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Prescription of second-generation antipsychotics (SGAs) in youths is rapidly increasing globally, despite the potential for significant adverse effects and long-term health consequences. A known adverse reaction resulting from SGAs is metabolic syndrome (MS). Youths exposed to antipsychotics are at higher risk than adults for adverse drug reactions, including adverse events such as MS (with weight gain as the most significant adverse outcome) and other long-term endocrinological abnormalities. This study aimed to explore the experiences of young patients on factors impacting barriers to metabolic monitoring of SGAs and the strategies to address those barriers thereby providing further guidance on policy and service delivery. Semi-structured interviews were conducted with patients (youths who were prescribed SGAs) who attended Child and Youth Mental Health Services. The interviews focused on barriers to monitoring and strategies to enhance rates of monitoring that could be customized across study sites. Young patients revealed that none of them had any concerns or objections to receiving anthropometric metabolic measurements. However, they seemed concerned to undergo blood tests as part of the metabolic monitoring process. Specifically, youths cited their fear of the needles as barrier to undergo the required blood tests. Youths have also reported that their dislike to healthy foods and exercise being the most common challenge they face while trying to engage in a healthy lifestyle to manage the SGAs resulted weight gain. Prescribers are recommended to actively engage young patients about the expected SGAs-induced adverse effects, the importance of conducting metabolic monitoring, and how to prevent and minimize the expected adverse effects from the start of initiating SGAs. This could be a vital step toward a successful treatment as the insight of youths into the details of the chosen treatment can play a significant role into treatment adherence and recovery.
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http://dx.doi.org/10.1089/cap.2023.0016 | DOI Listing |
J Enzyme Inhib Med Chem
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School of Life Sciences, Jinggangshan University, Ji'an, China.
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State Key Laboratory of Agricultural and Forestry Biosecurity & Key Lab of Biopesticide and Chemical Biology, Ministry of Education, College of Plant Protection, Fujian Agriculture and Forestry University, Fuzhou 350002, PR China. Electronic address:
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Corteva Agriscience, Indianapolis, IN 46268, USA; Retired - Present address Agrilucent LLC, Morro Bay, CA 93442, USA.
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College of Plant Protection, Shenyang Agricultural University, Shenyang 110866, Liaoning, China; Key Laboratory of Economical and Applied Entomology of Liaoning Province, Shenyang 110866, Liaoning, China; Key Laboratory of Major Agricultural Invasion Biological Monitoring and Control of Shenyang, 11
G protein-coupled receptors (GPCRs) constitute a diverse and crucial family of membrane receptors, regulating a wide array of physiological processes. Although the involvement of GPCR signaling pathways in modulating key genes associated with insecticide resistance has been documented in various insect species, the molecular mechanisms underlying GPCR-mediated resistance in Cydia pomonella remain largely unknown. To elucidate the molecular basis of lambda-cyhalothrin (LCT) resistance in C.
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Université Côte d'Azur, INRAE, CNRS, ISA, Sophia Antipolis, France. Electronic address:
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