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一种肠道“变形金刚”样的纳米载体系统,用于提高难溶性药物的口服生物利用度。

An Intestinal "Transformers"-like Nanocarrier System for Enhancing the Oral Bioavailability of Poorly Water-Soluble Drugs.

机构信息

Graduate Institute of Biomedical Materials and Tissue Engineering , Taipei Medical University , Taipei 11049 , Taiwan (ROC).

Department of Nuclear Medicine and Molecular Imaging Center , Chang Gung Memorial Hospital , Taoyuan 333 , Taiwan (ROC).

出版信息

ACS Nano. 2018 Jul 24;12(7):6389-6397. doi: 10.1021/acsnano.8b00470. Epub 2018 Jun 6.

Abstract

Increasing the intestinal dissolution of orally administered poorly water-soluble drugs that have poor oral bioavailability to a therapeutically effective level has long been an elusive goal. In this work, an approach that can greatly enhance the oral bioavailability of a poorly water-soluble drug such as curcumin (CUR) is developed, using a "Transformers"-like nanocarrier system (TLNS) that can self-emulsify the drug molecules in the intestinal lumen to form nanoemulsions. Owing to its known anti-inflammation activity, the use of CUR in treating pancreatitis is evaluated herein. Structural changes of the TLNS in the intestinal environment to form the CUR-laden nanoemulsions are confirmed in vitro. The therapeutic efficacy of this TLNS is evaluated in rats with experimentally induced acute pancreatitis (AP). Notably, the CUR-laden nanoemulsions that are obtained using the proposed TLNS can passively target intestinal M cells, in which they are transcytosed and then transported into the pancreatic tissues via the intestinal lymphatic system. The pancreases in rats that are treated with the TLNS yield approximately 12 times stronger CUR signals than their counterparts receiving free CUR, potentially improving the recovery of AP. These findings demonstrate that the proposed TLNS can markedly increase the intestinal drug dissolution, making oral delivery a favorable noninvasive means of administering poorly water-soluble drugs.

摘要

将口服生物利用度差的疏水性药物的肠道溶解度提高到治疗有效水平一直是一个难以实现的目标。在这项工作中,开发了一种可以极大提高疏水性药物(如姜黄素(CUR))口服生物利用度的方法,使用一种类似于“Transformers”的纳米载体系统(TLNS),可以在肠道腔内自乳化药物分子形成纳米乳剂。由于其已知的抗炎活性,本文评估了 CUR 在胰腺炎治疗中的应用。在体外证实了 TLNS 在肠道环境中形成载有 CUR 的纳米乳剂的结构变化。用该 TLNS 评价了在实验性急性胰腺炎(AP)大鼠中的治疗效果。值得注意的是,使用所提出的 TLNS 获得的载有 CUR 的纳米乳剂可以被动靶向肠道 M 细胞,在 M 细胞中它们被转胞吞作用,然后通过肠淋巴系统转运到胰腺组织中。用 TLNS 治疗的大鼠的胰腺产生的 CUR 信号比接受游离 CUR 的大鼠强约 12 倍,这可能有助于 AP 的恢复。这些发现表明,所提出的 TLNS 可以显著增加肠道药物溶解度,使口服给药成为一种有吸引力的非侵入性给药方式,适用于疏水性药物。

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