1. How to use and integrate bioinformatics tools to compare proteomic data from distinct conditions? A tutorial using the pathological similarities between Aortic Valve Stenosis and Coronary Artery Disease as a case-study
    Fábio Trindade et al, 2018, Journal of Proteomics CrossRef
  2. Relationship between lipoprotein (a) and subclinical carotid atherosclerosis in asymptomatic individuals
    Victor França et al, 2022, Clinics CrossRef
  3. Lipoprotein(a) is associated with premature coronary artery disease: a meta-analysis
    Konstantinos A. Papathanasiou et al, 2023, Coronary Artery Disease CrossRef
  4. Case–Control Study on the Interaction Effects of rs10757278 Polymorphisms at 9p21 Locus and Traditional Risk Factors on Coronary Heart Disease in Xinjiang, China
    Wu-Hong Lu et al, 2020, Journal of Cardiovascular Pharmacology CrossRef
  5. Lipoprotein-associated phospholipase A2 and oxidized low-density lipoprotein in young patients with acute coronary syndrome in China
    Yuli Huang et al, 2017, Scientific Reports CrossRef
  6. Association of Serum γ-Glutamyltransferase With C-Reactive Protein Levels in Patients With Coronary Heart Disease
    Yuanyuan He et al, 2023, Angiology CrossRef
  7. Evaluation of gamma glutamyl transferase as a marker of cardiovascular risk, in 200 angiographically proven coronary artery disease patients
    Vani Bharani et al, 2017, Indian Heart Journal CrossRef
  8. In-Cardiome: integrated knowledgebase for coronary artery disease enabling translational research
    Ankit Sharma et al, 2017, Database CrossRef
  9. Serum gamma-glutamyl transferase is associated with silent brain infarcts in a healthy population
    Ki-Woong Nam et al, 2019, Atherosclerosis CrossRef
  10. Serum level of gamma-glutamyl transferase as a biomarker for predicting stenosis severity in patients with coronary artery disease
    Siavash Arasteh et al, 2018, Indian Heart Journal CrossRef