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用于pH响应性递送疏水药物的新型琥珀酰聚糖二醛/氨乙基氨基甲酰基-β-环糊精水凝胶

Novel succinoglycan dialdehyde/aminoethylcarbamoyl-β-cyclodextrin hydrogels for pH-responsive delivery of hydrophobic drugs.

作者信息

Shin Younghyun, Hu Yiluo, Park Sohyun, Jung Seunho

机构信息

Department of Bioscience and Biotechnology, Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 05029, South Korea.

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

出版信息

Carbohydr Polym. 2023 Apr 1;305:120568. doi: 10.1016/j.carbpol.2023.120568. Epub 2023 Jan 12.

Abstract

β-Cyclodextrin cross-linked succinoglycan dialdehyde hydrogels was prepared for hydrophobic drug delivery. Succinoglycan dialdehyde (SGDA) was synthesized from sodium periodate oxidation of succinoglycan isolated from Sinorhizobium meliloti Rm1021. Aminoethylcarbamoyl-β-cyclodextrin (ACD) was crosslinked with SGDA to form a succinoglycan dialdehyde/aminoethylcarbamoyl-β-cyclodextrin (SGDA/ACD) hydrogels. The SGDA/ACD hydrogels exhibited a 65.7 % improvement in storage modulus (G') and a 5.7-fold higher compressive strain than the SGDA/poly(ethylene glycol) diamine (PEG) hydrogels as controls. A hardly soluble drug, baicalein was used for the drug loading and release properties of SGDA/ACD hydrogels. Baicalein was released about 98 % within 48 h at pH 7.4, but not completely released even after 48 h at pH 2.0. In addition, at pH 7.4, only about 56 % of the baicalein loaded on the SGDA/PEG hydrogels was released within 48 h, while about 98 % of the baicalein loaded on the SGDA/ACD hydrogels was released within 48 h. It indicates that ACD significantly improved the solubilization efficacy of the baicalein. In vitro testing of cell viability using HEK-293 cells also showed that the SGDA/ACD hydrogels were suitable for the cells. In conclusion, SGDA/ACD hydrogels significantly enhance the utilization of baicalein and provide potential applications in drug delivery systems for hardly soluble drugs.

摘要

β-环糊精交联琥珀聚糖二醛水凝胶被制备用于疏水性药物递送。琥珀聚糖二醛(SGDA)由从苜蓿中华根瘤菌Rm1021中分离得到的琥珀聚糖经高碘酸钠氧化合成。氨基乙基氨基甲酰基-β-环糊精(ACD)与SGDA交联形成琥珀聚糖二醛/氨基乙基氨基甲酰基-β-环糊精(SGDA/ACD)水凝胶。作为对照,SGDA/ACD水凝胶的储能模量(G')提高了65.7%,压缩应变比SGDA/聚乙二醇二胺(PEG)水凝胶高5.7倍。一种难溶性药物黄芩苷被用于研究SGDA/ACD水凝胶的载药和释放性能。在pH 7.4时,黄芩苷在48小时内释放约98%,但在pH 2.0时即使48小时后也未完全释放。此外,在pH 7.4时,负载在SGDA/PEG水凝胶上的黄芩苷在48小时内仅释放约56%,而负载在SGDA/ACD水凝胶上的黄芩苷在48小时内释放约98%。这表明ACD显著提高了黄芩苷的增溶效果。使用HEK-293细胞进行的细胞活力体外测试也表明SGDA/ACD水凝胶适用于细胞。总之,SGDA/ACD水凝胶显著提高了黄芩苷的利用率,并为难溶性药物的药物递送系统提供了潜在应用。

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