Nidhi Malviya, Patro M Nagaraju, Kusumvalli Somisetty, Kusumdevi Vemula
Department of Pharmaceutics, Al-Ameen College of Pharmacy.
Department of Endodontics and Conservative Dentistry, Sri Rajiv Gandhi College of Dental Sciences, Bengaluru, Karnataka, India.
Int J Nanomedicine. 2016 Jun 20;11:2901-20. doi: 10.2147/IJN.S94658. eCollection 2016.
Most of the dental surgeries require preoperative anesthetic and postoperative analgesic for painless procedures. A multidrug transmucosal drug delivery system loaded with lignocaine (Lig) base for immediate release and solid lipid nanoparticles (SLNs) of diclofenac (Dic) diethylamine for prolonged release was developed. SLNs were prepared by solvent emulsion-evaporation method with Precirol ATO 5 and Geleol as lipids and Pluronic F 68 as surfactant and optimized with Box-Behnken design for particle size and entrapment efficiency. SLNs were incorporated into the transmucosal patch (TP) prepared with hydroxypropyl cellulose-LF (HPC-LF) and with a backing layer of ethyl cellulose. Optimized SLNs and TP were characterized for Fourier transform infrared spectrophotometry, differential scanning calorimetry, scanning electron microscopy, X-ray diffraction, in vitro release, ex vivo permeation through porcine buccal mucosa, Caco-2 permeability, and residual solvent analysis by gas chromatography. The TP was also evaluated for swelling index, in vitro residence time, tensile strength, and mucoadhesive strength. Preclinical pharmacokinetic, pharmacodynamic, and histopathological studies by application of TP on the gingiva of New Zealand rabbits were carried out. Particle size and entrapment efficiency of the optimized SLN "S8" were determined as 98.23 nm and 84.36%, respectively. The gingival crevicular fluid and tissue concentrations were greater than plasma concentrations with increase in C max and area under the curve (AUC) of Lig and Dic when compared to the control group. Pain perception by needle prick showed prolonged combined anesthetic and analgesic effect. The developed TP loaded with Lig base and Dic diethylamine-SLNs exhibited immediate and complete permeation with tissue accumulation of Lig followed by controlled prolonged release and tissue accumulation of Dic at the site of application. Thus, it could be anticipated from the in vivo studies that the developed TP provides immediate initial anesthetic effect, and the analgesic effect would be prolonged for 24 hours, since optimal gingival crevicular fluid and tissue levels of analgesic would be achieved, while the tissue remains anesthetized.
大多数牙科手术都需要术前麻醉和术后镇痛以实现无痛操作。研发了一种多药经黏膜给药系统,其中含有用于立即释放的利多卡因(Lig)碱以及用于缓释的双氯芬酸(Dic)二乙胺固体脂质纳米粒(SLNs)。SLNs采用溶剂乳化蒸发法制备,使用Precirol ATO 5和Geleol作为脂质,泊洛沙姆F 68作为表面活性剂,并通过Box-Behnken设计对粒径和包封率进行优化。将SLNs掺入用羟丙基纤维素-LF(HPC-LF)制备的经黏膜贴片(TP)中,并带有乙基纤维素背衬层。对优化后的SLNs和TP进行傅里叶变换红外光谱、差示扫描量热法、扫描电子显微镜、X射线衍射、体外释放、通过猪颊黏膜的离体渗透、Caco-2通透性以及气相色谱法进行残留溶剂分析等表征。还对TP的溶胀指数、体外滞留时间、拉伸强度和黏膜粘附强度进行了评估。通过将TP应用于新西兰兔牙龈进行了临床前药代动力学、药效学和组织病理学研究。优化后的SLN“S8”的粒径和包封率分别测定为98.23 nm和84.36%。与对照组相比,牙龈沟液和组织浓度高于血浆浓度,Lig和Dic的Cmax和曲线下面积(AUC)增加。针刺疼痛感知显示出联合麻醉和镇痛效果延长。所研发的负载Lig碱和Dic二乙胺-SLNs的TP表现出立即且完全的渗透,Lig在组织中蓄积,随后Dic在应用部位实现受控的缓释和组织蓄积。因此,从体内研究可以预期,所研发的TP提供即时的初始麻醉效果,镇痛效果将延长24小时,因为将实现镇痛剂在牙龈沟液和组织中的最佳水平,同时组织保持麻醉状态。