Mirtaleb Mona Sadat, Khodabandeh Shahraky Mahvash, Deezagi Abdolkhaleg, Shafiee Danial
Department of Bioprocess Engineering, National Institute of Genetic Engineering and Biotechnology (NIGEB), Tehran, Iran.
Department of Microbial Biotechnology, School of Biology, College of Science, University of Tehran, Tehran, Iran.
Sci Rep. 2025 Jan 8;15(1):1293. doi: 10.1038/s41598-024-83731-7.
With the advancement of biotechnology in the marine industry, an increasing utilization of marine ingredients in skincare products has been observed in recent years. Encapsulating Artemia franciscana extract and its derivatives in a novel phospholipid vesicle called hyalurosome presents innovative strategies for drug delivery systems and anti-aging products. In this study, we developed nano hyalurosomes containing Artemia franciscana active components. Partially purification of proteins in the Artemia franciscana extract was performed using ion exchange chromatography, specifically targeting Hsp40 and Artemin. The physicochemical properties of the hyalurosomes were characterized, revealing nanoparticle sizes ranging from 100 to 130 nm, zeta potential between - 57 and - 41.2 mV. The biological compatibility of the fabricated hyalurosomes was tested in vitro on mice fibroblast cells. Results indicated that formulations containing hyalurosomes exhibited no cytotoxicity. In-vivo studies employing H&E and Mason's trichrome staining demonstrated an increase in the dermal layer of the skin on male mice and collagen production following treatment with different formulations containing hyalurosomes. Therefore, these formulations are considered promising candidates for anti-aging effects. Stability study at 4 °C for 60 days validated by FE-SEM imaging. In conclusion, hyalurosomes fabricated with Artemia franciscana extract and its diverse active molecules successfully achieved enhanced loading and penetration into the deeper layers of the skin, and it can be a suitable candidate for the treatment of skin aging and rejuvenation.
随着海洋产业生物技术的进步,近年来在护肤品中对海洋成分的利用日益增加。将卤虫提取物及其衍生物包裹在一种名为透明质体的新型磷脂囊泡中,为药物递送系统和抗衰老产品提供了创新策略。在本研究中,我们开发了含有卤虫活性成分的纳米透明质体。使用离子交换色谱法对卤虫提取物中的蛋白质进行了部分纯化,特别针对热休克蛋白40(Hsp40)和抗缪勒氏管激素(Artemin)。对透明质体的物理化学性质进行了表征,结果显示纳米颗粒大小在100至130纳米之间,zeta电位在-57至-41.2毫伏之间。在体外对小鼠成纤维细胞测试了所制备透明质体的生物相容性。结果表明,含有透明质体的制剂没有细胞毒性。采用苏木精-伊红(H&E)染色和马森三色染色的体内研究表明,用含有透明质体的不同制剂处理后,雄性小鼠皮肤的真皮层厚度增加,胶原蛋白生成增多。因此,这些制剂被认为是具有抗衰老效果的有前途的候选物。通过场发射扫描电子显微镜(FE-SEM)成像验证了在4℃下60天的稳定性研究。总之,用卤虫提取物及其多种活性分子制备的透明质体成功实现了增强的负载能力和向皮肤深层的渗透,它可能是治疗皮肤老化和恢复活力的合适候选物。