Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “clonal evolution”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 613 records · Page 34Linked to original sources

SCOMP is superior to degenerated oligonucleotide primed-polymerase chain reaction for global amplification of minute amounts of DNA from microdissected archival tissue samples.

Global genome amplification from formalin-fixed tissues is still problematic when performed with low cell numbers. Here, we tested a recently developed method for whole genome amplification termed "SCOMP" (single cell comparative genomic hybridization) on archival tissues of different ages. We show that the method is very well suited for formalin-fixed paraffin-embedded samples obtained by nuclei extraction or laser microdissection. The polymerase chain reaction (PCR) products can be used for subsequent comparative genomic hybridization, loss of heterozygosity studies, and DNA sequencing. To control for PCR-induced artifacts we amplified genomic DNA isolated from 20 nuclei of archival formalin-fixed, paraffin-embedded nonpathological lymph nodes. Subsequent comparative genomic hybridization revealed the expected balanced profiles. For loss of heterozygosity analysis by microsatellite PCR 60 to 160 cells were sufficient. In comparative experiments the approach turned out to be superior to published degenerated oligonucleotide-primed-PCR protocols. The method provides a robust and valuable tool to study very small cell samples, such as the genomes of dysplastic cells or the clonal evolution within heterogeneous tumors.

DNA↗

Specific patterns of gene methylation in natural killer cell lymphomas : p73 is consistently involved.

Aberrant methylation of promoter CpG regions is a putative mechanism whereby tumor suppressor genes are inactivated. We used a candidate gene approach to investigate the patterns and significance of this epigenetic change in natural killer (NK) cell malignancies. Thirty-three patients were studied for promoter methylation in five putative tumor suppressor genes by methylation-specific polymerase chain reaction (MSP), which has a sensitivity of 10(-3). The p73 gene was methylated in 94% of cases, a frequency that is the highest known for any human malignancy. In the NK cell lymphoma line NK92, p73 was also completely methylated, and the p73 transcript was correspondingly not detectable by quantitative polymerase chain reaction. Treatment of the cell line with 5-azacytidine, a demethylation reagent, led to demethylation of the p73 promoter and reinduction of p73 gene expression. These results suggested that promoter CpG methylation might be an important mechanism in suppressing p73 gene expression in NK cells. Other methylated genes included hMLH1 (63%), p16 (63%), p15 (48%), and RAR beta (47%). Methylation of two or more genes occurred in 88% of cases. With promoter methylation as a molecular marker, MSP identified two cases of occult marrow metastasis. Interestingly, the primary tumor and metastasis showed different methylation patterns, implying that separate clonal evolutions might have occurred at these sites. Furthermore, MSP also identified tumor infiltration in random oropharyngeal biopsies in a case where histological examination could not show evidence of tumor involvement. We conclude that NK cell malignancies show a specific pattern of promoter methylation, with p73 being consistently involved. These results suggest that p73 may be an important target in the neoplastic transformation of NK cells, and the demonstration of its methylation may serve as a potential molecular tool for NK cell lymphoma detection.

Adult↗

Chromosomal imbalances in Barrett's adenocarcinoma and the metaplasia-dysplasia-carcinoma sequence.

