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羟丙基壳聚糖指甲油预防皮肤癣菌性甲感染的能力。

Ability of hydroxypropyl chitosan nail lacquer to protect against dermatophyte nail infection.

作者信息

Ghannoum M A, Long L, Isham N, Bulgheroni A, Setaro M, Caserini M, Palmieri R, Mailland F

机构信息

Center for Medical Mycology, Case Western Reserve University, Cleveland, Ohio, USA

Center for Medical Mycology, Case Western Reserve University, Cleveland, Ohio, USA.

出版信息

Antimicrob Agents Chemother. 2015 Apr;59(4):1844-8. doi: 10.1128/AAC.04842-14. Epub 2014 Dec 29.

Abstract

The development of a topical agent that would strengthen the nail, improve the natural barrier, and provide better drug penetration to the nail bed is needed. In this study, we examined the effects of a hydroxypropyl chitosan (HPCH)-based nail solution using a bovine hoof model. Following application of the nail solution, changes in the hardness of the hoof samples were measured using the Vickers method. Tensile and flexural strengths were tested by stretching or punching the samples, respectively. The ultrastructure was examined using scanning electron microscopy (SEM), and samples stained with periodic acid-Schiff (PAS) stain were used to determine the fungal penetration depth. The comparators included 40% urea and 70% isopropyl alcohol solutions. The HPCH nail solution increased hoof sample hardness in comparison to the untreated control sample (mean, 22.3 versus 19.4 Vickers pyramid number [HV]). Similarly, the HPCH solution increased the tensile strength (mean, 33.07 versus 28.42 MPa) and flexural strength (mean, 183.79 versus 181.20 MPa) compared to the untreated control. In contrast, the comparators had adverse effects on hardness and strength. SEM showed that the HPCH solution reduced the area of sample crumbling following abrasion compared to the untreated control (7,418 versus 17,843 pixels), and the PAS-stained images showed that the HPCH solution reduced penetration of the dermatophyte hyphae (e.g., penetration by Trichophyton mentagrophytes was <25 μm at day 9 versus 275 μm in the untreated control). Unlike chemicals normally used in cosmetic treatments, repeated application of the HPCH nail solution may help prevent the establishment of new or recurring fungal nail infection.

摘要

需要开发一种局部用药剂,它能强化指甲、改善天然屏障并能更好地渗透至甲床。在本研究中,我们使用牛蹄模型检测了一种基于羟丙基壳聚糖(HPCH)的指甲溶液的效果。涂抹指甲溶液后,使用维氏硬度测试法测量蹄样本的硬度变化。分别通过拉伸或冲压样本测试其拉伸强度和抗弯强度。使用扫描电子显微镜(SEM)检查超微结构,并用过碘酸-希夫(PAS)染色的样本确定真菌的渗透深度。对照物包括40%尿素溶液和70%异丙醇溶液。与未处理的对照样本相比,HPCH指甲溶液增加了蹄样本的硬度(平均值分别为22.3和19.4维氏金字塔硬度值[HV])。同样,与未处理的对照相比,HPCH溶液增加了拉伸强度(平均值分别为33.07和28.42MPa)和抗弯强度(平均值分别为183.79和181.20MPa)。相比之下,对照物对硬度和强度有不利影响。SEM显示,与未处理的对照相比,HPCH溶液减少了磨损后样本破碎的面积(分别为7418和17843像素),PAS染色图像显示,HPCH溶液减少了皮肤癣菌菌丝的渗透(例如,在第9天,须癣毛癣菌的渗透小于25μm,而未处理对照中为275μm)。与通常用于美容治疗的化学物质不同,重复使用HPCH指甲溶液可能有助于预防新的或复发性甲真菌病的发生。

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