World's Best Scientists 2026 revealed!

D-Index & Metrics

Biology and Biochemistry

D-Index
137
Citations
89908
World Ranking
318
National Ranking
212

Medicine

D-Index
137
Citations
89956
World Ranking
1873
National Ranking
1065

Overview

Clary B. Clish is affiliated with the Broad Institute in the United States. Their scientific work spans multiple fields of study, primarily focusing on medicine and biochemistry, genetics, and molecular biology. The subfields of their research include molecular biology, physiology, genetics, public health, environmental and occupational health, and cancer research.

Their research broadly covers topics such as metabolomics and mass spectrometry studies, diet and metabolism studies, nutritional studies and diet, gut microbiota and health, adipose tissue and metabolism, liver disease diagnosis and treatment, and the relationships between cancer, lipids, and metabolism.

They have contributed to numerous publications across various research venues, with a notable presence in:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • Circulation
  • Cancer Research
  • Nature
  • Current Developments in Nutrition

Some of their recent papers include:

  • Sequencing of 53,831 diverse genomes from the NHLBI TOPMed Program, 2021, Nature
  • Plasticity of ether lipids promotes ferroptosis susceptibility and evasion, 2020, Nature
  • Cytochrome P450 oxidoreductase contributes to phospholipid peroxidation in ferroptosis, 2020, Nature Chemical Biology
  • Global chemical effects of the microbiome include new bile-acid conjugations, 2020, Nature
  • Human gut bacteria produce ΤΗ17-modulating bile acid metabolites, 2022, Nature

Frequent co-authors in Clish's scientific collaborations include:

  • Robert E. Gerszten
  • Amy Deik
  • Julián Ávila-Pacheco
  • Frank B. Hu
  • Liming Liang

Best Publications

  • Regulation of Ferroptotic Cancer Cell Death by GPX4

    Wan Seok Yang;Rohitha SriRamaratnam;Matthew E. Welsch;Kenichi Shimada

  • Succinate is an inflammatory signal that induces IL-1β through HIF-1α

    G. M. Tannahill;A. M. Curtis;J. Adamik;E. M. Palsson-McDermott

  • Metabolite profiles and the risk of developing diabetes

    Thomas J Wang;Martin G Larson;Martin G Larson;Ramachandran S Vasan;Ramachandran S Vasan;Susan Cheng;Susan Cheng;Susan Cheng

  • Multi-omics of the gut microbial ecosystem in inflammatory bowel diseases.

    Jason Lloyd-Price;Jason Lloyd-Price;Cesar Arze;Ashwin N. Ananthakrishnan;Melanie Schirmer;Melanie Schirmer

  • Sequencing of 53,831 diverse genomes from the NHLBI TOPMed Program.

    Daniel Taliun;Daniel N. Harris;Michael D. Kessler;Jedidiah Carlson;Jedidiah Carlson

  • Activation of a Metabolic Gene Regulatory Network Downstream of mTOR Complex 1

    Katrin Düvel;Jessica L. Yecies;Suchithra Menon;Pichai Raman

  • Gut microbiome structure and metabolic activity in inflammatory bowel disease

    Eric A Franzosa;Eric A Franzosa;Alexandra Sirota-Madi;Julian Avila-Pacheco;Nadine Fornelos

  • Lipid mediator class switching during acute inflammation: signals in resolution

    Bruce D. Levy;Clary B. Clish;Birgitta Schmidt;Karsten Gronert

  • Novel Functional Sets of Lipid-Derived Mediators with Antiinflammatory Actions Generated from Omega-3 Fatty Acids via Cyclooxygenase 2–Nonsteroidal Antiinflammatory Drugs and Transcellular Processing

    Charles N. Serhan;Clary B. Clish;Jessica Brannon;Sean P. Colgan

  • Type I interferons and microbial metabolites of tryptophan modulate astrocyte activity and central nervous system inflammation via the aryl hydrocarbon receptor

    Veit Rothhammer;Ivan D Mascanfroni;Lukas Bunse;Maisa C Takenaka

  • Metabolite Profiling Identifies a Key Role for Glycine in Rapid Cancer Cell Proliferation

    Mohit Jain;Roland Nilsson;Sonia Sharma;Nikhil Madhusudhan;Nikhil Madhusudhan

  • The Dynamics of the Human Infant Gut Microbiome in Development and in Progression toward Type 1 Diabetes

    Aleksandar D. Kostic;Aleksandar D. Kostic;Dirk Gevers;Heli Siljander;Tommi Vatanen;Tommi Vatanen

  • Pyruvate Kinase M2 Regulates Hif-1α Activity and IL-1β Induction and Is a Critical Determinant of the Warburg Effect in LPS-Activated Macrophages

    Eva M. Palsson-McDermott;Anne M. Curtis;Gautam Goel;Gautam Goel;Mario A.R. Lauterbach

  • The Histone Deacetylase Sirt6 Regulates Glucose Homeostasis via Hif1α

    Lei Zhong;Agustina D'Urso;Debra Toiber;Carlos Sebastian

  • SIRT3 Opposes Reprogramming of Cancer Cell Metabolism through HIF1α Destabilization

    Lydia W.S. Finley;Arkaitz Carracedo;Jaewon Lee;Amanda Souza

  • Metabolomics in Prediabetes and Diabetes: A Systematic Review and Meta-analysis

    Marta Guasch-Ferré;Adela Hruby;Estefanía Toledo;Clary B. Clish

  • Correlating chemical sensitivity and basal gene expression reveals mechanism of action.

    Matthew G Rees;Brinton Seashore-Ludlow;Brinton Seashore-Ludlow;Jaime H Cheah;Jaime H Cheah;Drew J Adams;Drew J Adams

  • Metabolic determinants of cancer cell sensitivity to glucose limitation and biguanides

    Kıvanç Birsoy;Richard Possemato;Franziska K. Lorbeer;Erol C. Bayraktar

  • PGC1α Expression Defines a Subset of Human Melanoma Tumors with Increased Mitochondrial Capacity and Resistance to Oxidative Stress

    Francisca Vazquez;Ji Hong Lim;Helen Chim;Kavita Bhalla

  • Sequencing of 53,831 diverse genomes from the NHLBI TOPMed Program

    Daniel Taliun;Daniel N. Harris;Michael D. Kessler;Jedidiah Carlson;Jedidiah Carlson

Frequent Co-Authors

Frank B. Hu
Frank B. Hu Harvard University
Robert E. Gerszten
Robert E. Gerszten Beth Israel Deaconess Medical Center
Miguel A. Martínez-González
Miguel A. Martínez-González University of Navarra
Dolores Corella
Dolores Corella University of Valencia
Emilio Ros
Emilio Ros University of Barcelona
Ramón Estruch
Ramón Estruch University of Barcelona
Jordi Salas-Salvadó
Jordi Salas-Salvadó Rovira i Virgili University
Liming Liang
Liming Liang Harvard University
Lluis Serra-Majem
Lluis Serra-Majem Instituto de Salud Carlos III

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