Publications by authors named "Jonathan T Huntington"

Problem: Identifying and processing medical errors are overlooked components of undergraduate medical education. Organizations and leaders advocate teaching medical students about patient safety and medical error, yet few feasible examples demonstrate how this teaching should occur. To provide students with familiarity in identifying, reporting, and analyzing medical errors, the authors developed the interactive patient safety reporting curriculum (PSRC), requiring clinical students to engage intellectually and emotionally with personally experienced events in which the safety of one of their patients was compromised.

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To positively impact patient safety, the Institute of Medicine, as well as the Quality and Safety Education for Nurses initiative, has recommended clinician training in structured communication techniques. Such techniques are particularly useful in overcoming hierarchical barriers in health care settings. This article describes an interprofessional simulation program to teach structured communication techniques to preprofessional nursing, medical, and physician assistant students.

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Background: Practice-based learning and improvement (PBLI) combines the science of continuous quality improvement with the pragmatics of day-to-day clinical care delivery. PBLI is a core-learning domain in nursing and medical education. We developed a workbook-based, project-focused curriculum to teach PBLI to novice health professional students.

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Objective: To evaluate the effects of LG100268 (LG268), a synthetic ligand for the nuclear hormone receptor retinoid X receptor, on the expression of matrix metalloproteinase 1 (MMP-1) and MMP-13 induced by proinflammatory cytokines in a chondrocyte model.

Methods: SW-1353 human chondrosarcoma cells were used to study the effects of LG268 on interleukin-1beta (IL-1beta)-stimulated MMP production and collagen degradation. Gene expression was determined by quantitative real-time reverse transcription-polymerase chain reaction, and protein levels were determined by Western blot analysis.

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Melanoma progresses as a multistep process where the thickness of the lesion and depth of tumor invasion are the best prognostic indicators of clinical outcome. Degradation of the interstitial collagens in the extracellular matrix is an integral component of tumor invasion and metastasis, and much of this degradation is mediated by collagenase-1 (MMP-1), a member of the matrix metalloproteinase (MMP) family. MMP-1 levels increase during melanoma progression where they are associated with shorter disease-free survival.

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