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Clonality analysis of pediatric multiple tumors: two case reports and laboratory investigation.

We examined the possibility of using microsatellite and mitochondrial DNA polymorphisms as markers to detect the clonal origin of tumor cells found in the same patient. We considered two children with complex tumor diseases: one with supratentorial primitive neuroectodermal tumors (PNET) and a hepatic rhabdoid tumor and another with brain and abdominal rhabdoid tumors. In the first patient we found an mtDNA cytosine insertion both in the normal tissue and in the primary tumor, whereas in the hepatic tumor we detected an insertion of 2 cytosine. In the second child, who had a constitutional mutation of hSNF5/INI-1, we identified the same mtDNA pattern both in normal tissue and in the abdominal tumor but not in the brain tumor, which presented three different mtDNA polymorphisms. Thus, we demonstrated the same clonal origin for tumors in the first patient and different clonal origins of the tumors in the second patient. At times it is very difficult to discriminate two neoplastic lesions or metastatic diseases by using only histopathologic techniques. Molecular examination of clonality is a useful tool to obtain information about the origin of synchronous and/or metachronous tumors found in the same patient.

Adult↗

Immunogenic variants obtained by mutagenesis of mouse mastocytoma P815. III. Clonal analysis of the syngeneic cytolytic T lymphocyte response.

The cytolytic T lymphocyte (CTL) response of syngeneic mice to antigenic variants obtained by mutagenesis of mastocytoma P815 was analyzed at the clonal level. Estimates of the frequency of CTL precursor cells in spleens from mice immunized with P815 variants ranged from 10(-4) to 2 X 10(-3). This frequency could be increased approximately 100 times by stimulating immune spleen cells in mass culture for 6-8 days with the immunizing variant. Specificity analysis of a large number of individual CTL clones demonstrated the existence of two distinct populations of CTL. Some CTL clones lysed exclusively the immunizing variant, while others lysed equally well all P815 targets, but not syngeneic tumor L1210. These results provide direct evidence for the existence of new, individual specificities on P815 variants in addition to a common antigen already present on the original P815 cells. This confirms that a variety of new antigens can be induced by mutagenesis on the same background cell. Stable, highly active CTL clones specific for either individual variant antigens or common P815 antigens could be maintained in long-term culture.

Animals↗

Clonal analysis of untreated non-Hodgkin's lymphoma utilizing immunoglobulin gene rearrangement and immunophenotype.

We have prospectively examined 66 consecutive initial diagnostic lymph node biopsies from unselected patients suspected of having malignant lymphoma for clonal immunophenotypic and immunogenotypic markers. By morphological and cell surface phenotypic criteria 52 had non-Hodgkin's lymphoma derived from the B-cell lineage and in these we compared surface immunoglobulin criteria for clonality with immunoglobulin gene rearrangement as detected by JH, C kappa, and C lambda gene probes. We found that the addition of BglII and HindIII double digests to the standard BamHI and EcoRI restriction enzymes made it possible to detect rearrangement in the vast majority of lymphomas and that rearrangement of both JH alleles is the rule. A rearranged heavy and/or light chain gene was detected in 47 of 52 (91%) tumors and the JH probe alone detected rearrangements in 87% of tumors when multiple restriction enzymes were used. In contrast, surface immunoglobulin, the standard clonal marker for monoclonal B-cell malignancy, was either undetectable or did not exhibit light chain restriction in 29 of 52 tumors as detected by flow cytometric analysis. Further, in 24 of these 29 tumor DNAs we could detect an Ig gene rearrangement. In follicular (nodular) lymphoma which often gives ambiguous immunophenotypic results by cell suspension techniques, monoclonal gene rearrangements were detected in 16 of 18 tumor DNAs. Monoclonal surface immunoglobulin was detected in only 8 of 18 of this subset of cases. The 52 tumors were also analyzed for potential oligoclonality. We found that the use of BglII, a restriction enzyme that closely spanned the JH region, increased the sensitivity of detecting rearrangements and facilitated the identification of isotype switch variants. In only a single (1 of 52) tumor DNA were more than two rearranged bands seen with JH, C kappa, and C lambda probes, suggesting a multiclonal origin. Additional cases thought to potentially represent oligoclonality by immunophenotypic criteria proved to be isotype switch variants. We conclude that Ig gene rearrangement is an extremely sensitive method for defining monoclonality in lymphoma cell populations, particularly if multiple restriction enzymes are used, and that the vast majority of the clonal diversity seen in initial diagnostic biopsies is the result of isotypic switch within a given clone rather than true oligoclonality.

