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C-group chromosome abnormalities in bone marrow cells of three children with dyshematopoiesis of unknown origin.

Clinical and cytogenetic findings in three children with dyshaematopoiesis and bone marrow aneuploidy are described. Monosomy 7 was found in immature cells of one 10-year-old boy with myelofibrosis following a 3 years evolution of severe thrombocytopenia and anaemia. Trisomy 8 was found in 80% of the bone marrow metaphases of a 5 1/2-year-old girl with aplastic anaemia and Australia antigen positivity. During a 3 year observation period the number of cells with trisomy 8 regressed and eventually disappeared. Improvement of her clinical condition is present but still limited. Trisomy 8 was also found in all bone marrow cells of an 8-year-old girl with an undefined myeloproliferative disorder. Her disease was apparently related to collagen-vascular disorders like periarteritis or other necrotizing angiitis and presented with periods of exacerbation and periods of chronic evolution. Periods of exacerbation were accompanied by excessive myeloid proliferation. Repeated bone marrow cytogenetic analysis during the acute and chronic phases showed trisomy 8 in all the metaphases analysed. During the last episode of acute illness, further clonal evolution was observed, characterized by a translocation (8;17).

Anemia, Aplastic↗

Hodgkin/Reed-Sternberg cells and Hodgkin's disease in patients with B-cell chronic lymphocytic leukaemia: an immunohistological, molecular and clinical study of four cases suggesting a heterogeneous pathogenetic background.

We report the immunohistological, molecular and clinical findings in four patients affected by B-cell chronic lymphocytic leukaemia (CLL) who developed "Richter's syndrome with Hodgkin's disease (HD) features" or "CLL with Hodgkin's transformation", all characterised by the presence of typical Hodgkin/Reed-Sternberg (H/RS) cells in lymph node biopsies. In three cases the nodal involvement by CLL was demonstrated both by the presence of a predominant background of CD5/CD19/CD23+ small lymphocytes and an IgH monoclonal rearrangement revealed by PCR analysis. Conversely, in the remaining case there was neither immunohistological nor molecular evidence of lymph node involvement by CLL. In all four cases H/RS cells were Epstein-Barr virus (EBV) latent membrane protein (LMP-1) positive. These findings suggest that the presence of H/RS cells in the first three patients, who had CLL/HD nodal involvement, might be related to transformation or clonal evolution of CLL cells in H/RS cells, which is in keeping with use of the term "CLL with Hodgkin's transformation". In the fourth case a de novo HD may be postulated, representing a second malignancy presumably not clonally related to CLL. In all cases a key pathogenetic role of EBV is suggested by the expression of LMP-1 in H/RS cells. Our findings indicate that the presence of typical H/RS cells in lymph node biopsies in CLL patients may reflect a heterogeneous pathogenetic background. The different clinico-pathologic settings should be taken into consideration because of their possible implications for patients' treatment and prognosis.

Aged↗

Epstein-Barr virus-associated anaplastic large cell lymphoma in renal transplant patients.

A novel association, Epstein-Barr virus-positive Ki-1+/CD30+ anaplastic large cell non-Hodgkin's lymphoma of B-cell phenotype in immunosuppressed renal transplant recipients is reported. Case 1 involved an aggressive clinical evolution, whereas case 2 followed a more "benign" clinical course. Both lymphomas were Epstein-Barr virus-positive as assessed by in situ hybridization, Southern blot, polymerase chain reaction, and immunohistochemical analysis. Both lymphomas contained a single clonal Epstein-Barr virus terminal-repeat fragment. In case 1, clonality was confirmed by the detection of bi-allelic immunoglobulin (Ig) heavy chain gene rearrangement. Case 2 showed germline Ig genes at presentation and oligoclonal Ig heavy chain gene rearrangements at relapse. These results are consistent with the notion that anaplastic large cell lymphoma might arise in a B cell transformed by Epstein-Barr virus at a very early stage, before Ig gene rearrangement. The latter may occur later in the course of clonal evolution, thus permitting investigators to trace intermediate and late stages within a process of multistep lymphomagenesis and/or tumor progression.

