Department of Pharmaceutics, Biopharmaceutics & NutriCosmetics, Freie Universität Berlin, Berlin, Germany.
Drug Dev Ind Pharm. 2012 Apr;38(4):420-30. doi: 10.3109/03639045.2011.608681. Epub 2011 Nov 16.
Emulsions for parenteral nutrition loaded with drugs are used for optimized drug delivery, but in case of poorly oil soluble drugs, the injection volume can be too large when using commercial 10-20% oil emulsions. To reduce the injection volume, the feasibility of producing injectable, physically stable concentrated emulsions up to 40% oil content was investigated. Emulsions were made from fish oil, stabilized with egg lecithin, using high-pressure homogenization. Emulsions with oil contents of 10%-40% were investigated to assess basic correlations between increasing oil content, applied production pressures, homogenization cycles and resulting bulk droplet size, content of larger particles, zeta potential, viscosity and short-term stability. The observed correlations showed that in high-pressure homogenization, the contribution of the dispersive effect dominated the coalescence effect at low and Optimum production conditions for 30% and 40% nanoemulsions, i.e. 800 bar and 2 -3 homogenization cycles, were established on lab scale. These production conditions are industrially feasible. The obtained droplet sizes (about 200 nm) and the content of larger droplets were comparable to 10% commercial emulsions of parenteral nutrition, being important for in vivo tolerability and organ distribution. Despite the high oil concentration, the viscosity of the nanoemulsions was sufficiently low for injection. The short-term storage study showed physical stability for 1 month. A concentrated nanoemulsion base formulation from regulatory accepted excipients is now available, ready for loading with drugs.
载药肠外营养乳剂用于优化药物递送,但对于脂溶性差的药物,使用商业 10-20%油乳剂时注射体积可能过大。为了减小注射体积,研究了制备可注射的、物理稳定的高浓度乳剂(油含量高达 40%)的可行性。采用高压均质法,以卵黄卵磷脂为稳定剂,用鱼油制备油含量为 10%-40%的乳剂,以评估油含量增加、应用生产压力、均质循环和所得体相液滴大小、较大颗粒含量、Zeta 电位、粘度和短期稳定性之间的基本相关性。观察到的相关性表明,在高压均质化中,分散效应的贡献在低和最佳生产条件下(30%和 40%纳米乳的 800 巴和 2-3 次均质循环)占主导地位。在实验室规模上建立了这些生产条件在工业上是可行的。所获得的液滴尺寸(约 200nm)和较大液滴的含量与市售的 10%肠外营养乳剂相当,这对于体内耐受性和器官分布很重要。尽管油浓度高,但纳米乳的粘度足以低到可用于注射。短期储存研究表明,在 1 个月内具有物理稳定性。现在有了一种基于监管部门可接受的赋形剂的浓缩纳米乳剂基础配方,可随时用于载药。