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R K Brynes

Publications and source records attributed to R K Brynes.

At least 37 records · Page 2Linked to original sources

Surface immunoglobulin light chain-positive acute lymphoblastic leukemia of FAB L1 or L2 type: a report of 6 cases in adults.

Acute lymphoblastic leukemia (ALL) of B-cell lineage may be classified using the French-American-British (FAB) classification as L1, L2, or L3 type. L1 and L2 ALLs characteristically express terminal deoxynucleotidyl transferase (TdT) and are surface immunoglobulin (sIg)-negative. In contrast, L3 ALL is typically TdT-negative and sIg-positive. However, in a few large studies of children with ALL, sIg expression has been reported in less than 2% of L1 and L2 neoplasms. In these sIg-positive cases, IgM usually has been detected, with Ig light chain in a subset of tumors. Surface Ig expression in L1 or L2 ALL in adults is extremely rare; we found only 1 case report in the English literature. We report 6 cases of L1 or L2 ALL with an unusual immunophenotype arising in adults. In each tumor, the neoplastic cells expressed monotypic sIg light chain (4 lambda, 2 kappa) and TdT. Three tumors expressed CD34. Cytogenetic studies in 4 cases at diagnosis or relapse revealed no evidence of chromosomal translocations involving the c-myc locus, such as the t(8;14), t(2;8), or t(8;22). Three patients responded completely to chemotherapy and are alive; follow-up ranges from 18 to 57 months. Three patients died at 3, 13, and 14 months after diagnosis.

Adolescent↗

Immunohistochemical detection of E2F-1 in non-Hodgkin's lymphomas: a survey of 124 cases.

E2F-1 is a transcription factor that mediates cell cycle progression from the G1 to S phase and is normally regulated by a group of proteins, including cyclin D1. Although deregulation of E2F-1 is implicated in neoplastic transformation, in situ examination of this protein has not been performed to date. Using an immunohistochemical technique applied to routinely fixed, paraffin-embedded tissue sections, we evaluated E2F-1 expression in reactive lymphoid tissues and in 124 cases of non-Hodgkin's lymphoma (NHL) of various types. In reactive lymphoid tissues, E2F-1 was expressed predominantly by large noncleaved cells in germinal centers and by a small subset of cortical thymocytes. Mantle zones and splenic marginal zones were negative. Among the NHLs, four types had a relatively high percentage (> 20%) of E2F-1-positive cells: mantle cell lymphoma (19 of 19), lymphoblastic lymphoma (5 of 5), small noncleaved cell lymphoma (4 of 6), and hepatosplenic gammadelta T-cell lymphoma (3 of 3). The consistent detection of many E2F-1-positive cells in mantle cell lymphoma is in contrast to other small B-cell NHLs (n = 29), which had relatively few (< 10%) E2F-1-positive cells. This finding suggests that immunohistochemical staining for E2F-1 as a supplement to the existing markers, such as cyclin D1, might be useful in the differential diagnosis of NHLs composed of small B cells.

Carrier Proteins↗

Expression of the cell-cycle-related proteins E2F-1, p53, mdm-2, p21waf-1, and Ki-67 in multiple myeloma: correlation with cyclin-D1 immunoreactivity.

