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经巩膜库仑控制的甲基强的松龙离子导入兔眼:治疗持续时间、电流强度和药物浓度对眼组织及房水水平的影响

Transscleral Coulomb-controlled iontophoresis of methylprednisolone into the rabbit eye: influence of duration of treatment, current intensity and drug concentration on ocular tissue and fluid levels.

作者信息

Behar-Cohen F F, El Aouni A, Gautier S, David G, Davis J, Chapon P, Parel J M

机构信息

Department of Ophthalmology, Hôtel-Dieu of Paris, Paris, France.

出版信息

Exp Eye Res. 2002 Jan;74(1):51-9. doi: 10.1006/exer.2001.1098.

Abstract

The major problems associated with the use of corticosteroids for the treatment of ocular diseases are their poor intraocular penetration to the posterior segment when administered locally and their secondary side effects when given systemically. To circumvent these problems more efficient methods and techniques of local delivery are being developed. The purposes of this study were: (1) to investigate the pharmacokinetics of intraocular penetration of hemisuccinate methyl prednisolone (HMP) after its delivery using the transscleral Coulomb controlled iontophoresis (CCI) system applied to the eye or after intravenous (i.v.) injection in the rabbit, (2) to test the safety of the CCI system for the treated eyes and (3) to compare the pharmacokinetic profiles of HMP intraocular distribution after CCI delivery to i.v. injection. For each parameter evaluated, six rabbit eyes were used. For the CCI system, two concentrations of HMP (62.5 and 150mg ml(-1)), various intensities of current and duration of treatment were analyzed. In rabbits serving as controls the HMP was infused in the CCI device but without applied electric current. For the i.v. delivery, HMP at 10mg kg(-1)as a 62.5mg ml(-1)solution was used. The rabbits were observed clinically for evidence of ocular toxicity. At various time points after the administration of drug, rabbits were killed and intraocular fluids and tissues were sampled for methylprednisolone (MP) concentrations by high pressure liquid chromatography (HPLC). Histology examinations were performed on six eyes of each group. Among groups that received CCI, the concentrations of MP increased in all ocular tissues and fluids in relation to the intensities of current used (0.4, 1.0 and 2.0mA/0.5cm(2)) and its duration (4 and 10min). Sustained and highest levels of MP were achieved in the choroid and the retina of rabbit eyes treated with the highest current and 10min duration of CCI. No clinical toxicity or histological lesions were observed following CCI. Negligible amounts of MP were found in ocular tissues in the CCI control group without application of current. Compared to i.v. administration, CCI achieved higher and more sustained tissue concentrations with negligible systemic absorption. These data demonstrate that high levels of MP can be safely achieved in intraocular tissues and fluids of the rabbit eye, using CCI. With this system, intraocular tissues levels of MP are higher than those achieved after i.v. injection. Furthermore, if needed, the drug levels achieved with CCI can be modulated as a function of current intensity and duration of treatment. CCI could therefore be used as an alternative method for the delivery of high levels of MP to the intraocular tissues of both the anterior and posterior segments.

摘要

使用皮质类固醇治疗眼部疾病的主要问题在于,局部给药时它们在眼内向后段的穿透性较差,而全身给药时会产生副作用。为了规避这些问题,人们正在研发更有效的局部给药方法和技术。本研究的目的是:(1)研究半琥珀酸甲泼尼龙(HMP)经巩膜库仑控制离子电渗疗法(CCI)系统给药至眼部或经兔静脉注射后眼内渗透的药代动力学,(2)测试CCI系统对治疗眼的安全性,以及(3)比较CCI给药与静脉注射后HMP眼内分布的药代动力学特征。对于每个评估参数,使用六只兔眼。对于CCI系统,分析了两种浓度的HMP(62.5和150mg/ml)、不同的电流强度和治疗持续时间。在作为对照的兔中,将HMP注入CCI装置但不施加电流。对于静脉给药,使用10mg/kg的HMP作为62.5mg/ml的溶液。对兔进行临床观察以寻找眼毒性证据。在给药后的不同时间点,处死兔并采集眼内液和组织,通过高压液相色谱(HPLC)测定甲泼尼龙(MP)浓度。对每组的六只眼进行组织学检查。在接受CCI的组中,MP在所有眼组织和眼内液中的浓度均随着所用电流强度(0.4、1.0和2.0mA/0.5cm²)及其持续时间(4和10分钟)而增加。在接受最高电流和10分钟CCI治疗的兔眼脉络膜和视网膜中,MP达到了持续且最高的水平。CCI后未观察到临床毒性或组织学损伤。在未施加电流的CCI对照组的眼组织中发现的MP量可忽略不计。与静脉给药相比,CCI实现了更高且更持久的组织浓度,全身吸收可忽略不计。这些数据表明,使用CCI可在兔眼的眼内组织和眼内液中安全地达到高水平的MP。通过该系统,眼内组织中MP的水平高于静脉注射后所达到的水平。此外,如有需要,CCI所达到的药物水平可根据电流强度和治疗持续时间进行调节。因此,CCI可作为向前段和后段眼内组织递送高水平MP的替代方法。

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