Adolescent↗

Myelodysplastic syndromes: pathogenesis, functional abnormalities, and clinical implications.

The myelodysplastic syndromes represent a preleukaemic state in which a clonal abnormality of haemopoietic stem cell is characterised by a variety of phenotypic manifestations with varying degrees of ineffective haemopoiesis. This state probably develops as a sequence of events in which the earliest stages may be difficult to detect by conventional pathological techniques. The process is characterised by genetic changes leading to abnormal control of cell proliferation and differentiation. Expansion of an abnormal clone may be related to independence from normal growth factors, insensitivity to normal inhibitory factors, suppression of normal clonal growth, or changes in the immunological or nutritional condition of the host. The haematological picture is of peripheral blood cytopenias: a cellular bone marrow, and functional abnormalities of erythroid, myeloid, and megakaryocytic cells. In most cases marrow cells have an abnormal DNA content, often with disturbances of the cell cycle: an abnormal karyotype is common in premalignant clones. Growth abnormalities of erythroid or granulocyte-macrophage progenitors are common in marrow cultures, and lineage specific surface membrane markers indicate aberrations of differentiation. Progression of the disorder may occur through clonal expansion or through clonal evolution with a greater degree of malignancy. Current attempts to influence abnormal growth and differentiation have had only limited success. Clinical recognition of the syndrome depends on an acute awareness of the signs combined with the identification of clonal and functional abnormalities.

Anemia, Refractory, with Excess of Blasts↗

Phenotypic changes in large cell transformation of small cell lymphoid malignancies.

Large cell transformation of two cases of chronic lymphocytic leukemia and two cases of small lymphocytic lymphoma were studied. Changes in surface immunoglobulins were observed in two cases. In one case, there was a change from IgM to IgG. In another case, the large cells bore kappa light chains whereas the small cells had lambda light chains. Surface antigens other than immunoglobulin might also differ. All three small cell malignancies tested, but none of the large cell tumors, expressed the antigen T1 (Leu 1). The antigens HLA-DR, Leu 14, B1, and BA1 were expressed by both the small and large cell malignancies with one exception. The staining intensity might, however, change on transformation. The common acute lymphocytic leukemia antigen was not detected on any of the tumors studied and the expression of BA2 was variable. Surface marker studies cannot confidently distinguish between large cell lymphomas resulting from clonal evolution and those arising de novo. More definitive studies such as analyzing the idiotypic determinants on and amino acid sequences of the heavy and light chains or analyses of immunoglobulin gene rearrangements are necessary to confirm or exclude the same clonal origin in such cases.

Adult↗

Amyloid tumors of the lung--an immunocytoma?

Amyloid tumors are nodular amyloid depositions usually limited to one organ, which often develop without a known cause. In most cases they may be observed as being situated in the lung, the larynx, the skin, the urinary bladder and in the region of the orbita, and are restricted to these organs. In the present study, we report on two cases of pulmonal amyloid tumors which after immunohistochemical investigation revealed a clonal evolution of light chain restricted plasma cells and lymphocytes corresponding to a localized primary extranodal lymphoplasmacytic immunocytoma, with only few vital tumor cells among abundant tumor-shaped amyloid. Additionally, using polymerase chain reaction (PCR) to investigate IgH gene rearrangement, clonality of the tumor cells could be demonstrated in both cases.

Aged↗

Biclonality of gastric lymphomas.

