Instituto de Microbiologia Paulo de Goes, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
Universidade Federal Fluminense, Niterói, RJ, Brazil.
Sci Rep. 2017 Mar 28;7:45572. doi: 10.1038/srep45572.
Streptococcus pneumoniae can be classified in more than 90 capsular types, as traditionally determined by serological methods and more recently by PCR-based techniques. Such methods, however, can be expensive, laborious or unable to accurately discriminate among certain serotypes. Therefore, determination of capsular types, although extremely important for epidemiological purposes and for estimating the impact of pneumococcal conjugate vaccines, is mainly restricted to research laboratories, being rarely performed in the clinical setting. In the present study, MALDI-TOF MS was evaluated as an alternative tool to characterize 416 pneumococcal isolates belonging to serotypes 6A, 6B, 6C, 9N, 9V or 14. For MALDI-TOF MS analysis, each isolate was submitted to an extraction protocol using formic acid and acetonitrile. Measurements were performed with a Bruker Microflex LT mass spectrometer using default parameters and generating spectra in the range of 2,000-20,000 m/z. Spectra were analyzed with the BioNumerics software v7.6. Isolates were mainly distributed according to the capsular type in a Neighbor Joining tree and serotypes investigated were successfully discriminated by the presence/absence of 14 selected biomarkers. The results suggest that MALDI-TOF MS is a promising alternative for typing pneumococcal strains, highlighting its usefulness for rapid and cost-effective routine application in clinical laboratories.
肺炎链球菌可以分为 90 多种荚膜型,传统上通过血清学方法确定,最近也可以通过基于 PCR 的技术确定。然而,这些方法可能昂贵、繁琐,或者无法准确区分某些血清型。因此,荚膜型的确定虽然对于流行病学目的和估计肺炎球菌结合疫苗的影响极其重要,但主要限于研究实验室,在临床环境中很少进行。在本研究中,MALDI-TOF MS 被评估为一种替代工具,用于表征属于 6A、6B、6C、9N、9V 或 14 型的 416 株肺炎链球菌分离株。对于 MALDI-TOF MS 分析,每个分离株都使用甲酸和乙腈进行提取方案处理。使用 Bruker Microflex LT 质谱仪进行测量,使用默认参数并在 2,000-20,000 m/z 的范围内生成光谱。使用 BioNumerics 软件 v7.6 分析光谱。分离株主要根据荚膜型在邻接法树中分布,通过存在/不存在 14 个选定的生物标志物成功区分了研究的血清型。结果表明,MALDI-TOF MS 是一种有前途的肺炎链球菌分型替代方法,突出了其在临床实验室中快速、经济高效的常规应用中的有用性。