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Published in: Annals of Hematology 11/2018

Open Access 01-11-2018 | Original Article

Histiocytic cell neoplasms involving the bone marrow: summary of the workshop cases submitted to the 18th Meeting of the European Association for Haematopathology (EAHP) organized by the European Bone Marrow Working Group, Basel 2016

Authors: Alexandar Tzankov, Markus Kremer, Roos Leguit, Attilio Orazi, Jon van der Walt, Umberto Gianelli, Konnie M. Hebeda

Published in: Annals of Hematology | Issue 11/2018

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Abstract

The bone marrow is a preferential site for both reactive and neoplastic histiocytic proliferations. The differential diagnosis ranges from reactive histiocyte hyperplasia in systemic infections, vaccinations, storage diseases, post myeloablative therapy, due to increased cell turnover, and in hemophagocytic lymphohistiocytosis, through extranodal Rosai-Dorfman disease to neoplasms derived from histiocytes, including histiocytic sarcomas (HS), Langerhans cell histiocytoses (LCH), Erdheim-Chester disease (ECD), and disseminated juvenile xanthogranuloma (JXG). One of the most important recent developments in understanding the biology of histiocytic neoplasms and in contributing to diagnosis was the detection of recurrent mutations of genes of the Ras/Raf/MEK/ERK signaling pathway, in particular the BRAFV600E mutation, in LCH and ECD. Here, we summarize clinical and pathological findings of 17 histiocytic neoplasms that were presented during the bone marrow symposium and workshop of the 18th European Association for Haematopathology (EAHP) meeting held in Basel, Switzerland, in 2016. A substantial proportion of these histiocytic neoplasms was combined with clonally related lymphoid (n = 2) or myeloid diseases (n = 5, all ECD). Based on the latter observation, we suggest excluding co-existent myeloid neoplasms at initial staging of elderly ECD patients. The recurrent nature of Ras/Raf/MEK/ERK signaling pathway mutations in histiocytic neoplasms was confirmed in 6 of the 17 workshop cases, illustrating their diagnostic significance and suggesting apotential target for tailored treatments.
Literature
1.
go back to reference Tzankov A, Hebeda K, Kremer M et al (2017) Plasmacytoid dendritic cell proliferations and neoplasms involving the bone marrow: summary of the workshop cases submitted to the 18th Meeting of the European Association for Haematopathology (EAHP) organized by the European Bone Marrow Working Group, Basel 2016. Ann Hematol 96:765–777CrossRef Tzankov A, Hebeda K, Kremer M et al (2017) Plasmacytoid dendritic cell proliferations and neoplasms involving the bone marrow: summary of the workshop cases submitted to the 18th Meeting of the European Association for Haematopathology (EAHP) organized by the European Bone Marrow Working Group, Basel 2016. Ann Hematol 96:765–777CrossRef
2.
go back to reference Chang KL, Gaal KK, Huang Q, Weiss LM (2003) Histiocytic lesions involving the bone marrow. Semin Diagn Pathol 20:226–236CrossRef Chang KL, Gaal KK, Huang Q, Weiss LM (2003) Histiocytic lesions involving the bone marrow. Semin Diagn Pathol 20:226–236CrossRef
3.
go back to reference Weitzman SR, Egeler M (2010) Histiocytic disorders of children and adults. University Press, Cambridge Weitzman SR, Egeler M (2010) Histiocytic disorders of children and adults. University Press, Cambridge
4.
go back to reference Fedoriw Y, Kim YS, Vergilio J-A et al (2014) BRAF V600E mutation-specific immunohistochemistry is a rare finding and dendritic cell- and histiocytic-derived tumors. Leuk Lymph 56:1132–1133CrossRef Fedoriw Y, Kim YS, Vergilio J-A et al (2014) BRAF V600E mutation-specific immunohistochemistry is a rare finding and dendritic cell- and histiocytic-derived tumors. Leuk Lymph 56:1132–1133CrossRef
5.
