Literature DB >> 12270239

Nail morphology studies as assessments for onychomycosis treatment modalities.

Michael A Repka1, John O'Haver, Chun Hwa See, Kavitha Gutta, Manish Munjal.   

Abstract

The purpose of this investigation was to study the morphology of the human nail treated with chemical penetration enhancers (CPE), bioadhesives and surface modifiers for assessment of topical treatment modalities for onychomycosis. CPEs, including dimethyl sulfoxide (DMSO) and urea were applied to human nail samples. Additional samples were treated with surface modifiers, tartaric acid (TTA) and phosphoric acid gel (PA). Other nail specimens were subjected to the bioadhesive polymers Carbopol 971P and Klucel MF. Atomic force microscopy (AFM), scanning electron microscopy (SEM) and polarized light microscopy (PLM) were utilized to visualize nail morphology and topographical changes of the human nail samples subjected to the various chemical agents. AFM, SEM and PLM micrographs revealed changes in topography to the dorsal layer when CPEs and surface modifiers were applied. Roughness scores as determined by NANOSCOPE IIIA software indicated a 2-fold increase when the dorsal nail layer was subjected to PA versus the control (147.8 vs. 85.0 nm, respectively). In contrast, when carbomer 971P was applied to the dorsal surface, roughness scores decreased significantly (44.6 vs. 85.0 nm, respectively). AFM, SEM and PLM studies of the human nail subjected to various chemical agents may be useful in the design and formulation of novel drug delivery systems for the topical treatment of onychomycosis. The AFM studies offer both a qualitative and quantitative assessment for nail treatment opportunities.

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Year:  2002        PMID: 12270239     DOI: 10.1016/s0378-5173(02)00321-6

Source DB:  PubMed          Journal:  Int J Pharm        ISSN: 0378-5173            Impact factor:   5.875


  10 in total

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3.  Luliconazole Nail Lacquer for the Treatment of Onychomycosis: Formulation, Characterization and In Vitro and Ex Vivo Evaluation.

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4.  Poly(pseudo)rotaxanes formed by mixed micelles and α-cyclodextrin enhance terbinafine nail permeation to deeper layers.

Authors:  Anna Paula Krawczyk-Santos; Ricardo Neves Marreto; Angel Concheiro; Carmen Alvarez-Lorenzo; Stephânia Fleury Taveira
Journal:  Int J Pharm X       Date:  2022-05-10

5.  Mechanistic study of electroosmotic transport across hydrated nail plates: effects of pH and ionic strength.

Authors:  Jinsong Hao; S Kevin Li
Journal:  J Pharm Sci       Date:  2008-12       Impact factor: 3.534

6.  Transungual iontophoretic transport of polar neutral and positively charged model permeants: effects of electrophoresis and electroosmosis.

Authors:  Jinsong Hao; S Kevin Li
Journal:  J Pharm Sci       Date:  2008-02       Impact factor: 3.534

7.  Chemical method to enhance transungual transport and iontophoresis efficiency.

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Journal:  Int J Pharm       Date:  2008-01-20       Impact factor: 5.875

8.  Evaluation of Laser-Assisted Trans-Nail Drug Delivery with Optical Coherence Tomography.

Authors:  Meng-Tsan Tsai; Ting-Yen Tsai; Su-Chin Shen; Chau Yee Ng; Ya-Ju Lee; Jiann-Der Lee; Chih-Hsun Yang
Journal:  Sensors (Basel)       Date:  2016-12-12       Impact factor: 3.576

9.  Recent Patents on Permeation Enhancers for Drug Delivery Through Nails.

Authors:  Tainá Kreutz; Sheila Porto de Matos; Letícia Scherer Koester
Journal:  Recent Pat Drug Deliv Formul       Date:  2019

10.  Raman Spectroscopy, X-ray Diffraction, and Scanning Electron Microscopy as Noninvasive Methods for Microstructural Alterations in Psoriatic Nails.

Authors:  Anca E Chiriac; Doina Azoicai; Adina Coroaba; Florica Doroftei; Daniel Timpu; Anca Chiriac; Mihaela Pertea; Elena-Laura Ursu; Mariana Pinteala
Journal:  Molecules       Date:  2021-01-08       Impact factor: 4.411

  10 in total

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