The Experts below are selected from a list of 1866651 Experts worldwide ranked by ideXlab platform
Elaine S Jaffe - One of the best experts on this subject based on the ideXlab platform.
-
horizontal transmission of malignancy in vivo fusion of human lymphomas with hamster stroma produces tumors retaining human genes and lymphoid pathology
PLOS ONE, 2013Co-Authors: David M. Goldenberg, Chien-hsing Chang, David V Gold, Meiyu Loo, Donglin Liu, Elaine S JaffeAbstract:We report the in-vivo fusion of two Hodgkin lymphomas with golden hamster cheek pouch cells, resulting in serially-transplanted (over 5–6 years) GW-532 and GW-584 heterosynkaryon tumor cells displaying both human and hamster DNA (by FISH), lymphoma-like morphology, aggressive metastasis, and retention of 7 human genes (CD74, CXCR4, CD19, CD20, CD71, CD79b, and VIM) out of 24 tested by PCR. The prevalence of B-cell restricted genes (CD19, CD20, and CD79b) suggests that this uniform population may be the clonal initiating (malignant) cells of Hodgkin lymphoma, despite their not showing translation to their respective proteins by immunohistochemical analysis. This is believed to be the first report of in-vivo cell-cell fusion of human lymphoma and rodent host cells, and may be a method to disclose genes regulating both organoid and metastasis signatures, suggesting that the horizontal transfer of tumor DNA to adjacent stromal cells may be implicated in tumor heterogeneity and progression. The B-cell gene signature of the hybrid xenografts suggests that Hodgkin lymphoma, or its initiating cells, is a B-cell malignancy.
-
t cell histiocyte rich large b cell lymphoma a heterogeneous entity with derivation from germinal center b cells
The American Journal of Surgical Pathology, 2002Co-Authors: Megan S Lim, Michael W Beaty, Lynn Sorbara, Richard Z Cheng, Stefania Pittaluga, Mark Raffeld, Elaine S JaffeAbstract:T-cell/histiocyte-rich large B-cell non-Hodgkin's lymphoma (THRLBCL) is an unusual morphologic variant of diffuse large B-cell lymphoma. We reviewed 30 cases of THRLBCL to evaluate its heterogeneity based on morphologic, immunophenotypic, and genetic features. Cases were classified according to the appearance of the large neoplastic B cells into three morphologic variants: 1) lymphocytic and histiocytic (LH 2) centroblast (or immunoblast)-like (10 cases), and 3) Reed-Sternberg cell-like (resembling the neoplastic cells of classic Hodgkin's lymphoma) (6 cases). We used a panel of immunohistochemical stains, including those with specificity for germinal center B cells: CD20, CD79a, CD30, CD15, epithelial membrane antigen, BCL-2, BCL-6, and CD10. The /JH polymerase chain reaction assay was further performed to investigate a relationship to follicular lymphoma. The results were correlated with Epstein-Barr virus status as determined by staining for latent membrane protein and EBER-1 in situ hybridization. All cases were of B-cell immunophenotype with strong surface CD20 reactivity in the neoplastic large lymphoid cells, although CD79a was more inconsistently and weakly expressed (10 of 17). Nuclear positivity for the BCL-6 protein was detected in the tumor cells in 26 of 29 (90%) cases. However, differences in expression of other antigens were encountered in the histologic subtypes. Epithelial membrane antigen positivity, a feature often seen in nodular lymphocyte predominance Hodgkin's lymphoma, was observed in 11 of 30 (37%) cases and was most commonly seen in cases with LH 57%). CD30 expression was observed in 9 of 30 (30%) cases but was most frequent in cases with Reed-Sternberg-like morphology (3 of 6 [50%]). CD10 expression was infrequent overall (3 of 29; 10%), with 2 of 3 positive cases identified in the centroblastic group. The overall rarity of positivity for CD10, BCL-2 (3 of 22; 13%), and -2 JH rearrangement (1 of 28; 4%) indicates a lack of connection to follicular lymphoma for all subtypes. The three cases that were negative for BCL-6 protein were LMP-1 positive and EBER-1 positive by in situ hybridization, and 2 of 3 had neoplastic cells with Reed-Sternberg-like morphology. These results demonstrate that although a large proportion of THRLBCL represent tumors of germinal center B cell derivation, they exhibit a diversity of morphologic and immunophenotypic features. A subset of THRLBCL may be related to nodular lymphocyte predominance Hodgkin's lymphoma. A small percentage show features closely resembling classic Hodgkin's lymphoma and could be considered a variant of grey zone lymphoma.
