A computational framework of routine test data for the cost-effective chronic disease prediction

Author:

Liu Mingzhu123,Zhou Jian12,Xi Qilemuge1,Liang Yuchao12,Li Haicheng12,Liang Pengfei1,Guo Yuting1,Liu Ming1,Temuqile Temuqile3,Yang Lei4ORCID,Zuo Yongchun123ORCID

Affiliation:

1. Inner Mongolia University State Key Laboratory of Reproductive Regulation and Breeding of Grassland Livestock, School of Life Sciences, , Hohhot 010021, China

2. Inner Mongolia Wesure Date Technology Co., Ltd. Digital College, Inner Mongolia Intelligent Union Big Data Academy, , Hohhot 010010, China

3. Inner Mongolia International Mongolian Hospital , Hohhot 010065, China

4. Harbin Medical University College of Bioinformatics Science and Technology, , Harbin 150081, China

Abstract

AbstractChronic diseases, because of insidious onset and long latent period, have become the major global disease burden. However, the current chronic disease diagnosis methods based on genetic markers or imaging analysis are challenging to promote completely due to high costs and cannot reach universality and popularization. This study analyzed massive data from routine blood and biochemical test of 32 448 patients and developed a novel framework for cost-effective chronic disease prediction with high accuracy (AUC 87.32%). Based on the best-performing XGBoost algorithm, 20 classification models were further constructed for 17 types of chronic diseases, including 9 types of cancers, 5 types of cardiovascular diseases and 3 types of mental illness. The highest accuracy of the model was 90.13% for cardia cancer, and the lowest was 76.38% for rectal cancer. The model interpretation with the SHAP algorithm showed that CREA, R-CV, GLU and NEUT% might be important indices to identify the most chronic diseases. PDW and R-CV are also discovered to be crucial indices in classifying the three types of chronic diseases (cardiovascular disease, cancer and mental illness). In addition, R-CV has a higher specificity for cancer, ALP for cardiovascular disease and GLU for mental illness. The association between chronic diseases was further revealed. At last, we build a user-friendly explainable machine-learning-based clinical decision support system (DisPioneer: http://bioinfor.imu.edu.cn/dispioneer) to assist in predicting, classifying and treating chronic diseases. This cost-effective work with simple blood tests will benefit more people and motivate clinical implementation and further investigation of chronic diseases prevention and surveillance program.

Funder

key technology research program of Inner Mongolia Autonomous Region

Natural Science Foundation Project of Inner Mongolia Autonomous Region

National Nature Scientific Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Information Systems

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