Reactive Versus Neoplastic Bone Marrow Lymphoid Nodules—Diagnostic Challenge in a Case with Anemia and IgM Para-proteinemia

Author(s):  
Shano Naseem ◽  
Karthik Bommannan ◽  
Pankaj Malhotra
Blood ◽  
1974 ◽  
Vol 43 (3) ◽  
pp. 389-400 ◽  
Author(s):  
Arkadi M. Rywlin ◽  
Rolando S. Ortega ◽  
Carlos J. Dominguez

Abstract A study of consecutive bone marrow aspirates from 365 patients without lymphoproliferative disorder, ten patients with chronic lymphocytic leukemia (CLL), and 25 patients with malignant lymphoma disclosed a clear separation of normal from abnormal lymphoid nodules (LN). Normal LN were found in 47% of patients and were classified into lymphoid follicles and lymphoid infiltrates. A new entity, nodular lymphoid hyperplasia (NLH), was diagnosed on ten bone marrows which contained a low-power field displaying four or more lymphoid nodules or showed a lymphoid nodule larger than 0.6 mm. The clinical significance of nodular lymphoid hyperplasia remains unknown; in certain cases it represents a precursor state of a mature lymphocytic lymphoproliferative disorder. Nodular aggregates in CLL are of the infiltrate type and exhibit a tendency to confluence. Eleven of the 25 patients with malignant lymphoma displayed lymphoreticular nodules which were cytologically similar to the original lymphoma and different from normal LN. Two patients, one with reticulum cell sarcoma and one with Hodgkin’s disease, showed NLH of the bone marrow. Bone marrow LN in patients with an established diagnosis of mature lymphocytic lymphoma have to be interpreted with the utmost caution. Confluence of LN, irregular shapes, and the presence of prolymphocytes and lymphoblasts speak for lymphomatous nodules. Additional clinicopathologic studies are necessary to sharpen the distinction between NLH and well-differentiated lymphoproliferative disorders.


Blood ◽  
2009 ◽  
Vol 114 (22) ◽  
pp. 4215-4215
Author(s):  
Sandra van Bijnen ◽  
Konnie Hebeda ◽  
Petra Muus

Abstract Abstract 4215 Introduction Paroxysmal Nocturnal Hemoglobinuria (PNH) is a disease of the hematopoietic stem cell (HSC) resulting in a clone of hematopoietic cells deficient in glycosyl phosphatidyl inositol anchored proteins. The clinical spectrum of PNH is highly variable with classical hemolytic PNH at one end, and PNH in association with aplastic anemia (AA/PNH) or other bone marrow failure states at the other end. It is still largely unknown what is causing these highly variable clinical presentations. Immune-mediated marrow failure has been suggested to contribute to the development of a PNH clone by selective damage to normal HSC. However, in classic PNH patients with no or only mild cytopenias, a role for immune mediated marrow failure is less obvious. No series of trephine biopsies has been previously documented of patients with PNH and AA/PNH to investigate the similarities and differences in these patients. Methods We have reviewed a series of trephine biopsies of 41 PNH patients at the time the PNH clone was first detected. The histology was compared of 27 patients with aplastic anemia and a PNH clone was compared to that of 14 patients with classic PNH. Age related cellularity, the ratio between myeloid and erythroid cells (ME ratio), and the presence of inflammatory cells (mast cells, lymphoid nodules and plasma cells) were evaluated. The relation with clinical and other laboratory parameters of PNH was established. Results Classic PNH patients showed a normal or hypercellular marrow in 79% of patients, whereas all AA/PNH patients showed a hypocellular marrow. Interestingly, a decreased myelopoiesis was observed not only in AA/PNH patients but also in 93% of classic PNH patients, despite normal absolute neutrophil counts (ANC ≥ 1,5 × 109/l) in 79% of these patients. The number of megakaryocytes was decreased in 29% of classic PNH patients although thrombocytopenia (< 150 × 109/l) was only present in 14% of the patients. Median PNH granulocyte clone size was 70% (range 8-95%) in classic PNH patients, whereas in AA/PNH patients this was only 10% (range 0.5-90%). PNH clones below 5% were exclusively detected in the AA/PNH group. Clinical or laboratory evidence of hemolysis was present in all classical PNH patients and in 52% of AA/PNH patients and correlated with PNH granulocyte clone size. Bone marrow iron stores were decreased in 71% of classic PNH patients. In contrast, increased iron stores were present in 63% of AA/PNH patients, probably reflecting their transfusion history. AA/PNH patients showed increased plasma cells in 15% of patients and lymphoid nodules in 37%, versus 0% and 11% in classic PNH. Increased mast cells (>2/high power field) were three times more frequent in AA/PNH (67%) than in PNH (21%). Conclusion Classic PNH patients were characterized by a more cellular bone marrow, increased erythropoiesis, larger PNH clones and clinically by less pronounced or absent peripheral cytopenias and more overt hemolysis. Decreased myelopoiesis and/or megakaryopoiesis was observed in both AA/PNH and classic PNH patients, even in the presence of normal peripheral blood counts, suggesting a role for bone marrow failure in classic PNH as well. More prominent inflammatory infiltrates were observed in AA/PNH patients compared to classical PNH patients. Disclosures: No relevant conflicts of interest to declare.


