Search results for "tissue microarrays"

showing 3 items of 3 documents

Consistency in biomarkers expression between matched tissue microarray cores from primary gallblader and ovarian cancers

2019

Introduction. Tissue microarray (TMA) technique has been widely used, especially in immunohistochemical assays of new prognostic and predictive markers. The main objections raised by its opponents are the small amount of sampled material and the associated risk of inadequate assessment of analysed expression, resulting from the potential heterogeneity of tumour tissue. Material and methods. This study evaluated the compatibility of biomarker expression in two independent tissue cores, 1.5 mm in diameter, obtained by TMA technique from patients with gallbladder cancer (ERb, cytoPgR, HER2, CTGF) and ovarian cancer (PTEN, BCL2, PIK3CA, IGF1R). Comparison of the expression of individual biomark…

0301 basic medicineOncologymedicine.medical_specialtytissue microarraysTissue microarraybusiness.industrybiomarkersCancerMalignancymedicine.diseasegallbladder cancerCTGF03 medical and health sciencesovarian cancer030104 developmental biology0302 clinical medicineOncology030220 oncology & carcinogenesisInternal medicinemedicineBiomarker (medicine)ImmunohistochemistryGallbladder cancerOvarian cancerbusinessOncology in Clinical Practice
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The Role of Immunohistochemistry in Rhabdomyosarcoma Diagnosis Using Tissue Microarray Technology and a Xenograft Model

2015

Rhabdomyosarcomas (RMS) may resemble other non-myogenic sarcomas and malignant rhabdoid tumor (MRT). Alveolar rhabdomyosarcoma (ARMS) often harbors a typical translocation, but embryonal rhabdomyosarcoma (ERMS) lacks any specific rearrangement. Histopathology is not always sufficient for an unequivocal diagnosis, necessitating ancillary studies, including immunohistochemistry (IHC). Sixteen genetically tested RMS and two MRT were xenografted and followed in successive passages. Tissue microarrays were constructed including samples from original and xenograft tumors. Desmin, myogenin, CK, EMA, INI1, LSD1, AP2 beta, fibrillin-2, HMGA2, nestin, and SIRT1 were tested using immunohistochemical s…

Malemusculoskeletal diseasesmedicine.medical_specialtyPathologygenetic structuresMice NudeBiologyPathology and Forensic MedicineDiagnosis DifferentialMiceRhabdomyosarcomaBiomarkers TumormedicineAnimalsHumansRhabdomyosarcomaRhabdoid TumorTissue microarraytissue microarraysGeneral MedicineNestinmedicine.diseasemusculoskeletal systemImmunohistochemistryDisease Models AnimalxenograftsTissue Array AnalysisPediatrics Perinatology and Child HealthimmunohistochemistryAlveolar rhabdomyosarcomaCancer researchHeterograftsImmunohistochemistryHistopathologyDesminEmbryonal rhabdomyosarcomarhabdomyosarcoma
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Models of Biobanking and Tissue Preservation: RNA Quality in Archival Samples in Pathology Laboratories and “In Vivo Biobanking” by Tumor Xenografts …

2011

Tissue banks represent essential resources and platforms for biomedical research serving basic, translational, and clinical research projects. In this article, we describe 2 models of biobanking and tissue preservation with different approaches and aims. Archive tissue biobanking is described here as a resource of residual pathology tissues for translational research, which represents the huge clinical heterogeneity. In this context, managing of tissues and RNA quality in archive tissue are discussed. The other model of tissue biobanking is referred to as xenograft tissue banking, which represents an alternative method for obtaining large amounts of tissue, over an indefinite period, in so …

Pathologymedicine.medical_specialtyTissue PreservationMedicine (miscellaneous)RNAContext (language use)Translational researchCell BiologyGeneral MedicineBiologymedicine.diseaseBiobankGeneral Biochemistry Genetics and Molecular BiologybiobankingxenograftsIn vivoArchive Tissues; RNA; biobanking; xenografts; TMA (tissue microarrays)Tissue bankmedicineArchive TissuesArchive TissueRNASarcomaxenograftTMA (tissue microarrays)
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