Publications by authors named "Barbara Bricoli"

Approximately one half of the 40 million family caregivers in the United States are regularly performing medical/nursing tasks, with very little training from clinicians. The goal of the current project was to encourage health care and social service professionals to proactively engage family caregivers as partners in care. The phases of the Professional Partners Supporting Family Caregivers project and results of an intervention are presented.

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The Nurses Improving the Care of Healthsystem Elders (NICHE) program helps its more than 450 member sites to build the leadership capabilities to enact system-level change that targets the unique needs of older adults and embeds evidence-based geriatrics knowledge into practice. NICHE received expansion funding to establish a sustainable business model for operations while positioning the program to continue as a leader in innovative senior care programs. The expansion program focused on developing an internal business infrastructure, expanding NICHE-specific resources, creating a Web platform, increasing the number of participating NICHE hospitals, enhancing and expanding the NICHE benchmarking service, supporting research that generates evidence-based practices, fostering interorganizational collaboration, developing sufficient diversified revenue sources, and increasing the penetration and level of activity of current NICHE sites.

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Mutations in PKD1, the gene encoding for the receptor Polycystin-1 (PC-1), cause autosomal dominant polycystic kidney disease (ADPKD). The cytoplasmic C-terminus of PC-1 contains a coiled-coil domain that mediates an interaction with the PKD2 gene product, Polycystin-2 (PC-2). Here we identify a novel domain in the PC-1 C-terminal tail, a polyproline motif mediating an interaction with Src homology domain 3 (SH3).

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A novel class of macrobicyclic receptors for carbohydrate recognition based on upper rim, peptide-bridged calix[4]arenes has been designed and synthesized. Receptor 12, in which a charged phosphate group cooperates with peptide hydrogen-bonding donor and acceptor groups in the binding process, is the most efficient and selective in the complexation of simple carbohydrate derivatives. The selectivity observed is toward beta-glucoside 13a, which is better bound (DeltaG degrees = 19.

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