23 research outputs found
Separation of mercury(II), methylmercury and phenylmercury by micellar high-performance liquid chromatography on short columns
Analysis of saturated normal fatty acids in hydrocarbon matrices by capillary isotachophoresis
Distribution of mercury in soil organic matter fractions obtained by dissolution/precipitation method
HPLC profiling of radiolytic products of nitrobenzene-carbon tetrachloride-water two-phase systems
Beyond the Right to the Governmentalized City: Queer Citizenship in a Brazilian Context of Peripheralization
Eliminating Solid Phase Extraction with Large-Volume Injection LC/MS/MS: Analysis of Illicit and Legal Drugs and Human Urine Indicators in US Wastewaters
Pyrido[2,3-<i>d</i>]pyrimidin-5-ones: A Novel Class of Antiinflammatory Macrophage Colony-Stimulating Factor-1 Receptor Inhibitors
A series of pyrido[2,3-d]pyrimidin-5-ones has been synthesized and evaluated as inhibitors of the kinase domain of macrophage colony-stimulating factor-1 receptor (FMS). FMS inhibitors may be useful in treating rheumatoid arthritis and other chronic inflammatory diseases. Structure-based optimization of the lead amide analogue 10 led to hydroxamate analogue 37, which possessed excellent potency and an improved pharmacokinetic profile. During the chronic phase of streptococcal cell wall-induced arthritis in rats, compound 37 (10, 3, and 1 mg/kg) was highly effective at reversing established joint swelling. In an adjuvant-induced arthritis model in rats, 37 prevented joint swelling partially at 10 mg/kg. In this model, osteoclastogenesis and bone erosion were prevented by low doses (1 or 0.33 mg/kg) that had minimal impact on inflammation. These data underscore the potential of FMS inhibitors to prevent erosions and reduce symptoms in rheumatoid arthritis
