Expression of LEF1 in mantle cell lymphoma
ANNALS OF DIAGNOSTIC PATHOLOGY
Authors: O'Malley, Dennis P.; Lee, John P.; Bellizzi, Andrew M.
Abstract
Small lymphocytic lymphoma/chronic lymphocytic leukemia (CLL/SLL) and mantle cell lymphoma (MCL) usually are distinctly different in regard to clinical presentation, morphology, immunophenotype and molecular/genetic findings. In spite of this, select cases may show overlapping characteristics and represent a diagnostic challenge. Recently LEF1 staining was identified as a fairly characteristic finding in CLL/SLL, with positivity identified in up to 95% of cases. LEF1 staining has not been reported as being present in cases of MCL, making this stain a useful tool in distinguishing these diagnoses. We identified an index case of MCL with cyclin D1 expression and the presence of the typical t(11;14) IGH-CCND1, which expressed LEF1. Subsequently, we assessed LEF1 immunohistochemical staining in a series of 23 cases of MCL, as confirmed by staining for cyclin D1 and/or SOX11. We found expression present in one additional case, and evaluated some published literature suggesting a frequency of 4-9% expression of LEF1 by MCL. LEF1 expression by immunohistochemistry in MCL is unusual but can be seen rarely, and could represent a potential diagnostic pitfall. (C) 2016 Elsevier Inc. All rights reserved.
Identification of microRNAs and their target genes in the placenta as biomarkers of inflammation
CLINICAL AND EXPERIMENTAL REPRODUCTIVE MEDICINE-CERM
Authors: Jang, Hee Yeon; Lim, Seung Mook; Lee, Hyun Jung; Hong, Joon-Seok; Kim, Gi Jin
Abstract
Objective Recently, microRNA (miRNA) has been identified both as a powerful regulator involved in various biological processes through the regulation of numerous genes and as an effective biomarker for the prediction and diagnosis of various disease states. The objective of this study was to identify and validate miRNAs and their target genes involved in inflammation in placental tissue. Methods: Microarrays were utilized to obtain miRNA and gene expression profiles from placentas with or without inflammation obtained from nine normal pregnant women and 10 preterm labor patients. Quantitative real-time polymerase chain reaction and Western blots were performed to validate the miRNAs and differentially-expressed genes in the placentas with inflammation. Correlations between miRNA and target gene expression were confirmed by luciferase assays in HTR-8/SVneo cells. Results: We identified and validated miRNAs and their target genes that were differentially expressed in placentas with inflammation. We also demonstrated that several miRNAs (miR-371a-5p, miR-3065-3p, miR-519b-3p, and miR-373-3p) directly targeted their target genes (LEF1, LOX, ITGB4, and CD44). However, some miRNAs and their direct target genes showed no correlation in tissue samples. Interestingly, miR-373-3p and miR-3065-3p were markedly regulated by lipopolysaccharide (LPS) treatment, although the expression of their direct targets CD44 and LOX was not altered by LPS treatment. Conclusion: These results provide candidate miRNAs and their target genes that could be used as placental biomarkers of inflammation. These candidates may be useful for further miRNA-based biomarker development.