Approximately 30% of multiple myelomas (MMs) express cyclin D1 when assessed using immunohistochemical techniques. Cyclin D1 expression correlates with greater tumor burden in MM, because cyclin D1-positive cases are more frequently associated with extensive bone marrow involvement, i.e., high pathologic stage, than are cyclin D1-negative cases. The mechanisms that explain this association are unknown. To explore other differences between cyclin D1-positive and cyclin D1-negative MMs, we assessed 59 MMs immunohistochemically for several G1 cell-cycle regulatory proteins, including cyclin D1, E2F-1, p53, mdm-2, and p21waf-1, using routinely fixed and processed, paraffin-embedded bone marrow specimens. Twenty MMs (34%) were cyclin D1 positive, and 39 (66%) were cyclin D1 negative. Eighteen (90%) of 20 cyclin D1-positive MMs were Stage III, in contrast to 19 (49%) of 39 cyclin D1-negative MMs (P = .003). Cyclin D1-positive MMs were more likely to express E2F-1 (16/20 vs. 4/39, P < .001), p53 (11/20 vs. 10/39, P = .041), and p21waf-1 (12/20 vs. 7/39, P = .003). There was no significant difference in mdm-2 expression between these groups. We also assessed proliferation rate using an antibody specific for the Ki-67 antigen. A relatively high percentage (> 20%) of Ki-67-positive cells was found in cyclin D1-positive MMs compared with cyclin D1-negative MMs (13/20 vs. 3/39, P < 0.001). These results suggest that cyclin D1-positive MMs are more likely to possess additional derangements involving other G1 cell-cycle regulatory proteins. We speculate that these abnormalities might result in increased proliferation, thereby explaining the correlation between cyclin D1 expression and greater tumor burden.

Bone Marrow Cells↗

Intravascular large B-cell lymphoma: the CD5 antigen is expressed by a subset of cases.

The CD5 antigen is a T-cell associated marker that is also usually expressed by two B-cell neoplasms, chronic lymphocytic leukemia/small lymphocytic lymphoma and mantle cell lymphoma. We observed CD5 antigen expression in a subset of cases of intravascular large B-cell lymphoma (IVLBL), and we report here five cases. The patients, two men and three women, ranged in age from 59 to 81 years. Biopsy specimens were obtained from kidney, lung, bone marrow, abdominal wall, and neck, the latter involving a lymphangioma. All of the cases had histologic features typical of IVLBL, with large and atypical lymphoid cells located predominantly within blood vessels. Immunohistochemical studies performed using routinely fixed, paraffin-embedded tissue sections showed that the neoplastic cells were B cells, positive for the CD20 antigen and negative for the CD3 or CD43 antigens. All cases were also positive for the CD5 antigen. One case had an immunoglobulin heavy chain gene rearrangement shown by using a polymerase chain reaction method. The finding of CD5 antigen expression in a subset of IVLBL cases adds to other evidence in the literature suggesting that IVLBL is a heterogeneous entity. We considered the possibility that these cases were related to or represented unusual histologic forms of transformation from either chronic lymphocytic leukemia/small lymphocytic lymphoma or mantle cell lymphoma. All of the cases, however, were negative for the CD23 antigen and cyclin D1 (bcl-1) protein, which is evidence against this interpretation. The biologic significance of CD5 antigen expression in cases of IVLBL is uncertain. These neoplasms might arise from a separate lineage of CD5-positive B cells or from a specific, early stage of B-cell differentiation. Alternatively, some investigators have suggested that CD5 antigen expression by B cells is a marker of activation.

Aged↗

Cyclin D1 expression in renal carcinomas and oncocytomas: an immunohistochemical study.

Cyclin D1 plays an important role in cell cycle progression from G1 to S phase. Cyclin D1 overexpression has been identified in many human neoplasms, including a variety of carcinomas. A systematic study of cyclin D1 expression in renal carcinomas and oncocytomas has not been reported. Ninety-six renal epithelial neoplasms, 78 renal carcinomas (45 clear-cell, 18 papillary, and 15 chromophobe), and 18 oncocytomas were analyzed immunohistochemically using routinely fixed tissue sections and a cocktail of two monoclonal anti-cyclin D1 antibodies. One thousand cells were manually counted, and the percentage of cyclin D1 positive cells was calculated. Fluorescence in situ hybridization studies using chromosome 11 centromeric and 11q13 specific probes were performed on a subset of clear-cell carcinomas and oncocytomas. Cyclin D1 immunoreactivity was observed in 23 (51%) of 45 clear-cell, 5 (28%) of 18 papillary, and 2 (13%) of 15 chromophobe carcinomas. Nine (50%) of 18 oncocytomas were positive for cyclin D1. Cyclin D1 expression in clear-cell carcinomas did not correlate with survival. Fluorescence in situ hybridization studies on eight clear-cell carcinomas and seven oncocytomas revealed normal chromosome 11 number and no evidence of amplification of the 11q13 locus. Thus, cyclin D1 can be immunohistochemically demonstrated in approximately one-half of renal oncocytomas and clear-cell carcinomas and is less frequent in papillary and chromophobe carcinomas. The mechanism of cyclin D1 expression is unknown, but it does not seem to be related to extra copies of chromosome 11 or to gene amplification.

