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基于碳水化合物的疏水性抗生素主客体络合作用以增强抗菌活性

Carbohydrate-Based Host-Guest Complexation of Hydrophobic Antibiotics for the Enhancement of Antibacterial Activity.

作者信息

Jeong Daham, Joo Sang-Woo, Shinde Vijay Vilas, Cho Eunae, Jung Seunho

机构信息

Department of Bioscience and Biotechnology, Microbial Carbohydrate Resource Bank (MCRB), Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 05029, Korea.

Center for Biotechnology Research in UBITA (CBRU), Institute for Ubiquitous Information Technology and Applications (UBITA), Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 05029, Korea.

出版信息

Molecules. 2017 Aug 8;22(8):1311. doi: 10.3390/molecules22081311.

Abstract

Host-guest complexation with various hydrophobic drugs has been used to enhance the solubility, permeability, and stability of guest drugs. Physical changes in hydrophobic drugs by complexation have been related to corresponding increases in the bioavailability of these drugs. Carbohydrates, including various derivatives of cyclodextrins, cyclosophoraoses, and some linear oligosaccharides, are generally used as host complexation agents in drug delivery systems. Many antibiotics with low bioavailability have some limitations to their clinical use due to their intrinsically poor aqueous solubility. Bioavailability enhancement is therefore an important step to achieve the desired concentration of antibiotics in the treatment of bacterial infections. Antibiotics encapsulated in a complexation-based drug delivery system will display improved antibacterial activity making it possible to reduce dosages and overcome the serious global problem of antibiotic resistance. Here, we review the present research trends in carbohydrate-based host-guest complexation of various hydrophobic antibiotics as an efficient delivery system to improve solubility, permeability, stability, and controlled release.

摘要

与各种疏水性药物形成主客体络合物已被用于提高客体药物的溶解度、渗透性和稳定性。通过络合作用,疏水性药物的物理变化与这些药物生物利用度的相应提高有关。碳水化合物,包括环糊精、环七糖的各种衍生物以及一些线性寡糖,通常在药物递送系统中用作主体络合试剂。许多生物利用度低的抗生素由于其固有的低水溶性,在临床应用中存在一些局限性。因此,提高生物利用度是在治疗细菌感染时达到所需抗生素浓度的重要一步。封装在基于络合作用的药物递送系统中的抗生素将表现出改善的抗菌活性,从而有可能减少剂量并克服严重的全球抗生素耐药性问题。在此,我们综述了各种疏水性抗生素基于碳水化合物的主客体络合作用作为一种有效的递送系统以改善溶解度、渗透性、稳定性和控释的当前研究趋势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0063/6152325/a11d9cfd4b9e/molecules-22-01311-g001.jpg

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