Siafaka Panoraia I, Özcan Bülbül Ece, Okur Mehmet Evren, Karantas Ioannis D, Üstündağ Okur Neslihan
Department of Life Sciences, School of Sciences, Faculty of Pharmacy, European University Cyprus, 2404 Nicosia, Cyprus.
Department of Pharmaceutical Technology, Faculty of Pharmacy, Istinye University, 34010 Istanbul, Turkey.
Gels. 2023 Sep 15;9(9):753. doi: 10.3390/gels9090753.
The delivery of active molecules via the skin seems to be an efficient technology, given the various disadvantages of oral drug administration. Skin, which is the largest human organ of the body, has the important role of acting as a barrier for pathogens and other molecules including drugs; in fact, it serves as a primary defense system blocking any particle from entering the body. Therefore, to overcome the skin barriers and poor skin permeability, researchers implement novel carriers which can effectively carry out transdermal delivery of the molecules. Another significant issue which medical society tries to solve is the effective dermal delivery of molecules especially for topical wound delivery. The application of nanogels is only one of the available approaches offering promising results for both dermal and transdermal administration routes. Nanogels are polymer-based networks in nanoscale dimensions which have been explored as potent carriers of poorly soluble drugs, genes and vaccines. The nanogels present unique physicochemical properties, i.e., high surface area, biocompatibility, etc., and, importantly, can improve solubility. In this review, authors aimed to summarize the available applications of nanogels as possible vehicles for dermal and transdermal delivery of active pharmaceutical ingredients and discuss their future in the pharmaceutical manufacturing field.
鉴于口服药物给药存在的各种缺点,通过皮肤递送活性分子似乎是一种有效的技术。皮肤是人体最大的器官,在充当病原体和包括药物在内的其他分子的屏障方面发挥着重要作用;事实上,它作为主要防御系统,阻止任何颗粒进入体内。因此,为了克服皮肤屏障和较差的皮肤渗透性,研究人员采用了新型载体,这些载体能够有效地实现分子的透皮递送。医学界试图解决的另一个重要问题是分子的有效真皮递送,尤其是用于局部伤口递送。纳米凝胶的应用只是为真皮和透皮给药途径提供有前景结果的可用方法之一。纳米凝胶是纳米尺度的基于聚合物的网络,已被探索作为难溶性药物、基因和疫苗的有效载体。纳米凝胶具有独特的物理化学性质,即高表面积、生物相容性等,重要的是,还能提高溶解度。在这篇综述中,作者旨在总结纳米凝胶作为活性药物成分真皮和透皮递送的可能载体的现有应用,并讨论它们在制药制造领域的未来。