To characterize cytogenetic alterations found in Barrett's adenocarcinoma (BA) and, more importantly, its premalignant stages, we studied chromosomal imbalances in various lesions in the histologically proposed metaplasia-dysplasia-carcinoma sequence using comparative genomic hybridization (CGH). Using 30 esophageal adenocarcinoma resection specimens, we were able to study 30 areas of Barrett's adenocarcinoma and 8 lymph node metastases (LN). In addition, we investigated 25 premalignant lesions adjacent to BA derived from a subset of 14 resection specimens including 11 areas of high grade dysplasia (HGD), 8 areas of low grade dysplasia (LGD), and 6 areas of intestinal metaplasia (IM), which were laser-microdissected and studied with CGH. To validate the CGH findings, fluorescence in situ hybridization analysis on 13 BA with probes specific for HER-2/neu and 20q13.2 were performed. The chromosomal alterations most often identified in BA were: gains on 8q (80%), 20q (60%), 2p, 7p and 10q (47% each), 6p (37%), 15q (33%) and 17q (30%). Losses were observed predominantly on the Y-chromosome (76%), 4q (50%), 5q and 9p (43% each), 18q (40%), 7q (33%) and 14q (30%). High-level amplifications were observed on 8q23-qter, 8p12-pter, 7p11-p14, 7q21-31, 17q11-q23. Recurrent chromosomal changes were also identified in metaplastic (gains on 8q, 6p, 10q, losses on 13q, Y, 9p) and dysplastic epithelium (gains on 8q, 20q, 2p, 10q, 15q, losses on Y, 5q, 9p, 13q, 18q). Novel amplified chromosomal regions on chromosomes 2p and 10q were detected in both Barrett's adenocarcinoma and premalignant lesions. An increase of the average number of detected chromosomal imbalances from IM (7.0 +/- 1.7), to LGD (10.8 +/- 2.2), HGD (13.4 +/- 1.1), BA (13.3 +/- 1.4), and LN (22 +/- 1.2) was seen. Although the detection of common chromosomal alterations in premalignant lesions and adjacent carcinomas suggest a process of clonal expansion, the occurrence of several chromosomal changes in an apparently random order relative to one another is striking evidence that clonal evolution is more complex than would be predicted by linear models. This is probably a reflection of the existence of many divergent neoplastic subpopulations and highlights one of the main problems associated with surveillance of Barrett's patients, namely sampling error.

Adenocarcinoma↗

Combined morphological and interphase fluorescence in situ hybridization study in multiple myeloma of Chinese patients.

To gain insight into the real incidence of the numeric chromosomal aberrations and the cell lineage involvement of the neoplastic process in multiple myeloma (MM), we examined 18 Chinese MM patients by May-Grunwald-Giemsa (MGG) staining and fluorescence in situ hybridization using three DNA centromeric probes specific for chromosomes 3, 7, and 9. In this investigation, cytogenetic abnormalities were detected in plasma cells (PCs), myeloid cells (MCs), and lymphoid cells (LCs) in all of the MM patients studied. This is the first demonstration of the cytogenetic aberration involved in the myeloid series. Furthermore, the MCs and PCs of 16 MM patients had the same aneuploidies in one or more of the chromosomes analyzed. These data suggest that the neoplastic transformation of MM may occur early in the hematopoietic development. Chromosomal aberrations involving mainly subclones and considerable cellular heterogeneity with gain of a variety of copy numbers of the same chromosome were demonstrated within PCs, which may possibly be the result of an underlying defect of PCs in the control of their number of chromosomes. Whereas PCs showed evidence suggestive of increased polyploidization, MCs and LCs, which exhibited similar chromosomal patterns as the former, rarely did. Thus, the clonal evolution from LC to PC, if that happens in MM, is characterized by chromosomal instability favoring growth of tumor cells with polysomies and polyploidies.

Adult↗

[Clostridium difficile, nosocomial enteropathogen: phylogeny and virulence].

Clostridium difficile is recognized as a potentially nosocomial enteric pathogen. It induces diarrhea or pseudomembranous colitis in patients whose digestive flora has been altered by antibiotic treatment and thus allows the colonization with a strain producing toxin A (enterotoxin) and toxin B (cytotoxin) (A+B+, sometimes A-B+ strains). We studied the phylogeny of C. difficile by developing MultiLocus Sequence Typing (MLST) analysis, which reports allelic polymorphism of housekeeping genes through DNA sequencing. C. difficile exhibits genomic stability, with mutational clonal evolution and individualization of phylogenetic lineages. These lineages are not correlated with human or animal hosts. Strains involved in pseudomembranous colitis or in diarrhea do not define distinct lineages, and bi-toxinogenic strains do not segregate from non toxinogenic strains. Conversely, A-B+ strains define a unique clone, highly divergent from the population studied. Allelic sequence data may be available from an centralized internet site, allowing phylogenetic and macro-epidemiologic analyses.

Biological Evolution↗

What role does Helicobacter pylori eradication play in gastric MALT and gastric MALT lymphoma?

