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Changes in the management of ALS since the publication of the AAN ALS practice parameter 1999.

OBJECTIVE: To determine if the publication in 1999 of the AAN Practice Parameter on ALS was associated with an improvement in the standard of management of the disease. METHODS: Data on 646 patients enrolled in the ALS CARE database and on 465 patients who died in the period May 2001 to November 2002 were compared with similar data obtained from the database from 1996 to May 1999. RESULTS: The specialty ALS clinics were the most important source of information about ALS. The internet was a source for 39%. The treatment of sialorrhea, pseudobulbar emotional lability, and failure of swallowing and breathing had all improved significantly in the period after the publication of the Practice Parameter. However many patients still did not receive a gastrostomy tube or non-invasive positive pressure ventilation when indicated by the Practice Parameter, mainly because of lack of patient compliance. Cost was the main reason why 41% of patients did not receive riluzole, though they spent a third of the cost of this medication on alternative medicines. CONCLUSIONS: The publication of the AAN Practice Parameter was associated with improvement in the standard of care. Most cases in the database come from specialized ALS centers, and further information on the community care of ALS patients is needed.

Academies and Institutes↗

Paenibacillus (formerly Bacillus) gordonae (Pichinoty et al. 1986) Ash et al. 1994 is a later subjective synonym of Paenibacillus (formerly Bacillus) validus (Nakamura 1984) Ash et al. 1994: emended description of P. validus.

A polyphasic study in which we performed an amplified ribosomal DNA restriction analysis, sodium dodecyl sulfate-polyacrylamide gel electrophoresis of whole-cell proteins, a gas chromatographic analysis of methylated fatty acids, pyrolysis mass spectrometry, a random amplified polymorphic DNA analysis, a phenotypic analysis, and an analysis of the levels of DNA binding of Paenibacillus gordonae and Paenibacillus validus strains (including both type strains) showed that these organisms form a homogeneous group and that the names P. gordonae and P. validus are therefore synonyms. P. validus has nomenclatural priority, and an emended description of this species is given; the type strain is strain LMG 11161 (= ATCC 43897).

Bacillus↗

Reclassification of Paenibacillus durum (formerly Clostridium durum Smith and Cato 1974) Collins et al. 1994 as a member of the species P. azotofixans (formerly Bacillus azotofixans Seldin et al. 1984) Ash et al. 1994.

Phenotypic studies, as well as the reaction of Paenibacillus durum genomic DNA with a 16S ribosomal DNA (sequence of variable regions V1 to V4)-based Paenibacillus azotofixans-specific PCR system and oligonucleotide probe, the presence of sequences homologous to Klebsiella pneumoniae nifKDH in both P. durum and P. azotofixans, and the results of DNA-DNA hybridization experiments performed with the P. durum and P.azotofixans type strains and one additional P. durum strain, showed that these two species form a homogeneous group. In addition, evidence was found for the presence of nif genes in P. durum, and P. durum was shown to fix atmospheric nitrogen. Therefore, the names P. durum and P. azotofixans should be considered synonyms. As P. durum was capable of fixing nitrogen and fixation without inhibition by nitrate is a major characteristic of the group, we propose that P. durum be included in the species P. azotofixans.

Bacillus↗

Photobacterium histaminum Okuzumi et al. 1994 is a later subjective synonym of Photobacterium damselae subsp. damselae (Love et al. 1981) Smith et al. 1991.

The type strain of Photobacterium histaminum, JCM 8968T (= ATCC 51805T), and that of Photobacterium damselae subsp. damselae, ATCC 33539T, exhibit 100% identity in their 16S rRNA sequence, more than 80% DNA-DNA homology and only one phenotypic difference. Also, like P. histaminum, P. damselae subsp. damselae was shown to excrete a large amount of histamine when cells were grown on medium containing excessive histidine under acidic conditions. Therefore, the name P. histaminum should be considered to be a later subjective synonym of P. damselae subsp. damselae.

DNA, Bacterial↗

Reclassification of Roseobacter gallaeciensis Ruiz-Ponte et al. 1998 as Phaeobacter gallaeciensis gen. nov., comb. nov., description of Phaeobacter inhibens sp. nov., reclassification of Ruegeria algicola (Lafay et al. 1995) Uchino et al. 1999 as Marinovum algicola gen. nov., comb. nov., and emended descriptions of the genera Roseobacter, Ruegeria and Leisingera.

A heterotrophic, antibiotic-producing bacterium, strain T5(T), was isolated from the German Wadden Sea, located in the southern region of the North Sea. Sequence analysis of the 16S rRNA gene of this strain demonstrated close affiliation with Roseobacter gallaeciensis BS107(T) (99 % similarity), but the results of genotypic (DNA-DNA hybridization and DNA G + C content) and phenotypic characterization revealed that strain T5(T) represents a novel species. The novel organism is strictly aerobic, Gram-negative, rod-shaped, motile and forms brown-pigmented colonies. Strain T5(T) produces the antibiotic tropodithietic acid throughout the exponential phase which inhibits the growth of bacteria from different taxa, as well as marine algae. Strain T5(T) requires sodium ions and utilizes a wide range of substrates, including oligosaccharides, sugar alcohols, organic acids and amino acids. The DNA G + C content is 55.7 mol%. Comparative 16S rRNA gene sequence analysis revealed that strains T5(T) and Roseobacter gallaeciensis BS107(T) group with Leisingera methylohalidivorans as their closest described relative within the Roseobacter clade (97.9 and 97.6 % sequence similarity, respectively) and with Ruegeria algicola (96.6 and 96.5 % similarity, respectively) of the Alphaproteobacteria. Comparison of strains T5(T) and Roseobacter gallaeciensis BS107(T) with Roseobacter denitrificans and Roseobacter litoralis showed striking differences in 16S rRNA gene sequence similarities, chemical composition, pigmentation, presence of bacteriochlorophyll a and antibiotic production. On the basis of these results, it is proposed that Roseobacter gallaeciensis is reclassified as the type species of a new genus, Phaeobacter, as Phaeobacter gallaeciensis comb. nov. (type strain BS107(T) = CIP 105210(T) = ATCC 700781(T) = NBRC 16654(T) = DSM 17395(T)). Strain T5(T) (=LMG 22475(T) = DSM 16374(T)) is proposed as the type strain of a novel species of this genus, Phaeobacter inhibens sp. nov. At the same time, emended descriptions are provided of the genera Roseobacter, Ruegeria and Leisingera, as well as reclassifying Ruegeria algicola as the type species of a new genus, Marinovum, with the name Marinovum algicola comb. nov.

Chromosomes, Bacterial↗