Department of Pharmaceutical Technology, Maulana Abul Kalam Azad University of Technology, NH 12, Haringhata, West Bengal 741249, India.
Department of Pharmaceutical Technology, Gupta College of Technological Sciences, Ashram More, G.T. Road, Asansol, West Bengal 713301, India.
J Pharm Sci. 2024 Mar;113(3):659-668. doi: 10.1016/j.xphs.2023.08.013. Epub 2023 Aug 20.
Water-in-oil-in-water (w/o/w) double emulsions have shown excellent capability in augmenting the enteral bioavailability of BCS class III drugs, besides being effective controlled-release formulations. However, the problem of thermodynamic instability has restrained their industrial applicability. The self-double emulsifying drug delivery system (SDEDDS) is one of several approaches used to improve the stability of double emulsions. SDEDDS is a mixture of primary emulsion and secondary surfactant that can spontaneously emulsify into double emulsions in an external aqueous environment with mild agitation. Here, we prepared SDEDDS of gentamicin sulfate by response surface methodology. Selected optimized formulations (ODS1 and ODS2) were evaluated for zeta potential (Y1), optical clarity (Y2), release at 420 min (Y3), emulsion stability index (Y4) and self-emulsification time (Y5). For ODS1, Y1=-35.45 (±1.06)mV, Y2=53.19 (±0.35)%, Y3=75.79 (±0.60)%, Y4=93.97(±0.15)% and Y5=0.631 (±0.014)min, whereas for ODS2, Y1=-35.70 (±0.56)mV, Y2=48.09 (±0.64)%, Y3=76.61 (±0.99)%, Y4=93.00(±0.94)% and Y5=0.687(±0.02)min. Furthermore, ex-vivo studies on intestinal permeability revealed that SDEDDS improved membrane permeability compared to drug solution. Histopathology investigations revealed that SDEDDS promoted permeation without causing significant local membrane distortion. In addition, in-vivo studies revealed a 2.84 -fold increase in AUC of optimized SDEDD compared to pure drug oral solution.
水包油包水(w/o/w)双重乳液在提高 BCS 类 III 药物的肠内生物利用度方面表现出了优异的能力,同时也是一种有效的控释制剂。然而,热力学不稳定性问题限制了它们的工业适用性。自乳化药物传递系统(SDEDDS)是改善双重乳液稳定性的几种方法之一。SDEDDS 是一种由初级乳剂和次级表面活性剂组成的混合物,可以在外加水环境中通过温和搅拌自发乳化成双乳液。在这里,我们通过响应面法制备了硫酸庆大霉素的 SDEDDS。选择优化的配方(ODS1 和 ODS2)进行了zeta 电位(Y1)、光学透明度(Y2)、420 分钟释放率(Y3)、乳液稳定性指数(Y4)和自乳化时间(Y5)的评估。对于 ODS1,Y1=-35.45(±1.06)mV,Y2=53.19(±0.35)%,Y3=75.79(±0.60)%,Y4=93.97(±0.15)%和 Y5=0.631(±0.014)min,而对于 ODS2,Y1=-35.70(±0.56)mV,Y2=48.09(±0.64)%,Y3=76.61(±0.99)%,Y4=93.00(±0.94)%和 Y5=0.687(±0.02)min。此外,肠道通透性的离体研究表明,SDEDDS 改善了药物溶液的膜通透性。组织病理学研究表明,SDEDDS 促进了渗透,而没有引起明显的局部膜变形。此外,体内研究表明,与纯药物口服溶液相比,优化后的 SDEDD 的 AUC 增加了 2.84 倍。