scholarly journals A Six-Color Flow Cytometry Assay for Immunophenotyping Classical Hodgkin Lymphoma in Lymph Nodes

2014 ◽  
Vol 141 (3) ◽  
pp. 388-396 ◽  
Author(s):  
Jonathan R. Fromm ◽  
Brent L. Wood
Blood ◽  
2006 ◽  
Vol 108 (11) ◽  
pp. 2262-2262
Author(s):  
Jonathan R. Fromm ◽  
Steven J. Kussick ◽  
Brent L. Wood

Abstract 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.


2016 ◽  
Vol 60 (4) ◽  
pp. 385-394
Author(s):  
Alessandra Stacchini ◽  
Anna Demurtas ◽  
Sabrina Aliberti ◽  
Antonella Barreca ◽  
Domenico Novero ◽  
...  

Objectives: Flow cytometry (FC) has become a useful support for cytomorphologic evaluation (CM) of fine-needle aspirates (FNA) and serous cavity effusions (SCE) in cases of suspected non-Hodgkin lymphoma (NHL). FC results may be hampered by the scarce viability and low cellularity of the specimens. Study Design: We developed a single-tube FC assay (STA) that included 10 antibodies cocktailed in 8-color labeling, a cell viability dye, and a logical gating strategy to detect NHL in hypocellular samples. The results were correlated with CM and confirmed by histologic or molecular data when available. Results: Using the STA, we detected B-type NHL in 31 out of 103 hypocellular samples (81 FNA and 22 SCE). Of these, 8 were not confirmed by CM and 2 were considered to be only suspicious. The FC-negative samples had a final diagnosis of benign/reactive process (42/72), carcinoma (27/72), or Hodgkin lymphoma (3/72). Conclusions: The STA approach allowed obtainment of maximum immunophenotyping data in specimens containing a low number of cells and a large amount of debris. The information obtained by STA can help cytomorphologists not only to recognize but also to exclude malignant lymphomas.


2011 ◽  
Vol 1 (1) ◽  
Author(s):  
Benoît Malleret ◽  
Carla Claser ◽  
Alice Soh Meoy Ong ◽  
Rossarin Suwanarusk ◽  
Kanlaya Sriprawat ◽  
...  

2014 ◽  
Vol 93 (8) ◽  
pp. 1319-1326 ◽  
Author(s):  
Rosa Di Gaetano ◽  
Valentina Gasparetto ◽  
Andrea Padoan ◽  
Barbara Callegari ◽  
Laura Candiotto ◽  
...  

2021 ◽  
Vol 8 (23) ◽  
pp. 1966-1969
Author(s):  
Shankar Anand ◽  
Akshatha C ◽  
Libin Babu Cherian ◽  
Ramachandra C

BACKGROUND The term Hodgkin’s lymphoma includes classical Hodgkin lymphoma (CHL) and the less common nodular lymphocyte predominant Hodgkin lymphoma (NLPHL). NLPHL is a B cell neoplasm usually characterised by nodular or follicular and diffuse proliferation of small lymphocytes with single scattered large neoplastic cells (LP/L&H/Popcorn cells). NLPHL accounts for 10 % of all Hodgkin lymphoma. METHODS This is a retrospective study. Histopathology slides and blocks of 24 cases of nodular lymphocyte predominant Hodgkin lymphoma were collected from the archives of histopathology from 2011 to 2015. The immunohistochemistry slides of the corresponding histopathology cases were also assembled. Both the slides were reviewed by three expert onco-pathologists and IHC markers were studied and compared. RESULTS Patients were mostly young between 20 and 40 years (16 / 24, 66.67 %). There was a distinct male preponderance (20 / 24, 83.3 %). Most cases involved cervical, axillary or inguinal lymph nodes, with cervical lymph nodes being the most common (13 / 24, 54 %). It was found that CD45, CD20, CD79a and PAX5 staining highlighted the LP cells in all twenty-four cases, while OCT - 2 and BOB - 1 were highlighted in twenty-three cases (95.8 %), which was statistically significant. CD3 and CD5 IHC staining on T cell rosettes and background reactive T cells were examined, and it was seen that CD3 expression was far more consistent than CD5 expression in T cell rosettes and reactive T cells. Also, it was seen that, those cases which were double positive for CD3 and CD5 constitutes only eight cases (8 / 24, 33.3 %). CONCLUSIONS CD3 is a more consistent marker than CD5 in demonstrating surrounding reactive T cells in NLPHL. CD45, PAX5, CD20, BOB - 1 and OCT - 2 are consistent immunohistochemical markers of LP cells. KEYWORDS Nodular Lymphocyte Predominant Hodgkin Lymphoma (NLPHL), Classical Hodgkin Lymphoma (CHL), Cluster Differentiation (CD), Lymphocyte Predominant Cells (LP Cells), Lymphocyte and Histiocytic Cell (L & H Cell)


2006 ◽  
Vol 130 (12) ◽  
pp. 1850-1858
Author(s):  
Zahid Kaleem

Abstract Context.—Immunophenotyping has become a routine practice in the diagnosis and classification of most cases of non-Hodgkin lymphoma, and flow cytometry is often the method of choice in many laboratories. The role that flow cytometry plays, however, extends beyond just diagnosis and classification. Objective.—To review and evaluate the current roles of flow cytometry in non-Hodgkin lymphoma, to compare it with immunohistochemistry, and to discuss its potential future applications in the molecular diagnostic era. Data Sources.—The information contained herein is derived from peer-reviewed articles on the subject published in the English-language medical literature during the years 1980 to 2005 that were identified using PubMed (http://www.ncbi.nlm.nih.gov/entrez/query.fcgi, 1980–2005) search, various books and other sources on flow cytometry, and the author's personal experience of more than 10 years with flow cytometric analysis of lymphomas and leukemia using Becton-Dickinson (San Jose, Calif) and Beckman-Coulter (Miami, Fla) flow cytometers. Study Selection.—Studies were selected based on adequate material and methods, statistically significant results, and adequate clinical follow-up. Data Extraction.—The data from various sources were compared when the methods used were the same or similar and appropriate controls were included. Most of the studies employed 2-color, 3-color, or 4-color flow cytometers with antibodies from Becton-Dickinson, Beckman-Coulter, or DakoCytomation (Carpinteria, Calif). Results were evaluated from studies utilizing the same or similar techniques and flow cytometers. Only objective data analyses from relevant and useful publications were included for reporting and discussion. Data Synthesis.—Flow cytometry serves a variety of roles in the field of lymphoma/leukemia including rapid diagnosis, proper classification, staging, minimal residual disease detection, central nervous system lymphoma detection, evaluation of prognostic markers, detection of target molecules for therapies, ploidy analysis of lymphoma cell DNA, and evaluation of multidrug-resistance markers. It offers many advantages in comparison to immunohistochemistry for the same roles and provides uses that are either not possible or not preferable by immunohistochemistry such as multiparameter evaluation of single cells and detection of clonality in T cells. Conclusions.—By virtue of its ability to evaluate not only surface but also cytoplasmic and nuclear antigens, flow cytometry continues to enjoy widespread use in various capacities in lymphoma evaluation and treatment. Additional roles for flow cytometry are likely to be invented in the future and should provide distinctive uses in the molecular era.


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