go back to reference Garces S, Medeiros LJ, Patel KP et al (2017) Mutually exclusive recurrent KRAS and MAP2K1 mutations in Rosai-Dorfman disease. Mod Pathol 30(10):1367–1377CrossRef Garces S, Medeiros LJ, Patel KP et al (2017) Mutually exclusive recurrent KRAS and MAP2K1 mutations in Rosai-Dorfman disease. Mod Pathol 30(10):1367–1377CrossRef
6.
go back to reference Tian X, Jie X, Fletcher C et al (2018) Expression of enhancer of zeste homolog 2 (EZH2) protein in histiocytic and dendritic cell neoplasms with evidence for p-ERK1/2-related, but not MYC- or p-STAT3-related cell signaling. Mod Pathol 31:553–561CrossRef Tian X, Jie X, Fletcher C et al (2018) Expression of enhancer of zeste homolog 2 (EZH2) protein in histiocytic and dendritic cell neoplasms with evidence for p-ERK1/2-related, but not MYC- or p-STAT3-related cell signaling. Mod Pathol 31:553–561CrossRef
7.
go back to reference Badalian-Very G, Vergilio JA, Degar BA et al (2010) Recurrent BRAF mutations in Langerhans cell histiocytosis. Blood 116(11):1919–1923CrossRef Badalian-Very G, Vergilio JA, Degar BA et al (2010) Recurrent BRAF mutations in Langerhans cell histiocytosis. Blood 116(11):1919–1923CrossRef
8.
go back to reference Haroche J, Charlotte F, Arnaud L et al (2012) High prevalence of BRAF V600E mutations in Erdheim–Chester disease but not in other non-Langerhans cell histiocytoses. Blood 120:2700–2703CrossRef Haroche J, Charlotte F, Arnaud L et al (2012) High prevalence of BRAF V600E mutations in Erdheim–Chester disease but not in other non-Langerhans cell histiocytoses. Blood 120:2700–2703CrossRef
9.
go back to reference Brown NA, Furtado LV, Betz BL et al (2014) High prevalence of somatic MAP2K1 mutations in BRAF V600E–negative Langerhans cell histiocytosis. Blood 124:1655–1658CrossRef Brown NA, Furtado LV, Betz BL et al (2014) High prevalence of somatic MAP2K1 mutations in BRAF V600E–negative Langerhans cell histiocytosis. Blood 124:1655–1658CrossRef
10.
go back to reference Nelson DS, Quispel W, Badalian-Very G et al (2014) Somatic activating ARAF mutations in Langerhans cell histiocytosis. Blood 123:3152–3155CrossRef Nelson DS, Quispel W, Badalian-Very G et al (2014) Somatic activating ARAF mutations in Langerhans cell histiocytosis. Blood 123:3152–3155CrossRef
11.
go back to reference Diamond EL, Durham BH, Haroche J et al (2016) Diverse and targetable kinase alterations drive histiocytic neoplasms. Cancer Discov 6:154–165CrossRef Diamond EL, Durham BH, Haroche J et al (2016) Diverse and targetable kinase alterations drive histiocytic neoplasms. Cancer Discov 6:154–165CrossRef
12.
go back to reference Emile JF, Abla O, Fraitag S et al (2016) Revised classification of histiocytoses and neoplasms of the macrophage-dendritic cell lineages. Blood 127(22):2672–2681CrossRef Emile JF, Abla O, Fraitag S et al (2016) Revised classification of histiocytoses and neoplasms of the macrophage-dendritic cell lineages. Blood 127(22):2672–2681CrossRef
13.
go back to reference Shanmugam V, Margolskee E, Kluk M et al (2016) Rosai-Dorfman disease harboring an activating KRAS K117N missense mutation. Head Neck Pathol 10:394–399CrossRef Shanmugam V, Margolskee E, Kluk M et al (2016) Rosai-Dorfman disease harboring an activating KRAS K117N missense mutation. Head Neck Pathol 10:394–399CrossRef
14.
