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一种利用流式细胞术对口腔螺旋体进行计数的有效方法。

An efficient method for enumerating oral spirochetes using flow cytometry.

机构信息

Cooperative Research Centre for Oral Health Science, Melbourne Dental School, Australia.

出版信息

J Microbiol Methods. 2010 Feb;80(2):123-8. doi: 10.1016/j.mimet.2009.11.006. Epub 2009 Nov 22.

Abstract

Spirochetes, such as Treponema denticola, are thin walled, helical, motile bacteria. They are notoriously difficult to enumerate due to their thinness and the difficulties associated with culturing them. Here we have developed a modified oral bacterial growth medium (OBGM) that significantly improves the cultivation of T. denticola compared with a previously published growth medium. Three methods for the enumeration of T. denticola, semi-solid growth medium colony-forming unit (CFU) counts, DNA analysis and flow cytometry, are described and compared. Enumeration of T. denticola using the semi-solid agar method resulted in a positive linear relationship with absorbance of the culture (R(2)=0.9423). However, the semi-solid agar method was found to consistently underestimate (by 50 fold) the T. denticola cell density compared to previously published data. DNA analysis of T. denticola cultures reliably and consistently resulted in a positive linear relationship with absorbance (R(2)=0.9360), giving a calculated cell density of 6.9 x 10(8)cells/mL at an absorbance of 0.2 at 650 nm. Flow cytometry was also found to result in a positive linear relationship with absorbance (R(2)=0.9874), giving a calculated cell density of 6.6 x 10(8)cells/mL at an absorbance of 0.2 at 650 nm. In comparing all of these enumeration methods, the flow cytometry method was found to have distinct advantages, as it is accurate, rapid, and could distinguish between live and dead bacteria. Thus flow cytometry is a recommended means for the rapid and reliable enumeration of viable spirochetes from culture.

摘要

螺旋体,如齿垢密螺旋体,是薄壁、螺旋形、能动的细菌。由于它们的薄度和培养它们的困难,它们的计数非常困难。在这里,我们开发了一种改良的口腔细菌生长培养基(OBGM),与以前发表的生长培养基相比,显著提高了 T. denticola 的培养效果。描述并比较了三种齿垢密螺旋体计数方法,即半固体生长培养基集落形成单位(CFU)计数、DNA 分析和流式细胞术。使用半固体琼脂方法对 T. denticola 的计数与培养物的吸光度呈正线性关系(R(2)=0.9423)。然而,与以前发表的数据相比,半固体琼脂方法发现始终低估(50 倍)T. denticola 细胞密度。T. denticola 培养物的 DNA 分析可靠且始终与吸光度呈正线性关系(R(2)=0.9360),在 650nm 处吸光度为 0.2 时,计算出的细胞密度为 6.9 x 10(8)cells/mL。流式细胞术也发现与吸光度呈正线性关系(R(2)=0.9874),在 650nm 处吸光度为 0.2 时,计算出的细胞密度为 6.6 x 10(8)cells/mL。在比较所有这些计数方法时,发现流式细胞术具有明显的优势,因为它准确、快速,并且可以区分活细菌和死细菌。因此,流式细胞术是一种快速可靠地从培养物中计数活螺旋体的推荐方法。

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