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盐酸毛果芸香碱脂质体:体外特性及兔眼体内初步评价

Pilocarpine hydrochloride liposomes: characterization in vitro and preliminary evaluation in vivo in rabbit eye.

作者信息

Benita S, Plenecassagne J D, Cavé G, Drouin D, Le Hao Dong P, Sincholle D

机构信息

Laboratoire de Pharmacie Galénique, Faculté de Pharmacie Université Paris-Sud, Chatenay-Malabry, France.

出版信息

J Microencapsul. 1984 Jul-Sep;1(3):203-16. doi: 10.3109/02652048409049359.

Abstract

Liposomes containing either pilocarpine hydrochloride or pilocarpine free base were prepared by the sonication method. This manufacturing process yielded after removal of non-encapsulated solute, small multilamellar vesicles (MLV) as was confirmed by electron microscopy examinations. For an identical liposomal composition, the encapsulation capacity and the drug content of the liposomes were drastically higher for pilocarpine hydrochloride than for pilocarpine free base. Investigation of the preparative parameters revealed that increasing the initial amount of drug decreased the drug content and the encapsulation efficiency of the liposomes formed. Since fixed amounts of lipids were used, the volume sequestration rate decrease was attributed to a moderate viscosity increase of the dispersion medium. Increase of phospholipid concentration at a constant ratio of cholesterol and dicetylphosphate to phosphatidylcholine reduced the aqueous volume entrapped per mg of lipid and subsequently the pilocarpine content in the liposomes. Negatively charged liposomes gave larger rates of pilocarpine hydrochloride and aqueous volume encapsulation than neutral liposomes but, on the contrary, positively charged liposomes gave the lowest rates of pilocarpine hydrochloride and aqueous volume encapsulation. Thus, for drug carrying the same net charge as the phospholipids an increase in the surface charge density of the liposome was not only ineffective, but actually resulted in a lower drug encapsulation due to electrostatic repulsion. Preliminary in vivo results on rabbit eyes suggested that the liposomal vehicle was probably unable to improve sufficiently the corneal penetration of pilocarpine to reach satisfactory therapeutic levels when administered at lower concentrations than commonly used.

摘要

通过超声法制备了含有盐酸毛果芸香碱或毛果芸香碱游离碱的脂质体。去除未包封的溶质后,该制造工艺产生了小多层囊泡(MLV),这通过电子显微镜检查得到了证实。对于相同的脂质体组成,盐酸毛果芸香碱的脂质体包封能力和药物含量比毛果芸香碱游离碱高得多。对制备参数的研究表明,增加药物的初始量会降低所形成脂质体的药物含量和包封效率。由于使用了固定量的脂质,体积截留率的降低归因于分散介质粘度的适度增加。在胆固醇和十六烷基磷酸酯与磷脂酰胆碱的比例恒定的情况下,增加磷脂浓度会降低每毫克脂质截留的水相体积,进而降低脂质体中的毛果芸香碱含量。带负电荷的脂质体对盐酸毛果芸香碱和水相体积的包封率比中性脂质体高,但相反,带正电荷的脂质体对盐酸毛果芸香碱和水相体积的包封率最低。因此,对于与磷脂带相同净电荷的药物,脂质体表面电荷密度的增加不仅无效,而且由于静电排斥实际上导致较低的药物包封率。对兔眼的初步体内结果表明,当以低于常用浓度给药时,脂质体载体可能无法充分改善毛果芸香碱的角膜渗透以达到满意的治疗水平。

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