go back to reference Matter MS, Bihl M, Juskevicius D, Tzankov A (2017) Is Rosai-Dorfman disease a reactive process? Detection of a MAP2K1 L115V mutation in a case of Rosai-Dorfman disease. Virchows Arch 471:545–547CrossRef Matter MS, Bihl M, Juskevicius D, Tzankov A (2017) Is Rosai-Dorfman disease a reactive process? Detection of a MAP2K1 L115V mutation in a case of Rosai-Dorfman disease. Virchows Arch 471:545–547CrossRef
15.
go back to reference Maric I, Pittaluga S, Dale JK et al (2005) Histologic features of sinus histiocytosis with massive lymphadenopathy in patients with autoimmune lymphoproliferative syndrome. Am J Surg Pathol 29:903–911CrossRef Maric I, Pittaluga S, Dale JK et al (2005) Histologic features of sinus histiocytosis with massive lymphadenopathy in patients with autoimmune lymphoproliferative syndrome. Am J Surg Pathol 29:903–911CrossRef
16.
go back to reference Oliveira JB (2013) The expanding spectrum of the autoimmune lymphoproliferative syndromes. Curr Opin Pediatr 25:722–729PubMedPubMedCentral Oliveira JB (2013) The expanding spectrum of the autoimmune lymphoproliferative syndromes. Curr Opin Pediatr 25:722–729PubMedPubMedCentral
17.
go back to reference Flavia GN, Rosado MD, Kim AS (2013) Hemophagocytic lymphohistiocytosis: an update on diagnosis and pathogenesis. Am J Clin Pathol 139:713–727CrossRef Flavia GN, Rosado MD, Kim AS (2013) Hemophagocytic lymphohistiocytosis: an update on diagnosis and pathogenesis. Am J Clin Pathol 139:713–727CrossRef
18.
go back to reference Pileri SA, Jaffe R, Facshetti F et al (2017) Histiocytic and dendritic cell neoplasms. In: Swerdlow SH, Campo E, Harris NL et al (eds) WHO Classification of Tumours of Haematopoietic and Lymphoid Tissues. IARC Press, Lyon, pp 466–482 Pileri SA, Jaffe R, Facshetti F et al (2017) Histiocytic and dendritic cell neoplasms. In: Swerdlow SH, Campo E, Harris NL et al (eds) WHO Classification of Tumours of Haematopoietic and Lymphoid Tissues. IARC Press, Lyon, pp 466–482
19.
go back to reference Huang Q, Chang KL, Weiss LM (2006) Extranodal Rosai-Dorfman disease involving the bone marrow: a case report. Am J Surg Pathol 30:1189–1192CrossRef Huang Q, Chang KL, Weiss LM (2006) Extranodal Rosai-Dorfman disease involving the bone marrow: a case report. Am J Surg Pathol 30:1189–1192CrossRef
20.
go back to reference Demicco EG, Rosenberg AE, Bjornsson J et al (2010) Primary Rosai-Dorfman disease of bone: a clinicopathologic study of 15 cases. Am J Surg Pathol 34:1324–1333CrossRef Demicco EG, Rosenberg AE, Bjornsson J et al (2010) Primary Rosai-Dorfman disease of bone: a clinicopathologic study of 15 cases. Am J Surg Pathol 34:1324–1333CrossRef
21.
go back to reference Haroche J, Abla O (2015) Uncommon histiocytic disorders: Rosai-Dorfman, juvenile xanthogranuloma, and Erdheim-Chester disease. Hematology Am Soc Hematol Educ Program 2015:571–578PubMed Haroche J, Abla O (2015) Uncommon histiocytic disorders: Rosai-Dorfman, juvenile xanthogranuloma, and Erdheim-Chester disease. Hematology Am Soc Hematol Educ Program 2015:571–578PubMed
22.
go back to reference Chakraborty R, Hampton OA, Abhyankar H et al (2017) Activating MAPK1 (ERK2) mutation in an aggressive case of disseminated juvenile xanthogranuloma. Oncotarget 8:46065–46070CrossRef Chakraborty R, Hampton OA, Abhyankar H et al (2017) Activating MAPK1 (ERK2) mutation in an aggressive case of disseminated juvenile xanthogranuloma. Oncotarget 8:46065–46070CrossRef
23.