The concept of mucosa-associated lymphoid tissue (MALT) has been introduced to differentiate biological functions from behavior of nonnodal vs. nodal lymphoid tissues. Lymphomas arising from MALT also behave differently than typical nodal lymphomas. In contrast to other tissues, MALT in the stomach is almost exclusively a result of Helicobacter pylori infection. Thus, MALT is part of the host defense against the pathogen H. pylori. Consequently, lymphomas arising from gastric MALT may be a clonal evolution starting from the infection. In low-grade gastric MALT lymphoma, cure of the infection may induce complete histological remission in the majority of patients. Investigators have recently reported that complete remission rate is between 70% and 80%. In an extended analysis, we have treated 84 patients with low-grade gastric MALT lymphoma in stage El, using a dual regimen to eradicate H. pylori. Complete remission was observed in 68 (80%) patients; a partial remission was found in 4 patients. In contrast, 12 patients showed no change and were referred to alternative treatment. In patients in complete remission, a polymerase chain reaction assay for the rearranged immunoglobulin heavy-chain gene remained positive in many cases. Together with data from the literature, these data suggest that the majority of patients with low-grade gastric MALT lymphomas in stage El respond to eradication of H. pylori. Longer follow-up investigations are necessary to determine if remissions indicate a cure from the disease.

Gastric Mucosa↗

Early metastatic progression of bladder carcinoma: molecular profile of primary tumor and sentinel lymph node.

PURPOSE: We characterized early metastatic progression of bladder carcinoma from the primary tumor, separated in the central part and invasive front, to the first lymphatic metastasis. MATERIALS AND METHODS: Included in this study were 8 patients undergoing sentinel lymph node detection for invasive bladder cancer, of whom 4 had metastasis in the sentinel lymph node and 4 were randomly chosen without metastases. After microdissection p53 genomic structure and immunohistochemical expression of p53, pRB, Ki67 and E-cadherin were analyzed. Microvessel density and apoptosis were also assessed. RESULTS: In 5 patients there were p53 gene mutations in the primary tumor, while 3 had the wild-type gene. The genotypes were identical in the central part and invasive front. All sentinel lymph node metastases harbored p53 mutations, in contrast to all nonmetastatic sentinel lymph nodes. Two patients had the same mutation as the primary tumor and 1 had an additional mutation. In a patient with a wild-type gene in each compartment of the primary tumor a mutation appeared in the corresponding sentinel lymph node metastasis. There was poor concordance of p53 mutation with protein status. The expression of p53, pRB, Ki67, E-cadherin, and the evaluation of apoptosis and angiogenesis showed in most cases only slight variations in tumor compartments and the sentinel lymph node. CONCLUSIONS: In this study invasive bladder carcinoma involved monoclonal proliferations with a mainly homogenous biomarker profile. The first metastases in sentinel lymph nodes had a similar molecular profile but in half of the cases signs of clonal evolution appeared.

Apoptosis↗

Evolutionary genetics and molecular diagnosis of Leishmania species.

An extensive study has been performed on various natural populations of Leishmania from the 'Old' and 'New Worlds' using multilocus enzyme electrophoresis and random amplification of polymorphic deoxyribonucleic acid. The data are interpreted in evolutionary genetic terms in order to give a firm basis to studies dealing with the relevant medical properties of pathogens. We confirm that Leishmania undergoes clonal evolution with occasional phenomena of hybridization. This suggests that the microorganism genotypes are stable in space and time and consequently have epidemiological and medical relevance. It is crucial to have a clear definition of the taxa to be identified. In the case of Leishmania, there is at present no firm consensus on the species concept. We propose that any new species of Leishmania should correspond to a 'discrete typing unit' that exhibits specific medical and/or epidemiological characters. Based on this approach, the species status of L. peruviana can be supported. On the contrary, L. panamensis cannot be clearly distinguished from L. guyanensis. Our studies on the genetic diversity of Leishmania show that a given stock is not representative of the genus, the subgenera, or any species. We suggest that the genetic polymorphism of Leishmania has a strong impact on the parasite's biomedical properties.

