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视网膜外血视网膜屏障与血脑屏障的功能特性及比较

Functional characterization and comparison of the outer blood-retina barrier and the blood-brain barrier.

作者信息

Steuer Heiko, Jaworski Andreas, Elger Bernd, Kaussmann Martin, Keldenich Jörg, Schneider Herbert, Stoll Dieter, Schlosshauer Burkhard

机构信息

NMI Natural and Medical Sciences Institute, University of Tübingen, Markwiesenstr. 55, D-72770 Rütlingen, Germany.

出版信息

Invest Ophthalmol Vis Sci. 2005 Mar;46(3):1047-53. doi: 10.1167/iovs.04-0925.

Abstract

PURPOSE

To determine efflux systems of the outer blood-retina barrier (oBRB) and compare the oBRB with the blood-brain barrier (BBB).

METHODS

Porcine oBRB structure and transport characteristics of freshly dissected intact tissue sheets were investigated with scanning electron microscopy, immunocytochemistry, vital dye labeling, and pharmacological agents, using HPLC/mass spectrometry. To compare drug permeation across the oBRB and the BBB, three different systems were used: (1) oBRB tissue sheets in a two-chamber device in vitro; (2) an in vitro BBB model composed of purified astrocytes and brain capillary endothelial cells on transfilter membranes; and (3) an in vivo model based on the brain-plasma ratio of drugs in mice.

RESULTS

Efflux pumps (multidrug resistance protein [P-gp] and multidrug resistance-associated protein [MRP]) were demonstrated by antibody staining. Side-specific application of three P-gp and MRP substrates and selective transport inhibition suggested that both membrane proteins were preferentially located on the choroidal side of the oBRB. Therefore, the efflux was directed toward the blood, as in the BBB. To relate the transport characteristics of the oBRB to the BBB, up to nine different test compounds were used. The ranking of the permeability coefficients (P(e)) and the brain-plasma ratios of test compounds indicated that the oBRB has barrier and carrier features similar to those of the BBB in vitro and in vivo.

CONCLUSIONS

Despite the fact that epithelial oBRB and endothelial BBB have developed as separate entities with many site-specific functions, their transport and permeation characteristics display surprising similarities, that include the polarized expression of the two major efflux pumps P-gp and MRP.

摘要

目的

确定外血视网膜屏障(oBRB)的外排系统,并将oBRB与血脑屏障(BBB)进行比较。

方法

使用扫描电子显微镜、免疫细胞化学、活体染料标记和药理试剂,并采用高效液相色谱/质谱法,研究新鲜解剖的完整组织片的猪oBRB结构和转运特性。为了比较药物透过oBRB和BBB的情况,使用了三种不同的系统:(1)体外双室装置中的oBRB组织片;(2)由纯化的星形胶质细胞和跨滤膜上的脑毛细血管内皮细胞组成的体外BBB模型;(3)基于小鼠脑中药物血浆比的体内模型。

结果

通过抗体染色证实了外排泵(多药耐药蛋白[P-gp]和多药耐药相关蛋白[MRP])的存在。三种P-gp和MRP底物的侧特异性应用以及选择性转运抑制表明,这两种膜蛋白均优先位于oBRB的脉络膜侧。因此,与BBB一样,外排是朝向血液的。为了将oBRB的转运特性与BBB相关联,使用了多达九种不同的测试化合物。测试化合物的渗透系数(P(e))和脑血浆比的排序表明,oBRB在体外和体内具有与BBB相似的屏障和载体特征。

结论

尽管上皮性oBRB和内皮性BBB已发展为具有许多位点特异性功能的独立实体,但它们的转运和渗透特性显示出惊人的相似性,包括两种主要外排泵P-gp和MRP的极化表达。

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