Anemia in MDS with 5q deletion was generally considered, until the advent of lenalidomide, unresponsive to available treatments. We analyzed erythroid response to erythropoetin (EPO) or darbepoetin (DAR) and thalidomide in MDS with 5q deletion treated by French centers (GFM) and in whom karyotype was successfully performed. Of 345 patients treated with EPO or DAR+/-G-CSF, 48 had 5q deletion. The response rate was 46% (31% major, 15% minor) according to International Working Group (IWG) 2000 criteria versus 64% in patients without 5q deletion (p=0.03). According to IWG 2006 criteria, the response rate in patients with 5q deletion was 39% versus 52% in patients without 5q deletion (p=0.10). Mean duration of response was 14 months versus 25 months (IWG 2000) and 13 months versus 27 months (IWG 2006) in 5q deletion and non-5q deletion patients (p=0.019 and 0.003, respectively). Of 120 MDS treated with thalidomide, all of whom had successful cytogenetic analysis, 37% of the 24 patients with 5q deletion responded (IWG 2000 criteria, 20% major, 17% minor) with a mean duration of 9.5 months, versus 32% (18% major, 14% minor) in MDS without 5q deletion and a mean response duration of 9 months (p=NS). Our results confirm that response rates to EPO or DAR and thalidomide are clearly inferior to those obtained with lenalidomide.
Early studies report extremely poor outcome in AIDS-related Burkitt's lymphoma treated with standard dose chemotherapy. This poor prognosis is not improved by Highly Active Antiretroviral Therapy (HAART). 53 patients with HIV infection and stage IV Burkitt lymphoma/leukemia (BL) participated a unicentric and prospective clinical trial to evaluate the safety and efficacy of the intensive LMB-86 chemotherapy regimen. The median CD4 cell count was 236 x 106/l. 32 tumors were of the Burkitt type and 21 were Burkitt-like. All patients had stage IV disease with bone marrow involvement in 40 and central nervous system disease in 37. The LMB-86 regimen combined: (1) cytoreductive phase, with low dose cyclophosphamide, vincristine and steroids; (2) induction phase, with 2 consecutive courses of COPADM with high dose (8 g/m2) methotrexate (MTX); (3) consolidation phase with two courses of CYVE with high dose cytarabine and etoposide; (4) maintenance phase, with four courses combining previous drugs with lower dosage.
Probably through inhibition of histone deacetylases, VPA ± ATRA has been associated with clinical responses in patients with myelodysplastic syndrome (MDS) or AML (Kuendgen, Blood 2004; Raffoux, Haematologica 2005). Interestingly, VPA/ATRA-induced differentiation of AML cells has been documented in vivo (Nervi, ASH 2004 #1805). On the other hand, the combination of VPA with a demethylating agent synergistically enhances its antileukemia activity in vitro (Yang, Leukemia Res 2005). In a pilot phase, we treated 5 high-risk AML patients with a sequential combination of 5-azacytidine, VPA, and ATRA. Each treatment cycle comprised 75 mg/m2/d 5-azacytidine SC from day 1 to 7, 20 mg/kg/d VPA (then adapted on serum concentration) from day 1 to 28, and 45 mg/m2/d ATRA from day 8 to 28. Six cycles were planned, each starting at day 29 of the previous one whatever the hematological status. High-risk AML (AML-M3 excluded) was defined as:
Primary effusion lymphoma (PEL) is a rare KSHV/HHV8-associated high-grade non-Hodgkin's lymphoma (NHL) of B-cell origin, characterized by serous effusions in body cavities. Most patients are HIV-infected homosexual men with severe immunosuppression and other KSHV/HHV8-associated diseases such as Kaposi's sarcoma (KS). The prognosis is poor with a median survival of less than 6 months in most cohorts. The achievement of a sustained complete remission is rare. High-dose chemotherapy regimens are warranted to improve complete remission rate and survival. Seven patients with AIDS-associated PEL were treated with a combined chemotherapy including high-dose methotrexate followed by leucovorin rescue. In all cases, KSHV/HHV8 sequences were detected in the effusion samples using quantitative PCR assays. Five patients had a pre-existing KS, associated in three cases with multicentric Castleman's disease (MCD). Upon diagnosis, 6 patients received antiretroviral therapy, which was maintained during chemotherapy in 5 of them. At time of analysis, 3 out of 7 patients were in complete remission 18, 26, and 78 months after PEL diagnosis. Three patients died with a progressive PEL at 22, 67, and 153 days after diagnosis, and 1 patient died 9 months after PEL diagnosis with a MCD-associated plasmablastic NHL. Complete remission was obtained in 3 out of 7 patients treated for AIDS-associated PEL with combined chemotherapy containing high-dose methotrexate.
