Department of Biomedical Sciences, University of Sassari, Viale San Pietro 43/B, 07100 Sassari, Italy.
Department of Chemistry and Pharmacy, University of Sassari, Vienna 2, 07100 Sassari, Italy.
Int J Mol Sci. 2021 Jun 30;22(13):7095. doi: 10.3390/ijms22137095.
Skin is the external part of the human body; thus, it is exposed to outer stimuli leading to injuries and damage, due to being the tissue mostly affected by wounds and aging that compromise its protective function. The recent extension of the average lifespan raises the interest in products capable of counteracting skin related health conditions. However, the skin barrier is not easy to permeate and could be influenced by different factors. In the last decades an innovative pharmacotherapeutic approach has been possible thanks to the advent of nanomedicine. Nanodevices can represent an appropriate formulation to enhance the passive penetration, modulate drug solubility and increase the thermodynamic activity of drugs. Here, we summarize the recent nanotechnological approaches to maintain and replace skin homeostasis, with particular attention to nanomaterials applications on wound healing, regeneration and rejuvenation of skin tissue. The different nanomaterials as nanofibers, hydrogels, nanosuspensions, and nanoparticles are described and in particular we highlight their main chemical features that are useful in drug delivery and tissue regeneration.
皮肤是人体的外部部分;因此,它暴露于外部刺激物,导致损伤和破坏,因为它是最容易受到伤口和衰老影响的组织,这会损害其保护功能。平均寿命的最近延长引起了人们对能够对抗与皮肤相关的健康问题的产品的兴趣。然而,皮肤屏障不易渗透,并且可能受到不同因素的影响。在过去几十年中,由于纳米医学的出现,一种创新的药物治疗方法成为可能。纳米器件可以代表一种合适的制剂,以增强被动渗透、调节药物溶解度并增加药物的热力学活性。在这里,我们总结了维持和替代皮肤内稳态的最新纳米技术方法,特别关注纳米材料在伤口愈合、皮肤组织再生和年轻化方面的应用。描述了不同的纳米材料,如纳米纤维、水凝胶、纳米混悬剂和纳米粒子,并特别强调了它们在药物传递和组织再生方面的主要化学特性。