College of Pharmacy, Chungnam National University, Yuseong-gu, Daejeon, Republic of Korea.
College of Veterinary Medicine, Chungnam National University, Yuseong-gu, Daejeon, Republic of Korea.
Drug Deliv. 2023 Dec;30(1):2242003. doi: 10.1080/10717544.2023.2242003.
Intratympanic administration for the delivery of steroids has been extensively studied but limited because of low permeability of the drug through the row window membrane. Here, to effectively deliver poorly soluble triamcinolone acetonide (TA), microemulsions (ME) were prepared from Capmul MCM (oil), Cremophor RH40 (surfactant), and tetraglycol (cosurfactant) based on solubility studies, emulsifying ability test, and pseudoternary phase diagrams. Microemulsion gel (MEG) was prepared by mixing TA-ME with a poloxamer hydrogel base. The physicochemical properties of ME and MEG formulations were characterized, and the toxicity and oto-protective effectiveness were evaluated in vitro and in vivo. The ME-3 formulation showed a small droplet size (16.5 ± 0.2 nm), narrow PDI (0.067 ± 0.041), and enhanced TA solubility (2619.7 ± 57.6 μg/g). The optimized MEG demonstrated temperature-dependent gelation with a gelation time of 208 ± 10 sec at 37 °C. Slow degradation of the gel matrix sustained release of TA from MEG compared to the ME formulation. Both TA-ME and TA-MEG were found to be nontoxic to NIH3T3 cells at the test concentrations (0 to 5 µg/mL), and biocompatible after intratympanic administration to mice. The incorporation of ME into thermosensitive hydrogels prolonged retention of TA at the site of administration until 6 days. As a consequence, the enhanced drug absorption into the cochlea in TA-MEG group (approximately 2 times higher than other groups) protected hair cells, spiral ganglion neurons, and stria vascular cells from cisplatin-induced damage. Therefore, this injectable TA-loaded MEG is an effective and safe vehicle for the sustained delivery of triamcinolone acetonide into the inner ear.
鼓室内给予类固醇已得到广泛研究,但由于药物通过圆窗膜的渗透性低,因此受到限制。在这里,为了有效递送电镜下不易溶解的曲安奈德(TA),我们基于溶解度研究、乳化能力测试和伪三元相图,用 Capmul MCM(油)、Cremophor RH40(表面活性剂)和四甘醇(助表面活性剂)制备了微乳(ME)。将 TA-ME 与泊洛沙姆水凝胶基质混合制备微乳凝胶(MEG)。对 ME 和 MEG 制剂的理化性质进行了表征,并在体外和体内评估了其毒性和耳保护效果。ME-3 制剂表现出较小的粒径(16.5±0.2nm)、较窄的 PDI(0.067±0.041)和增强的 TA 溶解度(2619.7±57.6μg/g)。优化的 MEG 表现出温度依赖性凝胶化,在 37°C 时凝胶化时间为 208±10 秒。与 ME 制剂相比,凝胶基质的缓慢降解使 TA 从 MEG 中缓慢释放。TA-ME 和 TA-MEG 在测试浓度(0 至 5μg/mL)下均被发现对 NIH3T3 细胞无毒,并且在向小鼠鼓室内给药后具有生物相容性。将 ME 掺入温敏水凝胶中可延长 TA 在给药部位的保留时间,直至 6 天。因此,与其他组相比,TA-MEG 组(约增加 2 倍)增强了药物在耳蜗中的吸收,从而保护毛细胞、螺旋神经节神经元和血管纹细胞免受顺铂诱导的损伤。因此,这种可注射的 TA 负载的 MEG 是一种有效且安全的内耳持续递送曲安奈德的载体。