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DL-2-羟基异己酸可减轻白色念珠菌生物膜小鼠模型中的炎症反应。

DL-2-hydroxyisocaproic acid attenuates inflammatory responses in a murine Candida albicans biofilm model.

作者信息

Nieminen M T, Hernandez M, Novak-Frazer L, Kuula H, Ramage G, Bowyer P, Warn P, Sorsa T, Rautemaa R

机构信息

Research Unit on Acetaldehyde and Cancer, University of Helsinki, Helsinki, Finland Departments of Periodontology and Oral and Maxillofacial Diseases, Helsinki University Central Hospital, University of Helsinki, Helsinki, Finland The University of Manchester, Institute of Inflammation and Repair, Manchester Academic Health Science Centre, University Hospital of South Manchester, Wythenshawe Hospital, Manchester, United Kingdom.

Department of Oral Pathology and Medicine and Laboratory of Periodontal Biology, Faculty of Dentistry, Universidad de Chile, Santiago, Chile.

出版信息

Clin Vaccine Immunol. 2014 Sep;21(9):1240-5. doi: 10.1128/CVI.00339-14. Epub 2014 Jul 2.

Abstract

Chronic biofilm infections are often accompanied by a chronic inflammatory response, leading to impaired healing and increased, irreversible damage to host tissues. Biofilm formation is a major virulence factor for Candida albicans and a challenge for treatment. Most current antifungals have proved ineffective in eradicating infections attributed to biofilms. The biofilm structure protects Candida species against antifungals and provides a way for them to evade host immune systems. This leads to a very distinct inflammatory response compared to that seen in planktonic infections. Previously, we showed the superior efficacy of dl-2-hydroxyisocaproic acid (HICA) against various bacteria and fungi. However, the immunomodulatory properties of HICA have not been studied. Our aim was to investigate the potential anti-inflammatory response to HICA in vivo. We hypothesized that HICA reduces the levels of immune mediators and attenuates the inflammatory response. In a murine model, a robust biofilm was formed for 5 days in a diffusion chamber implanted underneath mouse skin. The biofilm was treated for 12 h with HICA, while caspofungin and phosphate-buffered saline (PBS) were used as controls. The pathophysiology and immunoexpression in the tissues surrounding the chamber were determined by immunohistochemistry. Histopathological examination showed an attenuated inflammatory response together with reduced expression of matrix metalloproteinase 9 (MMP-9) and myeloperoxidase (MPO) compared to those of chambers containing caspofungin and PBS. Interestingly, the expression of developmental endothelial locus 1 (Del-1), an antagonist of neutrophil extravasation, increased after treatment with HICA. Considering its anti-inflammatory and antimicrobial activity, HICA may have enormous therapeutic potential in the treatment of chronic biofilm infections and inflammation, such as those seen with chronic wounds.

摘要

慢性生物膜感染常伴有慢性炎症反应,导致愈合受损以及宿主组织的不可逆损伤增加。生物膜形成是白色念珠菌的主要致病因素,也是治疗的一大挑战。目前大多数抗真菌药物已被证明无法有效根除由生物膜引起的感染。生物膜结构可保护念珠菌属免受抗真菌药物影响,并为它们逃避宿主免疫系统提供途径。这导致与浮游菌感染相比截然不同的炎症反应。此前,我们已证明dl-2-羟基异己酸(HICA)对多种细菌和真菌具有卓越疗效。然而,尚未对HICA的免疫调节特性进行研究。我们的目的是研究HICA在体内潜在的抗炎反应。我们假设HICA可降低免疫介质水平并减轻炎症反应。在小鼠模型中,在植入小鼠皮肤下方的扩散小室中形成坚固的生物膜5天。用HICA对生物膜进行12小时处理,同时使用卡泊芬净和磷酸盐缓冲盐水(PBS)作为对照。通过免疫组织化学确定小室周围组织的病理生理学和免疫表达。组织病理学检查显示,与含有卡泊芬净和PBS的小室相比,炎症反应减轻,基质金属蛋白酶9(MMP-9)和髓过氧化物酶(MPO)的表达降低。有趣的是,用HICA处理后,中性粒细胞外渗拮抗剂发育性内皮位点1(Del-1)的表达增加。鉴于其抗炎和抗菌活性,HICA在治疗慢性生物膜感染和炎症(如慢性伤口所见)方面可能具有巨大的治疗潜力。

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