go back to reference Meyer P, Graeff E, Kohler C et al (2017) Juvenile xanthogranuloma involving concurrent iris and skin: Clinical, pathological and molecular pathological evaluations. Am J Ophthalmol Case Rep 9:10–13CrossRef Meyer P, Graeff E, Kohler C et al (2017) Juvenile xanthogranuloma involving concurrent iris and skin: Clinical, pathological and molecular pathological evaluations. Am J Ophthalmol Case Rep 9:10–13CrossRef
24.
go back to reference Techavichit P, Sosothikul D, Chaichana T et al (2017) BRAF V600E mutation in pediatric intracranial and cranial juvenile xanthogranuloma. Hum Pathol 69:118–122CrossRef Techavichit P, Sosothikul D, Chaichana T et al (2017) BRAF V600E mutation in pediatric intracranial and cranial juvenile xanthogranuloma. Hum Pathol 69:118–122CrossRef
25.
go back to reference Liy-Wong C, Mohammed J, Carleton A et al (2017) The relationship between neurofibromatosis type 1, juvenile xanthogranuloma, and malignancy: A retrospective case-control study. J Am Acad Dermatol 76:1084–1087CrossRef Liy-Wong C, Mohammed J, Carleton A et al (2017) The relationship between neurofibromatosis type 1, juvenile xanthogranuloma, and malignancy: A retrospective case-control study. J Am Acad Dermatol 76:1084–1087CrossRef
26.
go back to reference Berres ML, Merad M, Allen CE (2015) Progress in understanding the pathogenesis of Langerhans cell histiocytosis: back to Histiocytosis X? Br J Haematol 169:3–13CrossRef Berres ML, Merad M, Allen CE (2015) Progress in understanding the pathogenesis of Langerhans cell histiocytosis: back to Histiocytosis X? Br J Haematol 169:3–13CrossRef
27.
go back to reference Collin M, Bigley V, McClain KL, Allen CE (2015) Cell(s) of origin of Langerhans cell histiocytosis. Hematol Oncol Clin North Am 29(5):825–838CrossRef Collin M, Bigley V, McClain KL, Allen CE (2015) Cell(s) of origin of Langerhans cell histiocytosis. Hematol Oncol Clin North Am 29(5):825–838CrossRef
28.
go back to reference Haroche J, Cohen-Aubart F, Rollins BJ et al (2017) Histiocytoses: emerging neoplasia behind inflammation. Lancet Oncol 18:e113–ee25CrossRef Haroche J, Cohen-Aubart F, Rollins BJ et al (2017) Histiocytoses: emerging neoplasia behind inflammation. Lancet Oncol 18:e113–ee25CrossRef
29.
go back to reference Berres ML, Lim KP, Peters T et al (2014) BRAF-V600E expression in precursor versus differentiated dendritic cells defines clinically distinct LCH risk groups. J Exp Med 211:669–683CrossRef Berres ML, Lim KP, Peters T et al (2014) BRAF-V600E expression in precursor versus differentiated dendritic cells defines clinically distinct LCH risk groups. J Exp Med 211:669–683CrossRef
30.
go back to reference Haefliger S, Bihl M, Krasniqi F, Tzankov A (2018) PET-positive bone lesion due to Langerhans cell histiocytosis after BEACOPP therapy for Hodgkin lymphoma: how anamnesis, histopathological accuracy, and molecular analysis could resolve a clinical dilemma. Ann Hematol 97:355–357CrossRef Haefliger S, Bihl M, Krasniqi F, Tzankov A (2018) PET-positive bone lesion due to Langerhans cell histiocytosis after BEACOPP therapy for Hodgkin lymphoma: how anamnesis, histopathological accuracy, and molecular analysis could resolve a clinical dilemma. Ann Hematol 97:355–357CrossRef
31.