SpringerPlus ◽  
2014 ◽  
Vol 3 (1) ◽  
Author(s):  
Dina S Soliman ◽  
Ahmad Al Sabbagh ◽  
Halima El Omri ◽  
Firyal A Ibrahim ◽  
Aliaa M Amer ◽  
...  

Hematology ◽  
2021 ◽  
Vol 2021 (1) ◽  
pp. 134-142
Author(s):  
Siobán Keel ◽  
Amy Geddis

Abstract The overlap in clinical presentation and bone marrow features of acquired and inherited causes of hypocellular marrow failure poses a significant diagnostic challenge in real case scenarios, particularly in nonsevere disease. The distinction between acquired aplastic anemia (aAA), hypocellular myelodysplastic syndrome (MDS), and inherited bone marrow failure syndromes presenting with marrow hypocellularity is critical to inform appropriate care. Here, we review the workup of hypocellular marrow failure in adolescents through adults. Given the limitations of relying on clinical stigmata or family history to identify patients with inherited etiologies, we outline a diagnostic approach incorporating comprehensive genetic testing in patients with hypocellular marrow failure that does not require immediate therapy and thus allows time to complete the evaluation. We also review the clinical utility of marrow array to detect acquired 6p copy number-neutral loss of heterozygosity to support a diagnosis of aAA, the complexities of telomere length testing in patients with aAA, short telomere syndromes, and other inherited bone marrow failure syndromes, as well as the limitations of somatic mutation testing for mutations in myeloid malignancy genes for discriminating between the various diagnostic possibilities.


2016 ◽  
Vol 02 ◽  
pp. 29
Author(s):  
Rashmi Kaul Raina ◽  
Sujeet Raina ◽  
◽  

New-onset pancytopenia is a common diagnostic challenge. Pancytopenia is an indication for bone marrow examination. The present study has been carried out to determine the frequencies of various etiologies of pancytopenia based on bone marrow morphology in a defined geographical location. All cases of new-onset pancytopenia, diagnosed on peripheral smear and seen over a four-year period from January 2012 to December 2015 in the department of pathology, were analysed. Patients lacking representative bone marrow in the aspirate or receiving chemotherapy were excluded. Out of 69 cases, 29 were males and 40 were females. Most of the patients were in the age group of 19-60 years (52.2%). Nineteen (26.1%) of them were less than 18 years old. The three major causes of pancytopenia were: megaloblastic anemia (hypercellular marrow with megaloblastic erythropoiesis) in 25 (36.2%) cases, hypercellular marrow with dimorphic erythropoiesis in 13 (18.8%) cases, and haematological malignancies in 12 (17.4%) cases of the study. Bone marrow examination along with laboratory evaluation helps to establish specific diagnosis in cases of new-onset pancytopenia.


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