Animals↗

Chronic myeloid disorders: Classification and treatment overview.

Chronic myeloid disorders (CMD) are collectively characterized by monoclonal myeloproliferation that involves multiple lineages, retains a variable degree of cellular maturation, and has the potential to undergo clonal evolution. However, monoclonal hematopoiesis is neither essential nor specific to CMD. Morphologic and cytogenetic characteristics allow a working classification of these disorders that is clinically useful. There are four major divisions: chronic myeloid leukemia (CML), which is easily identified by the presence of the Philadelphia chromosome (or its molecular equivalent); the myelodysplastic syndromes (MDS), which are characterized by trilineage dysplasia; chronic myeloproliferative diseases (CMPD), which include essential thrombocythemia, polycythemia vera, and agnogenic myeloid metaplasia (AMM); and atypical CMD, which includes chronic neutrophilic leukemia, chronic eosinophilic leukemia, mast cell disease, and myeloid processes that display overlapping features of MDS and CMPD (hybrid CMD). In CMPD, a diagnosis of polycythemia vera requires evidence of an erythropoietin-independent increase in red blood cell mass; the diagnosis of both AMM and essential thrombocythemia requires the exclusion of reactive causes of bone marrow fibrosis and thrombocytosis, respectively. In addition, the Philadelphia chromosome, increased red blood cell mass, and dyserythropoiesis should also be absent. Semin Hematol 38(suppl 2):1-4.

Bone Marrow Diseases↗

Clonal analysis of gliomas.

In malignant gliomas, the characteristically heterogeneous features and frequent diffuse spread within the brain have raised the question of whether malignant gliomas arise monoclonally from a single precursor cell or polyclonally from multiple transformed cells forming confluent clones. Although monoclonality has been shown in surgically resected tissues, these may not include the full spectrum of patterns seen on autopsy material. Little is known about the clonality of low-grade gliomas from which malignant gliomas may sometimes arise. We sought to investigate the clonality of low-grade and malignant gliomas by using and comparing surgical and autopsy material with a Polymerase chain reaction (PCR)-based assay for nonrandom X chromosome inactivation. For that, purpose, archival surgical and autopsy material from 15 female patients (group A) (age 4 to 73 years; median, 45) with malignant gliomas (12 glioblastomas, one gliosarcoma, one anaplastic oligoastrocytoma, one gliomatosis cerebri), surgical material only from 21 female patients (group S) (age 6 to 78 years; median, 60) with low-grade and malignant gliomas (four low-grade astrocytomas, three oligoastrocytomas, two anaplastic astrocytomas, one gemistocytic astrocytoma, four oligodendrogliomas, seven glioblastomas) were analyzed. In group A, representative areas (mean = 5/patient; median = 7) were microdissected from tissue sections and assayed by PCR amplification of a highly polymorphic microsatellite marker locus of the human androgen receptor gene (HUMARA) in the presence of alpha32P with and without predigestion with a methylation-sensitive restriction enzyme (HhaI). Products were resolved by denaturing gel electrophoresis and autoradiographed. In group S, selected tumor areas were used for the assay. Each patient's normal brain tissue was used for control. The band intensity of alleles were measured by densitometric scanning. In group A, 13 of 15 cases were informative (heterozygous). The same pattern of nonrandom X chromosome inactivation was present in all areas of solid dense and moderate tumor infiltration in eight including all components of the gliosarcoma. Two of eight also showed focal loss of heterozygosity (LOH). One of 13 presented global LOH. Two of 13 showed microsatellite instability, one of which in a patient with Turcot syndrome, the other in gliomatosis cerebri. Opposite skewing patterns were seen in distant areas of gliomatosis cerebri consistent with oligoclonal derivation. Clonality remained indeterminate in one glioblastoma and in the anaplastic oligoastrocytoma because of skewed lyonization in the normal control. In group S, 19 of 21 cases were informative. Fifteen of 19 were monoclonal (four low-grade astrocytomas, one anaplastic astrocytoma, one gemistocytic astrocytoma, two oligodendrogliomas, one oligoastrocytoma, six glioblastomas). Four of 19 were indeterminate. We conclude that (1) Low-grade and malignant gliomas are usually monoclonal tumors, and extensively infiltrating tumors must result from migration of tumor cells (2) Gliomatosis cerebri may initiate as an oligoclonal process or result from collision gliomas (3) Biphasic gliomas likely arise from a single precursor cell. (4) LOH at the HUMARA locus is probably related to partial or complete deletion of an X-chromosome, which occurs in malignant gliomas during clonal evolution.