go back to reference Simko SJ, Garmezy B, Abhyankar H et al (2014) Differentiating skin-limited and multisystem Langerhans cell histiocytosis. J Pediatr 165(5):990–996CrossRef Simko SJ, Garmezy B, Abhyankar H et al (2014) Differentiating skin-limited and multisystem Langerhans cell histiocytosis. J Pediatr 165(5):990–996CrossRef
32.
go back to reference Ansari J, Naqash AR, Munker R et al (2016) Histiocytic sarcoma as a secondary malignancy: pathobiology, diagnosis, and treatment. Eur J Haematol 97:9–16CrossRef Ansari J, Naqash AR, Munker R et al (2016) Histiocytic sarcoma as a secondary malignancy: pathobiology, diagnosis, and treatment. Eur J Haematol 97:9–16CrossRef
33.
go back to reference Feldman AL, Arber DA, Pittaluga S et al (2008) Clonally related follicular lymphomas and histiocytic/dendritic cell sarcomas: evidence for transdifferentiation of the follicular lymphoma clone. Blood 111:5433–5439CrossRef Feldman AL, Arber DA, Pittaluga S et al (2008) Clonally related follicular lymphomas and histiocytic/dendritic cell sarcomas: evidence for transdifferentiation of the follicular lymphoma clone. Blood 111:5433–5439CrossRef
34.
go back to reference Brunner P, Rufle A, Dirnhofer S et al (2014) Follicular lymphoma transformation into histiocytic sarcoma: indications for a common neoplastic progenitor. Leukemia 28:1937–1940CrossRef Brunner P, Rufle A, Dirnhofer S et al (2014) Follicular lymphoma transformation into histiocytic sarcoma: indications for a common neoplastic progenitor. Leukemia 28:1937–1940CrossRef
35.
go back to reference Facchetti F, Pileri SA, Lorenzi L et al (2017) Histiocytic and dendritic cell neoplasms: what have we learnt by studying 67 cases. Virchows Arch 471:467–489CrossRef Facchetti F, Pileri SA, Lorenzi L et al (2017) Histiocytic and dendritic cell neoplasms: what have we learnt by studying 67 cases. Virchows Arch 471:467–489CrossRef
36.
go back to reference Huang W, Qiu T, Zeng L et al (2016) High frequency of clonal IG and T-cell receptor gene rearrangements in histiocytic and dendritic cell neoplasms. Oncotarget 7:78355–78362PubMedPubMedCentral Huang W, Qiu T, Zeng L et al (2016) High frequency of clonal IG and T-cell receptor gene rearrangements in histiocytic and dendritic cell neoplasms. Oncotarget 7:78355–78362PubMedPubMedCentral
37.
go back to reference De Ment SH (1990) Association between mediastinal germ cell tumors and hematologic malignancies: an update. Hum Pathol 21:699–703CrossRef De Ment SH (1990) Association between mediastinal germ cell tumors and hematologic malignancies: an update. Hum Pathol 21:699–703CrossRef
38.
go back to reference Hartmann JT, Nichols CR, Droz JP et al (2000) Hematologic disorders associated with primary mediastinal nonseminomatous germ cell tumors. J Nat Cancer Inst 92:54–61CrossRef Hartmann JT, Nichols CR, Droz JP et al (2000) Hematologic disorders associated with primary mediastinal nonseminomatous germ cell tumors. J Nat Cancer Inst 92:54–61CrossRef
39.
go back to reference Idbaih A, Mokhtari K, Emile JF et al (2014) Dramatic response of a BRAF V600E-mutated primary CNS histiocytic sarcoma to vemurafenib. Neurology 83:1478–1480CrossRef Idbaih A, Mokhtari K, Emile JF et al (2014) Dramatic response of a BRAF V600E-mutated primary CNS histiocytic sarcoma to vemurafenib. Neurology 83:1478–1480CrossRef
40.
