Publications by authors named "T A Caputo"

Background: The Next Generation National Council Licensing Examination (NCLEX) uses the Clinical Judgment Measurement Model in unfolding case studies to assess graduate nurses' clinical judgment.

Purpose: This study explored the impact of Next Generation NCLEX (NGN)-style case studies on baccalaureate nursing students' self-confidence and anxiety with clinical decision-making.

Methods: Seventy-six second-year baccalaureate nursing students participated in this 1-group convergent mixed-methods study.

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Multiple factors contribute to the widening gap between supply and demand of endocrinology services. In addition to the inadequate growth of the workforce, the inefficient utilization of endocrinologists' expertise coupled with the rising prevalence of endocrine conditions has generated a crisis in access to specialty care. This mismatch is magnified in underserved communities and among certain racial/ethnic groups that carry a disproportionate burden of chronic diseases, like diabetes and osteoporosis, thus perpetuating the cycle of health disparities in vulnerable populations.

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Exercise training and cold exposure both improve systemic metabolism, but the mechanisms are not well established. Here, we tested the hypothesis that inguinal white adipose tissue (iWAT) adaptations are critical for these beneficial effects and determined the impact of exercise-trained and cold-exposed iWAT on systemic glucose metabolism and the iWAT proteome and secretome. Transplanting trained iWAT into sedentary mice improves glucose tolerance, while cold-exposed iWAT transplantation shows no such benefit.

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Subcutaneous white adipose tissue (scWAT) is a dynamic storage and secretory organ that regulates systemic homeostasis, yet the impact of endurance exercise training (ExT) and sex on its molecular landscape is not fully established. Utilizing an integrative multi-omics approach, and leveraging data generated by the Molecular Transducers of Physical Activity Consortium (MoTrPAC), we show profound sexual dimorphism in the scWAT of sedentary rats and in the dynamic response of this tissue to ExT. Specifically, the scWAT of sedentary females displays -omic signatures related to insulin signaling and adipogenesis, whereas the scWAT of sedentary males is enriched in terms related to aerobic metabolism.

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Background: In obesity, adipose tissue undergoes a remodeling process characterized by increased adipocyte size (hypertrophia) and number (hyperplasia). The ability to tip the balance toward the hyperplastic growth, with recruitment of new fat cells through adipogenesis, seems to be critical for a healthy adipose tissue expansion, as opposed to a hypertrophic growth that is accompanied by the development of inflammation and metabolic dysfunction. However, the molecular mechanisms underlying the fine-tuned regulation of adipose tissue expansion are far from being understood.

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