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紧密连接毒素合成肽衍生物AT1002增强低分子量肝素的体外和体内肠道吸收。

Zonula occludens toxin synthetic peptide derivative AT1002 enhances in vitro and in vivo intestinal absorption of low molecular weight heparin.

作者信息

Motlekar Nusrat A, Fasano Alessio, Wachtel Mitchell S, Youan Bi-Botti C

机构信息

Department of Pharmaceutical Sciences, Texas Tech University Health Sciences Center, School of Pharmacy, Amarillo, TX 79106, USA.

出版信息

J Drug Target. 2006 Jun;14(5):321-9. doi: 10.1080/10611860600613316.

Abstract

Zonula occludens toxin (Zot) is an enterotoxin obtained from the bacterium vibrio cholerae that has been shown to reversibly and safely open the tight junctions and enhance paracellular transport. AT1002 is a novel synthetic hexapeptide derived from Zot. The hypothesis to be tested in this study is that AT1002 enhances the oral absorption of ardeparin, a low molecular weight heparin (LMWH). To test this hypothesis, drug transport through Caco-2 cell monolayers was monitored in the presence and absence of AT1002. Regional permeability studies using rat intestine were performed. Cell viability in the presence of various concentrations of enhancer was determined. The absorption of ardeparin after oral administration in rats was measured by anti-factor Xa assay. Furthermore, the eventual mucosal and epithelial damage was histologically evaluated. Higher ardeparin permeability (approximately 2-fold) compared to control was observed in the presence of 0.025% of AT1002. Regional permeability studies revealed that the permeability of ardeparin across the duodenal membrane was improved by the AT1002. Cell viability studies showed no significant cytotoxicity below 0.0028% of AT1002. In the presence of 100 microg/kg of AT1002, ardeparin oral bioavailability was significantly increased (F(relative/s.c) approximately 20.5%). Furthermore, AT1002 at a dose of 100 microg/kg did not induce any observable morphological damage on gastrointestinal (GI) tissues in vivo. These in vivo and in vitro results suggest that the co-administration of LMWH with AT1002 may be a useful delivery strategy to increase its permeability and hence oral absorption.

摘要

紧密连接毒素(Zot)是一种从霍乱弧菌中获得的肠毒素,已被证明能可逆且安全地打开紧密连接并增强细胞旁转运。AT1002是一种源自Zot的新型合成六肽。本研究要检验的假设是,AT1002能增强低分子肝素(LMWH)阿地肝素的口服吸收。为验证这一假设,在有和没有AT1002的情况下监测了药物通过Caco-2细胞单层的转运。进行了使用大鼠肠道的区域渗透性研究。测定了在各种浓度增强剂存在下的细胞活力。通过抗Xa因子测定法测量大鼠口服阿地肝素后的吸收情况。此外,还对最终的黏膜和上皮损伤进行了组织学评估。在存在0.025%的AT1002时,观察到阿地肝素的渗透性比对照组高(约2倍)。区域渗透性研究表明,AT1002提高了阿地肝素跨十二指肠膜的渗透性。细胞活力研究表明,在AT1002浓度低于0.0028%时没有显著的细胞毒性。在存在100μg/kg的AT1002时,阿地肝素的口服生物利用度显著提高(F(相对/皮下)约为20.5%)。此外,100μg/kg剂量的AT1002在体内未对胃肠道(GI)组织造成任何可观察到的形态学损伤。这些体内和体外结果表明,LMWH与AT1002联合给药可能是一种有用的给药策略,可提高其渗透性,从而增加口服吸收。

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