PURPOSEArsenic trioxide (ATO) is capable of inducing a high hematologic response rate in patients with relapsed acute promyelocytic leukemia (APL). Preclinical observations have indicated that all-trans-retinoic acid (ATRA) may strongly enhance the response to ATO.PATIENTS AND METHODSBetween 1998 and 2001, we conducted a randomized study of ATO alone versus ATO plus ATRA in 20 patients with relapsed APL, all previously treated with ATRA-containing chemotherapy. The primary objective was to demonstrate a significant reduction in the time necessary to obtain a complete remission (CR) in the ATO/ATRA group compared with the ATO group. Secondary objectives were safety and molecular response.RESULTSThe CR rate after one ATO with or without ATRA induction cycle was 80%. Clinical and pharmacokinetic observations indicated that the main mechanism of action of ATO in vivo was the induction of APL cell differentiation. Hematologic and molecular response, time necessary to reach CR, and outcome were comparable in both treatment groups. Of 16 CR patients, three patients who reached a molecular remission after one induction cycle had all received chemotherapy for a treatment-induced hyperleukocytosis. Three additional patients who received further additional ATO with or without ATRA cycles converted later to molecular negativity.CONCLUSIONATRA did not seem to significantly improve the response to ATO in patients relapsing from APL. Other potential combinations, including ATO plus chemotherapy, have to be tested.
A novel translocation t(9;21)(q13;q22) associated with trisomy 4 has been detected in a patient with acute myelomonocytic leukemia (AML,M4) in relapse. The chromosomal translocation results in rearrangement of the RUNX1 gene at 21q22. The DNA sequence rearranged on chromosome 9 remains unidentified. The diversity of the partners involved in translocations implicating RUNX1 suggests that the functional consequences of the abnormality are more due to the truncation of RUNX1 than to the identity of its partner in the rearrangement.
Differentiation therapy for acute myeloid leukemia uses transcriptional modulators to reprogram cancer cells. The most relevant clinical example is acute promyelocytic leukemia (APL), which responds dramatically to either retinoic acid (RA) or arsenic trioxide (As2O3). In many myeloid leukemia cell lines, cyclic adenosine monophosphate (cAMP) triggers growth arrest, cell death, or differentiation, often in synergy with RA. Nevertheless, the toxicity of cAMP derivatives and lack of suitable models has hampered trials designed to assess the in vivo relevance of theses observations. We show that, in an APL cell line, cAMP analogs blocked cell growth and unraveled As2O3-triggered differentiation. Similarly, in RA-sensitive or RA-resistant mouse models of APL, continuous infusions of 8-chloro-cyclic adenosine monophosphate (8-Cl-cAMP) triggered major growth arrest, greatly enhanced both spontaneous and RA- or As2O3-induced differentiation and accelerated the restoration of normal hematopoiesis. Theophylline, a well-tolerated phosphodiesterase inhibitor which stabilizes endogenous cAMP, also impaired APL growth and enhanced spontaneous or As2O3-triggered cell differentiation in vivo. Accordingly, in an APL patient resistant to combined RA–As2O3 therapy, theophylline induced blast clearance and restored normal hematopoiesis. Taken together, these results demonstrate that in vivo activation of cAMP signaling contributes to APL clearance, independently of its RA-sensitivity, thus raising hopes that other myeloid leukemias may benefit from this therapeutic approach.
