World's Best Scientists 2026 revealed!
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Biology and Biochemistry
UK
2026

D-Index & Metrics

Biology and Biochemistry

D-Index
137
Citations
106173
World Ranking
313
National Ranking
19

Medicine

D-Index
137
Citations
106911
World Ranking
1855
National Ranking
192

Research.com Recognitions

  • 2026 - Research.com Biology and Biochemistry in United Kingdom Leader Award
  • 2025 - Research.com Biology and Biochemistry in United Kingdom Leader Award
  • 2015 - Fellow of the Royal Society of Edinburgh

Overview

What is he best known for?

The fields of study he is best known for:

  • Gene
  • Internal medicine
  • Genetics

His primary scientific interests are in Genome-wide association study, Genetics, Internal medicine, Endocrinology and Genetic association. His Genome-wide association study research is multidisciplinary, incorporating perspectives in Genetic predisposition, Bioinformatics, Coronary artery disease, Medical genetics and Genetic architecture. His Internal medicine study frequently draws connections to adjacent fields such as Type 2 diabetes.

His Endocrinology research integrates issues from FTO gene and Allele. His studies in Genetic association integrate themes in fields like Psoriasis, CDKAL1, Disease, Locus and Candidate gene. His research in Risk factor tackles topics such as Overweight which are related to areas like Genetics of obesity and SH2B1.

His most cited work include:

  • A common variant in the FTO gene is associated with body mass index and predisposes to childhood and adult obesity (3415 citations)
  • A common variant in the FTO gene is associated with body mass index and predisposes to childhood and adult obesity (3415 citations)
  • Common loss-of-function variants of the epidermal barrier protein filaggrin are a major predisposing factor for atopic dermatitis (2107 citations)

What are the main themes of his work throughout his whole career to date?

The scientist’s investigation covers issues in Internal medicine, Genome-wide association study, Genetics, Type 2 diabetes and Diabetes mellitus. The Internal medicine study combines topics in areas such as Endocrinology and Cardiology. His Endocrinology study is mostly concerned with Obesity, Body mass index and Cholesterol.

His Genome-wide association study study deals with the bigger picture of Single-nucleotide polymorphism. His studies in Gene, Allele, Genetic architecture, Allele frequency and Haplotype are all subfields of Genetics research. His biological study spans a wide range of topics, including Case-control study and Oncology.

He most often published in these fields:

  • Internal medicine (38.71%)
  • Genome-wide association study (29.84%)
  • Genetics (25.40%)

What were the highlights of his more recent work (between 2019-2021)?

  • Internal medicine (38.71%)
  • Genome-wide association study (29.84%)
  • Diabetes mellitus (20.77%)

In recent papers he was focusing on the following fields of study:

Colin N. A. Palmer mainly focuses on Internal medicine, Genome-wide association study, Diabetes mellitus, Type 2 diabetes and MEDLINE. His research investigates the connection between Internal medicine and topics such as Cardiology that intersect with issues in Confidence interval. His Genome-wide association study research includes elements of Locus and Knee pain.

Colin N. A. Palmer works mostly in the field of Diabetes mellitus, limiting it down to concerns involving Body mass index and, occasionally, Physical fitness and Interval training. He has researched Type 2 diabetes in several fields, including Cohort study, Insulin, Insulin resistance, Meta-analysis and Hazard ratio. His work on Genetics is being expanded to include thematically relevant topics such as Disease.

Between 2019 and 2021, his most popular works were:

  • Meta-analysis of up to 622,409 individuals identifies 40 novel smoking behaviour associated genetic loci. (33 citations)
  • Genome-wide association and Mendelian randomisation analysis provide insights into the pathogenesis of heart failure (19 citations)
  • Genetic correlations between pain phenotypes and depression and neuroticism (12 citations)

In his most recent research, the most cited papers focused on:

  • Gene
  • Internal medicine
  • Diabetes mellitus

His primary scientific interests are in Internal medicine, Diabetes mellitus, Genome-wide association study, Type 2 diabetes and Cohort. Colin N. A. Palmer has included themes like Type 1 diabetes and Oncology in his Internal medicine study. His Diabetes mellitus research is multidisciplinary, relying on both Research design and Clinical endpoint.

Genome-wide association study is a subfield of Genetics that Colin N. A. Palmer studies. His study in Genetics is interdisciplinary in nature, drawing from both Heart failure and Pathogenesis. His Type 2 diabetes research incorporates elements of Body mass index, Randomized controlled trial, Placebo and Insulin, Insulin resistance.

