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1.
EGEMS (Wash DC) ; 7(1): 51, 2019 Sep 30.
Article in English | MEDLINE | ID: mdl-31646151

ABSTRACT

OBJECTIVE: To implement a quality improvement based system to measure and improve data quality in an observational clinical registry to support a Learning Healthcare System. DATA SOURCE: ImproveCareNow Network registry, which as of September 2019 contained data from 314,250 visits of 43,305 pediatric Inflammatory Bowel Disease (IBD) patients at 109 participating care centers. STUDY DESIGN: The impact of data quality improvement support to care centers was evaluated using statistical process control methodology. Data quality measures were defined, performance feedback of those measures using statistical process control charts was implemented, and reports that identified data items not following data quality checks were developed to enable centers to monitor and improve the quality of their data. PRINCIPAL FINDINGS: There was a pattern of improvement across measures of data quality. The proportion of visits with complete critical data increased from 72 percent to 82 percent. The percent of registered patients improved from 59 percent to 83 percent. Of three additional measures of data consistency and timeliness, one improved performance from 42 percent to 63 percent. Performance declined on one measure due to changes in network documentation practices and maturation. There was variation among care centers in data quality. CONCLUSIONS: A quality improvement based approach to data quality monitoring and improvement is feasible and effective.

2.
J Immunol ; 186(12): 7205-14, 2011 Jun 15.
Article in English | MEDLINE | ID: mdl-21555532

ABSTRACT

Guanylate cyclase C (GUCY2C or GC-C) and its ligands, guanylin (GUCA2A or Gn) and uroguanylin (GUCA2B or Ugn), are expressed in intestinal epithelial cells and regulate ion secretion, intestinal barrier function, and epithelial monolayer homeostasis via cGMP-dependent signaling pathways. The aim of this study was to determine whether GC-C and its ligands direct the course of intestinal inflammation. In this article, we show that dextran sodium sulfate (DSS)-induced clinical disease and histological damage to the colonic mucosa were significantly less severe in GC-C(-/-) mice and moderately reduced in Gn(-/-) animals. Relative to wild-type controls, GC-C(-/-) and Gn(-/-) mice had reduced apoptosis and increased proliferation of intestinal epithelial cells during DSS colitis. Basal and DSS-induced production of resistin-like molecule ß (RELMß) was substantially diminished in GC-C(-/-) mice. RELMß is thought to stimulate cytokine production in macrophages in this disease model and, consistent with this, TNF-α and IFN-γ production was minimal in GC-C(-/-) animals. RELMß and cytokine levels were similar to wild-type in Gn(-/-) mice, however. Colonic instillation of recombinant RELMß by enema into GC-C(-/-) mice restores sensitivity to DSS-mediated mucosal injury. These findings demonstrate a novel role for GC-C signaling in facilitating mucosal wounding and inflammation, and further suggest that this may be mediated, in part, through control of RELMß production.


Subject(s)
Guanylate Cyclase/physiology , Animals , Colonic Diseases/etiology , Colonic Diseases/pathology , Gastrointestinal Hormones/physiology , Hormones, Ectopic/biosynthesis , Hormones, Ectopic/physiology , Inflammation/etiology , Intercellular Signaling Peptides and Proteins , Interferon-gamma/biosynthesis , Intestinal Mucosa/pathology , Mice , Mice, Knockout , Natriuretic Peptides/physiology , Tumor Necrosis Factor-alpha/biosynthesis
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