Adolescent↗

The role of trisomy 8 in the pathogenesis of chronic eosinophilic leukemia.

A case of chronic eosinophilic leukemia (CEL) manifesting as spinal cord compression by an extradural eosinophilic chloroma in a 32-year-old Chinese man was presented, who subsequently developed extramedullary transformation at the skin and then peritoneal cavity. Cytogenetic study of bone marrow cells at diagnosis showed a clonal karyotypic abnormality of trisomy 8 (+8), which on fluorescence in situ hybridization (FISH) was shown to be present in a clone of abnormal eosinophils, hence showing the neoplastic nature of the eosinophilic proliferation. There was another population of abnormal eosinophils that did not show +8. At blastic transformation, all blast cells in ascitic fluid were shown by FISH to harbor +8. These findings suggest that +8 in this case may have arisen from clonal evolution and is not the primary genetic event in leukemogenesis, but +8 most probably imparts a further survival advantage to the clone responsible for subsequent blastic transformation.

Adult↗

Acute myelogenous leukaemia with c-myc amplification and double minute chromosomes.

Cytogenetic analysis of bone-marrow cells from a woman with preleukaemia showed numerous mitoses with trisomy 4 and double minute chromosomes. These abnormalities were later seen in blood cells during subsequent acute myeloid leukaemia (AML). Complete remission was achieved with three courses of doxorubicin, cytosine arabinoside, and prednisone. A further clonal abnormality, trisomy 6, was seen in leukaemic cells after the first relapse. Analyses of total DNA from the peripheral-blood cells during relapse showed that the c-myc oncogene was amplified about 30-fold in the leukaemic cells. The N-myc, c-mos, and c-myb oncogenes showed only single-copy signals. On average about two copies of c-myc resided on each dmin chromosome. The finding of amplification of a cellular oncogene (c-myc) in fresh AML cells containing double minute chromosomes suggests that clonal evolution of some leukaemia cell populations may involve selection for increased dosage of oncogenes.

Chromosome Aberrations↗

ABL-kinase domain point mutation as a cause of imatinib (STI571) resistance in CML patient who progress to myeloid blast crisis.

Imatinib mesylate (STI571) is a major therapeutic advance for the management of chronic myeloid leukaemia (CML), however, a proportion of patients are refractory to it, particularly those in more advanced phases of CML. Different mechanisms of resistance to imatinib are suggested, including point mutations within ABL-kinase domains. A point mutation leading to substitution at the ATP binding site of ABL-kinase and insensitivity to imatinib was detected in our patient treated with imatinib, who progressed to blast crisis. Additionally, clonal evolution could lead to BCR-ABL-independent proliferation. Early detection of ABL-kinase mutation could predict the progression of CML treated with imatinib.

Adenosine Triphosphate↗

Comparative multi-color flow cytometric analysis of cell surface antigens in bone marrow hematopoietic progenitors between refractory anemia and aplastic anemia.

