Objective: Parents and caregivers of children with neurological conditions express interest in new and developing treatments and trials; however, they have limited knowledge of, and access to, reliable information. This study aims to empower and equip decision-making and support communication in the application of advanced neurotherapeutics and personalised medicine, covering gene therapy, stem cell therapy, neurostimulation and neuroimmunotherapies.
Design: A suite of online psychoeducational resources has been created and evaluated to establish implementation success. A codesign approach was incorporated in this mixed methods cross-sectional study.
Setting: Quaternary children's hospital network.
Patients: Across three phases, 105 parents of children with neurological conditions, clinicians and advocacy group representatives participated.
Interventions: A suite of psychoeducational resources about advanced therapeutics in clinical trials was codeveloped with parents and evaluated.
Main Outcome Measures: Acceptability, Appropriateness, and Feasibility of Intervention Measures, Preparedness for Decision-Making Scale, Decision Self-efficacy Scale and open-ended qualitative feedback.
Results: The resources provide an acceptable, appropriate, credible and feasible source of information. Parents also established they help with preparedness and confidence in decision-making regarding the applications of neurotherapeutics.
Conclusions: This study and its results are aligned with, and supports, the needs and preferences of caregivers of children with neurological conditions, promoting information provision, healthcare engagement and clinical decision-making. These resources will form a foundation for accurate and contemporary scientific knowledge that is distilled and available to a wide range of stakeholders.
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http://dx.doi.org/10.1136/archdischild-2024-327914 | DOI Listing |
Nat Commun
December 2024
Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD, USA.
Currently there are no effective treatments for an array of neurodegenerative disorders to a large part because cell-based models fail to recapitulate disease. Here we develop a reproducible human iPSC-based model where laser axotomy causes retrograde axon degeneration leading to neuronal cell death. Time-lapse confocal imaging revealed that damage triggers an apoptotic wave of mitochondrial fission proceeding from the site of injury to the soma.
View Article and Find Full Text PDFNeurol Neurochir Pol
January 2024
Department of Gynecology, Obstetrics and Oncological Gynecology, Faculty of Medicine in Katowice, Medical University of Silesia, Katowice, Poland.
Genet Med
December 2024
Sheffield Clinical Genetics Service, Sheffield Children's NHS Foundation Trust, Sheffield, UK; Division of Clinical Medicine, University of Sheffield, Sheffield, UK. Electronic address:
Purpose: The TAOK proteins are a group of serine/threonine-protein kinases involved in signalling pathways, cytoskeleton regulation, and neuronal development. TAOK1 variants are associated with a neurodevelopmental disorder (NDD) characterized by distinctive facial features, hypotonia and feeding difficulties. TAOK2 variants have been reported to be associated with autism and early-onset obesity.
View Article and Find Full Text PDFCureus
November 2024
Medical Engineering, Cardiff University School of Engineering, Wales, GBR.
Objectives: Pediatric head and spinal traumas are challenging for healthcare professionals due to their potential for severe consequences. Understanding optimal management methods is crucial to prevent complications and improve outcomes. Head and spinal injuries are common in children, with falls and motor vehicle collisions as the leading causes.
View Article and Find Full Text PDFIBRO Neurosci Rep
December 2024
Department of Biotechnology, Basic Medical School, Guangdong Medical University, Dongguan 523808, China.
Serum and glucocorticoid-regulated kinase 1 (SGK1), a member of the AGC family of serine/threonine protein kinases, is one of the most conserved protein kinases in eukaryotic evolution. SGK1 is expressed to varying degrees in various types of cells throughout the body, and plays an important role in hypertension, ion channels, oxidative stress, neurological disorders, and cardiovascular regulation. In recent years, a number of scholars have devoted themselves to the study of the role and function of SGK1 in neurological diseases.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!