Methods & Noninvasive PK Study to Improve Iontophoresis
Methods & Noninvasive PK Study to Improve Iontophoresis
批准号:
7235932
负责人:
Kevin S. Li
金额:
$28.0万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-09-15 至 2009-08-31
关键词:
clinical researchconjunctivadrug administration routesdrug delivery systemselectroretinographyeyeeye disordereye pharmacologyhuman subjectimaging /visualization /scanningiontophoresis therapylaboratory rabbitmacular degenerationmagnetic resonance imagingnonhuman therapy evaluationpassive transportpatient oriented researchpharmacokineticsscleratherapy adverse effecttherapy design /developmentuveitis
中文摘要
现有的治疗眼后部疾病的方法是玻璃体内和眼周注射或全身给药。在美国,诸如后葡萄膜炎、眼内炎和年龄相关性黄斑变性的后眼部疾病每年影响超过一百万人。用于治疗后眼部疾病的全身给药通常不是优选的,因为遇到全身毒性。与全身给药相比,玻璃体内和眼周注射是治疗后眼部疾病的更有效的给药途径,但重复注射会引起副作用,如疼痛、眼内出血、感染机会增加以及视网膜脱离的可能性。眼部注射还涉及高的医疗保健成本,因为有经验的眼科医生参与进行治疗。一个有效的低成本的强大的非侵入性药物输送系统的治疗后眼部疾病尚未开发。一般来说,也缺乏眼部药物递送的人体药代动力学数据。眼离子电渗疗法是一种非侵入性的方法,并且具有将药物递送到眼后部的潜力。然而,眼部离子导入的机制还没有很好地理解,并且从离子转运和工程的物理化学的角度来看,眼部离子导入药物递送有很大的改进空间。此外,开发一种非侵入性的方法来研究眼部药物在眼后部的药代动力学将有利于眼部药物递送研究。本项目的主要目标是(a)表征眼部离子电渗的传输特性,并开发一种更有效的离子电渗方法用于治疗后眼部疾病,以及(B)开发用于眼部药代动力学研究的磁共振成像(MRI),并在眼部药物递送(如离子电渗)后进行这些研究。该项目将由制药学和药物化学(S.K.李,药学院,犹他州大学),物理学和放射学(E-K。Jeong,犹他州高级成像研究中心)和眼科学(P.S.伯恩斯坦,莫兰眼科中心)。本提案中获得的信息将提供一个知识基础,使制药科学家能够改进眼部离子电渗疗法和其他药物输送系统。如果一种有效的药物输送系统,如眼部离子导入,可以取代注射和全身给药,将药物输送到眼睛的后面,这将是一个巨大的利益给公众。
英文摘要
The existing methods to treat posterior eye diseases are intravitreal and periocular injections or systemic drug administration. Posterior eye diseases such as posterior uveitis, endophthalmitis, and age-related macular degeneration affect more than a million people in the United States each year. Systemic administration for the treatments of posterior eye diseases is usually not preferred because of the systemic toxicity encountered. Intravitreal and periocular injections are more effective routes of administration to treat posterior eye diseases compared with systemic drug delivery, but repeated injections cause side effects such as pain, intraocular bleeding, increased chances for infection, and the possibility of retinal detachment. Ocular injections also involve high health care cost because of the participation of experienced ophthalmologists in carrying out the treatments. An effective low-cost robust non-invasive drug delivery system for the treatments of posterior eye diseases has yet to be developed. There is also a lack of human pharmacokinetic data of ocular drug delivery in general. Ocular iontophoresis is a noninvasive method and has potential for drug delivery to the posterior of the eye. However, the mechanisms of ocular iontophoresis are not well understood, and there is much room for significant improvement of ocular iontophoretic drug delivery from the standpoint of the physical chemistry of ion transport and engineering. Also, the development of a non-invasive approach to study ocular drug pharmacokinetics in the posterior of the eye will be beneficial in ocular drug delivery research. The main objectives of the present project are (a) to characterize the transport properties of ocular iontophoresis and develop a more effective iontophoresis method for the treatment of posterior eye disease and (b) to develop magnetic resonance imaging (MRI) for ocular pharmacokinetic studies and perform these studies following ocular drug delivery such as iontophoresis. The project will be led by scientists in pharmaceutics and pharmaceutical chemistry (S.K. Li, College of Pharmacy, University of Utah), physics and radiology (E-K. Jeong, Utah Center for Advanced Imaging Research) and ophthalmology (P.S. Bernstein, Moran Eye Center). The information obtained in the present proposal will provide a knowledge base that allows pharmaceutical scientists to improve ocular iontophoresis and other drug delivery systems. It will be a great benefit to the public if an effective drug delivery system such as ocular iontophoresis can replace injections and systemic administration for drug delivery to the back of the eye.
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