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J Le

Publications and source records attributed to J Le.

93 records · Page 6Linked to original sources

Analysis of CARD15/NOD2 haplotypes fails to identify common variants associated with rheumatoid arthritis susceptibility.

OBJECTIVES: The CARD15/NOD2 gene product plays an important role in host response to bacterial lipopolysaccharides and bacterial muramyl dipeptide via activation of NF-kappaB in monocytes. Mutations in CARD15 are associated with Crohn's disease (CD), a chronic inflammatory bowel disease. In this study we sought to determine whether CD-associated mutations or any common variants of this gene might contribute to susceptibility to another chronic inflammatory disease, rheumatoid arthritis (RA). METHODS: We genotyped 376 Caucasian RA cases and 376 ethnically matched healthy controls for three CD-associated CARD15 mutations. We also genotyped these 752 individuals for 12 common CARD15 single nucleotide polymorphisms (SNPs), determined the linkage disequilibrium structure of the gene, and compared the frequencies of the common CARD15 haplotypes in the RA cases and controls. RESULTS: None of the CD-associated mutations or the CARD15 SNPs was associated with susceptibility to RA. We also found no significant difference in the frequencies of any of the common haplotypes of the CARD15 gene in RA patients and controls. Our haplotype analysis was consistent with earlier observations that all three CD-associated variants independently arose on the same ancestral haplotype. CONCLUSIONS: These data suggest that CARD15 variants are not associated with RA susceptibility.

Adolescent↗

Fate and toxicity of endosulfan in Namoi River water and bottom sediment.

Endosulfan (6,7,8,9,10,10,-hexachloro-1,5,5a,6,9,9a-hexahydro-6,9-methano-2,4,3-benzodioxathiepine-3-oxide) sorption (standardized to 1% total organic carbon and dry weight) was significantly (P < 0.05) more concentrated on the large (>63 microm) particle fraction compared with smaller size fractions (<5 microm and 5-24 microm) of bottom sediments from the Namoi River, Australia. Following completion of the particle size fractionation (6 to 12 wk) and a sediment toxicity assessment (2 wk), the sediments showed large decreases in concentrations of alpha-endosulfan that coincided with an increase in endosulfan sulfate concentrations and minimal changes in beta-endosulfan concentrations. In the Namoi River, similar patterns were observed in the composition of total endosulfan in monthly measurements of bottom sediments and in passive samplers placed in the water column following runoff from cotton (Gossypium hirsutum L.) fields. The toxicity of endosulfan sulfate in river water indicated by the nymphs of the epibenthic mayfly Jappa kutera, was more persistent than the alpha- and beta-endosulfan parent isomers due to its longer half-life. This suggests that endosulfan sulfate would contribute most to previously observed changes in population densities of aquatic biota. Measured concentrations of total endosulfan in river water of up to 4 microg L(-1) following storm runoff, exceed the range of the 96-h median lethal concentration (LC50) values in river water for both alpha-endosulfan (LC50 = 0.7 microg L(-1); 95% confidence interval [CI] = 0.5 to 1.1) and endosulfan sulfate (LC50 = 1.2 microg L(-1); 95% CI = 0.4 to 3.3). In contrast, the 10-d LC50 value for total endosulfan in the sediment toxicity test (LC50 = 162 microg kg(-1); 95% CI = 120 to 218 microg kg(-1)) was more than threefold higher than the highest measured concentration of total endosulfan in field samples of bottom sediment (48 microg kg(-1)). This suggests that pulse exposures of endosulfan in the water column following storm runoff may be more acutely toxic to riverine biota than in contaminated bottom sediment.

Animals↗

Generation of nitric oxide and clearance of interferon-gamma after BCG infection are impaired in mice that lack the interferon-gamma receptor.

Mice with a targeted deletion of either the interferon (IFN)-gamma gene or the IFN-gamma receptor gene (IFN-gamma R(0/0) mice) fail to survive infection with the Bacillus Calmette-Guerin (BCG) strain of Mycobacterium bovis. Here we show that resident peritoneal macrophages isolated 2 weeks after BCG infection from IFN-gamma R(0/0) mice produced significantly less nitric oxide (NO) than wild-type macrophages. However, the response to lipopolysaccharide (LPS) was not completely abrogated in the IFN-gamma R(0/0) macrophages. BCG infection of wild-type mice led to a marked increase in their urinary nitrite/nitrate levels, as previously described. This increase in urinary nitrite/nitrate was not detected in BCG- infected IFN-gamma R(0/0) mice, indicating that no other cytokine can replace IFN-gamma as a mediator of increased NO synthesis after BCG infection in the intact organism. A comparison of circulating levels of IFN-gamma in BCG-infected animals revealed that sera from IFN-gamma R(0/0) mice contained up to 66-fold more IFN-gamma than sera from identically treated wild-type mice. To determine if the higher levels of circulating IFN-gamma were due to increased IFN-gamma synthesis, we compared the amounts of IFN-gamma mRNA present in the spleens of BCG-infected wild-type and IFN-gamma R(0/0) mice. No increase in IFN-gamma mRNA levels was detected in the spleens from IFN-gamma R(0/0) mice. Since the generation of IFN-gamma protein in cultured spleen cells was also not increased in IFN-gamma R(0/0) mice, we conclude that clearance of IFN-gamma from the circulation is impaired in IFN-gamma R(0/0) mice, thus revealing a heretofore unrecognized important role for the IFN-gamma receptor in the regulation of IFN-gamma levels in the intact organism.

Animals↗