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Visualization of drug distribution of a topical minocycline gel in human facial skin

机译:可视化米诺环素凝胶在人面部皮肤中的药物分布可视化

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摘要

Acne vulgaris is a common chronic skin disease in young adults caused by infection of the pilosebaceous unit, resulting in pimples and possibly permanent scarring on the skin. Minocycline, a common antibiotic, has been widely utilized as a systemic antimicrobial treatment for acne via oral administration. Recently, a topical minocycline gel (BPX-01) was developed to directly deliver minocycline through the epidermis and into the pilosebaceous unit to achieve localized treatment with lower doses of drug. As the effectiveness of the drug is directly related to its successful delivery, there is a need to evaluate the pharmacokinetics at the cellular level within tissue. Advantageously, minocycline is naturally fluorescent and can be directly visualized using microscopy-based approaches. Due to high endogenous autofluorescence, however, imaging of weakly emitting fluorescent molecules such as minocycline in skin tissue can be challenging. Here, we demonstrate a method for the selective visualization of minocycline within human skin tissue by utilizing two-photon excitation fluorescence (TPEF) microscopy and fluorescence lifetime imaging microscopy (FLIM). To demonstrate the feasibility of this approach, ex vivo human facial skin samples treated with various concentrations of BPX-01 were investigated. From the TPEF analysis, we were able to visualize relatively high levels of drug uptake within facial skin. However, minocycline fluorescence could be overwhelmed by endogenous fluorescence that complicates TPEF quantitative analysis, making FLIM more advantageous for visualizing drug uptake. Importantly, we found a unique signature of minocycline uptake via FLIM analysis that enabled the successful differentiation of the drug and enabled the extraction of drug local distribution from the endogenous fluorescence using a non-Euclidean phasor analysis method. Based on these results, we believe that the drug local distribution visualization method using TPEF and FLIM with phasor analysis can play an important role in studying the pharmacokinetics and pharmacodynamics of a topically applicable drug.
机译:寻常痤疮是年轻人中常见的一种慢性皮肤病,由皮脂腺单元感染引起,导致青春痘甚至可能在皮肤上永久性留下疤痕。米诺环素是一种常见的抗生素,已广泛用于通过口服方式治疗痤疮的全身性抗菌治疗。最近,开发了一种局部美诺环素凝胶(BPX-01),可将美诺环素直接通过表皮传递到皮脂腺单元中,以较低剂量的药物实现局部治疗。由于药物的有效性与其成功递送直接相关,因此需要在组织内的细胞水平上评估药代动力学。有利地,米诺环素是天然荧光的并且可以使用基于显微镜的方法直接可视化。然而,由于高内源性自发荧光,在皮肤组织中对微发射荧光分子(如米诺环素)的成像可能具有挑战性。在这里,我们演示了通过利用双光子激发荧光(TPEF)显微镜和荧光寿命成像显微镜(FLIM)在人的皮肤组织中选择性可视化美满霉素的方法。为了证明这种方法的可行性,研究了用各种浓度的BPX-01处理的离体人面部皮肤样品。通过TPEF分析,我们可以看到面部皮肤中相对较高的药物吸收水平。但是,米诺环素荧光可能会被使TPEF定量分析复杂化的内源性荧光所淹没,这使得FLIM在可视化药物吸收方面更具优势。重要的是,我们通过FLIM分析发现了米诺环素摄取的独特特征,从而使药物得以成功分化,并使用非欧氏相量分析方法从内源性荧光中提取药物局部分布。基于这些结果,我们认为使用TPEF和FLIM进行相量分析的药物局部分布可视化方法在研究局部适用药物的药代动力学和药效学方面可以发挥重要作用。

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