Indulekha S, Arunkumar P, Bahadur D, Srivastava R
Department of Biosciences & Bioengineering, Indian Institute of Technology Bombay, Mumbai 400076, India.
Centre for Research in Nanotechnology and Science, Indian Institute of Technology Bombay, Mumbai 400076, India.
Mater Sci Eng C Mater Biol Appl. 2016 May;62:113-22. doi: 10.1016/j.msec.2016.01.021. Epub 2016 Jan 11.
The main aim of this work is to design a heat triggered transdermal drug delivery system (TDDS) using a thermoresponsive polymer, poly (N-vinyl caprolactam) [PNVCL] based gel, where in patients can themselves administer a pulse of drug on mere application of heat pad over the TDDS, whenever pain is experienced. The phase transition temperature of PNVCL was tuned to 35 °C by grafting it onto a pH sensitive biopolymer, Chitosan, to synthesize Chitosan-g-PNVCL (CP) co-polymer which render the gel both thermo- and pH-responsive property. The application of triggered delivery was explored by loading acetamidophenol (a model hydrophilic drug) and etoricoxib (a model hydrophobic drug). In vitro drug release experiments were performed at three different temperatures (25, 32 and 39 °C) at two different pH (5.5 and 7) to study its drug release with response to temperature and pH. Drug release profiles obtained were found to have enhanced release for both the drugs respectively at 39 °C (above LCST) and pH5.5 when compared to other release conditions. In vitro skin permeation of both the drugs performed in rat abdominal skin using Franz diffusion cell showed enhanced drug release when the skin was subjected to higher temperature (39 °C). Moreover, it was also found that skin permeation for hydrophobic drug was better than that of hydrophilic drug. The in vivo biocompatibility studies of the CP gel in rat skin proved that the gel is biocompatible. The results obtained demonstrated the potential use of the thermoresponsive CP gel as an on-demand localized drug delivery system.
这项工作的主要目的是设计一种热触发透皮给药系统(TDDS),该系统使用基于热响应性聚合物聚(N-乙烯基己内酰胺)[PNVCL]的凝胶,这样患者在感到疼痛时,只需在TDDS上放置加热垫,就能自行给药一次。通过将PNVCL接枝到pH敏感生物聚合物壳聚糖上,将PNVCL的相变温度调节至35°C,以合成壳聚糖-g-PNVCL(CP)共聚物,使凝胶具有热响应和pH响应特性。通过负载对乙酰氨基酚(一种典型的亲水性药物)和依托考昔(一种典型的疏水性药物)来探索触发释放的应用。在两个不同的pH值(5.5和7)下,于三个不同温度(25、32和39°C)进行体外药物释放实验,以研究其药物释放对温度和pH的响应。与其他释放条件相比,发现获得的药物释放曲线在39°C(高于最低临界溶液温度)和pH5.5时,两种药物的释放均有所增强。使用Franz扩散池在大鼠腹部皮肤进行的两种药物的体外皮肤渗透实验表明,当皮肤处于较高温度(39°C)时,药物释放增强。此外,还发现疏水性药物的皮肤渗透率优于亲水性药物。CP凝胶在大鼠皮肤中的体内生物相容性研究证明该凝胶具有生物相容性。所获得的结果证明了热响应性CP凝胶作为按需局部给药系统的潜在用途。