B-Lymphocytes↗

Clonality analysis by T-cell receptor gamma PCR and high-resolution electrophoresis in the diagnosis of cutaneous T-cell lymphoma (CTCL).

During T-cell maturation, T-cell receptor (TCR) gene segments rearrange, resulting in a new, unique DNA configuration. The recombined TCR gene loci display a high degree of nucleotide sequence variability. Molecular biological clonality assays focus on this cell-specific DNA pattern. The finding of an identical TCR rearrangement in a large number of T lymphocytes signals a malignant proliferation, although clonality is not always equivalent to malignancy. Thus, detection of clonal TCR gamma rearrangements by polymerase chain reaction (PCR), followed by high-resolution electrophoresis is a valuable tool in the diagnosis of cutaneous and other T-cell lymphomas. For the clonality assay described here, all rearrangements of T cells present in a given sample are amplified by a set of only three TCR gamma-PCRs. The products are investigated by either heteroduplex temperature gradient gel electrophoresis (HD-TGGE) or fluorescent fragment analysis (FFA) on a capillary DNA sequencer (or by both methods), for clonality. Both electrophoresis techniques show highly reproducible results and are comparatively easy to conduct, however, specific instruments are required. Concerning lower detection thresholds, the methods need a minimum of about 1% of clonal T-cells in mixtures with polyclonal T-cells for revealing clonality.

Clone Cells↗

Clonal analysis of the avian neural crest: migration and maturation of mixed neural crest clones injected into host chicken embryos.

Quail neural crest cells were grown in vitro at clonal density for 7 to 10 days. Mixed neural crest colonies and clones (containing both pigmented and unpigmented cells) were implanted into the trunk region of 2 1/2-day-old host chicken embryos by a previously described injection technique (Bronner and Cohen '79). Here we describe the migratory behavior and subsequent phenotypic expression of the injected cells. Unpigmented cells and pigmented cells both migrated along the ventral neural crest pathway; there were, however, some differences in migratory behavior between the two cell types. After 3 days in vivo, unpigmented quail neural crest cells contributed to the sympathetic ganglion, adrenal medulla, and/or aortic plexus in the host. Many of the unpigmented cells became catecholamine-containing neuroblasts. Unpigmented cells were never observed in the gonads or the gut, but localized only in regions normally populated by trunk neural crest precursors to neurons and supportive cells. Melanocytes derived from the same precursor, however, were often found in the gonads or gut, in addition to normal neural crest locations in the trunk. These results demonstrate that quail neural crest cells grown in tissue culture for 7 days or more retain the ability to migrate and contribute to normal neural crest structures when placed in the embryonic environment. Under the conditions described, a single neural crest cell gave rise to daughter cells expressing the melanotic phenotype (detected in tissue culture) and adrenergic phenotypes (detected after injection in vivo). This demonstrates that at least some single cells of the premigratory crest in the trunk region are pluripotent.

Adrenergic Fibers↗

Precast commercial polyacrylamide gels for separation of DNA amplificates by temperature gradient gel electrophoresis: application to clonality analysis of lymphomas.

