Delivery of free amino acids into and through the stratum corneum of the skin using micro emulsions and microemulsion-based hydrogels: Formulation, characterization, and ex-vivo permeation studies.

IF 1.5 4区 医学 Q4 CHEMISTRY, MEDICINAL
Pharmazie Pub Date : 2023-10-15 DOI:10.1691/ph.2023.3011
B N Kahsay, S L Meiser, J Wohlrab, R H H Neubert, P Langguth
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Abstract

Free amino acids constitute the largest portion (40%) of the natural moisturizing factor. Their level might decline and cause dry skin condition. The treatment strategy involves the replenishment of these components to the skin, and, to our knowledge, there are no reports that involve dermal delivery of free amino acids. The purpose of the current study was therefore to prepare and characterize different micro-emulsions, micro-emulsion-based hydrogels, and hydrophilic creams loaded with free amino acids for dermal delivery. Oil-in-water microemulsions were prepared using carefully selected formulation components. Poloxamer® 407 and carbopol® 934 were used to prepare the hydrogels. All the formulations were characterized for physico-chemical, permeation and cytotoxicity properties. The results showed that the prepared microemulsions had desired droplet size, size distribution, zeta potential, refractive index, and pH. In the gel preparations, the elastic properties prevailed over the viscous behavior. The hydrogels had non-Newtonian shear-thinning behavior with some thixotropic properties. The free amino acids permeated into the deeper layers of the stratum corneum from the microemulsions, and microemulsion-based hydrogels as compared to conventional hydrophilic cream. The hydrogels were more effective than the microemulsions to deliver the FAAs to the desired site of the skin in a sustained manner. Poloxamer-based hydrogel permeated into deeper skin layers than Carbopol-based hydrogel. Formulations prepared using standard free amino acids and those extracted and purified from oyster mushroom had similar characteristics. All the formulations were stable and safe to be applied topically. In conclusion, microemulsions and microemulsion-based hydrogels can be considered as safe carrier systems for dermal delivery of free amino acids.

使用微乳液和微乳化水凝胶将游离氨基酸输送到皮肤角质层并通过角质层:配方、表征和体外渗透研究。
游离氨基酸构成天然保湿因子的最大部分(40%)。它们的水平可能会下降,导致皮肤干燥。治疗策略包括将这些成分补充到皮肤中,据我们所知,还没有报道涉及到游离氨基酸的真皮输送。因此,本研究的目的是制备和表征不同的微乳液、微乳化水凝胶和含有游离氨基酸的亲水乳膏,以供皮肤递送。采用精心挑选的配方成分制备水包油微乳液。用Poloxamer®407和carbopol®934制备水凝胶。对各制剂进行了理化、渗透性和细胞毒性表征。结果表明,制备的微乳液具有理想的粒径、粒径分布、zeta电位、折射率和ph值。在凝胶制备中,弹性性能优于粘性性能。水凝胶具有非牛顿剪切减薄行为,并具有一定的触变性。游离氨基酸从微乳剂和基于微乳剂的水凝胶中渗透到角质层的较深层,与传统的亲水乳霜相比。水凝胶比微乳液更有效地将FAAs持续递送到皮肤所需部位。以波洛沙莫为基础的水凝胶比以卡波波为基础的水凝胶渗透到更深的皮肤层。用标准游离氨基酸制备的配方与从平菇中提取纯化的配方具有相似的特性。所有制剂稳定、安全,可用于局部应用。综上所述,微乳剂和微乳基水凝胶可以被认为是游离氨基酸真皮递送的安全载体系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Pharmazie
Pharmazie 医学-化学综合
CiteScore
3.10
自引率
0.00%
发文量
56
审稿时长
1.2 months
期刊介绍: The journal DiePharmazie publishs reviews, experimental studies, letters to the editor, as well as book reviews. The following fields of pharmacy are covered: Pharmaceutical and medicinal chemistry; Pharmaceutical analysis and drug control; Pharmaceutical technolgy; Biopharmacy (biopharmaceutics, pharmacokinetics, biotransformation); Experimental and clinical pharmacology; Pharmaceutical biology (pharmacognosy); Clinical pharmacy; History of pharmacy.
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