Pierre Mainilvarlet - One of the best experts on this subject based on the ideXlab platform.
-
immunophenotypic analysis of human articular chondrocytes changes in surface markers associated with cell expansion in monolayer culture
Journal of Cellular Physiology, 2005Co-Authors: Jose Diazromero, Jean Philippe Gaillard, Shawn P Grogan, Dobrila Nesic, Thomas Trub, Pierre MainilvarletAbstract:Cartilage tissue engineering relies on in vitro expansion of primary chondrocytes. Monolayer is the chosen culture model for chondrocyte expansion because in this system the proliferative capacity of chondrocytes is substantially higher compared to non-adherent systems. However, human articular chondrocytes (HACs) cultured as monolayers undergo changes in phenotype and gene expression known as “dedifferentiation.” To gain a better understanding of the cellular mechanisms involved in the dedifferentiation process, our research focused on the characterization of the surface molecule phenotype of HACs in monolayer culture. Adult HACs were isolated by enzymatic digestion of cartilage samples obtained post-mortem. HACs cultured in monolayer for different time periods were analyzed by flow cytometry for the expression of cell surface markers with a panel of 52 antibodies. Our results show that HACs express surface molecules belonging to different categories: integrins and other adhesion molecules (CD49a, CD49b, CD49c, CD49e, CD49f, CD51/61, CD54, CD106, CD166, CD58, CD44), tetraspanins (CD9, CD63, CD81, CD82, CD151), receptors (CD105, CD119, CD130, CD140a, CD221, CD95, CD120a, CD71, CD14), ectoenzymes (CD10, CD26), and other surface molecules (CD90, CD99). Moreover, differential expression of certain markers in monolayer culture was identified. Up-regulation of markers on HACs regarded as distinctive for mesenchymal stem cells (CD10, CD90, CD105, CD166) during monolayer culture suggested that dedifferentiation leads to reversion to a primitive phenotype. This study contributes to the definition of HAC phenotype, and provides new potential markers to characterize chondrocyte differentiation stage in the context of tissue engineering applications. © 2004 Wiley-Liss, Inc.
-
immunophenotypic analysis of human articular chondrocytes changes in surface markers associated with cell expansion in monolayer culture
Journal of Cellular Physiology, 2005Co-Authors: Jose Diazromero, Jean Philippe Gaillard, Shawn P Grogan, Dobrila Nesic, Thomas Trub, Pierre MainilvarletAbstract:Cartilage tissue engineering relies on in vitro expansion of primary chondrocytes. Monolayer is the chosen culture model for chondrocyte expansion because in this system the proliferative capacity of chondrocytes is substantially higher compared to non-adherent systems. However, human articular chondrocytes (HACs) cultured as monolayers undergo changes in phenotype and gene expression known as "dedifferentiation." To gain a better understanding of the cellular mechanisms involved in the dedifferentiation process, our research focused on the characterization of the surface molecule phenotype of HACs in monolayer culture. Adult HACs were isolated by enzymatic digestion of cartilage samples obtained post-mortem. HACs cultured in monolayer for different time periods were analyzed by flow cytometry for the expression of cell surface markers with a panel of 52 antibodies. Our results show that HACs express surface molecules belonging to different categories: integrins and other adhesion molecules (CD49a, CD49b, CD49c, CD49e, CD49f, CD51/61, CD54, CD106, CD166, CD58, CD44), tetraspanins (CD9, CD63, CD81, CD82, CD151), receptors (CD105, CD119, CD130, CD140a, CD221, CD95, CD120a, CD71, CD14), ectoenzymes (CD10, CD26), and other surface molecules (CD90, CD99). Moreover, differential expression of certain markers in monolayer culture was identified. Up-regulation of markers on HACs regarded as distinctive for mesenchymal stem cells (CD10, CD90, CD105, CD166) during monolayer culture suggested that dedifferentiation leads to reversion to a primitive phenotype. This study contributes to the definition of HAC phenotype, and provides new potential markers to characterize chondrocyte differentiation stage in the context of tissue engineering applications.
Jonathan R Fromm - One of the best experts on this subject based on the ideXlab platform.