Refractory anemia (RA) in myelodysplastic syndrome (MDS) without prominent dysplasia closely resemble the mild type of aplastic anemia (AA) in their hematological features. This sometimes makes it difficult to distinguish clearly between the two diseases. Using the multi-color flow cytometric technique, we compared cell surface antigen expression patterns on bone marrow hematopoietic progenitor cells which were isolated as a CD34 positive- CD45 dull positive with low side scatter intensity (CD34(+)CD45(dull+)SSC(low)) population in flow cytogram between RA (n=12) and AA (n=11). The antigens analyzed in CD34(+)CD45(dull+)SSC(low) mononuclear cells were: CD38 and CD71 for cell growth-related antigens, CD 33 and CD13 for myeloid and monocytoid lineage-associated antigens, CD7 and CD19 for lymphoid lineage, and CD14 for a monocytic lineage specific antigen. The percentages of CD34(+)CD45(dull+)SSC(low) cells in bone marrow non-erythroid mononuclear cells, and the expression frequencies of CD38, CD71, CD33 and CD13 antigens in CD34(+)CD45(dull+)SSC(low) progenitors were all significantly decreased in AA compared to normal bone marrows (n=7) (P<0.005). In contrast, in RA bone marrows the percentages of CD34(+)CD45(dull+)SSC(low) cells showed wide distribution and the cell surface antigen expression patterns varied among each case: some cases showed low frequencies of CD38 and CD71 expression as well as AA, whereas the others showed high expression frequency of specific antigen(s) which may reflect the clonal expansion of an abnormal clone in bone marrow. An MDS patient who had progressed from RA to RAEB showed further projecting pattern of expression of CD38 and CD33 in CD34(+)CD45(dull+)SSC(low) population in accordance with the disease progression. These data suggest that analysis of cell surface antigen expression patterns of CD34(+)CD45(dull+)SSC(low) progenitor cells by multi-color flow cytometry appears to be a useful method for qualitative and quantitative assessment of marrow progenitor states in AA and RA, therefore this method could be helpful for early detection of clonal evolution in MDS.

ADP-ribosyl Cyclase↗

Somatic DNA alterations in endometriosis: high frequency of chromosome 17 and p53 loss in late-stage endometriosis.

PROBLEM: Genetic predisposition to endometriosis is well established, but the gene(s) involved largely remain unknown. Although endometriosis is considered a benign disease, it displays several features similar to malignancy: altered morphology, disregulated growth, invasion. We hypothesize endometriosis arises as result of somatic DNA alterations occurring in a multi-step process, analogous to origin of neoplasia. Since chromosome 17 and TP53 tumor suppressor gene (TSG) alterations occur frequently in premalignant and malignant tissues, including endometrial and ovarian epithelial carcinomas, we sought to determine if similar somatic changes occur in late stage endometriosis. METHOD OF STUDY: To determine the frequencies of monosomy for chromosome 17, as well as for perturbations of p53 and other loci on 17, two different approaches were used. Fluorescent in situ hybridization (FISH) analysis was used to detect monosomy for the 17 centromere and for the p53 locus. For FISH, archival tissue (n=6) and fresh endometriotic touch preparations were prepared from women (n=8) undergoing extirpation of advanced stage endometriosis. Direct-labeled probes specific for p53 (17p13.1) and for the chromosome 17 alpha-satellite centromere region (1711.1-q11.1) were used to compare single glandular and stromal cells from endometriosis and normal tissue. DNA analysis of polymorphic DNA loci were used to detect loss of heterozygosity (LoH) for other loci on 17. We assessed matched endometriotic and normal DNA (peripheral blood) from women with severe/late stage disease (n=15), studying these dinucleotide markers: HGH (located on 17q22-24), D17S250 (17q11.2-q12) and CHRNB1 (17p13.1). RESULTS: Loss of the chromosome 17 centromere (monosomy) was shown by FISH in some cells from all 14 endometriosis specimens, although in no case did every cell show monosomy 17. In 12 of 14 specimens, significant proportions of cells not only were monosomic for the chromosome 17-centromere (8 to 42% of cells) but also showed loss of p53 locus. In the two remaining cases, p53 loss alone was observed in 8 and 14%. LoH for other alleles on chromosome 17 was observed less often, namely only 3 of 15 specimens for HGH, 1 of 15 for D17S250, and 0 of 15 for CHRNB1. CONCLUSIONS: Our study indicates that perturbations of chromosome 17 in general and the p53 locus in particular occur frequently in severe/late stage endometriosis. That not all cells show loss of whole chromosome 17 or the p53 locus suggests somatic mutation, perhaps occurring late in the pathogenesis of endometriosis. Clonal evolution of endometriosis must depend not only on somatic mutations for p53 but also on other oncogenes or TSG. Alternatively, the clone could begin with a germline or somatic mutation involving a nonneoplastic process, followed by one or more somatic mutations involving an oncogene or TSG like p53. Additional candidate genes clearly must be evaluated in order to determine the precise role chromosome 17 and p53 alterations play in endometriosis; however, additional genes seem unlikely to involve region connoted by HGH, D17S250 or CHRNB1.

