Sayyar Zahra, Mahdavinia Gholam Reza, Khataee Alireza
Department of Chemical Engineering, University of Bonab, Bonab, 55513-95133, Iran.
Department of Chemistry, Faculty of Science, Polymer Research Laboratory, University of Maragheh, Maragheh, 55181-83111, Iran.
J Biol Eng. 2023 Oct 31;17(1):66. doi: 10.1186/s13036-023-00385-1.
Montmorillonite (MMt) is extensively applied as an efficient drug-carrier in designing drug delivery systems (DDS) due to its high specific surface area to load drugs. Modification of MMt via iron (Fe) blending can thus be a desirable method to improve its biocompatibility. Herein, magnetic nano-carriers involving the magnetic MMt (mMMt) core surrounded by chitosan (Chito) as a biopolymer and hyaluronic acid (HA) were prepared. To coat the mMMt fabricated through the coprecipitation of the Fe/Fe ions in the presence of MMt, the acquired mMMt as the core was then treated with the Chito/HA solution to induce the cross-linked Chito/HA as the shell (namely, the Chito/HA-mMMt). The transmission electron microscopy (TEM) results accordingly revealed the existence of the mMMt inside the Chito/HA solution. Curcumin (CUR) and ciprofloxacin (CIP) were further employed as two model drugs. The CUR and CIP release from the Chito/HA-mMMt subsequently occurred in a sustained manner and pH-dependently. Additionally, an upsurge in the CUR and CIP release by applying an external magnetic field was observed. Thus, the prepared Chito/HA-mMMt hydrogels promise an outstanding potential performance in terms of expanding novel pH-dependent DDS with a sustained release behavior. The scratch assay of the given hydrogels also confirms their applications for wound healing.
蒙脱石(MMt)因其具有高比表面积可用于负载药物,在药物递送系统(DDS)设计中被广泛用作高效药物载体。因此,通过铁(Fe)掺杂对MMt进行改性可能是提高其生物相容性的理想方法。在此,制备了以磁性MMt(mMMt)为核心、壳聚糖(Chito)作为生物聚合物以及透明质酸(HA)包裹的磁性纳米载体。为了包覆在MMt存在下通过铁/铁离子共沉淀制备的mMMt,将获得的mMMt作为核心,然后用Chito/HA溶液处理,以诱导交联的Chito/HA作为壳层(即Chito/HA-mMMt)。透射电子显微镜(TEM)结果相应地揭示了Chito/HA溶液中存在mMMt。姜黄素(CUR)和环丙沙星(CIP)进一步用作两种模型药物。随后,CUR和CIP从Chito/HA-mMMt中的释放以持续且依赖pH的方式发生。此外,观察到施加外部磁场会使CUR和CIP的释放激增。因此,所制备的Chito/HA-mMMt水凝胶在扩展具有持续释放行为的新型pH依赖型DDS方面具有出色的潜在性能。给定水凝胶的划痕试验也证实了它们在伤口愈合方面的应用。