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Pressure overload selectively increases n-3 PUFA in myocardial phospholipids during early postnatal period
1Department of Cell Biology, Faculty of Science, Charles University, Prague, Czech Republic.
Insights
Early hemodynamic load in developing hearts causes left ventricular (LV) growth and alters membrane phospholipids (PL). This study shows increased n-3 polyunsaturated fatty acids (PUFA) in the LV as an adaptive response to this workload.
Area of Science:
- Cardiovascular Biology
- Developmental Physiology
- Molecular Cardiology
Background:
- Hemodynamic load during early development drives left ventricular (LV) growth.
- This cardiac growth involves membrane phospholipid (PL) remodeling, with n-3 polyunsaturated fatty acid (PUFA) accumulation.
Purpose of the Study:
- To investigate the impact of early-life workload on myocardial PL and fatty acid (FA) profiles.
- To understand adaptive mechanisms in the developing heart under increased hemodynamic stress.
Main Methods:
- Male Wistar rats underwent abdominal aortic constriction (AC) at postnatal day 2.
- LV PL and FA profiles were analyzed in AC, sham-operated (SO), and intact groups at specific postnatal days.
- Quantification of PL and detailed fatty acid composition analysis.
Main Results:
- AC induced significant LV enlargement (22% at day 5, 67% at day 10) compared to SO controls.
- Concentrations of major PL decreased in AC myocardium.
- A notable accumulation of n-3 PUFA was observed in LV PL, particularly in phosphatidylinositol and cardiolipin.
Conclusions:
- Early-onset workload inhibits normal postnatal PL increase in the myocardium.
- Accelerated myocardial growth under excess load potentiates n-3 PUFA accumulation as an adaptive response.
- Findings highlight specific PL remodeling in response to hemodynamic challenges during cardiac development.
Abstract:
Increasing hemodynamic load during early postnatal development leads to rapid growth of the left ventricular (LV) myocardium, which is associated with membrane phospholipid (PL) remodeling characterized by n-3 polyunsaturated fatty acids (PUFA) accumulation. The aim of this study was to examine the influence of additional workload imposed early after birth when ventricular myocytes are still able to proliferate. Male Wistar rats were subjected to abdominal aortic constriction (AC) at postnatal day 2. Concentrations of PL and their fatty acid (FA) profiles in the LV were analyzed in AC, sham-operated (SO) and intact animals on postnatal days 2 (intact only), 5 and 10. AC resulted in LV enlargement by 22 % and 67 % at days 5 and 10, respectively, compared with age-matched SO littermates. Concentrations of phosphatidylcholine, cardiolipin, phosphatidylinositol, phosphatidylethanolamine, phosphatidylserine and sphingomyelin decreased in AC myocardium, albeit with different time course and extent. The main effect of AC on FA remodeling consisted in the accumulation of n-3 PUFA in PL. The most striking effect of AC on FA composition was observed in phosphatidylinositol and cardiolipin. We conclude that excess workload imposed by AC inhibited the normal postnatal increase of PL concentration while further potentiating the accumulation of n-3 PUFA as an adaptive response of the developing myocardium to accelerated growth.
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