Adenocarcinoma↗

The immunophenotype of blast transformation of chronic myelogenous leukemia: a high frequency of mixed lineage phenotype in "lymphoid" blasts and A comparison of morphologic, immunophenotypic, and molecular findings.

Immunophenotypic studies have a limited role in the diagnosis of chronic myelogenous leukemia (CML) but are increasingly being used in CML blast transformation (BT). Determination of the cell lineage of CML blasts is clinically important because patients with lymphoid blast transformation have a better response to chemotherapy and longer survival than those with other lineages. We studied the morphologic, cytochemical, immunophenotypic, cytogenetic, and molecular features of 20 patients with Philadelphia chromosome-positive CML and more than 10% blast cells in peripheral blood or bone marrow. The blasts were morphologically heterogeneous. CD33 was expressed in 19 cases (95%), followed by CD13 (85%), CD11c (80%), CD36 (60%), CD117 (40%), and CD15 (30%). Seven cases (35%) had a precursor-B lymphoid immunophenotype, and 13 (65%) had a predominantly myeloid immunophenotype. Of the former group, of which only one had a pure lymphoid phenotype, terminal deoxynucleotidyl transferase (TdT) and CD19 were expressed in 100%, CD10 in 85.7%, and CD20 in 14.3%. Of the latter group, all 13 expressed from 3 to 6 myeloid antigens, with 46.2% myeloperoxidase positive and 69.2% CD61 positive. No cases were interpreted as T lineage, but the T-cell antigens CD3, CD4, CD5, and CD7 were expressed in 5.0, 40.0, 5.3. and 30.0% of all cases, respectively. In most cases, the immunophenotype of the CML blasts could not be predicted from their morphologic features. Polymerase chain reaction showed that 80.0% of the lymphoid group and 37.5% of the myeloid group had immunoglobulin heavy-chain gene rearrangements. The frequent lineage infidelity of the blast cells in CML BT seems to be related to the stem cell origin of this disorder. Such lineage infidelity, however, makes classification of many cases difficult and the significance of and criteria for biphenotypic blast crisis of CML is yet to be determined.

Adult↗

Acute myeloid leukemia with t(6;9) (p23;q34): association with myelodysplasia, basophilia, and initial CD34 negative immunophenotype.

The translocation (6;9)(p23;q34) is a rare cytogenetic aberration found in patients with acute myeloid leukemia (AML). The clinical, morphologic, and immunophenotypic findings of eight t(6;9) acute leukemias are described. The patients included six men and two women with a mean age of 38.5 years. The leukemias were classified in the French-American-British (FAB) system as AML FAB M2 in four cases and as FAB M4 in four cases. Underlying myelodysplasia was evident in six cases. Bone marrow basophilia was found at presentation in six of the seven cases studied. In two cases with basophilia, darkly stained granules were also present in many eosinophils. In one case, initial basophilia was absent, but was present at relapse, as were eosinophils containing darkly stained granules. Iron stains were available in five cases; four showed increased incorporation and three had ringed sideroblasts. All cases studied by flow cytometry (six at presentation and three at relapse) expressed CD13, CD33, and human leukocyte antigen-DR. At presentation, five cases were CD34 negative. In one case at presentation, a subset of blasts (18%) weakly expressed CD34. Three cases studied at relapse were positive for CD34. Two of seven cases studied were terminal deoxynucleotidyl transferase positive. The t(6;9)(p23;q34) was the only cytogenetic abnormality in five cases. Trisomy 8 was found in two cases, and ring 12 was present in one case. Three patients are living with refractory leukemia 6 weeks to 6 months after initial diagnosis, and three patients died of complications of allogeneic bone marrow transplantation. Only one patient is alive without evidence of disease 3 years after bone marrow transplantation. t(6;9) leukemia is an unusual type of AML that is associated with poor prognosis, early age of onset, basophilia, myelodysplasia with frequent ringed sideroblasts, and a CD34-negative initial phenotype.

