Kim Jinku
Department of Biological and Chemical Engineering, Hongik University, Sejong 30016, Republic of Korea.
Biomimetics (Basel). 2025 Apr 2;10(4):217. doi: 10.3390/biomimetics10040217.
Nanomaterials have revolutionized various biological applications, including cosmeceuticals, enabling the development of smart nanocarriers for enhanced skin delivery. This review focuses on the role of nanotechnologies in skincare and treatments, providing a concise overview of smart nanocarriers, including thermo-, pH-, and multi-stimuli-sensitive systems, focusing on their design, fabrication, and applications in cosmeceuticals. These nanocarriers offer controlled release of active ingredients, addressing challenges like poor skin penetration and ingredient instability. This work discusses the unique properties and advantages of various nanocarrier types, highlighting their potential in addressing diverse skin concerns. Furthermore, we address the critical aspect of biocompatibility, examining potential health risks associated with nanomaterials. Finally, this review highlights current challenges, including the precise control of drug release, scalability, and the transition from in vitro to in vivo applications. We also discuss future perspectives such as the integration of digital technologies and artificial intelligence for personalized skincare to further advance the technology of smart nanocarriers in cosmeceuticals.
纳米材料已经彻底改变了包括药妆品在内的各种生物应用,推动了用于增强皮肤递送的智能纳米载体的发展。本综述重点关注纳米技术在护肤品和治疗中的作用,简要概述智能纳米载体,包括热、pH和多刺激响应系统,重点介绍它们的设计、制造及其在药妆品中的应用。这些纳米载体能够控制活性成分的释放,解决诸如皮肤渗透性差和成分不稳定等问题。本文讨论了各种纳米载体类型的独特性质和优势,突出了它们在解决各种皮肤问题方面的潜力。此外,我们还讨论了生物相容性这一关键方面,研究了与纳米材料相关的潜在健康风险。最后,本综述强调了当前面临的挑战,包括药物释放的精确控制、可扩展性以及从体外应用到体内应用的转变。我们还讨论了未来的发展前景,例如整合数字技术和人工智能以实现个性化护肤,从而进一步推动药妆品中智能纳米载体技术的发展。
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