The pathogenesis and clonal evolution of gastric diffuse large B-cell lymphoma (DLBCL) and its relationship to extranodal marginal zone B-cell lymphoma (MZBL), mucosa-associated lymphoid tissue (MALT) type, are still controversial. The aim of this study was to establish the clonality of morphologically distinct areas of gastric lymphomas as well as their genetic relationship to each other. Six gastric lymphomas, consisting of two MZBL, MALT type, two DLBCL, and two "composite" lymphomas were subjected to laser capture microdissection and subsequent PCR-based amplification of the immunoglobulin heavy chain gene. One DLBCL showed a biclonal pattern of rearranged immunoglobulin heavy chain (IgH) genes of two different areas without evidence of a common origin. Two composite DLBCL with areas of extranodal MZBL, MALT type, were also biclonal and displayed different IgH gene rearrangements in the small-cell and in the large-cell components, respectively. Sequencing of the CDR3 region revealed unique VH-N-D and D-N-JH junctions, thus corroborating the presence of two genuinely distinct tumor clones in each of these three cases. In contrast, the remaining three gastric lymphomas (one DLBCL and two MZBL, MALT type) showed IgH gene rearrangements in which CDR3 regions were identical in the different tumor areas. Our results suggest that gastric DLBCL may be composed of more than one tumor cell clone. Further, DLBCL may not necessarily evolve by transformation of a low-grade lymphoma, but may also originate de novo. An ongoing emergence of new tumor clones may considerably hamper molecular diagnosis and follow-up of gastric DLBCL.

Base Sequence↗

Clonal analysis of stable chromosome rearrangements in Bloom's syndrome fibroblasts.

In situ cytogenetic analysis was performed on colonies derived from single cells of cultured skin fibroblast-like strains from two patients with Bloom's syndrome (GM 1492 and GM 2520). Metaphases in all of the colonies displayed structural chromosome rearrangements. Among 212 metaphases from 24 colonies of GM 1492, only 16% were pseudodiploid, and there was a high incidence of de novo rearrangements within individual colonies. There were two "families" of 16 and five colonies, respectively, each containing identical or related aneusomies, and these could be arranged into pedigrees showing clonal evolution. The heterochromatic region of chromosome #1 and the telomeric regions of chromosome arms 2q, 3q, 4p, and 11q were most frequently involved in the rearrangements. In contrast, strain GM 2520 showed less intraclonal variation, was primarily pseudodiploid, and displayed only three clonal types, one of which had extensive subclonal variation (19 of 24 clones). A remarkable finding in GM 2520 was that, in some clones, extra copies of specific chromosome segments were present as translocations. These results caution against the use of strain GM 1492 as a prototype Bloom's syndrome strain for cell biological studies.

Bloom Syndrome↗

Karyotypic divergence and convergence in two synchronous lung metastases of a clear cell sarcoma of tendons and aponeuroses with t(12;22)(q13;q12) and type 1 EWS/ATF1.

Clear cell sarcoma of tendons and aponeuroses (CCS) is an uncommon malignancy characterized by a t(12;22)(q13;q12) causing a fusion of the EWS and ATF1 genes. We describe the cytogenetic and molecular genetic analyses of two lung metastases from a CCS patient. Both lesions presented the defining t(12;22) and a type 1 EWS/ATF1 chimeric transcript. The additional cytogenetic changes present in the two lesions allowed us to obtain some insight into the pathogenetic basis of disease progression. Four related clones were identified in the right lung metastasis, permitting a partial reconstitution of the stepwise clonal evolution, whereas the left lung metastasis presented yet another subclone. The comparison of the two karyotypes enabled us to pinpoint which changes occurred in the primary tumor and which emerged independently after the two metastases had been established. We conclude that both clonal divergence and convergence may be operative during tumor progression of CCS.

Adult↗

Use of oligonucleotide probes directed against T cell antigen receptor gamma delta variable-(diversity)-joining junctional sequences as a general method for detecting minimal residual disease in acute lymphoblastic leukemias.

