Ferraris Chiara, Rimicci Clara, Garelli Sara, Ugazio Elena, Battaglia Luigi
Dipartimento di Scienza e Tecnologia del Farmaco, Università degli Studi di Torino, Via Pietro Giuria 9, 10125 Turin, Italy.
Pharmaceutics. 2021 Sep 5;13(9):1408. doi: 10.3390/pharmaceutics13091408.
Nanosystems exhibit various innovative physico-chemical properties as well as a range of cosmetic functions, including increased skin retention for loaded compounds. The worldwide nano-market has therefore been consistently extensive in recent decades. This review summarizes the most important properties of nanosystems that are employed in cosmetics, including composition, functions and interactions with skin, with particular attention being paid to marketed products. Moreover, the worldwide regulatory landscape of nanomaterials used as cosmetic ingredients is considered, and the main safety concerns are indicated. In general, advanced physico-chemical characterization is preliminarily needed to assess the safety of nanomaterials for human health and the environment. However, there is currently a shortfall in global legislation as a universally accepted and unambiguous definition of a nanomaterial is still lacking. Therefore, each country follows its own regulations. Anyhow, the main safety concerns arise from the European context, which is the most restrictive. Accordingly, the poor dermal permeation of nanomaterials generally limits their potential toxic effects, which should be mainly ascribed to unwanted or accidental exposure routes.
纳米系统展现出各种创新的物理化学性质以及一系列美容功能,包括提高负载化合物在皮肤中的留存率。因此,近几十年来全球纳米市场一直规模庞大。本综述总结了化妆品中使用的纳米系统的最重要特性,包括组成、功能以及与皮肤的相互作用,特别关注已上市产品。此外,还考虑了用作化妆品成分的纳米材料在全球的监管情况,并指出了主要的安全问题。一般来说,初步需要先进的物理化学表征来评估纳米材料对人类健康和环境的安全性。然而,目前全球立法存在不足,因为仍然缺乏对纳米材料的普遍接受且明确的定义。因此,每个国家都遵循自己的法规。无论如何,主要的安全问题源自欧洲背景,欧洲的限制最为严格。相应地,纳米材料较差的皮肤渗透性通常限制了它们的潜在毒性作用,这主要应归因于不必要或意外的接触途径。