10 research outputs found

    Predictors of the Use of Respite Services by Caregivers of Alzheimer\u27s Patients: Racial and Generational Differences

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    This research applies one prominent model of service utilization (the Andersen- Newman Model) to better understand the way in which family care givers utilize respite services when caring for older relatives. Specifically, this research examines racial (black and white) and generational (spouse and adult-child) differences between caregivers of Alzheimer\u27s patients and the volume and type of respite services used. The sample (N= 359) is drawn from six Northeast Ohio programs in a consortium that uses a personal computer-based information system to collect intake, assessment, service use, and program satisfaction data from respite clients. Racial differences are found in client attrition and turnover. Results also show adult-child caregivers are the greatest users of day care. These generational differences persist despite the similarities in patient and caregiver need. Fee subsidy and relationship strain between the caregiver and elder predict the amount of service used. Findings suggest that practitioners need to take into account racial and generational factors in addition to traditional patient and caregiver needs when formulating care plans

    Delineation of Two Clinically and Molecularly Distinct Subgroups of Posterior Fossa Ependymoma

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    Despite the histological similarity of ependymomas from throughout the neuroaxis, the disease likely comprises multiple independent entities, each with a distinct molecular pathogenesis. Transcriptional profiling of two large independent cohorts of ependymoma reveals the existence of two demographically, transcriptionally, genetically, and clinically distinct groups of posterior fossa (PF) ependymomas. Group A patients are younger, have laterally located tumors with a balanced genome, and are much more likely to exhibit recurrence, metastasis at recurrence, and death compared with Group B patients. Identification and optimization of immunohistochemical (IHC) markers for PF ependymoma subgroups allowed validation of our findings on a third independent cohort, using a human ependymoma tissue microarray, and provides a tool for prospective prognostication and stratification of PF ependymoma patients

    Molecular Classification of Ependymal Tumors across All CNS Compartments, Histopathological Grades, and Age Groups

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    Ependymal tumors across age groups are currently classified and graded solely by histopathology. It is, however, commonly accepted that this classification scheme has limited clinical utility based on its lack of reproducibility in predicting patients' outcome. We aimed at establishing a uniform molecular classification using DNA methylation profiling. Nine molecular subgroups were identified in a large cohort of 500 tumors, 3 in each anatomical compartment of the CNS, spine, posterior fossa, supratentorial. Two supratentorial subgroups are characterized by prototypic fusion genes involving RELA and YAP1, respectively. Regarding clinical associations, the molecular classification proposed herein outperforms the current histopathological classification and thus might serve as a basis for the next World Health Organization classification of CNS tumors

    Enhancer hijacking activates GFI1 family oncogenes in medulloblastoma

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    Medulloblastoma is a highly malignant paediatric brain tumour currently treated with a combination of surgery, radiation and chemotherapy, posing a considerable burden of toxicity to the developing child. Genomics has illuminated the extensive intertumoral heterogeneity of medulloblastoma, identifying four distinct molecular subgroups. Group 3 and group 4 subgroup medulloblastomas account for most paediatric cases; yet, oncogenic drivers for these subtypes remain largely unidentified. Here we describe a series of prevalent, highly disparate genomic structural variants, restricted to groups 3 and 4, resulting in specific and mutually exclusive activation of the growth factor independent 1 family proto-oncogenes, GFI1 and GFI1B. Somatic structural variants juxtapose GFI1 or GFI1B coding sequences proximal to active enhancer elements, including super-enhancers, instigating oncogenic activity. Our results, supported by evidence from mouse models, identify GFI1 and GFI1B as prominent medulloblastoma oncogenes and implicate 'enhancer hijacking' as an efficient mechanism driving oncogene activation in a childhood cancer
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