To provide a sensitive and generally applicable method to detect clonal cells in acute lymphoblastic leukemias (ALL), we have designed a new strategy based on the polymerase chain reaction (PCR) amplification of the T cell receptor gamma delta gene rearrangements found in most T and B lineage ALLs. PCR allows rapid sequencing of variable-(diversity)-joining (V-[D]-J) junctions from tumor DNA and construction of anti-junctional oligonucleotides (AJOs) used as probes to detect clonal cells in the same patient. We have defined oligonucleotides suitable for all T cell receptor (TCR) rearrangements involving functional V gamma segments. Oligonucleotides corresponding to preferential TCR delta rearrangements in T and B lineage ALLs were also used. By analysis of the nucleotide sequence of 52 V gamma-V gamma junctions from 30 cases of B and T ALLs, we demonstrate that V-J junctional sequences are clone specific in both lineages and at all stages of differentiation examined despite the frequent presence of the recently described P nucleotides. Experiments performed with TCR gamma delta AJOs on DNA from tumor cells and polyclonal T cells show that AJOs can be used to differentiate clonal cells from polyclonal T cells, distinguish between different T cell clones, and detect residual clonal populations at 10(-4)/10(-5) dilution. AJOs were also used to detect residual disease in samples from patients in clinical and morphological complete remission. Finally, rearrangement patterns were studied by classical Southern analysis in selected cases at both presentation and subsequent relapse showing absence of clonal evolution in most cases. V-(D)-J nucleotide sequences of rearrangements with an identical pattern of rearrangement at presentation and relapse were identical in all cases analyzed. We therefore describe a new, specific, and clinically useful strategy for the detection of minor clonal populations applicable in the majority of cases of ALL.

Alleles↗

Karyotypic evolution in multiple myeloma.

A patient with IgG kappa multiple myeloma was studied cytogenetically prior to therapy and was found to have a clone of 55,XX cells. After treatment leading to a clinical response, the patient relapsed with a clone of 57,XX cells, which were derivatives of the original neoplastic cell line. This is the first case of demonstrated clonal evolution of myeloma in a patient studied prior to chemotherapy.

Aged↗

Cytogenetic, FISH, and molecular studies in a case of B-cell chronic lymphocytic leukemia with karyotypic evolution.

We report the clinical, cytogenetic, fluorescence in situ hybridization (FISH) and molecular findings in a 54-yr-old male patient diagnosed with B-cell chronic lymphocytic leukemia (B-CLL), who showed progression to a diffuse large B-cell lymphoma (Richter's syndrome). Genetic studies were performed at diagnosis and during the Richter's transformation (RT). A clonal karyotype with two dicentric chromosomes, psu dic(12,21)(q24;q10) and dic(17,18)(p11.2;p11.2), was found. Both rearrangements were confirmed by FISH. Molecular cytogenetics analysis using p53 probe showed monoallelic loss of this tumor suppressor gene in 43.8% and 77.3% of cells for the first and the second studies, respectively). In both studies, deletions of D13S319 (18% and 12% of cells) and D13S25 loci (13% and 12% of cells) at 13q14 were found. Polymerase chain reaction analysis showed the MBR/JH rearrangement of the bcl-2 gene. FISH studies using LSI bcl-2/IgH probe allowed quantifying the clonal cell population with this rearrangement (4% and 6.6% of cells at diagnosis and RT, respectively). To our knowledge, this is the first case with a psu dic(12,21) described in B-CLL. The low percentage of cells with the 13q14 deletion and bcl-2/IgH rearrangement suggests that they were secondary events that resulted from clonal evolution. Our patient had a short survival (9 months) and a clear lack of response to several therapeutic agents, confirming the association of p53 gene deletion and karyotypic evolution with disease progression.

Cytogenetic Analysis↗

Large-cell transformation following detection of minimal residual disease in cutaneous T-cell lymphoma: molecular and in situ analysis of a single neoplastic T-cell clone expressing the identical T-cell receptor.