go back to reference Durham BH, Diamond EL, Abdel-Wahab O (2016) Histiocytic neoplasms in the era of personalized genomic medicine. Curr Opin Hematol 23:416–425CrossRef Durham BH, Diamond EL, Abdel-Wahab O (2016) Histiocytic neoplasms in the era of personalized genomic medicine. Curr Opin Hematol 23:416–425CrossRef
41.
go back to reference Nordmann TM, Juengling FD, Recher M et al (2017) Trametinib after disease reactivation under dabrafenib in Erdheim-Chester disease with both BRAF and KRAS mutations. Blood 129:879–882CrossRef Nordmann TM, Juengling FD, Recher M et al (2017) Trametinib after disease reactivation under dabrafenib in Erdheim-Chester disease with both BRAF and KRAS mutations. Blood 129:879–882CrossRef
43.
go back to reference Greenberg PL, Stone RM, Al-Kali A et al (2017) Myelodysplastic syndromes, version 2.2017, NCCN clinical practice guidelines in oncology. J Natl Compr Cancer Netw 15:60–87CrossRef Greenberg PL, Stone RM, Al-Kali A et al (2017) Myelodysplastic syndromes, version 2.2017, NCCN clinical practice guidelines in oncology. J Natl Compr Cancer Netw 15:60–87CrossRef
44.
go back to reference Pileri SA, Grogan TM, Harris NL et al (2002) Tumours of histiocytes and accessory dendritic cells: an immunohistochemical approach to classification from the International Lymphoma Study Group based on 61 cases. Histopathology 41:1–29CrossRef Pileri SA, Grogan TM, Harris NL et al (2002) Tumours of histiocytes and accessory dendritic cells: an immunohistochemical approach to classification from the International Lymphoma Study Group based on 61 cases. Histopathology 41:1–29CrossRef
45.
go back to reference Takahashi E, Nakamura S (2013) Histiocytic sarcoma: an updated literature review based on the 2008 WHO classification. J Clin Exp Hematop 53:1–8CrossRef Takahashi E, Nakamura S (2013) Histiocytic sarcoma: an updated literature review based on the 2008 WHO classification. J Clin Exp Hematop 53:1–8CrossRef
46.
go back to reference Dalia S, Shao H, Sagatys E, Cualing H, Sokol L (2014) Dendritic cell and histiocytic neoplasms: biology, diagnosis, and treatment. Cancer Control 21:290–300CrossRef Dalia S, Shao H, Sagatys E, Cualing H, Sokol L (2014) Dendritic cell and histiocytic neoplasms: biology, diagnosis, and treatment. Cancer Control 21:290–300CrossRef
47.
go back to reference Go H, Jeon YK, Huh J et al (2014) Frequent detection of BRAF(V600E) mutations in histiocytic and dendritic cell neoplasms. Histopathology 65:261–272CrossRef Go H, Jeon YK, Huh J et al (2014) Frequent detection of BRAF(V600E) mutations in histiocytic and dendritic cell neoplasms. Histopathology 65:261–272CrossRef
48.
go back to reference Kordes M, Röring M, Heining C et al (2016) Cooperation of BRAF(F595L) and mutant HRAS in histiocytic sarcoma provides new insights into oncogenic BRAF signaling. Leukemia Apr 30(4):937–946CrossRef Kordes M, Röring M, Heining C et al (2016) Cooperation of BRAF(F595L) and mutant HRAS in histiocytic sarcoma provides new insights into oncogenic BRAF signaling. Leukemia Apr 30(4):937–946CrossRef
49.
go back to reference Liu Q, Tomaszewicz K, Hutchinson L et al (2016) Somatic mutations in histiocytic sarcoma identified by next generation sequencing. Virchows Arch 469:233–241CrossRef Liu Q, Tomaszewicz K, Hutchinson L et al (2016) Somatic mutations in histiocytic sarcoma identified by next generation sequencing. Virchows Arch 469:233–241CrossRef
50.
