Author:
Ferreira Ana F.,Trindade Fábio,Azevedo Maria J.,Morais Juliana,Douché Thibaut,Diaz Sílvia O.,Saraiva Francisca A.,Sousa Carla,Machado Ana P.,Matondo Mariette,Leite-Moreira Adelino,Ramalho Carla,Vitorino Rui,Falcão-Pires Inês,Barros António S.
Abstract
AbstractThe association of postpartum cardiac reverse remodeling (RR) with urinary proteome, particularly in pregnant women with cardiovascular (CV) risk factors who show long-term increased risk of cardiovascular disease and mortality is unknown. We aim to profile the urinary proteome in pregnant women with/without CV risk factors to identify proteins associated with postpartum RR. Our study included a prospective cohort of 32 healthy and 27 obese and/or hypertensive and/or diabetic pregnant women who underwent transthoracic echocardiography, pulse-wave-velocity, and urine collection at the 3rd trimester and 6 months postpartum. Shotgun HPLC–MS/MS profiled proteins. Generalized linear mixed-effects models were used to identify associations between urinary proteins and left ventricle mass (LVM), a surrogate of RR. An increase in arterial stiffness was documented from 3rd trimester to 6 months after delivery, being significantly elevated in women with CV risk factors. In addition, the presence of at least one CV risk factor was associated with worse LVM RR. We identified 6 and 11 proteins associated with high and low LVM regression, respectively. These proteins were functionally linked with insulin-like growth factor (IGF) transport and uptake regulation by IGF binding-proteins, platelet activation, signaling and aggregation and the immune system’s activity. The concentration of IGF-1 in urine samples was associated with low LVM regression after delivery. Urinary proteome showed a predicting potential for identifying pregnant women with incomplete postpartum RR.
Funder
Horizon 2020 program of the European Union
Sociedade Portuguesa de Cardiologia
Fundação para a Ciência e a Tecnologia
European Regional Development Fund
Publisher
Springer Science and Business Media LLC