Acute Disease↗

Cyclin D1 immunohistochemical staining is useful in distinguishing mantle cell lymphoma from other low-grade B-cell neoplasms in bone marrow.

The distinction between mantle cell lymphoma (MCL) and other low-grade B-cell neoplasms is important because MCL has a more aggressive clinical course. In bone marrow biopsy specimens, this distinction can be especially difficult. We examined 70 bone marrow biopsy specimens involved by various B-cell lymphoid neoplasms to assess the utility of cyclin D1 immunostaining in distinguishing MCL from other B-cell lymphoproliferative disorders. We used a cocktail of two monoclonal anti-cyclin D1 antibodies and a heat- and sonication-induced epitope retrieval procedure. The neoplasms assessed included MCL (32 cases), small lymphocytic lymphoma/chronic lymphocytic leukemia (18 cases), follicular lymphoma (11 cases), hairy cell leukemia (5 cases), splenic marginal zone lymphoma (2 cases), and small lymphocytic lymphoma with plasmacytoid differentiation (2 cases). The diagnosis of MCL in bone marrow was confirmed by review of the original diagnostic biopsy specimens along with additional data, such as immunophenotypic or molecular studies. Most MCL (23/32; 72%) cases expressed cyclin D1 protein. In contrast, one case of small lymphocytic lymphoma/chronic lymphocytic leukemia (1/18; 6%) and one case of hairy cell leukemia (1/5; 20%) expressed cyclin D1 protein. These findings demonstrate that immunostaining for cyclin D1 protein expression is useful in distinguishing MCL from other B-cell lymphoid neoplasms in the bone marrow.

Antibodies, Monoclonal↗

Myelodysplastic syndrome occurring after autologous bone marrow transplantation for lymphoma. Morphologic features.

Clonal karyotypic abnormalities characteristic of myelodysplastic syndrome (MDS) occur in up to 18% of patients who undergo autologous bone marrow transplantation (auto-BMT) for the treatment of lymphoma. Morphologic changes are often subtle and may not meet the French-American-British Cooperative Group criteria for MDS. We retrospectively assessed dysplastic changes in peripheral blood and bone marrow specimens obtained before and after transplantation from nine patients and correlated them with karyotype and survival. All patients had normal cytogenetic study results before transplantation and had clonal karyotypic abnormalities develop after auto-BMT. Four patients (with aggressive MDS) survived a short time and died of acute myelogenous leukemia or MDS-related complications, four (with indolent MDS) had a prolonged survival period, and one patient died of recurrent lymphoma. The group with aggressive MDS had significantly more bone marrow trilineage dysplasia before auto-BMT than did the group with indolent MDS or cytogenetically normal auto-BMT controls, suggesting that stem cell damage occurred before transplantation and was not detected by pretransplantation cytogenetic analysis. Comparatively greater dyserythropoiesis and dysmegakaryopoiesis were present after transplantation; these changes were similar to those seen in de novo MDS. Posttransplantation dysplasia in the group with indolent MDS was analogous to the atypia related to the transplantation process.

Adult↗

Cyclin D1 protein in multiple myeloma and plasmacytoma: an immunohistochemical study using fixed, paraffin-embedded tissue sections.

