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Updated: Aug 20, 2025

Proteomic Profile of EPS-Urine through FASP Digestion and Data-Independent Analysis
Published on: May 8, 2021
A urinary peptidomics approach for early stages of cardiovascular disease risk: The African-PREDICT study
Dalene de Beer1, Catharina M C Mels1,2, Aletta E Schutte1,2,3
1Hypertension in Africa Research Team (HART), North-West University (Potchefstroom Campus), Potchefstroom, South Africa.
Insights
Urinary proteomics revealed lower collagen levels in young adults with multiple cardiovascular disease risk factors, suggesting early extracellular matrix changes. This research offers insights into cardiovascular disease development in younger populations.
Area of Science:
- Cardiovascular research
- Proteomics
- Molecular pathways
Background:
- Cardiovascular disease (CVD) impacts all ages, with rising risk factors in young people.
- Early CVD mechanisms are complex and not fully understood.
Purpose of the Study:
- To investigate early CVD-related molecular pathways using urinary proteomics.
- To stratify cardiovascular risk in young adults based on multiple risk factors.
Main Methods:
- Analyzed urinary peptidomics in 964 healthy young adults (20-30 years old) from the African-PREDICT study.
- Stratified participants into low, medium, and high cardiovascular risk groups based on factors like obesity and hypertension.
- Utilized capillary electrophoresis time-of-flight mass spectrometry.
Main Results:
- Identified 65 differentially expressed urinary peptides between cardiovascular risk groups (q ≤ 0.01).
- Observed lower abundance of collagen type I and III peptides in the high-risk group.
- Found reduced levels of alpha-1-antitrypsin fragments in the high-risk group compared to the low-risk group.
Conclusions:
- Lower collagen types I and III in high-risk individuals suggest early alterations in the cardiovascular extracellular matrix.
- Urinary proteomics provides novel insights into early molecular changes associated with cardiovascular risk.
Abstract:
Cardiovascular disease (CVD) affects individuals across the lifespan, with multiple cardiovascular (CV) risk factors increasingly present in young populations. The underlying mechanisms in early cardiovascular disease development are complex and still poorly understood. We therefore employed urinary proteomics as a novel approach to gain better insight into early CVD-related molecular pathways based on a CVD risk stratification approach. This study included 964 apparently healthy (no self-reported chronic illnesses, free from clinical symptoms of CVD) black and white men and women (aged 20-30 years old) from the African Prospective study on the Early Detection and Identification of Cardiovascular disease and Hypertension (African-PREDICT) study. Cardiovascular risk factors used for stratification included obesity, physical inactivity, tobacco use, high alcohol intake, hyperglycemia, dyslipidemia and hypertension. Participants were divided into low (0 risk factors), medium (1-2 risk factors) and high (≥3 risk factors) CV risk groups. We analyzed urinary peptidomics by capillary electrophoresis time-of-flight mass spectrometry. After adjusting for ethnicity, sex and age, 65 sequenced urinary peptides were differentially expressed between the CV risk groups (all q-values ≤ 0.01). These peptides included a lower abundance of collagen type I- and III-derived peptides in the high compared to the low CV risk group. With regard to noncollagen peptides, we found a lower abundance of alpha-1-antitrypsin fragments in the high compared to the low CV risk group (all q-values ≤ 0.01). Our findings indicate lower abundances of collagen types I and III in the high compared to the low CV risk group, suggesting potential early alterations in the CV extracellular matrix.
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