Evaluating changes to Ralstonia pickettii in high-purity water to guide selection of potential calibration materials for online water bioburden analyzers

Author:

Benkstein Kurt D1,Da Silva Sandra M2,Lin Nancy J2,Ripple Dean C1

Affiliation:

1. grid.94225.38 000000012158463X Biomolecular Measurement Division, Materials Measurement Laboratory National Institute of Standards and Technology 20899-8362 Gaithersburg MD USA

2. grid.94225.38 000000012158463X Biosystems and Biomaterials Division, Materials Measurement Laboratory National Institute of Standards and Technology 20899-8543 Gaithersburg MD USA

Abstract

Abstract Online water bioburden analyzers (OWBAs) can provide real-time feedback on viable bacteria in high-purity water (HPW) systems for pharmaceutical manufacturers. To calibrate and validate OWBAs, which detect bacteria using scattered light and bacterial autofluorescence, standards are needed that mimic the characteristics of bacteria in HPW. To guide selection of potential standards, e.g., fluorescent microspheres, a relevant bacterial contaminant, Ralstonia  pickettii, was characterized for size, count, viability, and autofluorescence after exposure for 24 h to HPW or a nutrient environment. The cells exposed to HPW showed smaller sizes, with lower counts and autofluorescence intensities, but similar spectral features. The cell characteristics are discussed in comparison with a set of fluorescent microspheres, considering factors relevant to OWBAs. These studies suggest that fluorescent microspheres should be relatively small (< 1 µm diameter) and dim, while covering a broad emission range from ≈ (420 to 600) nm to best mimic the representative R. pickettii.

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

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