PURPOSE: One of the unique characteristics of cutaneous T-cell lymphoma (CTCL) is its ability to undergo cytologic transformation in which the malignant T cells develop the morphologic appearance of a large-cell lymphoma. Reported to occur in up to 20% of advanced cases, large-cell transformation (LCT) is associated with an aggressive clinical course. Little is known about the risk factors or the molecular mechanisms of LCT. Before current immunohistochemical and molecular techniques, it was not possible to determine if LCT represented changes of the initial neoplastic T-cell clone or, in fact, was a distinct second malignancy. The goal of this study was to define the clonal evolution of LCT in CTCL. PATIENTS AND METHODS: Polymerase chain reaction (PCR) amplification of T-cell receptor-beta (TCR-beta) gene rearrangements and immunohistochemistry with monoclonal antibodies to TCR-V beta regions were used as markers of T-cell clonality to analyze the skin and peripheral blood of a patient with CTCL and LCT. RESULTS: We first detected the presence of minimal residual disease (MRD) in a CTCL patient with a complete clinical response to biologic response modifiers (BRMs). When clinical relapse occurred and demonstrated LCT, TCR-beta-PCR and in situ immunohistochemistry with a specific TCR-V beta monoclonal antibody identified a single neoplastic T-cell clone that expressed the identical TCR as the original clone. CONCLUSION: Our results confirm a common clonal origin for CTCL and LCT. We also provide evidence of MRD in CTCL by molecular analysis, implying that residual malignant cells maintain a potential for clinical relapse and possibly LCT. The role of MRD detection remains to be defined in the clinical assessment of CTCL. LCT in CTCL provides a unique model to investigate the molecular events that underlie terminal-stage tumor progression.

Amino Acid Sequence↗

Molecular genetics, natural history and the demise of childhood leukaemia.

The patterns of genetic change, clonal evolution, natural history and latency are very different in the paediatric leukaemias compared with adult epithelial cancers but are similar to those in other childhood cancers of mesenchymal stem cell origin. This distinction has a biological logic in the context of the selective pressures for clonal emergence in different developmental and cellular contexts and has a major impact on curability. Most childhood leukaemias and some other mesenchymal stem cell tumours are of fetal origin and can metastasize without corruption of restraints on cell proliferation or bypassing apoptosis. In marked contrast to most invasive or metastatic epithelial carcinomas in adults, these former cancers then retain sensitivity to therapeutic apoptosis. Moreover, their abbreviated and less complex evolutionary status is associated with less genetic diversity and instability, minimising opportunity for clonal selection for resistance. A minority of leukaemias in children and a higher fraction in adults do, however, have genetic alterations that bypass cell cycle controls and apoptosis imposition. These are the 'bad news' genotypes. The cellular and molecular diversity of acute leukaemia impacts also on aetiology. Paediatric acute leukaemias can be initiated prenatally by illegitimate recombination and fusion gene formation in fetal haemopoiesis. For acute lymphoblastic leukaemia (ALL) in children, twin studies suggest that a secondary postnatal molecular event is also required. This may be promoted by an abnormal or delayed response to common infections. Even for a classic case of a cancer that is intrinsically curable by systematic chemotherapy i.e. childhood ALL, prevention may turn out to be the preferred option.

Apoptosis↗

Molecular genetics, natural history and the demise of childhood leukaemia.

The patterns of genetic change, clonal evolution, natural history and latency are very different in the paediatric leukaemias compared with adult epithelial cancers but are similar to those in other childhood cancers of mesenchymal stem cell origin. This distinction has a biological logic in the context of the selective pressures for clonal emergence in different developmental and cellular contexts and has a major impact on curability. Most childhood leukaemias and some other mesenchymal stem cell tumours are of fetal origin and can metastasize without corruption of restraints on cell proliferation or bypassing apoptosis. In marked contrast to most invasive or metastatic epithelial carcinomas in adults, these former cancers then retain sensitivity to therapeutic apoptosis. Moreover, their abbreviated and less complex evolutionary status is associated with less genetic diversity and instability, minimising opportunity for clonal selection for resistance. A minority of leukaemias in children and a higher fraction in adults do, however, have genetic alterations that bypass cell cycle controls and apoptosis imposition. These are the 'bad news' genotypes. The cellular and molecular diversity of acute leukaemia impacts also on aetiology. Paediatric acute leukaemias can be initiated prenatally by illegitimate recombination and fusion gene formation in fetal haemopoiesis. For acute lymphoblastic leukaemia (ALL) in children, twin studies suggest that a secondary postnatal molecular event is also required. This may be promoted by an abnormal or delayed response to common infections. Even for a classic case of a cancer that is intrinsically curable by systematic chemotherapy i.e. childhood ALL, prevention may turn out to be the preferred option.