Best Publications

  • A common variant in the FTO gene is associated with body mass index and predisposes to childhood and adult obesity

    Timothy M. Frayling;Nicholas J. Timpson;Michael N. Weedon;Eleftheria Zeggini;Eleftheria Zeggini;Eleftheria Zeggini

  • Common loss-of-function variants of the epidermal barrier protein filaggrin are a major predisposing factor for atopic dermatitis

    Colin N A Palmer;Alan D Irvine;Ana Terron-Kwiatkowski;Yiwei Zhao

  • Discovery and refinement of loci associated with lipid levels

    Cristen J. Willer;Ellen M. Schmidt;Sebanti Sengupta;Gina M. Peloso;Gina M. Peloso;Gina M. Peloso

  • Genetic risk and a primary role for cell-mediated immune mechanisms in multiple sclerosis

    Stephen Sawcer;Garrett Hellenthal;Matti Pirinen;Chris C. A. Spencer

  • A comprehensive 1000 Genomes–based genome-wide association meta-analysis of coronary artery disease

    M Nikpay;A Goel;Won H-H.;L M Hall

  • Meta-analysis of genome-wide association data and large-scale replication identifies additional susceptibility loci for type 2 diabetes

    E Zeggini;L J Scott;R Saxena;B F Voight

  • Defining the role of common variation in the genomic and biological architecture of adult human height

    Andrew R. Wood;Tonu Esko;Jian Yang;Sailaja Vedantam

  • Twelve type 2 diabetes susceptibility loci identified through large-scale association analysis

    Benjamin F. Voight;Benjamin F. Voight;Laura J. Scott;Valgerdur Steinthorsdottir;Andrew P. Morris

  • Large-scale association analysis provides insights into the genetic architecture and pathophysiology of type 2 diabetes

    Andrew P Morris;Benjamin F Voight;Benjamin F Voight;Tanya M Teslovich;Teresa Ferreira

  • Large-scale association analysis identifies new risk loci for coronary artery disease

    Panos Deloukas;Stavroula Kanoni;Christina Willenborg;Martin Farrall

  • Genetic studies of body mass index yield new insights for obesity biology

    Adam E. Locke;Bratati Kahali;Sonja I. Berndt;Anne E. Justice

  • Fine-mapping type 2 diabetes loci to single-variant resolution using high-density imputation and islet-specific epigenome maps.

    Anubha Mahajan;Daniel Taliun;Matthias Thurner;Neil R. Robertson

  • Genetic analysis of over 1 million people identifies 535 new loci associated with blood pressure traits.

    Evangelos Evangelou;Evangelos Evangelou;Helen R. Warren;Helen R. Warren;David Mosen-Ansorena;Borbala Mifsud

  • The genetic architecture of type 2 diabetes

    Christian Fuchsberger;Christian Fuchsberger;Jason A. Flannick;Jason A. Flannick;Tanya M. Teslovich;Anubha Mahajan

  • International Union of Pharmacology. LXI. Peroxisome Proliferator-Activated Receptors

    Liliane Michalik;Johan Auwerx;Joel P. Berger;V. Krishna Chatterjee

  • Identification of 15 new psoriasis susceptibility loci highlights the role of innate immunity

    Lam C. Tsoi;Sarah L. Spain;Sarah L. Spain;Jo Knight;Eva Ellinghaus;Eva Ellinghaus

  • A Genome-Wide Association Study Identifies New Psoriasis Susceptibility Loci and an Interaction Between HLA-C and ERAP1

    Amy Strange;Francesca Capon;Chris C A Spencer

  • Common variants associated with plasma triglycerides and risk for coronary artery disease

    Ron Do;Cristen J. Willer;Ellen M. Schmidt;Sebanti Sengupta

  • A comprehensive 1000 Genomes-based genome-wide association meta-analysis of coronary artery disease

    Majid Nikpay;Anuj Goel;Hong-Hee Won;Leanne M. Hall

  • Erratum: New genetic loci implicated in fasting glucose homeostasis and their impact on type 2 diabetes risk (Nature Genetics (2010) 42 (105-116))

    Josée Dupuis;Claudia Langenberg;Inga Prokopenko;Richa Saxena

Frequent Co-Authors

Andrew D. Morris
Andrew D. Morris University of Edinburgh
Alex S. F. Doney
Alex S. F. Doney University of Dundee
Panos Deloukas
Panos Deloukas Queen Mary University of London
Leif Groop
Leif Groop Lund University
Nilesh J. Samani
Nilesh J. Samani University of Leicester
Tonu Esko
Tonu Esko University of Tartu
Paul W. Franks
Paul W. Franks Lund University
John C. Chambers
John C. Chambers Guy's and St Thomas' NHS Foundation Trust
Erik Ingelsson
Erik Ingelsson Stanford University

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