Lenzi Queila, Correia-Santos André Manoel, Lenzi-Almeida Kátia Calvi, Boaventura Gilson Teles
a Laboratory of Experimental Nutrition, Department of Nutrition and Dietetics , Nutrition College, Fluminense Federal University , Niterói , Rio de Janeiro , Brazil.
b Medical College, Rio de Janeiro Federal University - Campus UFRJ - Macaé , Rio de Janeiro , Brazil.
J Matern Fetal Neonatal Med. 2018 Mar;31(5):625-632. doi: 10.1080/14767058.2017.1293028. Epub 2017 Feb 28.
This study aimed to evaluate the influence of a diet based on flaxseed upon the development of the nervous system, more specifically, the optic nerve and retina.
Rats were divided into three groups: Control (CG), Flaxseed (FG), and Modified Control (MCG). The analyses were performed in the offspring (n = 6/group) at the immediate postnatal period (P0), 14 d of life (P14) and 30 d of life (P30). Descriptive analysis and histomorphometry of optic nerve and retina were performed.
There was a great evolution in the development of the nervous fascicles, connective trabeculae, and blood vessels, when comparing the three ages studied, and these characteristics were more evident in FG at all three ages. The P0, P14, and P30 retina showed similar morphology to that described in the literature. In histomorphometry, at P14, the FG presented the retina and its layers with significant increase in thickness, except for internal granular and ganglionar, whereas MCG had greater retina and photoreceptor layers thickness, inner plexiform and external granular when compared with CG (p < .05).
The use of flaxseed in the pre-and postnatal period displays favourable influence on the development of rat optic nerve and retina, probably leading to myelination.
本研究旨在评估基于亚麻籽的饮食对神经系统发育的影响,更具体地说是对视神经和视网膜的影响。
将大鼠分为三组:对照组(CG)、亚麻籽组(FG)和改良对照组(MCG)。对出生后即刻(P0)、出生后14天(P14)和出生后30天(P30)的子代(每组n = 6)进行分析。对视神经和视网膜进行描述性分析和组织形态计量学分析。
比较所研究的三个年龄段,神经束、结缔组织小梁和血管的发育有很大进展,并且这些特征在所有三个年龄段的FG组中更为明显。P0、P14和P30的视网膜形态与文献中描述的相似。在组织形态计量学方面,在P14时,FG组的视网膜及其各层厚度显著增加,但内颗粒层和神经节层除外,而与CG组相比,MCG组的视网膜和光感受器层厚度、内网状层和外颗粒层更大(p < 0.05)。
在产前和产后使用亚麻籽对大鼠视神经和视网膜的发育具有有利影响,可能导致髓鞘形成。