p53 is an oncosuppressor gene located on chromosome 17p. Point mutations of the p53 gene are seen frequently in human malignancies, and are closely associated with malignant transformation under in vitro conditions. Mutated p53 protein shows a slow cell turnover rate, and accumulates in cells at the nuclear and/or cytoplasmic level. As a result, mutated p53 protein can be detected more readily by immunohistology than the wild-type protein. In this study, we used a monoclonal anti-p53 antibody (clone DO7) to examine the expression of p53 protein in 25 cutaneous T-cell lymphomas (CTCL) of low- and high-grade malignancy, i.e. mycosis fungoides (n=6), Sezary's syndrome (n=2), and large cell lymphomas of pleomorphic (n=14) or anaplastic (n=3) subtype. The results showed that easily detectable p53 protein was present in many of the neoplastic cells in half of the high-grade lymphomas. In contrast, in the low-grade lymphomas no, or only very few, p53-positive neoplastic cells could be detected. These findings suggest that molecular and/or genetic alterations of p53 may be implicated in the pathogenesis of high-grade CTCL, but are unlikely to be of critical importance in low-grade CTCL.
A consecutive series of 21 previously untreated patients with low-grade non-Hodgkin lymphomas were treated with mitoxantrone 5 mg/m2 daily for 3 days every 3 weeks. The cumulative dose did not exceed 165 mg/m2 in any patient. In this group, 7 patients had small lymphocytic lymphomas, 10 patients had follicular small cleaved cell lymphomas, and 4 patients had follicular mixed small-and large-cell lymphomas. Of the 21 patients, 20 obtained remission (complete in 6, partial in 14), and 15 of these are still in remission. Relapse-free survival is 68% at 2 years. None of the patients has died. Nonhematologic toxicity was modest. No severe alopecia was seen, and only 6 patients had nausea and vomiting (WHO grade 1–3). No cardiac toxicity was seen. In conclusion, mitoxantrone is a highly active and well-tolerated drug in this subset of patients. Hematologic toxicity, especially leukopenia, was dose limiting, and a reduction of the dose was necessary in 15 out of the 21 patients.
Among 128 patients with malignant B-lymphoproliferative disorders, 19 patients had long lasting dyspepsia and gastroscopy showed chronic active gastritis or gastric ulcer. PCR analysis for TCR and IgH clonality in biopsies showed local involvement of the malignant lymphocyte clone in four patients out of eight indicating presence of these cells in the inflammatory infiltrate. Weak B-cell clonality was found in four patients. A close relationship was seen between lymphocytic clonality and immune response to H. pylori Cag A, and all patients had parietal cell antibodies. Thus, the malignant clone may participate in the local inflammatory reaction, and continued local stimulation by H. pylori as well as parietal cell antigens may lead both to autoimmunity as well as a clonal development of lymphocytes.
The PTEN/MMAC1 gene on chromosome 10q23 encodes a lipid phosphatase with tumor-suppressive properties. Germline PTEN/MMAC1 mutations have been implicated as the predisposing factor in Cowden disease and other hamartoma syndromes, and somatic mutations and deletions have been identified in a wide range of human cancers, including 30-40% of metastatic melanoma cell lines. To study further the possible role of PTEN/MMAC1 in the pathogenesis and progression of malignant melanoma, we examined uncultured specimens from 16 primary and 61 metastatic tumors from 67 patients. Denaturing gradient gel electrophoresis was used to analyze systematically the coding region of PTEN/MMAC1 and revealed mutations in four of the metastatic samples (7%). Sequence analysis of the mutants identified a 1 bp frameshift insertion, a 2 bp frameshift deletion, an 11 bp frameshift deletion, and a single base substitution resulting in the generation of a premature stop codon. Analysis of two intragenic polymorphisms showed allelic loss in three of eight informative primary tumors (38%) and in 18 of 31 metastatic tumors (58%). One of the mutant cases showed allelic loss, suggesting that both PTEN/MMAC1 alleles were inactivated in this tumor. Altogether, these results suggest that mutation and deletion of PTEN/MMAC1 may contribute to the development and progression of malignant melanoma.
