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Preparation and Evaluation of Diltiazem Hydrochloride Diffusion-Controlled Transdermal Delivery System

机译:盐酸地尔硫卓扩散控制的透皮给药系统的制备与评价

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摘要

The objective was to investigate the suitable polymeric films for the development of diltiazem hydrochloride (diltiazem HCl) transdermal drug delivery systems. Hydroxypropyl methylcellulose (HPMC) and ethylcellulose (EC) were used as hydrophilic and hydrophobic film formers, respectively. Effects of HPMC/EC ratios and plasticizers on mechanical properties of free films were studied. Effects of HPMC/EC ratios on moisture uptake, in vitro release and permeation through pig ear skin of diltiazem HCl films were evaluated. Influence of enhancers including isopropyl myristate (IPM), isopropyl palmitate (IPP), N-methyl-2-pyrrolidone, oleic acid, polyethylene glycol 400, propylene glycol, and Tween80 on permeation was evaluated. It was found that addition of EC into HPMC film produced lower ultimate tensile strength, percent elongation at break and Young’s modulus, however, addition of EC up to 60% resulted in too hard film. Plasticization with dibutyl phthalate (DBP) produced higher strength but lower elongation as compared to triethyl citrate. The moisture uptake and initial release rates (0–1 h) of diltiazem HCl films decreased with increasing the EC ratio. Diltiazem HCl films (10:0, 8:2 and 6:4 HPMC/EC) were studied for permeation because of the higher release rate. The 10:0 and 8:2 HPMC/EC films showed the comparable permeation-time profiles, and had higher flux values and shorter lag time as compared to 6:4 HPMC/EC film. Addition of IPM, IPP or Tween80 could enhance the fluxes for approx. three times while Tween80 also shorten the lag time. In conclusion, the film composed of 8:2 HPMC/EC, 30% DBP and 10% IPM, IPP or Tween80 loaded with 25% diltiazem HCl should be selected for manufacturing transdermal patch by using a suitable adhesive layer and backing membrane. Further in vitro permeation and in vivo performance studies are required.
机译:目的是研究用于开发盐酸地尔硫卓(盐酸地尔硫卓)透皮药物递送系统的合适的聚合物薄膜。羟丙基甲基纤维素(HPMC)和乙基纤维素(EC)分别用作亲水性和疏水性成膜剂。研究了HPMC / EC比例和增塑剂对自由膜力学性能的影响。评估了HPMC / EC比例对盐酸地尔硫卓薄膜的水分吸收,体外释放和通过猪耳皮肤的渗透的影响。评估了肉豆蔻酸异丙酯(IPM),棕榈酸异丙酯(IPP),N-甲基-2-吡咯烷酮,油酸,聚乙二醇400,丙二醇和Tween80等增强剂对渗透的影响。已经发现,在HPMC膜中添加EC会降低最终抗张强度,断裂伸长率和杨氏模量,但是,将EC添加至60%会导致膜太硬。与柠檬酸三乙酯相比,用邻苯二甲酸二丁酯(DBP)进行增塑可产生更高的强度,但伸长率却更低。盐酸地尔硫卓薄膜的水分吸收和初始释放速率(0-1小时)随EC比的增加而降低。由于较高的释放速率,研究了盐酸地尔硫卓薄膜(10:0、8:2和6:4 HPMC / EC)的渗透性。与6:4 HPMC / EC膜相比,10:0和8:2 HPMC / EC膜显示出可比的渗透时间曲线,通量值更高且滞后时间更短。添加IPM,IPP或Tween80可以将通量提高约5%。三倍,而Tween80也缩短了延迟时间。总之,应选择由8:2 HPMC / EC,30%DBP和10%IPM,IPP或Tween80以及25%地尔硫卓HCl组成的薄膜,以通过使用合适的粘合剂层和衬膜来制造透皮贴剂。需要进一步的体外渗透和体内性能研究。

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