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大鼠心脏发育过程中脂肪酸和脂褐素样色素组成的变化。

Changes in the composition of fatty acids and lipofuscin-like pigments during development of rat heart.

作者信息

Wilhelm J, Ivica J, Veselská Z, Uhlík J, Vajner L

机构信息

Department of Membrane Receptor Biochemistry, Institute of Physiology, Czech Academy of Sciences, Prague, Czech Republic.

出版信息

Physiol Res. 2015;64(5):643-51. doi: 10.33549/physiolres.932917. Epub 2015 Mar 24.

Abstract

Postnatal heart development is characterized by critical periods of heart remodeling. In order to characterize the changes in the lipophilic fraction induced by free radicals, fatty acids and their oxidized products, lipofuscin-like pigments (LFP), were investigated. Fatty acids were analyzed by gas chromatography and LFP were studied by fluorescence techniques. A fluorophore characterized by spectral methods was further resolved by HPLC. Major changes in the composition of fatty acids occurred immediately after birth and then during maturation. Fluorescence of LFP changed markedly on postnatal days 1, 4, 8, and 14, and differed from the adult animals. LFP comprise several fluorophores that were present since fetal state till adulthood. No new major fluorophores were formed during development, just the abundances of individual fluorophores have been modulated which produced changes in the shape of the spectral arrays. HPLC resolved the fluorophore with excitation maximum at 360 nm and emission maximum at 410 nm. New chromatographically distinct species appeared immediately on postnatal day 1, and then on days 30 and 60. Consumption of polyunsaturated fatty acids immediately after birth and subsequent formation of LFP suggests that oxidative stress is involved in normal heart development.

摘要

出生后心脏发育的特征是心脏重塑的关键时期。为了表征自由基、脂肪酸及其氧化产物诱导的亲脂部分的变化,对脂褐素样色素(LFP)进行了研究。通过气相色谱分析脂肪酸,通过荧光技术研究LFP。通过光谱方法表征的荧光团通过高效液相色谱进一步分离。脂肪酸组成的主要变化在出生后立即发生,然后在成熟过程中发生。LFP的荧光在出生后第1、4、8和14天有明显变化,且与成年动物不同。LFP包含几种从胎儿期到成年期都存在的荧光团。在发育过程中没有形成新的主要荧光团,只是各个荧光团的丰度发生了调节,这导致了光谱阵列形状的变化。高效液相色谱分离出激发最大值在360nm、发射最大值在410nm的荧光团。出生后第1天立即出现新的色谱上不同的物种,然后在第30天和第60天出现。出生后立即消耗多不饱和脂肪酸并随后形成LFP表明氧化应激参与了正常的心脏发育。

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