0000000000312271

AUTHOR

Sebastian Uhrig

showing 6 related works from this author

Rationale and design of the CRAFT (Continuous ReAssessment with Flexible ExTension in Rare Malignancies) multicenter phase II trial.

2021

Background Approvals of cancer therapeutics are primarily disease entity specific. Current molecular diagnostic approaches frequently identify actionable alterations in rare cancers or rare subtypes of common cancers for which the corresponding treatments are not approved and unavailable within clinical trials due to entity-related eligibility criteria. Access may be negotiated with health insurances. However, approval rates vary, and critical information required for a scientific evaluation of treatment-associated risks and benefits is not systematically collected. Thus clinical trials with optimized patient selection and comprehensive molecular characterization are essential for translati…

OncologyAdultCancer Researchmedicine.medical_specialtymedicine.medical_treatmentLocally advancedAntineoplastic AgentsPhosphatidylinositol 3-KinasesClinical Trials Phase II as TopicInternal medicineNeoplasmsClinical endpointMedicineHumansMulticenter Studies as TopicRisks and benefitsOriginal ResearchDisease entitybusiness.industrytarget therapyCancerImmunotherapymedicine.diseaseProgression-Free SurvivalClinical trialERBB2 AmplificationOncologyprecision oncologyMutationimmunotherapyclinical trial in progressbusinessESMO open
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RSPO2 gene rearrangement – a new cancer driver in the liver

2019

business.industryCancer researchMedicineCancerbusinessmedicine.diseaseRSPO2 Gene35. Jahrestagung der Deutschen Arbeitsgemeinschaft zum Studium der Leber
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Abstract LB-287: Identification of patients at risk for tumor predisposition syndromes based on the evaluation of sporadic cancer exome sequencing da…

2017

Abstract The MASTER (Molecularly Aided Stratification for Tumor Eradication Research) Program of the NCT (National Center for Tumor Diseases) Heidelberg and the DKTK (German Cancer Consortium) is situated at the interface of cancer genomics and clinical oncology to provide whole exome/genome and transcriptome sequencing to selected patients with unmet medical need, and to evaluate the utility of such an approach regarding molecular stratification and individualized, biology-guided treatment. The program has enabled implementation of a shared, DKTK-wide workflow for rapid-turnaround clinical sequencing, comprising all steps from sample processing to reporting of results by a dedicated molecu…

Cancer genome sequencingCancer Researchbusiness.industryGenetic counselingPALB2Cancermedicine.diseaseBioinformaticsGermline mutationOncologyMedicineMEN1businessExomeExome sequencingCancer Research
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Validating comprehensive next-generation sequencing results for precision oncology : The NCT/DKTK molecularly aided stratification for tumor eradicat…

2022

Purpose Rapidly evolving genomics technologies, in particular comprehensive next-generation sequencing (NGS), have led to exponential growth in the understanding of cancer biology, shifting oncology toward personalized treatment strategies. However, comprehensive NGS approaches, such as whole-exome sequencing, have limitations that are related to the technology itself as well as to the input source. Hence, clinical implementation of comprehensive NGS in a quality-controlled diagnostic workflow requires both the standardization of sequencing procedures and continuous validation of sequencing results by orthogonal methods in an ongoing program to enable the determination of key test parameter…

0301 basic medicineCancer Researchmedicine.medical_specialtyStandardizationComputer sciencePersonalized treatmentMedizinGenomicsDNA sequencing03 medical and health sciences030104 developmental biology0302 clinical medicineWorkflowOncologyPrecision oncology030220 oncology & carcinogenesismedicineMedical physicsCancer biology
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Comprehensive Genomic and Transcriptomic Analysis for Guiding Therapeutic Decisions in Patients with Rare Cancers

2021

Abstract The clinical relevance of comprehensive molecular analysis in rare cancers is not established. We analyzed the molecular profiles and clinical outcomes of 1,310 patients (rare cancers, 75.5%) enrolled in a prospective observational study by the German Cancer Consortium that applies whole-genome/exome and RNA sequencing to inform the care of adults with incurable cancers. On the basis of 472 single and six composite biomarkers, a cross-institutional molecular tumor board provided evidence-based management recommendations, including diagnostic reevaluation, genetic counseling, and experimental treatment, in 88% of cases. Recommended therapies were administered in 362 of 1,138 patient…

Oncologymedicine.medical_specialtybusiness.industryGenetic counselingMEDLINEMedizinCancermedicine.diseaseClinical trialTranscriptomeOncologyInternal medicineMedicineClinical significanceObservational studybusinessExome
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RSPO2 gene rearrangement: a powerful driver of β-catenin activation in liver tumours

2019

ObjectiveWe aimed at the identification of genetic alterations that may functionally substitute for CTNNB1 mutation in ß-catenin-activated hepatocellular adenomas (HCAs) and hepatocellular carcinoma (HCC).DesignLarge cohorts of HCA (n=185) and HCC (n=468) were classified using immunohistochemistry. The mutational status of the CTNNB1 gene was determined in ß-catenin-activated HCA (b-HCA) and HCC with at least moderate nuclear CTNNB1 accumulation. Ultra-deep sequencing was used to characterise CTNNB1wild-type and ß-catenin-activated HCA and HCC. Expression profiling of HCA subtypes was performed.ResultsA roof plate-specific spondin 2 (RSPO2) gene rearrangement resulting from a 46.4 kb microd…

Gene expression profilingGastroenterologyCancer researchWnt signaling pathwayTelomerase reverse transcriptaseGene rearrangementHCCSBiologyRSPO2Malignant transformationRSPO2 GeneGut
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