Multicentric Castleman disease (MCD) is a distinct type of lymphoproliferative disorder associated with inflammatory symptoms and interleukin 6 (IL-6) dysregulation. In the context of human immunodeficiency virus (HIV) infection, MCD is associated with Kaposi sarcoma-associated herpesvirus, also called human herpesvirus type 8 (KSHV/HHV8). Within a prospective cohort study on 60 HIV-infected patients with MCD, and a median follow-up period of 20 months, 14 patients developed KSHV/HHV8-associated non-Hodgkin lymphoma (NHL): 3 "classic" KSHV/HHV8(+) Epstein-Barr virus-positive (EBV(+)) primary effusion lymphoma (PEL), 5 KSHV/HHV8(+) EBV(-) visceral large cell NHL with a PEL-like phenotype, and 6 plasmablastic lymphoma/leukemia (3/3 KSHV/HHV8(+) EBV(-)). The NHL incidence observed in this cohort study (101/1000 patient-years) is about 15-fold what is expected in the general HIV(+) population. MCD-associated KSHV/HHV8(+) NHL fell into 2 groups, suggesting different pathogenesis. The plasmablastic NHL likely represents the expansion of plasmablastic microlymphoma from the MCD lesion and progression toward aggressive NHL. In contrast, the PEL and PEL-like NHL may implicate a different original infected cell whose growth is promoted by the cytokine-rich environment of the MCD lesions.
Cutaneous lesions of hypereosinophilic syndrome (HES) may display various presentations. These are important to recognize to allow early diagnosis. We report an unusual case of a young man with HES secondary to a splenic T-cell lymphoma, revealed by diffuse necrotic cutaneous lesions. Later on, brain and heart infarctions developed, leading to the patient's death. Analysis of skin biopsy specimens showed occluded dermal vessels surrounded by activated eosinophils. Because a complete analysis of hemostasis was unremarkable, these findings suggest that dermal vessel thrombosis was the direct consequence of the migration of activated eosinophils. Cutaneous lesions of HES are protean and probably reflect the differences between the lesional events induced in situ by activated eosinophils. (J Am Acad Dermatol 2001;46:S133-6.)
FISH identified a cryptic t(5;14)(q35;q32) in T acute lymphoblastic leukemia (ALL), whereas it was not observed in B ALL samples. This translocation is present in five out of 23 (22%) children and adolescents with T ALL tested. RanBP17, a gene coding for a member of the importin β protein family, and Hox11Like2, an orphan homeobox gene were mapped close to the chromosome 5 breakpoints and CTIP2, which is highly expressed during normal T cell differentiation, was localized in the vicinity of the chromosome 14 breakpoints. The Hox11L2 gene was found to be transcriptionally activated as a result of the translocation, probably under the influence of CTIP2 transcriptional regulation elements. These data establish the t(5;14)(q35;q32) as a major abnormality, and Hox11 family member activation as an important pathway in T ALL leukemogenesis.
Fluorescence in situ hybridization (FISH) studies were performed in three cases of acute lymphoblastic leukemia (ALL) with marker chromosomes to analyze the contribution of chromosome 21 in these markers. FISH with a chromosome 21 painting probe confirmed that chromosome 21 was involved in all three cases. FISH with YAC probes showed that the number of extra copies varied according to their location on chromosome 21. Attention was focused on the AML1 gene, which was present as five copies in most of the cells exhibiting the marker chromosomes. As controls, 11 cases of childhood ALL were studied with PAC probes covering AML1 . The results agreed with the banded karyotypes in 10 patients. FISH uncovered a clone with four copies of AML1 which were only observed by FISH analysis of interphase nuclei in one patient. No point mutation was detected in exons 3–5, encoding the runt domain of AML1, in the three cases, suggesting an oncogenic role of wild‐type AML1 amplification. © 2001 Wiley‐Liss, Inc.
A patient with acute myeloblastic leukemia (AML) and karyotypic abnormality mimicking t(8;21) is reported. Because of the uncommon morphology of blasts for AML with t(8;21), and absence of AML1-ETO fusion in the RT-PCR analysis, fluorescence in situ hybridization (FISH) was applied to precise the abnormality. FISH revealed a complex rearrangement involving chromosomes 7, 21 and 8, and involvement of the AML1 gene without evidence of AML1-ETO fusion. This case of unusual AML illustrates the necessity of collecting all hematologic, cytogenetic, and eventual FISH and RT-PCR data to analyse genetic rearrangements in leukemic patients.
Translocation (14;14)(q11;q32) was associated with acute lymphoblastic leukemia in a child. The B-cell lineage of the leukemic cells led us to perform FISH studies, which showed that the chromosomal breakpoints were telomeric to TCRA/D and IGH loci. These findings show that FISH analyses are necessary when unusual features are associated with a recurrent translocation.
The FAB group has reviewed 32 cases of promyelocytic leukemia and variant forms. By utilizing published criteria the ability to make a correct diagnosis by morphology with molecular genetic confirmation and to eliminate cases that did not have the PML/RARalpha rearrangement was excellent.