Lateral Dermal Penetration Is Dependent on the Lipophilicity of Active Ingredients.

IF 2.8 4区 医学 Q2 DERMATOLOGY Skin Pharmacology and Physiology Pub Date : 2022-01-01 Epub Date: 2022-02-16 DOI:10.1159/000522633
Markus Lubda, Maximilian Zander, Andrew Salazar, Harald Kolmar, Jörg von Hagen
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引用次数: 1

Abstract

Introduction: With its large surface area, skin facilitates a topical administration of active ingredients, and thus percutaneous delivery to a specific target site. Due to its high barrier function and different diffusion characteristics, skin governs the efficacy of these active ingredients and a bioavailability in the epidermal and dermal tissue.

Objective: In order to characterize the vertical and lateral movement of molecules into and inside the skin, the diffusivity of active ingredients with different physicochemical properties and their penetration ability in different dermal skin layers was investigated.

Methods: A novel lateral dermal microdialysis (MD) penetration setup was used to compare the diffusion characteristics of active ingredients into superficial and deep-implanted MD membranes in porcine skin. The corresponding membrane depth was determined via ultrasound and the active ingredients concentration via high-pressure liquid chromatography measurement.

Results: The depth depended penetration of superficial and deep-implanted MD membranes and the quantitative diffusivity of two active ingredients was compared. An experimental lateral MD setup was used to determine the influence of percutaneous skin penetration characteristics of an active ingredient with different lipophilic and hydrophilic characteristics. Therefore, hydrophilic caffeine and lipophilic LIP1, which have an identical molecular weight but different lipophilic characteristics, were tested for their penetration ability inside a propylene glycol and oleic acid formulation.

Conclusion: The vertical and lateral penetration movement of caffeine was found to exceed that of LIP1 through the hydrophilic dermal environment. The findings of this study show that the lipophilicity of active ingredients influences the penetration movement and that skin enables a conical increasing lateral diffusivity and transdermal delivery.

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外侧皮肤渗透取决于活性成分的亲脂性。
简介:皮肤表面积大,有利于局部给药活性成分,从而经皮给药到特定的目标部位。由于其高屏障功能和不同的扩散特性,皮肤控制着这些活性成分的功效和表皮和真皮组织中的生物利用度。目的:研究具有不同理化性质的有效成分在不同真皮层中的扩散率及其渗透能力,以表征分子在皮肤内的垂直和横向运动。方法:采用一种新型的外侧真皮微透析(MD)渗透装置,比较有效成分在猪皮肤表面和深层植入的MD膜中的扩散特性。超声法测定膜深,高压液相色谱法测定有效成分浓度。结果:比较了浅埋和深埋MD膜的渗透深度及两种有效成分的定量扩散系数。采用实验性横向MD设置来确定具有不同亲脂和亲水特性的活性成分对经皮皮肤渗透特性的影响。因此,对具有相同分子量但亲脂性不同的亲水咖啡因和亲脂性LIP1在丙二醇和油酸配方中的渗透能力进行了测试。结论:咖啡因通过亲水性皮肤环境的纵向和横向渗透运动优于LIP1。本研究结果表明,活性成分的亲脂性影响渗透运动,皮肤使圆锥形增加横向扩散和透皮传递。
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来源期刊
Skin Pharmacology and Physiology
Skin Pharmacology and Physiology 医学-皮肤病学
CiteScore
5.20
自引率
7.40%
发文量
23
审稿时长
>12 weeks
期刊介绍: In the past decade research into skin pharmacology has rapidly developed with new and promising drugs and therapeutic concepts being introduced regularly. Recently, the use of nanoparticles for drug delivery in dermatology and cosmetology has become a topic of intensive research, yielding remarkable and in part surprising results. Another topic of current research is the use of tissue tolerable plasma in wound treatment. Stimulating not only wound healing processes but also the penetration of topically applied substances into the skin, this novel technique is expected to deliver very interesting results.
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