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脂质体与负载胡椒碱的透明质酸脂质体治疗皮肤癌。

Limosomes versus hyalurolimosomes loaded with piperine for management of skin cancer.

机构信息

Department of Pharmaceutics and Industrial Pharmacy, PharmD Program, Egypt-Japan University of Science and Technology (E-JUST), Alexandria, Egypt.

Department of Pharmacology and Therapeutics, Faculty of Pharmacy, Pharos University in Alexandria, Alexandria, Egypt.

出版信息

Int J Pharm. 2024 Jan 25;650:123730. doi: 10.1016/j.ijpharm.2023.123730. Epub 2023 Dec 21.

Abstract

Skin cancer is considered the fifth most commonly occurring cancer worldwide hampering both health and economy. Piperine had proven efficacy in fighting skin cancer cells. Unfortunately, this natural agent had limited ability to penetrate the skin. The aim of the current study was to formulate piperine-loaded limosomes and hyalurolimosomes incorporating limonene as an edge activator and hyaluronic acid as bioactive gelling agent for managing skin cancer. Titration method followed by homogenization was adopted to prepare the nanoliposomal formulations. Characterization involved size, & zeta potential measurements, examination using transmission electron microscope (TEM) and stability study. Biological evaluation of the antitumor activity of piperine nanoliposomal formulations against Ehrlich's (EAC) solid tumor was also performed. Drug loaded limosomes and hyalurolimosomes had particle size; 346.55 ± 8.55 & 372.70 ± 10.83 nm, respectively. Zeta potential was high enough to ensure their stability. TEM micrographs detected the surrounding layer of Hyaluronic acid formed around the spherical limosomal nano-carrier ensuring the formation of Hyalurolimosomes. All stored formulations showed non-significant differences compared with freshly prepared ones at p < 0.05. In addition, A DAD-HPLC method was developed and validated for Piperine analysis in the skin. Upon application of this method, it was found that hyalurolimosomes deliver double the concentration delivered by limosomes. The piperine hyalurolimosome group showed a significant reduction in tumor size with a smaller AUC compared to piperine gel, which was confirmed by in vivo studies. Consequently, hyalurolimosomes loaded with piperine is considered a promising nanocarrier system and a step forward better management of skin cancer introducing new hope in beating this deadly disease.

摘要

皮肤癌被认为是全球第五大常见癌症,对健康和经济都造成了影响。胡椒碱已被证明能有效对抗皮肤癌细胞。不幸的是,这种天然物质穿透皮肤的能力有限。本研究旨在将胡椒碱载入含有柠檬烯作为边缘活性剂和透明质酸作为生物活性胶凝剂的 limosomes 和 hyalurolimosomes 中,以治疗皮肤癌。采用滴定法和匀浆法制备纳米脂质体配方。特性分析包括大小和 zeta 电位测量、透射电子显微镜 (TEM) 检查和稳定性研究。还对胡椒碱纳米脂质体制剂对 Ehrlich 的(EAC)实体瘤的抗肿瘤活性进行了生物评价。载药 limosomes 和 hyalurolimosomes 的粒径分别为 346.55±8.55nm 和 372.70±10.83nm。zeta 电位足够高,以确保其稳定性。TEM 显微照片检测到围绕球形 limosomal 纳米载体形成的透明质酸周围层,确保了 Hyalurolimosomes 的形成。与新鲜制备的制剂相比,所有储存的制剂在 p<0.05 时没有显著差异。此外,还开发并验证了用于皮肤中胡椒碱分析的 DAD-HPLC 方法。使用该方法发现,与 limosomes 相比,hyalurolimosomes 能输送两倍的胡椒碱浓度。与胡椒碱凝胶相比,胡椒碱 hyalurolimosome 组的肿瘤体积显著减小,AUC 也较小,体内研究对此进行了证实。因此,载有胡椒碱的 hyalurolimosomes 被认为是一种很有前途的纳米载体系统,为更好地治疗皮肤癌迈出了一步,为战胜这种致命疾病带来了新的希望。

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