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将口服补充的α-生育三烯酚递送至大鼠的重要器官和生育酚转运蛋白缺陷小鼠体内。

Delivery of orally supplemented alpha-tocotrienol to vital organs of rats and tocopherol-transport protein deficient mice.

作者信息

Khanna Savita, Patel Viren, Rink Cameron, Roy Sashwati, Sen Chandan K

机构信息

Laboratory of Molecular Medicine, Department of Surgery, Davis Heart and Lung Research Institute, The Ohio State University Medical Center, Columbus, OH 43210, USA.

出版信息

Free Radic Biol Med. 2005 Nov 15;39(10):1310-9. doi: 10.1016/j.freeradbiomed.2005.06.013.

Abstract

The natural vitamin E tocotrienol (TCT) possesses biological properties not shared by tocopherols (TCP). Nanomolar alpha-TCT, not alpha-TCP, is potently neuroprotective (JBC 275:13049; 278:43508). Tocopherol-transport protein (TTP) represents the primary mechanism for maintaining normal alpha-TCP concentrations in plasma and extrahepatic tissues. TTP primarily transports alpha-TCP and has low affinity for alpha-TCT. There are no studies that have investigated tissue delivery of alpha-TCT when orally gavaged on a long-term basis. A long-term study was conducted to examine the effects of alpha-TCT or alpha-TCP supplementation, either alone or in combination, on tissue levels. Rats were maintained on a vitamin E-deficient diet and gavaged with alpha-TCT or alpha-TCP alone or in combination. Five generations of rats were studied over 60 weeks. TTP-deficient mice were supplemented with TCT and bred to examine tissue delivery of oral alpha-TCT. Orally supplemented alpha-TCT was effectively delivered to most tissues over time. When co-supplemented, alpha-TCP outcompeted alpha-TCT for transport systems delivering vitamin E to tissues. To evaluate the significance of TTP in alpha-TCT delivery to tissues, tissue levels of alpha-TCT in supplemented TTP-deficient mice were studied. alpha-TCT was transported to several vital organs in TTP-deficient mice. alpha-TCT restored fertility in TTP-deficient mice. In sum, orally supplemented alpha-TCT was successfully delivered to several vital organs. The transport efficiency of alpha-TCT to tissues may be maximized by eliminating the co-presence of alpha-TCP in the oral supplement. Examination of whether alpha-TCT may benefit humans suffering from neurological disorders because of congenital TTP deficiency is warranted.

摘要

天然维生素E生育三烯酚(TCT)具有生育酚(TCP)所没有的生物学特性。纳摩尔浓度的α-TCT而非α-TCP具有强大的神经保护作用(《生物化学杂志》275:13049;278:43508)。生育酚转运蛋白(TTP)是维持血浆和肝外组织中正常α-TCP浓度的主要机制。TTP主要转运α-TCP,对α-TCT的亲和力较低。尚无研究调查长期经口灌胃给予α-TCT后的组织递送情况。进行了一项长期研究,以检查单独或联合补充α-TCT或α-TCP对组织水平的影响。将大鼠维持在维生素E缺乏的饮食中,并单独或联合经口灌胃给予α-TCT或α-TCP。在60周内对五代大鼠进行了研究。对TTP缺陷小鼠补充TCT并进行繁殖,以检查口服α-TCT的组织递送情况。随着时间的推移,经口补充的α-TCT有效地递送至大多数组织。当联合补充时,α-TCP在将维生素E递送至组织的转运系统中比α-TCT更具竞争力。为了评估TTP在α-TCT向组织递送中的重要性,研究了补充TTP缺陷小鼠中α-TCT的组织水平。α-TCT被转运至TTP缺陷小鼠的多个重要器官。α-TCT恢复了TTP缺陷小鼠的生育能力。总之,经口补充的α-TCT成功递送至多个重要器官。通过消除口服补充剂中α-TCP的共存,可使α-TCT向组织的转运效率最大化。有必要研究α-TCT是否可能使因先天性TTP缺乏而患有神经系统疾病的人类受益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8a7/1820629/0ba6a4dd9df0/nihms-16530-0001.jpg

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Tocotrienols: Vitamin E beyond tocopherols.生育三烯酚:超越生育酚的维生素E。
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