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Plasma acylcarnitines and amino acids in dyslipidemia: An integrated metabolomics and machine learning approach

  • Ali Etemadi,
  • Farima Hassanzadehkiabi,
  • Maryam Mirabolghasemi,
  • Mehdi Ahmadi,
  • Hojat Dehghanbanadaki,
  • Shaghayegh Hosseinkhani,
  • Fatemeh Bandarian,
  • Niloufar Najjar,
  • Arezou Dilmaghani-Marand,
  • Nekoo Panahi,
  • Babak Negahdari,
  • Mohammadali Mazloomi,
  • Mohammad Hossein Karimi-jafari,
  • Farideh Razi,
  • Bagher Larijani

摘要

Purpose

The Discovery of underlying intermediates associated with the development of dyslipidemia results in a better understanding of pathophysiology of dyslipidemia and their modification will be a promising preventive and therapeutic strategy for the management of dyslipidemia.

Methods

The entire dataset was selected from the Surveillance of Risk Factors of Noncommunicable Diseases (NCDs) in 30 provinces of Iran (STEPs 2016 Country report in Iran) that included 1200 subjects and was stratified into four binary classes with normal and abnormal cases based on their levels of triglyceride (TG), total cholesterol (TC), high-density lipoprotein cholesterol (HDL-C), and non-HDL-C.

Plasma concentrations of 20 amino acids and 30 acylcarnitines in each class of dyslipidemia were evaluated using Tandem mass spectrometry. Then, these attributes, along with baseline characteristics data, were used to check whether machine learning (ML) algorithms could classify cases and controls.

Results

Our ML framework accurately predicts TG binary classes. Among the models tested, the SVM model stood out, performing slightly better with an AUC of 0.81 and a standard deviation of test accuracy at 0.04. Consequently, it was chosen as the optimal model for TG classification. Moreover, the findings showed that alanine, phenylalanine, methionine, C3, C14:2, and C16 had great power in differentiating patients with high TG from normal TG controls. Conclusions: The comprehensive output of this work, along with sex-specific attributes, will improve our understanding of the underlying intermediates involved in dyslipidemia.