In this study, we analyzed 69 plasma cell neoplasms, including 54 multiple myelomas (MMs), 3 cases of plasma cell leukemia, and 12 plasmacytomas, for expression of cyclin D1 protein using an immuno-histochemical method applied to routinely fixed, paraffin-embedded tissue sections. Cyclin D1 was expressed in 18 (26%) of 69 plasma cell neoplasms, including 16 (30%) of 54 MMs and 2 (17%) of 12 plasmacytomas. Three cases of plasma cell leukemia were negative. Cyclin D1 expression correlated with the cytologic differentiation and histologic stage of MM. Twelve (75%) of 16 MMs had intermediate or immature cytologic features and were histologic Stage III. With use of a polymerase chain reaction assay, we also analyzed six cases (three cyclin D1 positive, three cyclin D1 negative) for the t(11;14); one MM carried the t(11;14) and expressed cyclin D1 protein. We conclude that cyclin D1 expression occurs in approximately one-quarter of plasma cell neoplasms and correlates with the degree of cytologic differentiation and histologic stage. The relatively high frequency of cyclin D1 expression, compared with the less than 5% incidence of the t(11;14) detected by conventional cytogenetics reported in the literature, suggests that upregulation of cyclin D1 protein might be the result of mechanisms other than the t(11;14).

Adult↗

Expression of p53, MDM2, p21waf1, bcl-2, and retinoblastoma gene proteins in myelodysplastic syndrome after autologous bone marrow transplantation for lymphoma.

Myelodysplastic syndrome (MDS) is an uncommon but serious complication of patients who undergo autologous bone marrow transplantation (auto-BMT) for non-Hodgkin's lymphoma or Hodgkin's disease. Some patients exhibit an indolent course, but others succumb to aggressive disease. p53 overexpression is rare in de novo MDS but common in therapy-associated MDS. We used an immunostaining method to analyze expression of p53, the p53-associated tumor suppressor gene products, MDM2, p21waf1, retinoblastoma gene protein (pRB), and the antiapoptotic oncoprotein bcl-2 before and after BMT in BM specimens from eight patients with clonal karyotypic abnormalities characteristic of MDS. Staining was compared with findings in normal BM specimens and specimens from auto-BMT controls and patients with de novo MDS. p53 protein was found in three (75%) of four post-transplantation specimens from patients in whom a clinically aggressive form of MDS developed. In contrast, p53 was absent in all of the specimens from four patients with karyotypic evidence of MDS, but with indolent disease. bcl-2 protein was overexpressed by immature myeloid cells in seven of eight pre-BMT specimens. After BMT, it was predominantly found at low levels in cases positive for p53. MDM2 was present only after transplantation and was found with equal frequency in patients with indolent and aggressive MDS. We detected p21waf1 in only one aggressive post-BMT MDS specimen. pRB was normally expressed in all of the specimens. These data show that p53 and bcl-2 staining patterns in post-transplantation MDS are similar to those described in therapy-associated MDS. p53 positivity is associated with poor prognosis in auto-BMT patients with MDS. Expression of MDM2, p21waf1, and pRB in this group of patients is not helpful in predicting outcome.

Bone Marrow Transplantation↗

Myelodysplasia and acute myeloid leukemia occurring after autologous bone marrow transplantation for lymphoma.

Secondary hematopoietic disease manifesting as acute myeloid leukemia, myelodysplastic syndrome or clonal karyotypic abnormalities, has been recently recognized as a relatively frequent and potentially serious complication of autologous bone marrow transplantation for both Hodgkin's disease and non-Hodgkin's lymphoma. The available evidence suggests the disease results primarily from repeated exposure of the host stem cells to therapeutic agents before the time of transplant, but a conspiratory role for the transplantation procedure itself cannot be entirely excluded. Strategies to decrease the incidence of secondary hematopoietic disease include earlier stem cell harvest and/or transplantation, and the performance of screening karyotypic studies on the bone marrow prior to autologous grafting.

Acute Disease↗

Numerical cytogenetic abnormalities of chromosomes 3, 7, and 12 in marginal zone B-cell lymphomas.

