Nail drug delivery system a review

Apeksha R Rathi, R. Popat, V. Adhao, V. Shrikhande
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引用次数: 6

Abstract

The nail is horny structure. Nail plate is responsible for penetration of drug across it. As it is hard enough the penetration becomes difficult, only a fraction of topical drug penetrates across it. Hence the effective therapeutic concentration is not achieved. The nail plate may appear abnormal as a result of decreased glow. It`s involvement of nail bed, reduction of blood supply, physical or chemical features of nail bed. As a result variety of diseases occurs.1 Oral therapies are accompanied by systemic side effects and drug interactions, while topical therapies are limited by the low permeation rate through the nail plate. These diseases can be cured by achieving desired therapeutic concentration of drug by nail drug delivery system. Human nails do not have only protective and decorative role, but can also be considered as an alternative pathway for drug delivery, especially in nail diseases such as onychomycosis or psoriasis. The physical techniques (manual and electrical nail abrasion, acid etching, ablation by lasers, microporation, application of low-frequency ultrasound and electric currents) and chemicals (thiols, sulphites, hydrogen peroxide, urea, water, enzymes) that have shown ungual enhance reactivity. For effective topical therapy, fungal drug permeation must be enhanced.3 This can be achieved by disrupting the nail plate using physical techniques or chemical agents. Alternatively, drug permeation into the intact nail plate may be encouraged, for example, by iontophoresis or by formulating the drug within a vehicle which enables high drug partition out of the vehicle and into the nail plate. Keywords: Nail drug delivery, Onychomycosis, Iontophoresis, Psoriasis.
指甲给药系统综述
指甲是角质结构。甲板负责药物穿透。由于它足够硬,渗透变得困难,只有一小部分局部药物穿透它。因此不能达到有效的治疗浓度。甲板可能因发光减少而出现异常。它涉及到甲床,血液供应减少,甲床的物理或化学特征。结果发生了各种各样的疾病口服治疗伴有全身副作用和药物相互作用,而局部治疗受甲板渗透率低的限制。这些疾病可以通过指甲给药系统达到所需的药物治疗浓度来治愈。人的指甲不仅具有保护和装饰作用,而且还可以被认为是药物递送的替代途径,特别是在甲真菌病或牛皮癣等指甲疾病中。物理技术(手工和电指甲磨损、酸蚀刻、激光消融、微孔、低频超声和电流的应用)和化学物质(硫醇、亚硫酸盐、过氧化氢、尿素、水、酶)都显示出极大的增强反应性。为了有效的局部治疗,必须加强真菌药物的渗透这可以通过使用物理技术或化学试剂破坏钉板来实现。或者,可以鼓励药物渗透到完整的钉板中,例如,通过离子透入或通过将药物配制在载体中,从而使药物高分离出载体并进入钉板。关键词:甲给药,甲真菌病,离子导入,银屑病
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