Steelandt Julie, Salmon Damien, Gilbert Elodie, Almouazen Eyad, Renaud François Nr, Roussel Laurène, Haftek Marek, Pirot Fabrice
University Claude Bernard Lyon 1, Faculty of Pharmacy, Fundamental, Clinical and Therapeutic Aspects of Skin Barrier Function, FRIPharm, Laboratoire de Pharmacie Galénique Industrielle, Lyon, France.
University Claude Bernard Lyon 1, Faculty of Pharmacy, Fundamental, Clinical and Therapeutic Aspects of Skin Barrier Function, FRIPharm, Laboratoire de Pharmacie Galénique Industrielle, Lyon, France ; Hospital Pharmacy, FRIPharm, Hospital Edouard Herriot, Hospices Civils de Lyon, Lyon, France.
Int J Nanomedicine. 2014 Sep 19;9:4467-74. doi: 10.2147/IJN.S64746. eCollection 2014.
Skin and mucosal infections constitute recurrent pathologies resulting from either inappropriate antiseptic procedures or a lack of efficacy of antimicrobial products. In this field, nanomaterials offer interesting antimicrobial properties (eg, long-lasting activity; intracellular and tissular penetration) as compared to conventional products. The aim of this work was to produce, by a new solvent-free process, a stable and easily freeze-dryable chlorhexidine-loaded polymeric nanocapsule (CHX-NC) suspension, and then to assess the antimicrobial properties of nanomaterials. The relevance of the process and the physicochemical properties of the CHX-NCs were examined by the assessment of encapsulation efficiency, stability of the nanomaterial suspension after 1 month of storage, and by analysis of granulometry and surface electric charge of nanocapsules. In vitro antimicrobial activities of the CHX-NCs and chlorhexidine digluconate solution were compared by measuring the inhibition diameters of two bacterial strains (Escherichia coli and Staphylococcus aureus) and one fungal strain (Candida albicans) cultured onto appropriate media. Based on the findings of this study, we report a new solvent-free process for the production of nanomaterials exhibiting antimicrobial activity, suitable stability, and easily incorporable as a new ingredient in various pharmaceutical products.
皮肤和黏膜感染是由不适当的消毒程序或抗菌产品效力不足导致的复发性病症。在该领域,与传统产品相比,纳米材料具有有趣的抗菌特性(例如,持久活性;细胞内和组织穿透性)。这项工作的目的是通过一种新的无溶剂工艺制备一种稳定且易于冻干的载氯己定聚合物纳米胶囊(CHX-NC)悬浮液,然后评估纳米材料的抗菌特性。通过评估包封效率、纳米材料悬浮液储存1个月后的稳定性以及分析纳米胶囊的粒度和表面电荷,研究了该工艺的相关性以及CHX-NC的物理化学性质。通过测量在合适培养基上培养的两种细菌菌株(大肠杆菌和金黄色葡萄球菌)和一种真菌菌株(白色念珠菌)的抑菌直径,比较了CHX-NC和葡萄糖酸氯己定溶液的体外抗菌活性。基于本研究的结果,我们报道了一种新的无溶剂工艺,用于生产具有抗菌活性、合适稳定性且易于作为新成分纳入各种药品的纳米材料。