-
immunophenotypic characterization and purification of neoplastic cells from lymph nodes involved by t cell histiocyte rich large b cell lymphoma by flow cytometry and flow cytometric cell sorting
Cytometry Part B-clinical Cytometry, 2020Co-Authors: Emily Glynn, Jonathan R FrommAbstract:Background T-cell/histiocyte rich large B-cell lymphoma (THRLBCL) is B-cell lymphoma in which rare neoplastic cells are embedded in a reactive infiltrate. We describe the first characterization of the neoplastic cells by flow cytometry (FC). Methods Using FC, we immunophenotyped the neoplastic cells of 11 cases of THRLBCL and 11 cases of DLBCL, NOS (controls). Neoplastic THRLBCL cells were also purified by flow cytometric cell sorting (FCCS). Results A neoplastic THRLBCL population was detected by FC in 9 of 11 cases (82%). Neoplastic THRLBCL cells demonstrated an aberrant germinal center B-cell immunophenotype (bright CD20, bright CD40; positive for Bcl-6 and CD75; weakly positive for CD32; negative for IgH). With regard to adhesion molecules, CD54 was overexpressed, CD58 expression varied between cases, and CD50 expression was intermediate. Evaluation of immunomodulatory receptors demonstrated that PD-L2 was weakly expressed and PD-L1 was variably expressed. Finally, FCCS of two cases showed large multi-lobated cells with morphology consistent with neoplastic cells of THRLBCL. Conclusions The immunophenotype identified and the morphology of the FCCS purified cells confirms the FC defined populations are neoplastic cells from THRLBCL. While the cohort is small, neoplastic THRLBCL cells lack surface immunoglobulins. CD40, CD50, and CD54 were overexpressed in THRLBCL relative to DLBCL, NOS, perhaps contributing to the predominance of T cells in THRLBCL. Expression of CD32, PD-L1, and PD-L2 may be useful in distinguishing THRLBCL and NLPHL. Finally, the FC assays will be useful for purifying neoplastic cells of THRLBCL and for diagnostic immunophenotyping of THRLBCL. © 2019 International Clinical Cytometry Society.
-
characterization and purification of neoplastic cells of nodular lymphocyte predominant hodgkin lymphoma from lymph nodes by flow cytometry and flow cytometric cell sorting
American Journal of Pathology, 2017Co-Authors: Jonathan R Fromm, Anju Thomas, Brent L WoodAbstract:We report the flow cytometric (FC) identification and characterization of lymphocyte predominant (LP) cells from tissues involved by nodular lymphocyte predominant Hodgkin lymphoma (NLPHL). First, we immunophenotyped the NLPHL cell line (DEV) confirming a germinal center immunophenotype, lack of expression of CD32 and CD58, and expression of CD54. Nineteen of 26 lymph nodes involved by NLPHL demonstrated a population with an LP immunophenotype (73%), which included expression of germinal center markers (CD75/Bcl-6-positive, CD32-weak/negative without CD10), a B-cell immunophenotype (CD19/CD20/CD40 + ), IgD and/or IgM expression (67%), and lack of programmed death-ligand 1/ligand 2. The LP cells demonstrated an adhesion macromolecule expression pattern distinct from Hodgkin and Reed-Sternberg cells of classical Hodgkin lymphoma (CHL) (uniform CD50 and variable CD58 for NLPHL; minimal CD50, bright CD58 expression for CHL). A two-tube consensus assay identified LP cells in all seven NLPHL cases examined and only one non-NLPHL case (94 cases evaluated). Finally, FC cell sorting studies confirm that FC-defined populations have an LP cytomorphology. Taken together, these findings demonstrate a two-tube consensus assay can be used to immunophenotype NLHPL with high specificity and sensitivity and rapidly purify LP cells for genetic studies. This study also confirms aneuploidy in LP cells, provides antigens that may be helpful in distinguishing NLPHL from CHL, and suggests that T cells interact less avidly with LP cells than with Hodgkin and Reed-Sternberg cells.
