Alkhaldi Muzn, Keck Cornelia M
Department of Pharmaceutics and Biopharmaceutics, Marburg University, Robert-Koch-Str. 4, 35037 Marburg, Germany.
Molecules. 2025 Aug 7;30(15):3308. doi: 10.3390/molecules30153308.
Nanocrystals, defined as crystalline particles with dimensions in the nanometer range (<1000 nm), exhibit unique properties that enhance the efficacy of poorly soluble active compounds. This review explores the fundamental aspects of nanocrystals, including their characteristics and various preparation methods, while addressing critical factors that influence their stability and incorporation into final products. A key focus of the review is the advantages offered by nanocrystals in dermal applications. It also highlights their ability to enhance passive diffusion into the skin and facilitate penetration via particle-assisted dermal penetration. Additionally, the review discusses their capacity to penetrate into hair follicles, enabling targeted drug delivery, and their synergistic potential when combined with microneedles, which further enhance the dermal absorption of active compounds. The review also addresses several commercial products that successfully employ nanocrystal technology, showcasing its practical applications. Summary: Nanocrystals with their special properties are an emerging trend for dermal applications, particularly the development of plantCrystals-natural nanocrystals sourced from plant materials-which represent a promising path for future research and formulation strategies. These advancements could lead to more sustainable and effective dermal products.
纳米晶体定义为尺寸在纳米范围内(<1000 nm)的晶体颗粒,具有独特的性质,可提高难溶性活性化合物的功效。本综述探讨了纳米晶体的基本方面,包括其特性和各种制备方法,同时讨论了影响其稳定性以及纳入最终产品的关键因素。该综述的一个关键重点是纳米晶体在皮肤应用中的优势。它还强调了纳米晶体增强被动扩散进入皮肤以及通过粒子辅助皮肤渗透促进渗透的能力。此外,该综述讨论了纳米晶体渗透到毛囊中以实现靶向给药的能力,以及与微针结合时的协同潜力,这进一步增强了活性化合物的皮肤吸收。该综述还介绍了几种成功应用纳米晶体技术的商业产品,展示了其实际应用。总结:具有特殊性质的纳米晶体是皮肤应用的一个新兴趋势,特别是植物晶体——源自植物材料的天然纳米晶体——的开发,这代表了未来研究和配方策略的一条有前景的途径。这些进展可能会带来更可持续、更有效的皮肤产品。