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用于动态监测纳米脂质体作为外用补骨脂素载体有效性的体内微透析法

In Vivo Microdialysis for Dynamic Monitoring of the Effectiveness of Nano-liposomes as Vehicles for Topical Psoralen Application.

作者信息

Zhang Hongyu, Zhang Kai, Li Zhe, Zhao Jihui, Zhang Yongtai, Feng Nianping

机构信息

Department of Pharmaceutical Sciences, Shanghai University of Traditional Chinese Medicine.

出版信息

Biol Pharm Bull. 2017;40(11):1996-2000. doi: 10.1248/bpb.b17-00302.

Abstract

In this study, the skin permeation of liposomes containing psoralen was investigated by in vivo skin microdialysis. Psoralen-loaded nano-sized liposomes were prepared with a mean size of 117.5 nm and a polydispersity index of 0.21, indicating the uniform dispersion of phosphatidylcholine vesicles in the liposomal solution. Based on in vivo microdialysis experiments, the drug concentration in local deep skin of rat increased rapidly and reached a peak concentration (C) of 319.35±23.72 µg/mL at 180 min, and decreased slowly thereafter. The local area under the concentration-time curve (AUC) was 3.81-fold higher than the compared aqueous suspension. The in vivo systemic pharmacokinetics were in agreement with the microdialysis results, in view of the C and AUC from liposomal group were both significantly higher (p<0.05) than the compared group. Liposome-associated transdermal psoralen delivery was significantly more effective than delivery via an aqueous suspension. The enhanced skin permeability may be associated with improved skin hydration, lipid exchange and fusion with the stratum corneum (SC), and changes in SC structure, promoting drug permeation into deep skin. After 10 h of treatment with the perfusate, the microstructure of the microdialysis probe exhibited no obvious differences with control probes. The skin surface and the tissue around the probe showed no swelling or inflammation. These findings indicated that liposomes effectively enhanced the skin deposition of psoralen and showed good biocompatibility with skin tissues; additionally, ethanol at a low concentration in ringer's solution is an alternative perfusate for in vivo skin microdialysis studies.

摘要

在本研究中,通过体内皮肤微透析研究了含补骨脂素脂质体的皮肤渗透情况。制备了负载补骨脂素的纳米级脂质体,其平均粒径为117.5 nm,多分散指数为0.21,表明磷脂酰胆碱囊泡在脂质体溶液中均匀分散。基于体内微透析实验,大鼠局部深层皮肤中的药物浓度迅速升高,在180分钟时达到峰值浓度(C)319.35±23.72 μg/mL,此后缓慢下降。浓度-时间曲线下的局部面积(AUC)比对照水悬浮液高3.81倍。考虑到脂质体组的C和AUC均显著高于对照组(p<0.05),体内全身药代动力学与微透析结果一致。脂质体介导的补骨脂素经皮递送比通过水悬浮液递送显著更有效。皮肤渗透性增强可能与皮肤水合作用改善、脂质交换和与角质层(SC)融合以及SC结构变化有关,从而促进药物渗透到深层皮肤。用灌注液处理10小时后,微透析探针的微观结构与对照探针无明显差异。探针周围的皮肤表面和组织未出现肿胀或炎症。这些发现表明脂质体有效地增强了补骨脂素在皮肤中的沉积,并与皮肤组织具有良好的生物相容性;此外,林格氏溶液中低浓度的乙醇是体内皮肤微透析研究的替代灌注液。

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