Department of Pharmacy and Pharmaceutical Technology, Faculty of Pharmacy, University of Granada, Campus of Cartuja, Granada, Spain.
Department of Drug Sciences, Faculty of Pharmacy, University of Pavia, Pavia 27100, Italy.
Int J Nanomedicine. 2019 Jul 10;14:5051-5060. doi: 10.2147/IJN.S208713. eCollection 2019.
Chronic cutaneous wounds represent a major issue in medical care and are often prone to infections. The aim of this study was the design of a clay mineral-drug nanocomposite based on montmorillonite and norfloxacin (NF, antimicrobial drug) as a powder for cutaneous application, to enhance wound healing in infected skin lesions. The nanocomposite has been prepared by means of an intercalation solution procedure. Adsorption isotherm, solid-state characterization of the nanocomposite, drug loading capacity and its release have been performed. Moreover, cytocompatibility, in vitro fibroblast proliferation and antimicrobial activity against and were assessed. The clay drug adsorption isotherm demonstrates that the mechanism of NF intercalation into montmorillonite galleries is the adsorption as one single process, due to the charge-charge interaction between protonated NF and negatively charged montmorillonite edges in the interlayer space. Nanocomposite is biocompatible and it is characterized by antimicrobial activity greater than the free drug: this is due to its nanostructure and controlled drug release properties. Considering the results obtained, NF-montmorillonite nanocomposite seems a promising tool to treat infected skin lesions or skin wounds prone to infection, as chronic ulcers (diabetic foot, venous leg ulcers) and burns.
慢性皮肤创面是医疗保健中的一个主要问题,且常易发生感染。本研究旨在设计一种基于蒙脱石和诺氟沙星(NF,一种抗菌药物)的粘土矿物-药物纳米复合材料,用作皮肤敷用的粉末,以增强感染性皮肤损伤的愈合。该纳米复合材料是通过插层溶液法制备的。进行了吸附等温线、纳米复合材料的固态特性、药物负载能力及其释放的研究。此外,还评估了细胞相容性、体外成纤维细胞增殖和对 和 的抗菌活性。粘土药物吸附等温线表明,NF 插入蒙脱石层间的机制是吸附作为一个单一过程,这是由于层间空间中质子化 NF 和带负电荷的蒙脱石边缘之间的电荷-电荷相互作用。纳米复合材料具有生物相容性,其抗菌活性大于游离药物:这是由于其纳米结构和控制药物释放特性。鉴于所获得的结果,NF-蒙脱石纳米复合材料似乎是治疗感染性皮肤病变或易感染皮肤创面(如慢性溃疡[糖尿病足、静脉溃疡]和烧伤)的有前途的工具。