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首页> 外文期刊>ACS applied materials & interfaces >Evaluation of Dysprosia Aerogels as Drug Delivery Systems: A Comparative Study with Random and Ordered Mesoporous Silicas
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Evaluation of Dysprosia Aerogels as Drug Delivery Systems: A Comparative Study with Random and Ordered Mesoporous Silicas

机译:评价作为药物传递系统的发育不良气凝胶:与随机和有序介孔二氧化硅的比较研究。

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摘要

Biocompatible dysprosia aerogels were synthesized from DyCl3·6H2O and were reinforced mechanically with a conformal nano-thin-polyurea coating applied over their skeletal framework. The random mesoporous space of dysprosia aerogels was filled up to about 30% v/v with paracetamol, indomethacin, or insulin, and the drug release rate was monitored spectrophotometrically in phosphate buffer (pH = 7.4) or 0.1 M aqueous HC1. The drug uptake and release study was conducted comparatively with polyurea-crosslinked random silica aerogels, as well as with as-prepared (native) and polyurea-crosslinked mesoporous silica perforated with ordered 7 nm tubes in hexagonal packing. Drug uptake from random nanostructures (silica or dysprosia) was higher (30-35% w/w) and the release rate was slower (typically >20 h) relative to ordered silica (19-21% w/w, <1.5 h, respectively). Drug release data from dysprosia aerogels were fitted with a flux equation consisting of three additive terms that correspond to drug stored successively in three hierarchical pore sites on the skeletal framework. The high drug uptake and slow release from dysprosia aerogels, in combination with their low toxicity, strong paramagnetism, and the possibility for neutron activation render those materials attractive multifunctional vehicles for site-specific drug delivery. Kare earth;;dysprosium;;aerogels;;drug delivery;;biocompatibility;;paracetamol;;indomethacin;;insulin
机译:由DyCl3·6H2O合成生物相容性不良性气凝胶,并通过在其骨架框架上施加保形的纳米薄聚脲涂层对其进行机械增强。用对乙酰氨基酚,消炎痛或胰岛素将发育不良气凝胶的随机介孔空间填充至约30%v / v,并在磷酸盐缓冲液(pH = 7.4)或0.1 M HCl水溶液中分光光度法监测药物的释放速率。用聚脲交联的无规二氧化硅气凝胶,以及制备好的(天然)和聚脲交联的介孔二氧化硅进行了有序的7 nm管六角形穿孔的药物吸收和释放研究。相对于有序二氧化硅(19-21%w / w,<1.5 h,分别)。不良性气凝胶的药物释放数据拟合了一个通量方程,该方程由三个加法项组成,分别对应于连续存储在骨骼骨架上三个分层孔位中的药物。不良性气凝胶的高药物吸收和缓慢释放,再加上低毒性,强顺磁性和中子活化的可能性,使这些材料成为用于特定部位药物输送的多功能载体。稀土; dy;气凝胶;药物输送;生物相容性;扑热息痛;吲哚美辛;胰岛素

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