The COVID-19 crisis presents new challenges and opportunities in managing alcohol use disorders, particularly for people unable to shelter in place due to homelessness or other reasons. Requiring abstinence for shelter engagement is impractical for many with severe alcohol use disorders and poses a modifiable barrier to self-isolation orders. Managed alcohol programs (MAPs) have successfully increased housing adherence for those with physical alcohol dependence in Canada, but to our knowledge, they have not been implemented in the United States.
View Article and Find Full Text PDFJ Psychiatr Pract
November 2016
Background: Early recognition and treatment of agitated patients is essential to avoid violence in the psychiatric emergency department (ED). Antipsychotics have established efficacy in managing agitation, yet little is known about how the choice of initial antipsychotic impacts time to repeat use and length of stay (LOS) in the psychiatric ED.
Objective: To describe the impact of initial antipsychotic selection on time to repeat use and LOS in the psychiatric ED.
Objective: To describe a faculty-student collaborative model and its outcomes on teaching, service, and scholarship.
Design: A Medicare Part D elective course was offered that consisted of classroom and experiential learning where pharmacy students participated in community outreach events to assist Medicare beneficiaries with Part D plan selection. The course training was expanded to include medication therapy management (MTM) and the administration of immunizations.
Although Pichia pastoris is a popular protein expression system, it exhibits limitations in its ability to secrete heterologous proteins. Therefore, a REMI (restriction enzyme mediated insertion) strategy was utilized to select mutant beta-g alactosidase s upersecretion (bgs) strains that secreted increased levels of a β-galactosidase reporter. Many of the twelve BGS genes may have functions in intracellular signaling or vesicle transport.
View Article and Find Full Text PDFThe Escherichia coli maltose binding protein (MBP) has been utilized as a translational fusion partner to improve the expression of foreign proteins made in E. coli. When located N-terminal to its cargo protein, MBP increases the solubility of intracellular proteins and improves the export of secreted proteins in bacterial systems.
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