Monocytoid B-cell lymphoma, low-grade B-cell lymphoma of mucosa-associated lymphoid tissue, and primary splenic marginal zone cell lymphoma (SMZCL) were originally described as distinct clinicopathologic entities. On the basis of morphologic and immunologic similarities, monocytoid B-cell lymphoma and lymphoma of mucosa-associated lymphoid tissue recently have been grouped together as nodal and extranodal types of marginal zone B-cell lymphomas (MZBCLs) in the Revised European-American Classification of Lymphoid Neoplasms. Primary SMZCL, although related, is considered a separate provisional entity. Trisomies 3, 7, and 12 are common in non-Hodgkin's lymphomas. Several recent studies reported that MZBCLs arising in sites of mucosa-associated lymphoid tissue have a high frequency of trisomy 3. To assess whether similar numerical cytogenetic abnormalities are present in MZBCLs with prominent monocytoid B-cell cytologic features, we performed a retrospective study, using formalin-fixed, paraffin-embedded tissue blocks from 36 cases. By use of fluorescence in situ hybridization to detect chromosome trisomies, we identified trisomy 3 in 11 (85%) of 13 extranodal MZBCLs with monocytoid B cells (MZBCL-Es), in 6 (50%) of 12 nodal MZBCLs of monocytoid B-cell type (MZBCL-Ns), but in only 2 (18%) of 11 SMZCLs. Trisomies 7 and 12 were found at lower frequencies. These data suggest that trisomy 3 is a common numerical chromosomal abnormality of MZBCL-Es and MZBCL-Ns with monocytoid B-cell features. Despite similar morphologic and immunophenotypic characteristics, the low incidence of trisomy 3 in the SMZCL cases implies that this process may be genetically distinct.

Cell Line↗

Mutations in the gene for the granulocyte colony-stimulating-factor receptor in patients with acute myeloid leukemia preceded by severe congenital neutropenia.

BACKGROUND: In severe congenital neutropenia the maturation of myeloid progenitor cells is arrested. The myelodysplastic syndrome and acute myeloid leukemia develop in some patients with severe congenital neutropenia. Abnormalities in the signal-transduction pathways for granulocyte colony-stimulating factor (G-CSF) may play a part in the progression to acute myeloid leukemia. METHODS: We isolated genomic DNA and RNA from hematopoietic cells obtained from two patients with acute myeloid leukemia and histories of severe congenital neutropenia. The nucleotide sequences encoding the cytoplasmic domain of the G-CSF receptor were amplified by means of the polymerase chain reaction and sequenced. Murine myeloid 32D.C10 cells were transfected with complementary DNA encoding the wild-type or mutant G-CSF receptors and tested for their responses to G-CSF. RESULTS: Point mutations in the gene for the G-CSF receptor were identified in both patients. The mutations, a substitution of thymine for cytosine at the codon for glutamine at position 718 (Gln718) in one patient and at the codon for glutamine at position 731(Gln731) in the other, caused a truncation of the C-terminal cytoplasmic region of the receptor. Both mutant and wild-type genes for the G-CSF receptor were present in leukemic cells from the two patients. In one patient, the mutation was also found in the neutropenic stage, before the progression to acute myeloid leukemia. The 32D.C10 cells expressing mutant receptors had abnormally high proliferative responses but failed to mature when cultured in G-CSF. The mutant G-CSF receptors also interfered with terminal maturation mediated by the wild-type G-CSF receptor in the 32D.C10 cells that coexpressed the wild-type and mutant receptors. CONCLUSIONS: Mutations in the gene for the G-CSF receptor that interrupt signals required for the maturation of myeloid cells are involved in the pathogenesis of severe congenital neutropenia and associated with the progression to acute myeloid leukemia.

Acute Disease↗

Trisomy 12 in Richter's transformation of chronic lymphocytic leukemia.

