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首页> 外文期刊>Journal of pharmaceutical sciences. >Zonula occludens toxin increases the permeability of molecular weight markers and chemotherapeutic agents across the bovine brain microvessel endothelial cells.
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Zonula occludens toxin increases the permeability of molecular weight markers and chemotherapeutic agents across the bovine brain microvessel endothelial cells.

机译:Zonula咬合毒素增加了分子量标记物和化学治疗剂在牛脑微血管内皮细胞中的渗透性。

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摘要

The purpose of this study was to examine the ability of Zonula occludens toxin (Zot) to reversibly open tight junctions in bovine brain microvessel endothelial cells (BBMECs) to enhance drug delivery via the paracellular pathway. Transport across BBMEC monolayers was examined for molecular weight markers and chemotherapeutic agents ([(14)C]sucrose, [(14)C]inulin, [(3)H]propranolol, [(3)H]doxorubicin, and [(14)C]paclitaxel) with Zot (0.0-4.0 microg/mL). TEER of monolayers was measured to assess effect and reversibility of Zot. Cell viability of BBMEC in the presence of Zot was assessed by trypan blue exclusion staining. Apparent permeability (P(app)), enhancement ratio (R), and percent increase in transport determined were statistically compared by ANOVA. A significant increase (p < 0.05) in P(app) was observed for the transport of [(14)C]sucrose, [(14)C]inulin, [(3)H]doxorubicin, and [(14)C]paclitaxel at a 4.0 microg/mL concentration of Zot. A significant concentration-dependent decrease in TEER was observed on treatment with Zot with rapid reversal to baseline after removal. Zot (4 micro/ml) was found to be nontoxic to the BBMECs after 2 hours incubation. In conclusion, Zot increased paracellular transport across the BBMEC in a reversible, concentration-dependent manner. Modulation of paracellular transport with Zot may be used to increase the brain permeability of potent central nervous system-active drugs, including anticancer agents. Copyright 2003 Wiley-Liss, Inc. and the American Pharmaceutical Association J Pharm Sci 92:414-423, 2003
机译:这项研究的目的是检查Zonula咬合毒素(Zot)可逆地打开牛脑微血管内皮细胞(BBMEC)中紧密连接以增强通过旁细胞途径进行药物递送的能力。检查了跨BBMEC单层的转运蛋白的分子量标志物和化学治疗剂([(14)C]蔗糖,[(14)C]菊粉,[(3)H]普萘洛尔,[(3)H]阿霉素和[(14 [C]紫杉醇)与Zot(0.0-4.0 microg / mL)。测量单层的TEER以评估Zot的作用和可逆性。通过台盼蓝排斥染色评估在Zot存在下BBMEC的细胞活力。通过ANOVA统计比较确定的表观渗透率(P(app)),增强比(R)和传输增加百分比。对于[(14)C]蔗糖,[(14)C]菊粉,[(3)H]阿霉素和[(14C)]的转运,P(app)明显增加(p <0.05)。 Zot浓度为4.0 microg / mL的紫杉醇。在用Zot治疗后,观察到TEER的浓度依赖性显着降低,并在去除后迅速逆转至基线。孵育2小时后,发现Zot(4 micro / ml)对BBMEC无毒。总之,Zot以可逆的,浓度依赖性的方式增加了跨BBMEC的细胞旁运输。用Zot调节细胞旁运输的作用可用于增加有效的中枢神经系统活性药物(包括抗癌药)的脑通透性。版权所有2003 Wiley-Liss,Inc.和美国药学会J Pharm Sci 92:414-423,2003

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