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缺氧缺血新生大鼠模型中磺丁醚-β-环糊精修饰自组装多肽纳米支架中地塞米松的持续释放。

Sustained Release of Dexamethasone from Sulfobutyl Ether β-cyclodextrin Modified Self-Assembling Peptide Nanoscaffolds in a Perinatal Rat Model of Hypoxia-Ischemia.

机构信息

School of Life Science and Engineering, Southwest Jiaotong University, Chengdu, Sichuan, 611756, China.

Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta, T6G 2V4, Canada.

出版信息

Adv Healthc Mater. 2019 Jun;8(11):e1900083. doi: 10.1002/adhm.201900083. Epub 2019 Apr 12.

Abstract

Inflammation plays a critical role in the development of hypoxia-ischemia (HI) induced newborn brain damage. A localized, sustained delivery of dexamethasone (Dex) through an intracerebral injection could reduce the inflammatory response in the injured perinatal brain while avoiding unnecessary side effects. Herein, investigated using anionic sulfobutyl ether β-cyclodextrin (SBE-β-CD) to load Dex in the (RADA) nanofiber networks as a means of reducing the inflammatory response to HI injury is investigated. The ionic interaction between SBE-β-CD and (RADA) dramatically affects nanofiber formation and the stability of the nanoscaffold is highly dependent on the SBE-β-CD/(RADA) ratio. It is observed that the Dex release rate is affected by the concentration of SBE-β-CD and (RADA) peptide. A higher concentration of SBE-β-CD or (RADA) results in a higher drug encapsulation efficiency and slower release rate of Dex. This phenomenon may be related to the structure of fiber bundles. Animal studies show that nanoscaffold loaded with Dex inhibits both microglia activation and glial scar formation compared to controls (Dex alone or nanoscaffold alone) within 2 days of injury. It is thought that this is a step toward building a multifaceted nanoscaffold that can be used to treat HI events in perinates.

摘要

炎症在缺氧缺血(HI)诱导的新生脑损伤的发展中起着关键作用。通过脑内注射将地塞米松(Dex)局部、持续递送至损伤的围产期大脑,可以减轻炎症反应,同时避免不必要的副作用。在此,研究了使用阴离子磺丁基醚 β-环糊精(SBE-β-CD)将 Dex 加载到(RADA)纳米纤维网络中,以减轻 HI 损伤的炎症反应。SBE-β-CD 和(RADA)之间的离子相互作用极大地影响了纳米纤维的形成,纳米支架的稳定性高度依赖于 SBE-β-CD/(RADA)的比例。结果表明,Dex 的释放速率受 SBE-β-CD 和(RADA)肽浓度的影响。SBE-β-CD 或(RADA)的浓度越高,Dex 的药物包封效率越高,释放速度越慢。这种现象可能与纤维束的结构有关。动物研究表明,与对照组(单独使用 Dex 或纳米支架)相比,在损伤后 2 天内,负载 Dex 的纳米支架可抑制小胶质细胞激活和神经胶质瘢痕形成。这被认为是朝着构建多功能纳米支架迈出的一步,该支架可用于治疗围产期 HI 事件。

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