Li Ze-En, Jin Yang-Guang, Hu Shao-Zu, Liu Yue, Duan Ming-Hui, Li Shi-Hao, Sun Long-Ji, Yang Fan, Yang Fang
College of Animal Science and Technology, Henan University of Science and Technology, Luoyang 471023, China.
Pharmaceutics. 2025 Feb 22;17(3):289. doi: 10.3390/pharmaceutics17030289.
Despite the rapid development of nanoemulsions in recent years, no method has been established for the preparation of milbemycin oxime nanoemulsions. Milbemycin oxime is a widely used macrolide antibiotic in veterinary medicine, particularly for treating parasitic infections in animals such as dogs. However, its poor solubility in water limits its bioavailability and therapeutic efficacy. Developing a nanoemulsion formulation can enhance its solubility, stability, and bioavailability, offering a more effective treatment option. In this experiment, oil-in-water (O/W) milbemycin oxime nanoemulsions were successfully prepared by the phase inversion composition (PIC) method using ethyl butyrate as the oil phase, Tween-80 as the surfactant, and anhydrous ethanol as the co-surfactant. The region of O/W nanoemulsions was identified by constructing a pseudo-ternary phase diagram and, based on this, was screened by determining the droplet size, polydispersity coefficient, and zeta potential of each preparation. The finalized formulation had a 2:1 ratio of surfactant to co-surfactant and a 7:3 ratio of mixed surfactant to oil, and its droplet size, polydispersity index (PDI), and zeta potential were 12.140 ± 0.128 nm, 0.155 ± 0.015, and -4.947 ± 0.768 mV, respectively. Transmission electron microscopy confirmed the spherical uniform distribution of droplets, and the nanoemulsions passed thermodynamic stability tests. The in vitro release of milbemycin oxime nanoemulsions followed first-order kinetic equations. In conclusion, nanoemulsions are an interesting option for the delivery of poorly water-soluble molecules such as milbemycin oxime.
尽管近年来纳米乳剂发展迅速,但尚未建立制备米尔贝霉素肟纳米乳剂的方法。米尔贝霉素肟是一种在兽医学中广泛使用的大环内酯类抗生素,尤其用于治疗动物如犬的寄生虫感染。然而,其在水中的溶解度较差,限制了其生物利用度和治疗效果。开发纳米乳剂配方可以提高其溶解度、稳定性和生物利用度,提供更有效的治疗选择。在本实验中,以丁酸乙酯为油相、吐温-80为表面活性剂、无水乙醇为助表面活性剂,通过相转变组成(PIC)法成功制备了水包油(O/W)型米尔贝霉素肟纳米乳剂。通过构建伪三元相图确定了O/W纳米乳剂的区域,并在此基础上,通过测定每种制剂的粒径、多分散系数和zeta电位进行筛选。最终配方中表面活性剂与助表面活性剂的比例为2:1,混合表面活性剂与油的比例为7:3,其粒径、多分散指数(PDI)和zeta电位分别为12.140±0.128nm、0.155±0.015和-4.947±0.768mV。透射电子显微镜证实了液滴呈球形均匀分布,且纳米乳剂通过了热力学稳定性测试。米尔贝霉素肟纳米乳剂的体外释放遵循一级动力学方程。总之,纳米乳剂是递送难溶性分子如米尔贝霉素肟的一个有趣选择。