go back to reference Naumann R, Beuthien-Baumann B, Fischer R et al (2002) Simultaneous occurrence of Hodgkin’s lymphoma and eosinophilic granuloma: a potential pitfall in positron emission tomography imaging. Clin Lymphoma Myeloma Leuk 3:121–124CrossRef Naumann R, Beuthien-Baumann B, Fischer R et al (2002) Simultaneous occurrence of Hodgkin’s lymphoma and eosinophilic granuloma: a potential pitfall in positron emission tomography imaging. Clin Lymphoma Myeloma Leuk 3:121–124CrossRef
51.
go back to reference Christie LJ, Evans AT, Bray SE et al (2006) Lesions resembling Langerhans cell histiocytosis in association with other lymphoproliferative disorders: a reactive or neoplastic phenomenon? Hum Pathol 37:32–39CrossRef Christie LJ, Evans AT, Bray SE et al (2006) Lesions resembling Langerhans cell histiocytosis in association with other lymphoproliferative disorders: a reactive or neoplastic phenomenon? Hum Pathol 37:32–39CrossRef
52.
go back to reference Pina-Oviedo S, Medeiros LJ, Li S et al (2017) Langerhans cell histiocytosis associated with lymphoma: an incidental finding that is not associated with BRAF or MAP2K1 mutations. Mod Pathol 30:734–744CrossRef Pina-Oviedo S, Medeiros LJ, Li S et al (2017) Langerhans cell histiocytosis associated with lymphoma: an incidental finding that is not associated with BRAF or MAP2K1 mutations. Mod Pathol 30:734–744CrossRef
53.
go back to reference Trebo MM, Attarbaschi A, Mann G et al (2005) Histiocytosis following T-acute lymphoblastic leukemia: a BFM study. Leuk Lymphoma 46:1735–1741CrossRef Trebo MM, Attarbaschi A, Mann G et al (2005) Histiocytosis following T-acute lymphoblastic leukemia: a BFM study. Leuk Lymphoma 46:1735–1741CrossRef
54.
go back to reference Castro EC, Blazquez C, Boyd J et al (2010) Clinicopathologic features of histiocytic lesions following ALL, with a review of the literature. Pediatr Dev Pathol 13:225–237CrossRef Castro EC, Blazquez C, Boyd J et al (2010) Clinicopathologic features of histiocytic lesions following ALL, with a review of the literature. Pediatr Dev Pathol 13:225–237CrossRef
55.
go back to reference Wang E, Hutchinson CB, Huang Q et al (2010) Histiocytic sarcoma arising in indolent small B-cell lymphoma: report of two cases with molecular/genetic evidence suggestive of a “transdifferentiation” during the clonal evolution. Leuk Lymphoma 51:802–812CrossRef Wang E, Hutchinson CB, Huang Q et al (2010) Histiocytic sarcoma arising in indolent small B-cell lymphoma: report of two cases with molecular/genetic evidence suggestive of a “transdifferentiation” during the clonal evolution. Leuk Lymphoma 51:802–812CrossRef
56.
go back to reference Shao H, Xi L, Raffeld M, Feldman AL et al (2011) Clonally related histiocytic/dendritic cell sarcoma and chronic lymphocytic leukemia/small lymphocytic lymphoma: a study of seven cases. Mod Pathol 24:1421–1432CrossRef Shao H, Xi L, Raffeld M, Feldman AL et al (2011) Clonally related histiocytic/dendritic cell sarcoma and chronic lymphocytic leukemia/small lymphocytic lymphoma: a study of seven cases. Mod Pathol 24:1421–1432CrossRef
57.
go back to reference Zeng W, Meck J, Cheson BD et al (2011) Histiocytic sarcoma transdifferentiated from follicular lymphoma presenting as a cutaneous tumor. J Cutan Pathol 38:999–1003CrossRef Zeng W, Meck J, Cheson BD et al (2011) Histiocytic sarcoma transdifferentiated from follicular lymphoma presenting as a cutaneous tumor. J Cutan Pathol 38:999–1003CrossRef
58.