-
flow cytometry can diagnose classical hodgkin lymphoma in lymph nodes with high sensitivity and specificity
American Journal of Clinical Pathology, 2009Co-Authors: Jonathan R Fromm, Anju Thomas, Brent L WoodAbstract:The diagnosis of classical Hodgkin lymphoma (CHL) has been made in tissue sections as attempts to identify neoplastic Hodgkin and Reed Sternberg (HRS) cells in lymph nodes by flow cytometry (FC) have been unsuccessful. However, we have recently demonstrated that HRS cells can be identified by FC, often present as T-cell–HRS-cell rosettes. In this study, we examined the usefulness of a novel 9-color (CD95–Pacific blue/CD64–fluorescein isothiocyanate/CD30-phycoerythrin [PE]/CD45-PE–Texas red/CD40–PE cyanine [Cy]5.5/CD20-PECy7/CD15-allophycocyanin [APC]/CD71-APC–AlexaFluor A700/CD5-APC-Cy7), single tube FC assay to diagnose CHL in lymph nodes. We used the FC assay to determine diagnostic sensitivity and specificity in 279 blindly identified and 141 selected (for specimen type or cytopreparation morphologic features suggesting CHL) tissues. Of the 53 morphologically defined CHL cases identified (10 in the unselected group; 43 in the selected group), the FC assay diagnostic sensitivity and specificity were 88.7% and 100%, respectively. With the current availability of 8 (or more) color clinical flow cytometers, this assay can now be applied to routinely immunophenotype and confirm a diagnosis of CHL or as an adjunct to immunohistochemical analysis.
-
identification and purification of hodgkin cells from lymph nodes involved by classical hodgkin lymphoma by flow cytometry and flow cytometric cell sorting
Blood, 2006Co-Authors: Jonathan R Fromm, Steven J Kussick, Brent L WoodAbstract:The diagnosis of classical Hodgkin lymphoma (CHL) has historically been made in tissue sections, as attempts to identify the neoplastic Hodgkin and Reed-Sternberg (HRS) cells of CHL by flow cytometry (FC) have been largely unsuccessful. As HRS cells are known to be ringed (“rosetted”) by benign/reactive T cells, we hypothesized that in cell suspensions the HRS will be bound to T cells (forming T cell rosettes), and that consequently the rosettes would have a composite T-cell/HRS immunophenotype by FC (CD3+/CD15+/CD20−/CD30+/CD45+). We further hypothesized that specific antibodies to the adhesion molecules known to be involved in T cell/HRS cell binding (CD2 and LFA-1 on the T cell, and CD54 and CD58 on the HRS cell) might result in “naked” (unbound) HRS cells, enabling us to use FC to identify HRS cells with the expected immunophenotype (CD3−/CD15+/CD20−/CD30+/CD45−). Our initial FC studies of the HRS cell line L1236 demonstrated that CD15, CD30, CD40, CD71, CD86, CD95, and HLA-DR, but not CD3 or CD20, were brightly expressed on these cells and may be useful in identification of HRS in authentic cases of CHL involving lymph nodes. In mixing experiments, L1236 cells spontaneously bound normal T cells, analogous to T cell rosetting of HRS cells in CHL; these interactions could be blocked specifically using a cocktail of unlabeled antibodies to CD2, LFA-1, CD54, and CD58. Among 27 lymph nodes involved by CHL, this novel FC method, in which 250,000 to 500,000 total lymph node cells were evaluated, and in which up to ten cellular antigens were assessed simultaneously, enabled HRS cells to be identified in 89% of cases. 82% of these cases demonstrated interactions between HRS cells and T cells that could be disrupted with blocking antibodies. None of 29 non-CHL neoplasms, and none of 23 reactive lymph nodes, demonstrated HRS populations by FC. The proportions of cases where the HRS population showed expression of CD15, CD30, CD40, CD71, CD86, CD95, and HLA-DR, and absence of CD3 and CD20 was similar to that described previously in tissue sections by immunohistochemistry. Interestingly, in contrast to the findings in tissue sections, by FC the non-rosetted HRS cells of most CHL cases (73%) demonstrated detectable expression of CD45, usually at a low level. Finally, cell sorting experiments confirmed that (1) populations identified by FC have the cytomorphology of HRS cells, (2) HRS/T cell rosettes can be detected by FC, and (3) these rosettes can disrupted by the blocking antibody cocktail. This FC technique offers a potential alternative to immunohistochemistry in confirming the diagnosis of CHL and, through cell sorting, provides a means of rapidly purifying HRS cells.
J B Richardson - One of the best experts on this subject based on the ideXlab platform.
