Patel Nimesh, Miller Darlene, Relhan Nidhi, Flynn Harry W
Department of Ophthalmology, Bascom Palmer Eye Institute, University of Miami Miller School of Medicine, Miami, Florida, United States.
Invest Ophthalmol Vis Sci. 2017 Aug 1;58(10):4307-4309. doi: 10.1167/iovs.17-21535.
Rapid identification of pathogens causing endophthalmitis may improve treatment outcomes through early administration of species-specific medication. The current study reports a new molecular application of peptide nucleic acid-fluorescence in situ hybridization (PNA-FISH) with Staphylococcus-specific molecular PNA probes for the potential rapid detection of common pathogens causing endophthalmitis.
An experimental study was designed to evaluate the proof of concept at the microbiology laboratory of the Bascom Palmer Eye Institute. Stored culture-positive staphylococci endophthalmitis isolates obtained from prior vitreous samples (n = 15), along with broth as negative controls (n = 5) were used. Inoculum was prepared to a final concentration of 1 × 105 colony-forming units/mL to ensure that the isolates were viable. Smears of samples were fixed and hybridized using QuickFISH protocol with probes for Staphylococcus.
With PNA-FISH technique, Staphylococcus aureus was identified in 9 of 10 samples and coagulase-negative staphylococci were identified in 10 of 10 samples. Detection time was 20 minutes.
This study serves a proof of concept using a new microbial detection system with FISH probes, and may have the potential for clinical use in the rapid and accurate identification of isolates from patients with endophthalmitis.
快速鉴定引起眼内炎的病原体,通过早期给予针对特定菌种的药物,可能改善治疗效果。本研究报告了一种肽核酸荧光原位杂交(PNA-FISH)的新分子应用,使用针对葡萄球菌的特异性分子PNA探针,用于潜在快速检测引起眼内炎的常见病原体。
设计一项实验研究,在巴斯科姆·帕尔默眼科研究所的微生物实验室评估概念验证。使用从先前玻璃体样本中获得的储存培养阳性葡萄球菌性眼内炎分离株(n = 15),以及肉汤作为阴性对照(n = 5)。将接种物制备至最终浓度为1×105菌落形成单位/毫升,以确保分离株存活。使用针对葡萄球菌的探针,按照QuickFISH方案对样本涂片进行固定和杂交。
采用PNA-FISH技术,在10份样本中的9份中鉴定出金黄色葡萄球菌,在10份样本中的10份中鉴定出凝固酶阴性葡萄球菌。检测时间为20分钟。
本研究为使用带有FISH探针的新型微生物检测系统提供了概念验证,并且可能具有临床应用潜力,用于快速准确地鉴定眼内炎患者的分离株。