The clinical, histological, phenotypic and genotypic features of 21 primary cutaneous B-cell lymphomas (CBCLs) have been investigated. The patients were 13 men and eight women aged 34-91 years (median 67) at diagnosis. Eighteen patients had localized disease, and three had multiple skin lesions at diagnosis, Twelve patients developed cutaneous or extracutaneous recurrences, and five died from malignant lymphoma 7-84 months (median 36) after diagnosis. Histological examination showed features of marginal zone/mucosa-associated lymphoid tissue (MALT)-type lymphoma in 12 cases. Three of these had transformed to diffuse large B-cell lymphoma (DLBCL) in relapse biopsies. The remaining cases were seven primary DLBCLs and two cases tentatively classified as follicle centre cell (FCC) lymphoma. The neoplastic B cells showed similar phenotypes and genotypes in most cases (CD20+, CD79+, CD5-, CD10-, cyclin D1-, bcl-2+ bcl-x-, bax-, t(14;18)-negative). p53 protein was expressed in five cases, and four harboured mis-sense or loss-of-function mutations in the p53 gene. Deletion or promoter region hypermethylation of the p16(INK4a) gene was detected in two patients with DLBCL. The level of retinoblastoma protein expression and the proliferative fraction were significantly higher in DLBCL (> 50%) than in MALT- or FCC-tppe lymphomas (<10%), Features associated with an unfavourable prognosis were the presence of multiple skin lesions at diagnosis, transformation from MALT-type lymphoma to DLBCL, and possibly p16(INK4a) aberrations. It is concluded that most CBCLs are dissimilar from FCC lymphomas and seem to be more closely related to marginal zone/MALT-type lymphomas. It is also suggested that there are fundamental differences between DLBCL and other histological categories of CBCL, indicating that cutaneous DLBCL is a separate entity with an increased growth potential and genetic features similar to DLBCL originating in other anatomical sites.
Objective. To examine the relationship between autoimmunity and extranodal lymphocytic infiltrates in different lymphoproliferative disorders with immunoglobulin alterations.Subjects and design, A clinical review combined with a retrospective cohort study of 380 patients, 28 with monoclonal gammopathy of undetermined significance, three with common variable immunodeficiency, 147 with chronic lymphocytic leukaemia, 57 with Waldenstrom's macroglobulinaemia and 145 with non-Hodgkin's malignant lymphoma.Setting. A university hospital and The State Serum Institute in Copenhagen.Intervention. Clinical examination of each patient with special attention to chronic inflammatory and autoimmune manifestations. Biopsies were taken from non-infectious infiltrates, some of which were additionally tested with PCR analysis for gene rearrangements. Serological screening with a test battery for various autoantibodies was used in combination with techniques for the detection of M-components and monoclonal B-cell proliferation.Main outcome measures, Clinical and/or serological autoimmune manifestations, M-component and other immunoglobulin alterations, and inflammatory tissue changes were studied in patients with chronic inflammatory, polyclonal or oligoclonal pseudolymphomas and in monoclonal, malignant extranodal lymphomas.Results, In 380 consecutive patients, 49 (12.9%) had extranodal manifestations, of whom 47 also had autoimmune manifestations. Nearly half of the 47 patients had more than one autoimmune manifestation. There was a strong correlation between clinical signs and corresponding autoantibodies such as anti-SSA and -SSB antibodies in Sjogren's syndrome (10 cases), antithyroid peroxidase antibodies in thyroiditis and Graves' disease (10 cases), and parietal cell antibodies in gastric ulcers with maltoma (12 cases). Clinical and serological signs of autoimmunity correlated strongly with female sex (34, 72% women: and 13, 28% men) and with immunoglobulin alterations.Conclusions. To our knowledge this is the first systematic review of B-lymphoproliferative and autoimmune disorders indicating that pseudolymphoma and malignant lymphomas, including maltomas, may develop in the context of a permanent autoantigenic drive.
Basic fibroblast growth factor (bFGF) and vascular endothelial growth factor (VEGF) are both recognized as stimulators of migration and angiogenesis during the progression of melanoma. However, the timepoints during tumour progression at which the expression of these angiogenic factors is most essential is still controversial. Using immunohistochemical analyses, melanoma cells were found to express bFGF in 18 out of 19 primary tumours and in 13 out of 20 metastases. Eleven of the 19 primary tumours and 15 of the 20 metastases were found to contain VEGF-positive melanoma cells; five of the 19 patients showed no VEGF-expressing melanoma cells at all. This indicates that VEGF expression may be a later event in the progression of melanoma than bFGF expression. Reverse transcription-polymerase chain reaction (RT-PCR) analyses of the melanoma cell lines showed that all cell lines were positive for both bFGF and VEGF mRNA. CD31 -positive endothelial cells were primarily seen in the metastases (17 out of 20). Only four of the primary tumours contained CD31-positive cells, but these tumours expressed bFGF as well as VEGF, indicating that both angiogenic factors may be important for the formation of vessels in tumours.
