02488nas a2200277 4500000000100000008004100001260001300042653001200055653002100067653001200088653002600100653000900126653001500135653003100150653002500181653001700206653002600223100001300249700001500262700001800277245012100295300001100416490000700427520176200434022001402196 2005 d c2005 Mar10aAnimals10aFluorescent Dyes10aleprosy10aMacrophage Activation10aMice10aMice, Nude10aMicroscopy, Phase-Contrast10aMycobacterium leprae10aNitric Oxide10aStaining and Labeling1 aLahiri R1 aRandhawa B1 aKrahenbuhl JL00aApplication of a viability-staining method for Mycobacterium leprae derived from the athymic (nu/nu) mouse foot pad. a235-420 v543 a

Mycobacterium leprae cannot be cultured, so ascertaining viability of the organism remains a major obstacle, impeding many avenues of investigation. This study tested a two-colour, Syto9 and propidium iodide, fluorescence assay, which scores for membrane damage in individual bacilli, to determine if a rapid direct-count viability-staining technique can be reliably applied to M. leprae. A variety of experimental conditions were employed to validate this technique. This technique was also used to correlate the viability of M. leprae with the course of athymic mouse foot pad infection to optimize the provision of viable M. leprae as a research reagent. The data show that in untreated suspensions of M. leprae there is a good correlation between the metabolic activity of leprosy bacilli and their membrane damage. Fixation of M. leprae with ethanol, paraformaldehyde and gluteraldehyde completely suppressed their metabolic activity but showed little effect on their membrane integrity. The present study also showed that the metabolic activity of M. leprae declines more than the extent of membrane damage at 37 degrees C within 72 h, but that they are not significantly affected at 33 degrees C. Irradiation at 10(4) Gy showed high numbers of dead bacilli by the staining method. The results show that the reliability of metabolic-activity data as well as viability-staining data is dependent on the method by which M. leprae is killed. This staining method helped us predict reliably that the smaller M. leprae-infected athymic mouse foot pad seen early in infection, between 4 and 5 months, yields markedly better quality leprosy bacilli than older, larger foot pad infections, as defined by their metabolic activity and membrane integrity.

 a0022-2615