Leptin links with plasminogen activator inhibitor-1 in human obesity: the SABPA study
Chiné Pieterse1, Rudolph Schutte2, Aletta E Schutte2
1Hypertension in Africa Research Team (HART), North-West University, Potchefstroom, South Africa.
Insights
Elevated leptin levels in obesity are linked to vascular damage markers like PAI-1. This suggests leptin may directly contribute to thrombotic vascular disease in obese individuals.
Area of Science:
- Cardiovascular Science
- Endocrinology
- Vascular Biology
Background:
- Obesity is a known risk factor for cardiovascular disease.
- Mechanisms linking obesity to vascular damage are not fully understood.
- Leptin, an adipokine, has known direct vascular effects.
Purpose of the Study:
- To investigate the relationship between leptin and circulating markers of vascular damage.
- To explore leptin's role in thrombotic vascular disease in obese individuals.
Main Methods:
- A bi-ethnic cohort of 409 teachers was stratified into lean and obese groups based on waist-to-height ratio.
- Measurements included ambulatory blood pressure, serum leptin, PAI-1(ag), vWF(ag), and ACR.
- Regression analyses were used to assess associations between leptin and vascular markers.
Main Results:
- Obese individuals had significantly higher leptin and PAI-1(ag) levels.
- Leptin positively associated with PAI-1(ag), vWF(ag), and ACR in obese individuals (single regression).
- After adjustments, leptin remained significantly associated with PAI-1(ag) and also with fibrinogen and clot lysis time, which relate to blood pressure.
Conclusions:
- Elevated leptin in obesity may directly contribute to vascular damage.
- Leptin's association with PAI-1 and clotting factors suggests a role in thrombotic vascular disease.
- Further research into leptin's vascular mechanisms is warranted.
Abstract:
The relationship between obesity and the development of cardiovascular disease is well established. However, the underlying mechanisms contributing to vascular disease and increased cardiovascular risk in the obese remain largely unexplored. Since leptin exerts direct vascular effects, we investigated leptin and the relationship thereof with circulating markers of vascular damage, namely plasminogen activator inhibitor-1 antigen (PAI-1(ag)), von Willebrand factor antigen (vWF(ag)) and urinary albumin-to-creatinine ratio (ACR). The study included a bi-ethnic population of 409 African and Caucasian teachers who were stratified into lean (<0.5) and obese (⩾0.5) groups according to waist-to-height ratio. We obtained ambulatory blood pressure measurements and determined serum leptin levels, PAI-1(ag), vWF(ag) and ACR, as markers of vascular damage. The obese group had higher leptin (P<0.001) and PAI-1(ag) (P<0.001) levels and a tendency existed for higher vWF(ag) (P=0.068). ACR did not differ between the two groups (P=0.21). In single regression analyses positive associations existed between leptin and all markers of vascular damage (all P<0.001) only in the obese group. After adjusting for covariates and confounders in multiple regression analyses, only the association between leptin and PAI-1(ag) remained (R(2)=0.440; β=0.293; P=0.0021). After adjusting for gender, ethnicity and age, additional analyses indicated that leptin also associated with fibrinogen and clot lysis time in both lean and obese groups, which in turn is associated with 24- h blood pressure and pulse pressure. This result provides evidence that elevated circulating leptin may directly contribute to vascular damage, possibly through mechanism related to thrombotic vascular disease.
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