During recent years it has become increasingly evident that L&H cells in nodular lymphocytic predominance (LP) Hodgkin's disease (HD) and Hodgkin and Reed‐Sternberg (H‐RS) cells in approximately half the cases of classical HD originate from B‐lymphocytes, and that H‐RS cells in most of the remaining cases of classical HD express a null phenotype. The pathogenesis of HD is unknown. An association with Epstein‐Barr virus (EBV) has been suggested and there are also indications that genes involved in programmed cell death (apoptosis) may be implicated. In this study, the expression of four apoptosis‐related proteins (bcl‐2, bcl‐x, bax and p53) in 53 cases of HD was examined and the data were correlated with the genotype, the EBV status and the phenotype (B, T or null) of the neoplastic cells. The H‐RS cells expressed a B‐cell phenotype in 3/3 cases of nodular LP and in 19/50 (38%) cases of classical HD. The remaining cases showed a null‐cell phenotype in 29/50 (58%) and a T‐cell phenotype in 2/50 (4%). EBV was more often positive in B (14/19, 74%) than in null (7/29, 24%) type HD. The H‐RS cells were bcl‐2‐positive in 19/53 (36%), bcl‐x‐positive in 17/53 (32%), bax‐positive in 1/53, and p53‐positive in 41/53 (77%) cases. No relationship was found between bcl‐2 expression and EBV status, or between bcl‐2 and bcl‐x expression. A t(14;18) translocation was seen in 2 of 34 cases. P53 point mutations were not detected. Our findings indicate that nodular LP and classical HD originate from B‐cells in a high proportion of cases. They also suggest a role for bcl‐2, bcl‐x and p53 in tumorigenesis. The pathogenesis is not known at this stage.
Mantle cell lymphomas (MCL) are morphologically and immunophenotypically distinctive lymphoid neoplasms characterised by overexpression of cyclin D1. Recent studies have suggested that co-operating aberrations of cell cycle associated genes may provide a growth advantage to a tumour. To address this issue further, we investigated five typical and three aggressive (blastoid) MCL for alterations in the cell cycle regulating genes p15, p16, CDK4, Rb and p53. In 3/3 aggressive cases with cyclin D1 overexpression we found aberration of at least one additional gene. One case showed diminished expression of the retinoblastoma protein (pRb); one case harboured deletion of both p15 and p16; and one case exhibited both deletion of p16 and point mutation of p53. However, we also identified two typical cases which in addition to cyclin D1 overexpression exhibited diminished pRb expression and p15 and p16 hypermethylation, respectively. Our findings confirm and extend other recent investigations and indicate that co-operating genetic alterations of cell cycle-associated genes may contribute to the pathogenesis of MCL.
To the Editor: The MMAC1/PTEN gene is localized on chromosome 10q23.3 and encodes a putative tumor suppressor with structural homologies to known phosphatases and cytoskeletal proteins.[1][1] [2][2] Functional studies have shown that MMAC1/PTEN is a dual-specificity protein phosphatase that
Spitz naevi and halo naevi are benign melanocytic lesions that share many histological features with malignant melanoma. All lesions are characterized by a brisk infiltration of lymphocytes, mainly of the T cell subtype, and halo naevi are known to undergo spontaneous regression. Since the benign nature of Spitz naevi and halo naevi might therefore be caused by specific T cell responses against tumour-associated antigens, it was found of interest to characterize this T cell response in detail. A reverse transcriptase-polymerase chain reaction (RTPCR)- based method adapted for analysis of paraffin-embedded material combined with Southern blot analysis has been used to analyse the T cell receptor (TCR) AV and BV repertoires of infiltrating lymphocytes in 14 different melanocytic lesions. The results have shown that only a few particular TCRAV and TCRBV regions are expressed in each lesion. To evaluate the T cell response, it is of interest to know the HLA-type of the analysed lesions, since most melanoma-specific effector lymphocytes are CD8+ cytotoxic T cells and therefore HLA class l-restricted. As blood samples were not available from any of these patients, an RT-PCR method using HLA-A2-specific primers was used to analyse for the presence of this allele. The preferentially expressed TCRAV genes were sequenced, and this analysis showed that the high expression of these TCRAV genes was due to a clonal or oligoclonal expansion of T cells. In summary, the expression of relatively few TCR variable regions indicates a clonal expansion of T cells.
