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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Preparation and characterization of 12-HSA-based organogels as injectable implants for the controlled delivery of hydrophilic and lipophilic therapeutic agents
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Preparation and characterization of 12-HSA-based organogels as injectable implants for the controlled delivery of hydrophilic and lipophilic therapeutic agents

机译:12-HSA基有机凝胶的制备与表征作为可编程植入物的亲水性和亲脂性治疗剂的可编程植入物

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摘要

Organogels prepared with low molecular weight organogelators to structure liquid oils represent excellent matrices for the controlled delivery of a wide variety of drug molecules. Although studies on organogel systems are reported in the literature, relatively few investigate their potential as gels formed in situ intended for drug delivery. This study reports the development of injectable subcutaneous 12- hydroxystearic acid (12-HSA) organogels for the delivery of both lipophilic and hydrophilic drugs. The rheological characterization (flow, dynamic temperature ramp and amplitude oscillatory measurements) and physicochemical properties (syringeability, swelling and degradation studies), as well as permeability and cytotoxicity were analyzed to gain insights into the influence of the gel composition (surfactant addition, organogelator concentration) on the gelation process and organogel properties. Sol-gel phase transition temperature (Tgel) and gel-sol phase transition temperature (Tmelt) were determined by the tube-inverting method and complementary rheology studies. An increase in 12-HSA concentration led to an augmentation in gel strength and storage (G') and loss (G '') moduli values, evidencing the self-assembly of crystalline gelator structure entrapping the oil phase into a three-dimensional (3D) network. The addition of polysorbate 80 (Tween 80, T80) surfactant molecules in the system caused a weaker gel-like structure, with lower flow rate during syringeability assays, despite its lower apparent viscosity compared to those of 12-HSA organogels. In addition, the swelling studies of 12-HSA/12-HSA T80 organogels as a function of time in phosphate buffered saline (PBS) revealed that the erosion rates were modulated by the organogel compositions. The permeability of acyclovir (ACV) and clotrimazole (CTM), hydrophilic and lipophilic model drugs, respectively, loaded in 12-HSA-based organogels, was assessed in Franz diffusion cells. Organogel-loaded drugs presented lower in vitro release rates and ex vivo drug permeabilities compared to the corresponding drug solutions. Furthermore, 12-HSA T80 organogel could slow down the release of ACV by a factor of about 2.6-fold, up to 6 h, compared to CTM-loaded 12-HSA organogels. Finally, the cytotoxicity of 12-HSA-based organogels was evaluated through in vitro cell viability assays in human foreskin fibroblasts (HFF). Increased 12-HSA concentration resulted in higher cytotoxic effect, with a higher test sensitivity observed for the 3D collagen-embedded cell layer setup matrix versus 2-D cell cultures. Our results support the hypothesis that 12-HSA-based organogels are promising systems for controlled drug delivery as in situforming implants.
机译:用低分子量有机键剂制备的有机凝胶结构液体油代表了优异的基质,用于控制各种药物分子的控制递送。尽管在文献中报道了对有机凝胶系统的研究,但相对较少地研究其潜力,因为原位形成用于药物递送的凝胶。本研究报告了可注射皮下12-羟基(12-HSA)有机凝胶的发育,用于递送亲水性和亲水药物。分析流变表征(流动,动态斜坡和振幅振荡测量)和物理化学性质(系过症,溶胀和降解研究)以及渗透性和细胞毒性,以获得凝胶组合物的影响(表面活性剂加成,有机凝胶浓度)关于胶凝过程和有机凝胶属性。通过管式反相方法和互补流变研究确定溶胶 - 凝胶相转变温度(TGEL)和凝胶 - 溶胶相转变温度(TMELT)。 12-HSA浓度的增加导致凝胶强度和储存(G')和损失(G'')模量值的增强,证明了将油相夹在三维(3D的晶体胶凝器结构的自组装) ) 网络。尽管与12-HSA有机凝胶相比,系统中的聚山梨醇酯80(TWEEN 80,T80)表面活性剂分子引起较弱的凝胶状结构,其在穿过测定期间的流动速率下降。另外,作为磷酸盐缓冲盐水(PBS)中的时间函数的12-HSA / 12-HSA T80有机凝胶的溶胀研究显示,通过有机凝胶组合物调节侵蚀率。分别在Franz扩散细胞中评估分别在12-HSA的有机轧辊中加载的Acyclovir(ACV)和克拉咪唑(CTM),亲水和亲脂性模型药物的渗透性。与相应的药物溶液相比,有机凝胶加载的药物呈较低的体外释放速率和离体药物渗透率。此外,与CTM负载的12-HSA有机凝胶相比,12-HSA T80有机凝胶可以减慢释放额为约2.6倍的倍率约2.6倍,高达6小时。最后,通过人包皮成纤维细胞(HFF)中的体外细胞活力测定来评估12-HSA的有机糖凝胶的细胞毒性。增加了12-HSA浓度导致细胞毒性效果较高,对于3D胶原嵌入细胞层设置矩阵与2-D细胞培养物观察到更高的测试敏感性。我们的研究结果支持这一假设,即12-HSA的有机凝胶是具有如同风景植入物中的受控药物递送的有前途的系统。

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