The purpose of this study was to expand internal construct validity and equivalence research of the South African Personality Inventory (SAPI), as well as to investigate the nomological validity of the SAPI by examining its relationship with specific and relevant psychological outcomes. The internal and external validity of the SAPI was assessed within three separate samples ( = 936). Using the combined data from all three samples, Exploratory Structural Equation Modelling (ESEM) indicated that the six-factor SAPI model fit proved to be excellent. Measurement invariance analyses showed that the SAPI dimensions in the ESEM model were invariant across gender and race groups. Next, two separate studies explored the associations of the SAPI factors with relevant psychological outcomes. An ESEM-within-CFA (set ESEM) method was used to add the factors into a new input file to correlate them with variables that were not part of the initial ESEM model. Both models generated excellent fit. In Study 1, psychological well-being and cultural intelligence were correlated with the SAPI factors within a sample of students and working adults. All of the psychological well-being dimensions significantly correlated with the SAPI factors, while for cultural intelligence, the highest correlations were between Meta-cognition and Openness and Meta-cognition and Positive Social-Relational Disposition. In Study 2, work locus of control and trait anxiety was correlated with the SAPI factors within a sample of adults from the general South African workforce. Work Locus of Control correlated with most factors of the SAPI, but more prominently with Positive Social-Relational Disposition, while Neuroticism correlated strongly with trait anxiety. Finding an appropriate internal structure that measures personality without bias in a culturally diverse context is difficult. This study provided strong evidence that the SAPI meets the demanding requirements of personality measurement in this context and generated promising results to support the relevance of the SAPI factors.
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http://dx.doi.org/10.3389/fpsyg.2021.727848 | DOI Listing |
One Health
December 2024
ANSES - Université de Lyon, Unité Antibiorésistance et Virulence Bactériennes, Lyon, France.
The gene conferring methicillin-resistance has always been found on a SCC type XI element and is largely restricted to the few clonal complexes CC130, CC1943, CC425, CC49 and CC599. The occurrence of the gene in many different hosts highlighted its One Health importance, even though European hedgehogs () are considered its natural reservoir, most probably because of the selective pressure imposed by beta-lactam-producing dermatophytes () that colonize the skin of these mammals. Surprisingly, while the presence of on the French territory has been proven, no -positive methicillin-resistant (MRSA) isolate has been reported yet from hedgehogs.
View Article and Find Full Text PDFVirchows Arch
December 2024
Department of Pathology and Experimental Cancer Research, Semmelweis University, Budapest, Hungary.
Front Immunol
January 2024
National Cancerology Institute, Teaching department, Mexico, Mexico.
Introduction: Glycyrrhizin (GA) and its derivative Enoxolone (18β), isolated from the plant, are two potential molecules for treating viral diseases. Both demonstrate to regulate immune system with antiviral and anti-inflammatory activities, with the latter mainly due to modulation of inflammatory cytokines. The aim of this clinical trial was to evaluate the safety and efficacy of a nebulized GA/18β drug for treating COVID-19 patients.
View Article and Find Full Text PDFJ Mol Biol
February 2024
Department of Microbiology, The University of Alabama at Birmingham, Birmingham, AL 35294, USA. Electronic address:
Staphylococcus aureus is an important human pathogen, and the prevalence of antibiotic resistance is a major public health concern. The evolution of pathogenicity and resistance in S. aureus often involves acquisition of mobile genetic elements (MGEs).
View Article and Find Full Text PDFMicroPubl Biol
October 2023
Department of Neuroscience, Washington University Medical School, St. Louis, MO, USA.
Transgenic worms are a key resource for researchers dissecting molecular pathways using this simple metazoan model system. Transgenes provide an avenue to visualize developmental events, cellular processes as well as real-time signal events in live animals using genetically encoded sensors. Generation of these tools has become increasingly efficient with the advent of numerous integration methods including transposon, CRISPR and recombinase-mediated integration.
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