Conventional cytogenetic data and fluorescence in situ hybridization (FISH) interphase cytogenetic studies have shown that trisomy 12 is found in many cases of B-cell chronic lymphocytic leukemia (B-CLL). Several reports indicate that +12 is an acquired numerical cytogenetic abnormality, and may be associated with a worse prognosis or more extensive disease. Wright-Giemsa-stained blood or bone marrow smears obtained after initial diagnosis, and subsequent lymph node cells, bone marrow aspirate smears, or effusions were retrospectively studied from five patients whose disease underwent morphologic transformation from typical B-CLL to a high grade lymphoproliferative disease (Richter's syndrome). Using an alpha-satellite DNA probe to the centromere of chromosome 12, trisomy 12 was found in a proportion of cells from all five specimens with high grade lymphoproliferative disease, but in only one of five samples collected before transformation. These data suggest that +12 is an acquired cytogenetic abnormality in CLL and has a high frequency in Richter's syndrome. Because only a subpopulation of the neoplastic cells contain an extra copy of chromosome 12, it is unlikely that this numerical abnormality plays a direct role in transformation to high grade lymphoproliferative disease.

Bone Marrow↗

Dendritic cell tumors associated with low-grade B-cell malignancies. Report of three cases.

Indeterminate and interdigitating cell tumors are rare proliferations of immunoregulatory cells that demonstrate morphologic, immunologic, and ultrastructural features similar to their cells of origin. Although an association of lymphoproliferative disease with Langerhans' cell histiocytosis is well described, only sporadic cases of non-Langerhans' dendritic cell proliferations have been published. The authors describe three patients with low grade B-cell lymphoproliferative disease who developed subsequent indeterminate cell or interdigitating cell tumors. When the two cases of indeterminate cell tumor are added to those previously described in the literature, it appears that 4 of 13 cases (31%) are associated with a history of low grade B-cell malignancy. Possible explanations for the relationship between these two disorders are discussed.

Dendritic Cells↗

Clonal karyotypic hematopoietic cell abnormalities occurring after autologous bone marrow transplantation for Hodgkin's disease and non-Hodgkin's lymphoma.

Over a 6-year period, 275 patients were treated with autologous bone marrow transplantation (auto-BMT) for advanced-stage malignant lymphoma. After BMT, clonal chromosomal abnormalities were detected in hematopoietic cells from 10 patients. All 10 had morphologically and cytogenetically normal BMs at the time of stem cell harvest. The cytogenetic changes were first detected 1.8 to 6.5 years (mean, 3.9) after induction chemotherapy, and 0.5 to 3.1 years (mean, 1.4) after transplantation, and were characteristic of those reported for therapy-related myelodysplastic syndrome (MDS) in 9 of the patients: abnormalities of chromosome 5 or 7 (classical-form) were present in 4, 11q23 or 21q22 abnormalities (topoisomerase II-related form) were detected in 3, and a combination of both forms was seen in 2 patients. Clonal 2p abnormalities were found in the 1 remaining patient. The abnormal karyotypes were associated with morphologically recognizable MDS in 3 patients and with acute myeloid leukemia (AML) arising in MDS in 2. Four of these patients have died: 3 of AML and 1 of infection. One patient is still alive with cytopenia. The clonal cytogenetic abnormalities were not associated with MDS in 5 patients: 1 has died of recurrent lymphoma, 2 have cytopenia, and 2 still have no morphologic or clinical evidence of MDS after short follow-up (4 and 13 months). Compared with a control group matched for disease, length of follow-up, and treatment with auto-BMT, there were no statistically significant associations between the development of clonal chromosomal abnormalities and age, number of chemotherapeutic regimens, prior local radiation, BMT conditioning regimen (with or without total body irradiation), or type of lymphoma. These studies show that the risk of developing clonal cytogenetic changes after auto-BMT for malignant lymphoma is approximately 9% at 3 years, even when pre-BMT karyotypic studies are normal. The exact significance of these cytogenetic abnormalities in the absence of MDS or AML is unclear.

Adult↗