Of 560 consecutive, newly diagnosed untreated patients with B CLL submitted for chromosome study, G-banded karyotypes could be obtained in 480 cases (86%). Of these, 345 (72%) had normal karyotypes and 135 (28%) had clonal chromosome abnormalities: trisomy 12 (+12) was found in 40 cases, 20 as +12 alone (+12single), 20 as +12 with additional abnormalities (+12complex). Other frequent findings included abnormalities of 14q, chromosome 17, 13q and 6q. The immunophenotype was typical for CLL in 358 patients (CD5+, Slg(weak), mainly FMC7-) and atypical for CLL in 122 patients (25%) (CD5-, or Slg(strong) or FMC7+). Chromosome abnormalities were found significantly more often in patients with atypical (48%) than in patients with typical CLL phenotype (22%) (P < 0.00005). Also +12complex, 14q+, del6q, and abnormalities of chromosome 17 were significantly more frequent in patients with atypical CLL phenotype, whereas +12single was found equally often in patients with typical and atypical CLL phenotype. The cytomorphology of most of the +12 patients was that of classical CLL irrespective of phenotype. In univariate survival analysis the following cytogenetic findings were significantly correlated to a poor prognosis: chromosome 17 abnormalities, 14q+, an abnormal karyotype, +12complex, more than one cytogenetic event, and the relative number of abnormal mitoses. In multivariate survival analysis chromosome 17 abnormalities were the only cytogenetic findings with independent prognostic value irrespective of immunophenotype. We conclude that in patients with typical CLL immunophenotype, chromosome abnormalities are somewhat less frequent at the time of diagnosis than hitherto believed. +12single is compatible with classical CLL, and has no prognostic influence whereas chromosome 17 abnormalities signify a poor prognosis. In patients with an atypical CLL immunophenotype, chromosome abnormalities including +12complex, 14q+, del 6q and chromosome 17 are found in about 50% of the patients, and in particular chromosome 17 abnormalities suggest a poor prognosis.
In a multicentre study of 635 consecutive newly diagnosed patients with B-CLL, the histological bone marrow (BM) specimens were reviewed independently by each of 3 pathologists and found evaluable for BM infiltration pattern in 575 patients, 404 of whom had a CD5(+), mainly FMC7(-), faint surface-membrane immunoglobulin (SIg) fluorescence-intensity phenotype. In these 404 patients the following BM infiltration patterns were found: mixed nodular-interstitial (30%), moderate interstitial (44%), heavy interstitial (20%) and diffuse packed (6%). In univariate survival analysis, significant differences were found according to BM pattern (p<0.05), the presence of nodules being a favorable prognostic sign. In multivariate survival analysis in a model including age, clinical stage, BM pattern, BM lymphocytosis, WBC and sex, only age and stage but not BM pattern or BM lymphocytosis had independent prognostic significance. In stage A, progression-free survival was significantly longer in patients with nodular than in patients with non-nodular bone-marrow pattern. The overall survival of these patients, however, did not differ, possibly owing to the prompt and prolonged treatment given to most patients at the time of progression to stage B or C. We conclude that in CD5(+), SIg(faint), mainly FMC7(-) B-CLL, bone-marrow histology may predict unstable disease in early clinical stage but is not important for treatment decisions, when these are based on clinical stage.
Eight histiocytic sarcomas, identified by examination of more than 2000 malignant lymphomas, are described. For comparison, tumor infiltrates from five monoblastic leukemias were also analyzed. The histiocytic sarcomas were all high-grade malignancies consisting of markedly pleomorphic large cells with many mitotic figures. At presentation, six of the patients had systemic symptoms (fever, fatigue, loss of weight), skin infiltrates, and lymphadenopathy. Despite aggressive chemotherapy, clinical remissions were short, and six patients died of disease .5-48 months (mean, 6.5 months) after diagnosis. The remaining two patients are alive and in partial or complete remission 7 and 12 months after diagnosis. Immunotypic examination showed that all the histiocytic sarcomas were positive for macrophage-related antigens and negative for antigens on B cells, T cells, myeloid cells, epithelial cells, and melanocytes. T-cell receptor and immunoglobulin genes were studied in three cases and were present in a germline configuration. One of the histiocytic sarcomas resembled Langerhans' cells in phenotype and morphology; it was classified as a Langerhans' cell sarcoma. The remaining histiocytic sarcomas did not express accessory cell-associated antigens, but more closely resembled "ordinary" tissue macrophages; they were positive for lysozyme and/or CD68, followed in frequency by CD11c, CD4, CD11b, CDw32, peanut agglutinin receptor, and CD13. Similar features were seen in the monoblastic leukemias. These conditions could only be distinguished from histiocytic sarcoma by clinical and morphologic, rather than immunophenotypic, criteria. Expression of oncoprotein p53 was studied in nine cases and was positive in six of six histiocytic sarcomas and one of three monoblastic leukemias. Rare malignancies show features consistent with the derivation from macrophages. Two entities may be distinguished: those that resemble antigen-presenting accessory cells and those that more closely resemble ordinary tissue macrophages. Recognition of these tumors is important clinically and requires assessment of clinical, morphologic, and immunophenotypic features, supplemented by analysis of T-cell receptor and immunoglobulin genes. Whether (or how) p53 gene mutations are implicated in their pathogenesis will be an important topic for future investigation.