Adolescent↗

Molecular mechanisms in the evolution of chronic myelocytic leukemia.

Chronic myelocytic or Ph1-positive acute lymphoblastic leukemias have been analyzed for alterations in a variety of proto-oncogenes and anti-oncogenes implicated in the progression of chronic myeloid leukemia (CML) from its chronic phase to blast crisis. The most frequent genetic change found in disease evolution is an alteration of the p53 gene involving a point mutation, a rearrangement or a deletion. These gene changes are common in myeloid and undifferentiated variants of blast crisis but are usually undetectable in lymphoid leukemic transformants. Other molecular changes also occur in the clonal evolution of CML. The retinoblastoma-susceptibility (Rb) gene is an anti-oncogene. Structural abnormalities of Rb are frequent in all types of human acute leukemia, but are particularly common in Ph1-positive leukemia of lymphoid phenotype including both Ph1-positive ALL and lymphoid blast crisis of CML. Changes in Rb occur early in the transition to blast crisis with loss of Rb protein being the common factor. Mutations in the N-RAS gene also occur, but are rare in typical blast crisis. They are sometimes seen in Ph1-negative myeloid blast crisis. Since changes in the p53 gene are generally associated with progression of disease of a myeloid phenotype and changes in the Rb gene occur more often with a lymphoid phenotype, a particular molecular alteration may influence the character of disease evolution in CML.

Blast Crisis↗

Clonal structural chromosome aberrations in fibrous dysplasia.

Cytogenetic analysis of short-term cultures from a case of monostotic fibrous dysplasia in a 14-year-old girl revealed multiple clonal structural rearrangements with evidence of clonal evolution. The karyotype was 46,XX,del(3)(q27),add(10)(q22),add(12)(p13)/46,idem,t(3;8)(p21;q13 ),add(10) (q26),der(15)del(15)del(15)(q15q22)ins(15;?) q15;?)/46,id em,-X,+2,t(3;8),add(10),der(15). The finding of clonal structural aberrations suggests that fibrous dysplasia is a neoplastic lesion which develops as the result of somatic mutations.

Adolescent↗

RAS Pathway Activation and Microenvironmental Adaptation as Hallmarks of Myeloid Sarcoma.

UNLABELLED: Myeloid sarcoma, an aggressive extramedullary subtype of acute myeloid leukemia (AML), occurs in approximately 20% of patients and remains strikingly understudied in large-scale genomic and multiomic investigations. The key drivers of its tumor evolution are largely unknown; timely detection in asymptomatic patients poses a clinical challenge, and effective treatment options are limited, as patients are often excluded from clinical trials, rendering it a largely neglected disease entity. In this study, we demonstrate that myeloid sarcoma evolves from medullary AML but exhibits distinct site-specific clonal evolution. This is supported by unique transcriptional signatures of myeloid sarcoma, reflecting adaptation to the extramedullary microenvironment. We establish a proof of concept that circulating tumor DNA (ctDNA) sequencing captures the molecular composition of myeloid sarcoma, offering a potential noninvasive approach for molecular profiling of extramedullary AML. Our findings highlight marked differences between medullary AML and myeloid sarcoma, including universal molecular evolution and RAS pathway activation as disease hallmarks. SIGNIFICANCE: We provide a comprehensive multiomic characterization of myeloid sarcoma, identifying key molecular pathways that contribute to its development, and suggest ctDNA as a noninvasive method of detection. We identify RAS pathway activation and transcriptional adaptation to the solid tissue microenvironment as cardinal features of myeloid sarcoma, suggesting novel therapeutic avenues.

Sarcoma, Myeloid↗