Development of a method for assessing the depth of penetration of ethosomes with methylene blue into the skin during application and photodynamic exposure

A. G. Loginova, I. S. Nikitenko, G. Tikhonovsky, A. S. Skobeltsin, A. Voitova, V. Loschenov
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Abstract

A wide range of literature sources report on the potential benefits of transdermal drug delivery. Among these advantages, the following are distinguished – minimal injury, reduction of side effects, and prevention of degradation or metabolism in the gastrointestinal tract or liver. However, transdermal delivery of most molecules often excludes due to the barrier function of the skin, which prevents the penetration of exogenous substances. To overcome this barrier and increase skin absorption, ethosomal complexes use, by means penetration into the deep layers of the skin and/or systemic circulation is possible. This work devotes to the development of a non-invasive method for assessing the depth of penetration by ethosomes with methylene blue (MB) into the skin during application and photodynamic exposure. MB as photosensitizer (PS) was chosen, since there are a sufficient number of publications on its positive effect on the restoration of the cell’s respiratory chain of various organs and therefore the restoration of their metabolism. Besides MB has proven to be an effective PS, destructed pathogenic microbes and viruses, including SARS-CoV-2. However, for more effective Covid-19 therapy and antibiotic-resistant microbial diseases, the penetration of MB into the vascular system of the epidermis or mucous tissue is required. Nowadays, the existing methods for assessing the penetration depth of PS are time consuming and require the use of animal skin or model samples. The LESA-01 BIOSPEC system with specially designed optical adapters that allow assessing the drug fluorescence intensity on skin surface and at a depth of up to 2 mm in the investigation was used.
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一种评估应用和光动力暴露过程中亚甲基蓝乙醇体穿透皮肤深度的方法的开发
广泛的文献来源报道了透皮给药的潜在益处。在这些优势中,以下是显著的——最小的损伤,减少副作用,防止胃肠道或肝脏的降解或代谢。然而,由于皮肤的屏障功能,大多数分子的透皮递送通常被排除在外,这阻止了外源物质的渗透。为了克服这一障碍并增加皮肤吸收,可以通过渗透到皮肤深层和/或全身循环的方式使用醇体复合物。这项工作致力于开发一种非侵入性方法,用于评估使用亚甲基蓝(MB)的乙醇体在应用和光动力暴露过程中对皮肤的穿透深度。选择MB作为光敏剂(PS),因为有足够数量的出版物表明它对各种器官的细胞呼吸链的恢复以及对其代谢的恢复具有积极作用。此外,MB已被证明是一种有效的PS,可破坏致病微生物和病毒,包括严重急性呼吸系统综合征冠状病毒2型。然而,为了更有效的新冠肺炎治疗和抗生素耐药性微生物疾病,需要将MB渗透到表皮或粘膜组织的血管系统中。如今,现有的评估PS渗透深度的方法是耗时的,并且需要使用动物皮肤或模型样本。在研究中,使用了LESA-01 BIOSPEC系统,该系统具有专门设计的光学适配器,可以评估皮肤表面和2 mm深度处的药物荧光强度。
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来源期刊
Biomedical Photonics
Biomedical Photonics Medicine-Surgery
CiteScore
1.80
自引率
0.00%
发文量
19
审稿时长
8 weeks
期刊介绍: The main goal of the journal – to promote the development of Russian biomedical photonics and implementation of its advances into medical practice. The primary objectives: - Presentation of up-to-date results of scientific and in research and scientific and practical (clinical and experimental) activity in the field of biomedical photonics. - Development of united Russian media for integration of knowledge and experience of scientists and practitioners in this field. - Distribution of best practices in laser medicine to regions. - Keeping the clinicians informed about new methods and devices for laser medicine - Approval of investigations of Ph.D candidates and applicants.
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