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第三代n-3多不饱和脂肪酸缺乏大鼠的视网膜敏感性丧失

Retinal sensitivity loss in third-generation n-3 PUFA-deficient rats.

作者信息

Weisinger Harrison S, Armitage James A, Jeffrey Brett G, Mitchell Drake C, Moriguchi Toru, Sinclair Andrew J, Weisinger Richard S, Salem Norman

机构信息

Howard Florey Institute of Experimental Physiology and Medicine, University of Melbourne, Victoria, Australia.

出版信息

Lipids. 2002 Aug;37(8):759-65. doi: 10.1007/s11745-002-0958-3.

Abstract

A previous study conducted in guinea pigs suggested that ingestion of diets high in EPA and DHA may result in suboptimal retinal function. The aim of the present study was to evaluate retinal function in pigmented (Long-Evans) rats, raised to a third generation on diets that were either deficient in n-3 PUFA or adequate (with the addition of DHA). Electroretinographic assessment employed full-field white flash stimulation. Photoreceptor responses were evaluated in terms of peak amplitudes and implicit times (a-wave, b-wave), intensity-response functions (Naka-Rushton), and the parameters of a model of transduction (P3). Retinal phospholipid FA composition was measured by capillary GLC. DHA levels were reduced by 55% in n-3-deficient animals compared with the n-3-adequate group, whereas the levels of docosapentaenoic acid n-6 were 44 times higher in n-3-deficient animals. The level of arachidonic acid was marginally higher (12.8%) in n-6-adequate animals. The n-3-deficient animals exhibited significantly reduced retinal sensitivity (sigma and S values were both affected by 0.29 log units) and increased b-wave implicit times compared with those fed the n-3-adequate diet. These data suggest that n-3 PUFA are required for development of retinal sensitivity, more so than other indices of retinal function assessed by current methods, such as maximal response amplitude. However, the benefit for retinal function of adding preformed DHA to diets already replete in n-3 PUFA remains unclear.

摘要

先前在豚鼠身上进行的一项研究表明,摄入富含二十碳五烯酸(EPA)和二十二碳六烯酸(DHA)的饮食可能会导致视网膜功能欠佳。本研究的目的是评估在缺乏n-3多不饱和脂肪酸(PUFA)或充足(添加DHA)的饮食条件下饲养至第三代的有色(Long-Evans)大鼠的视网膜功能。视网膜电图评估采用全视野白色闪光刺激。根据峰值幅度和隐含时间(a波、b波)、强度-反应函数(中谷-拉什顿函数)以及转导模型参数(P3)来评估光感受器反应。通过毛细管气相色谱法测量视网膜磷脂脂肪酸组成。与n-3充足组相比,n-3缺乏动物的DHA水平降低了55%,而n-3缺乏动物中二十二碳五烯酸n-6的水平高出44倍。n-6充足动物中花生四烯酸的水平略高(12.8%)。与喂食n-3充足饮食的动物相比,n-3缺乏动物的视网膜敏感度显著降低(σ和S值均受0.29对数单位的影响),且b波隐含时间增加。这些数据表明,n-3 PUFA是视网膜敏感度发育所必需的,比目前所评估的视网膜功能的其他指标(如最大反应幅度)更为重要。然而,在已经富含n-3 PUFA的饮食中添加预先形成的DHA对视网膜功能的益处仍不清楚。

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