go back to reference Buser L, Bihl M, Rufle A et al (2014) Unique composite hematolymphoid tumor consisting of a pro-T lymphoblastic lymphoma and an indeterminate dendritic cell tumor: evidence for divergent common progenitor cell differentiation. Pathobiology 81:199–205CrossRef Buser L, Bihl M, Rufle A et al (2014) Unique composite hematolymphoid tumor consisting of a pro-T lymphoblastic lymphoma and an indeterminate dendritic cell tumor: evidence for divergent common progenitor cell differentiation. Pathobiology 81:199–205CrossRef
59.
go back to reference Fernandez-Pol S, Bangs CD, Cherry A et al (2016) Two cases of histiocytic sarcoma with BCL2 translocations and occult or subsequent follicular lymphoma. Hum Pathol 55:39–43CrossRef Fernandez-Pol S, Bangs CD, Cherry A et al (2016) Two cases of histiocytic sarcoma with BCL2 translocations and occult or subsequent follicular lymphoma. Hum Pathol 55:39–43CrossRef
60.
go back to reference Waanders E, Hebeda KM, Kamping EJ et al (2016) Independent development of lymphoid and histiocytic malignancies from a shared early precursor. Leukemia 30(4):955–958CrossRef Waanders E, Hebeda KM, Kamping EJ et al (2016) Independent development of lymphoid and histiocytic malignancies from a shared early precursor. Leukemia 30(4):955–958CrossRef
61.
go back to reference Bains A, Parham DM (2011) Langerhans cell histiocytosis preceding the development of juvenile xanthogranuloma: a case and review of recent developments. Pediatr Dev Pathol 14(6):480–484CrossRef Bains A, Parham DM (2011) Langerhans cell histiocytosis preceding the development of juvenile xanthogranuloma: a case and review of recent developments. Pediatr Dev Pathol 14(6):480–484CrossRef
62.
go back to reference Li Z, Li Y, Liu W et al (2018) Mixed histiocytosis: a case report and published work review. J Dermatol 45(4):491–495CrossRef Li Z, Li Y, Liu W et al (2018) Mixed histiocytosis: a case report and published work review. J Dermatol 45(4):491–495CrossRef
63.
go back to reference Janssen D, Fölster-Holst R, Harms D, Klapper W (2007) Clonality in juvenile xanthogranuloma. Am J Surg Pathol 31:812–813CrossRef Janssen D, Fölster-Holst R, Harms D, Klapper W (2007) Clonality in juvenile xanthogranuloma. Am J Surg Pathol 31:812–813CrossRef
64.
go back to reference Durham BH, Yoshimi A, Papo M et al (2016) Frequent clinical overlap of histiocytic neoplasms and WHO-classified myeloid malignancies leads to functional insights into the cell-of-origin of histiocytoses. Blood 128:951 Durham BH, Yoshimi A, Papo M et al (2016) Frequent clinical overlap of histiocytic neoplasms and WHO-classified myeloid malignancies leads to functional insights into the cell-of-origin of histiocytoses. Blood 128:951
Metadata
Title
Histiocytic cell neoplasms involving the bone marrow: summary of the workshop cases submitted to the 18th Meeting of the European Association for Haematopathology (EAHP) organized by the European Bone Marrow Working Group, Basel 2016
Authors
Alexandar Tzankov
Markus Kremer
Roos Leguit
Attilio Orazi
Jon van der Walt
Umberto Gianelli
Konnie M. Hebeda
Publication date
01-11-2018
Publisher
Springer Berlin Heidelberg
Published in
Annals of Hematology / Issue 11/2018
Print ISSN: 0939-5555
Electronic ISSN: 1432-0584
DOI
https://doi.org/10.1007/s00277-018-3436-0

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The last year's highlights in pulmonary vascular disease are presented by Dr. Jane Leopold in this official video from ACC.24.

Year in Review: Valvular heart disease

Watch Prof. William Zoghbi present the last year's highlights in valvular heart disease from the official ACC.24 Year in Review session.

Year in Review: Heart failure and cardiomyopathies

Watch this official video from ACC.24. Dr. Biykem Bozkurt discusses last year's major advances in heart failure and cardiomyopathies.