0000000000353852

AUTHOR

David Capper

0000-0003-1945-497x

showing 2 related works from this author

Differential expression of the tumor suppressor A-kinase anchor protein 12 in human diffuse and pilocytic astrocytomas is regulated by promoter methy…

2013

The scaffold protein A-kinase anchor protein 12 (AKAP12) exerts tumor suppressor activity and is downregulated in several tumor entities. We characterized AKAP12 expression and regulation in astrocytomas, including pilocytic and diffusely infiltrating astrocytomas. We examined 194 human gliomas and 23 normal brain white matter samples by immunohistochemistry or immunoblotting for AKAP12 expression. We further performed quantitative methylation analysis of the AKAP12 promoter by MassARRAY® of normal brain, World Health Organization (WHO) grade I to IV astrocytomas, and glioma cell lines. Our results show that AKAP12 is expressed in a perivascular distribution in normal CNS, strongly upregula…

AdultMalePathologymedicine.medical_specialtyAdolescent2804 Cellular and Molecular NeuroscienceA Kinase Anchor ProteinsCell Cycle Proteins610 Medicine & healthAstrocytomaBiologyPathology and Forensic MedicineCellular and Molecular NeuroscienceGliomamedicineHumansChildPromoter Regions GeneticneoplasmsAgedAged 80 and overRegulation of gene expressionPilocytic astrocytomaBrain NeoplasmsInfantAstrocytomaGeneral MedicineMethylationDNA MethylationMiddle AgedAKAP12medicine.diseaseUp-Regulationnervous system diseases10040 Clinic for NeurologyGene Expression Regulation Neoplastic2734 Pathology and Forensic Medicine2728 Neurology (clinical)nervous systemNeurologyChild Preschool2808 NeurologyDNA methylationCancer researchImmunohistochemistryFemaleNeurology (clinical)Neoplasm Grading
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Intraoperative DNA methylation classification of brain tumors impacts neurosurgical strategy

2021

Abstract Background Brain tumor surgery must balance the benefit of maximal resection against the risk of inflicting severe damage. The impact of increased resection is diagnosis-specific. However, the precise diagnosis is typically uncertain at surgery due to limitations of imaging and intraoperative histomorphological methods. Novel and accurate strategies for brain tumor classification are necessary to support personalized intraoperative neurosurgical treatment decisions. Here, we describe a fast and cost-efficient workflow for intraoperative classification of brain tumors based on DNA methylation profiles generated by low coverage nanopore sequencing and machine learning algorithms. Met…

medicine.medical_specialtyFrozen section procedureSurgical strategyDNA methylationbusiness.industryBrain tumorClinical Investigationsmedicine.diseaseextent of resectionRandom forestResectionintraoperative diagnosticsDNA methylationmedicineAcademicSubjects/MED00300AcademicSubjects/MED00310RadiologyNanopore sequencingCopy-number variationnanoporebusinessbrain tumorNeuro-oncology Advances
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