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用于药物输送的 pH 和离子敏感型聚合物。

pH- and ion-sensitive polymers for drug delivery.

机构信息

Drug Delivery, Pharmaceutical Research and Technology Labs, Astellas Pharma, Inc. , 180 Ozumi, Yaizu, Shizuoka 425-0072 , Japan +81 54 627 6861 ; +81 54 627 9918 ;

出版信息

Expert Opin Drug Deliv. 2013 Nov;10(11):1497-513. doi: 10.1517/17425247.2013.821978. Epub 2013 Aug 9.

Abstract

INTRODUCTION

Drug delivery systems (DDSs) are important for effective, safe, and convenient administration of drugs. pH- and ion-responsive polymers have been widely employed in DDS for site-specific drug release due to their abilities to exploit specific pH- or ion-gradients in the human body.

AREAS COVERED

Having pH-sensitivity, cationic polymers can mask the taste of drugs and release drugs in the stomach by responding to gastric low pH. Anionic polymers responsive to intestinal high pH are used for preventing gastric degradation of drug, colon drug delivery and achieving high bioavailability of weak basic drugs. Tumor-targeted DDSs have been developed based on polymers with imidazole groups or poly(β-amino ester) responsive to tumoral low pH. Polymers with pH-sensitive chemical linkages, such as hydrazone, acetal, ortho ester and vinyl ester, pH-sensitive cell-penetrating peptides and cationic polymers undergoing pH-dependent protonation have been studied to utilize the pH gradient along the endocytic pathway for intracellular drug delivery. As ion-sensitive polymers, ion-exchange resins are frequently used for taste-masking, counterion-responsive drug release and sustained drug release. Polymers responding to ions in the saliva and gastrointestinal fluids are also used for controlled drug release in oral drug formulations.

EXPERT OPINION

Stimuli-responsive DDSs are important for achieving site-specific and controlled drug release; however, intraindividual, interindividual and intercellular variations of pH should be considered when designing DDSs or drug products. Combination of polymers and other components, and deeper understanding of human physiology are important for development of pH- and ion-sensitive polymeric DDS products for patients.

摘要

简介

药物传递系统(DDS)对于药物的有效、安全和便捷给药非常重要。由于能够利用人体特定的 pH 或离子梯度,pH 和离子响应聚合物已广泛应用于 DDS 中以实现药物的靶向释放。

涵盖领域

具有 pH 敏感性的阳离子聚合物可以通过响应胃部的低 pH 值来掩盖药物的味道并在胃部释放药物。响应肠道高 pH 值的阴离子聚合物可用于防止药物在胃中降解、结肠给药和实现弱碱性药物的高生物利用度。基于对肿瘤低 pH 值有响应的具有咪唑基团或聚(β-氨基酯)的聚合物,已经开发了肿瘤靶向 DDS。已经研究了具有 pH 敏感化学连接的聚合物,如腙、缩醛、邻酯和乙烯酯、pH 敏感的细胞穿透肽和经历 pH 依赖性质子化的阳离子聚合物,以利用内体途径中的 pH 梯度进行细胞内药物递送。作为离子敏感聚合物,离子交换树脂常用于掩味、抗衡离子响应药物释放和持续药物释放。响应唾液和胃肠道液中离子的聚合物也用于口服药物制剂中的控释。

专家意见

刺激响应性 DDS 对于实现药物的靶向和控释非常重要;然而,在设计 DDS 或药物产品时,应考虑个体内、个体间和细胞内 pH 值的变化。聚合物与其他成分的组合以及对人体生理学的深入了解,对于开发用于患者的 pH 和离子敏感聚合物 DDS 产品非常重要。

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