou
Anastasis Stephanou European University Cyprus
David A. Isenberg
David A. Isenberg University College London
Paul A. Townsend
Paul A. Townsend University of Manchester
Richard A. Knight
Richard A. Knight University College London
Robert S. Coffin
Robert S. Coffin University College London
Derek M. Yellon
Derek M. Yellon University College London
Nicholas W. Wood
Nicholas W. Wood University College London
David Horn
David Horn University of Dundee
John Wood
John Wood University College London
Laurence H. Pearl
Laurence H. Pearl University of Sussex

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