-
characterisation of synovial fluid and infrapatellar fat pad derived mesenchymal stromal cells the influence of tissue source and inflammatory stimulus
Scientific Reports, 2016Co-Authors: John Garcia, Karina T Wright, Sally Roberts, J H Kuiper, Chas Mangham, J B RichardsonAbstract:The infrapatellar fat pad (FP) and synovial fluid (SF) in the knee serve as reservoirs of mesenchymal stromal cells (MSCs) with potential therapeutic benefit. We determined the influence of the donor on the phenotype of donor matched FP and SF derived MSCs and examined their immunogenic and immunomodulatory properties before and after stimulation with the pro-inflammatory cytokine interferon-gamma (IFN-γ). Both cell populations were positive for MSC markers CD73, CD90 and CD105, and displayed multipotency. FP-MSCs had a significantly faster proliferation rate than SF-MSCs. CD14 positivity was seen in both FP-MSCs and SF-MSCs, and was positively correlated to donor age but only for SF-MSCs. Neither cell population was positive for the co-stimulatory markers CD40, CD80 and CD86, but both demonstrated increased levels of human leukocyte antigen-DR (HLA-DR) following IFN-γ stimulation. HLA-DR production was positively correlated with donor age for FP-MSCs but not SF-MSCs. The immunomodulatory molecule, HLA-G, was constitutively produced by both cell populations, unlike indoleamine 2, 3-dioxygenase which was only produced following IFN-γ stimulation. FP and SF are accessible cell sources which could be utilised in the treatment of cartilage injuries, either by transplantation following ex-vivo expansion or endogenous targeting and mobilisation of cells close to the site of injury.
Ross M Kedl - One of the best experts on this subject based on the ideXlab platform.
-
comparison of ox40 ligand and CD70 in the promotion of cd4 t cell responses
Journal of Immunology, 2010Co-Authors: Jonathan S Kurche, Matthew A Burchill, Phillip J Sanchez, Catherine Haluszczak, Ross M KedlAbstract:The TNF superfamily members CD70 and OX40 ligand (OX40L) were reported to be important for CD4(+) T cell expansion and differentiation. However, the relative contribution of these costimulatory signals in driving CD4(+) T cell responses has not been addressed. In this study, we found that OX40L is a more important determinant than CD70 of the primary CD4(+) T cell response to multiple immunization regimens. Despite the ability of a combined TLR and CD40 agonist (TLR/CD40) stimulus to provoke appreciable expression of CD70 and OX40L on CD8(+) dendritic cells, resulting CD4(+) T cell responses were substantially reduced by Ab blockade of OX40L and, to a lesser degree, CD70. In contrast, the CD8(+) T cell responses to combined TLR/CD40 immunization were exclusively dependent on CD70. These requirements for CD4(+) and CD8(+) T cell activation were not limited to the use of combined TLR/CD40 immunization, because vaccinia virus challenge elicited primarily OX40L-dependent CD4 responses and exclusively CD70-dependent CD8(+) T cell responses. Attenuation of CD4(+) T cell priming induced by OX40L blockade was independent of signaling through the IL-12R, but it was reduced further by coblockade of CD70. Thus, costimulation by CD70 or OX40L seems to be necessary for primary CD4(+) T cell responses to multiple forms of immunization, and each may make independent contributions to CD4(+) T cell priming.
-
combined tlr cd40 stimulation mediates potent cellular immunity by regulating dendritic cell expression of CD70 in vivo
Journal of Immunology, 2007Co-Authors: Phillip J Sanchez, Catherine Haluszczak, Hideo Yagita, Jennifer A Mcwilliams, Ross M KedlAbstract:We previously showed that immunization with a combination of TLR and CD40 agonists (combined TLR/CD40 agonist immunization) resulted in an expansion of Ag-specific CD8 T cells exponentially greater than the expansion observed to immunization with either agonist alone. We now show that the mechanism behind this expansion of T cells is the regulated expression of CD70 on dendritic cells. In contrast to previous results in vitro, the expression of CD70 on dendritic cells in vivo requires combined TLR/CD40 stimulation and is not significantly induced by stimulation of either pathway alone. Moreover, the exponential expansion of CD8 + T cells following combined TLR/CD40 agonist immunization is CD70 dependent. Thus, the transition from innate stimuli (TLRs) to adaptive immunity is controlled by the regulated expression of CD70.