Chromosomes, Human, Pair 17↗

Acute myeloid leukemia associated with hemophagocytic syndrome and t(4;7)(q21;q36).

Hemophagocytic syndrome (HS) is a histiocytic reactive process often associated with infections and/or malignancies. Clonal karyotypic abnormalities have been the hallmark of several hematological malignancies and have been shown to be of clinical significance in terms of both diagnosis and prognosis. While there are limited reports of both clonal and nonclonal abnormalities in HS, their clinical significance has not been established. Detection of such clonal abnormalities, as seen in some cases of HS, may indicate the presence of an occult malignant process, even when there is no microscopic evidence of a hematological malignancy. We report a case of HS in a child with clonal t(4;7)(q21;q36) which later progressed to acute myeloid leukemia (AML) with further clonal evolution. Our case strengthens the argument that cytogenetic studies in HS may be important in identifying the underlying occult malignant process.

Acute Disease↗

Comparison of the malignant phenotype and genotype of the human androgen-independent cell line DU 145 and a subline derived from metastasis after orthotopic implantation in nude mice.

To investigate the potential genetic changes underlying the progression of human hormone-resistant prostate cancer, we related chromosomal alterations of the DU 145 cell line and a subline isolated form a metastasis in an orthotopic model to tumorigenicity, metastasis and chemoresistance. In 15 mice 1 x 10(5) DU 145 cells were injected into the dorsal prostate. From a resulting paraaortic lymphnode metastasis, we isolated a subline (DU 145 MN1), which was injected into 15 nude mice. The sulforhodamine B (SRB) assay was used to analyze cell doubling time and the IC(50) of cisplatin and 5-fluorouracil for both cell lines. Cytogenetic characterization was performed with conventional karyotype analysis and fluorescence in situ hybridization (FISH). After orthotopic implantation of DU 145 cells tumorigenicity was 100% whereas only 2 mice revealed lymphnode metastases. In contrast, the take rate after implantation of DU 145 MN1 was 100%, with lymphnode metastases in 7 mice. The SRB assay revealed a 8-fold increased IC(50) for cisplatin and a 2.5-fold increase for 5-FU in DU 145 MN1 as compared to DU 145 cells. There was gain of a chromosome 8 and only two copies of chromosome 17 in the DU 145 MN1 cells as compared to the parental cell line. The emergence of an i(9)(q10) in addition to two normal chromosome 9 homologues in the DU 145 MN1 cell line was confirmed by FISH using a chromosome 9-specific painting probe. In summary, clonal evolution of the chromosomal changes following repeated orthotopic implantation, may assist in locating the genes involved in the progression and chemoresistance of human hormone-resistant prostate cancer.

Androgens↗

Deletion of 16q11 is a recurrent cytogenetic aberration in acute myeloblastic leukemia during disease progression.

Abnormalities of chromosome 16 other than inv(16)(p13q22), t(16;16)(p13;q22), and del(16)(q22) have not been fully characterized in acute myeloblastic leukemia (AML) and myelodysplastic syndrome (MDS). We report here the first case of AML with del(16)(q11) as a sole abnormality. A 53-year-old woman was initially diagnosed as MDS, refractory anemia with excess of blasts in transformation with normal karyotype. After sixteen months, the disease progressed to overt AML-M1. Myeloblasts were positive for CD13, CD33, and CD34, but negative for HLA-DR. Chromosome analyses of the bone marrow cells showed 46,XX,del(16)(q11) in all metaphase spreads. Multicolor spectral karyotyping also confirmed that del(16)(q11) was not derived from a cryptic translocation, but a simple deletion. Our results, together with three previously reported cases, suggest that del(16)(q11) may be one of the recurrent aberrations in AML and that it could be associated with clonal evolution or disease progression.

Adolescent↗