The third complementary determining region (CDR-III) of the rearranged immunoglobulin heavy chain (IgH) genes represents a unique marker for a lymphocyte and its clonal descendants and can be amplified by the polymerase chain reaction (PCR) technique. This approach has markedly enhanced the sensitivity for detection of clonal lymphocyte populations in patients with malignant B-lymphoid neoplasias. To monitor minimal residual disease (MRD) in tissue specimens during or after antineoplastic treatment, the problem of detecting the presence of a few clonal (malignant) lymphocytes in coexistence with a majority of polyclonal lymphocytes has to be addressed. Semi-nested PCR amplification of CDR-III rearrangements from specimen infiltrated by tumor cells generates clonal signals in front of a polyclonal background, and therefore high resolution electrophoretic techniques for separation of DNA fragments are required. Temperature gradient gel electrophoresis (TGGE) resolving DNA homo- and heteroduplexes according to their thermal stability has been successfully applied for this purpose using special electrophoretic equipment. We describe an adjustment to this technique by using a commercially available precast 0.5 mm thick polyacrylamide gel and by changing a standard horizontal electrophoretic device into a TGGE device. By this means we screened patients with B-cell lymphoma undergoing high-dosage radiochemotherapy followed by autologous transplantation for continuous presence of clonal (tumor-specific) CDR-III rearrangements. Specimens from blood and bone marrow were collected on diagnosis as well as before and after autologous transplantation. In addition, the autograft (bone marrow or peripheral blood hematopoietic stem cells) was analyzed. Tumor cells were easily detected in the transplants and in specimens collected during follow-up examinations. The clinical value of these findings remains unclear as yet because the number of cases investigated was small and the follow-up time is still too short. However, we conclude that the technique of combining the sensitivity of PCR with the specificity of high resolution TGGE is easy to use, making it possible to handle, in a clinical routine, a great number of samples within a short time in order to monitor MRD in patients with B-cell neoplasias.

Cell Transplantation↗

Clonal analysis of cancer cells that survived anticancer drug treatment.

We hypothesized that postchemotherapeutic recurrent cancer cells consist of sensitive cells and resistant cells. To examine this hypothesis, the clonality of the postchemotherapeutic surviving cancer cells was characterized. The postchemotherapeutic surviving cancer cells was established using a human cervical carcinoma cell line, ME180, in which cells were treated with either SN38, VP16, or THP for more than 8 weeks. The surviving cells were subcloned by limiting dilutions yielding the following cloning efficiencies: 18% for SN38, 26% for VP16, and 57% for THP. Characterization of the established subclones proved that the postchemotherapeutic recurrent cancer cells consisted of both sensitive cancer cells and resistant cancer cells. This result supports the hypothesis and hence points toward improvement of chemotherapeutic effect through an understanding of the dual types of surviving cells.

Antibiotics, Antineoplastic↗

Clonal analysis of the response of human promyelocytic leukemia (HL-60) cells to photosensitization induced by a pyrene-containing fatty acid.

Incubation of cells with 12-(1-pyrene) dodecanoic acid (P12), a fatty acid to which a pyrene nucleus has been covalently linked, followed by irradiation with long-wave ultra-violet light (LUV) at 366 nm, resulted in cytotoxicity. Syntheses of macromolecules was significantly decreased after 30 min, while an accumulation of trypan-blue positive, non-viable cells was observed several hours following irradiation. Cloning of the irradiated cells in semi-solid medium showed an exponential dose-response survival curve. Above a threshold dose colony number decreased, although the rate of clonal development and the final size were not affected. The sensitivity of detecting rare surviving cells could be increased by incubating the irradiated cells for several hours in liquid culture followed by concentrating intact cells by gradient sedimentation. Using this procedure, one surviving clonogenic cell could be detected in 10(7) irradiated cells/dish. More than 10 min of irradiation at 773 microV/cm was required to photosensitize the population below detection by this method. The possibility was considered that colonies derived from cells surviving sub-maximal LUV doses represent clones that are resistant to photosensitization, a phenomenon attributed to either inability to take up or metabolize P12, or resistance to the radiation-induced toxicity. Analysis of P12 uptake in the surviving clonal populations showed no significant difference as compared to the parental population. The results suggest that surviving cells reflect a phenotypic heterogeneity caused by variation in the physiological state such as the respective position in the cell cycle and are not genetically resistant mutants.

Cell Membrane↗

Clonal analysis of chimaeric mouse ovaries using DNA in situ hybridization.

Analysis of chimaeric mouse ovaries using DNA in situ hybridization was undertaken to (i) investigate the morphogenesis of follicular cell clonal expansion, (ii) evaluate whether the different cell populations within the ovary are derived from the same or unrelated progenitor cells and (iii) estimate the number of progenitor cells giving rise to the different types of ovarian cell. Chimaeras were produced by aggregation of eight-cell morulae from normal mice and those transgenic for the beta-globin gene. Chimaeric blastocysts were transferred to pseudopregnant hosts and the ovaries of resultant adult offspring were prepared for in situ hybridization using a digoxigenin-labelled cDNA probe to the beta-globin gene. Results showed that follicles are constructed by the non-random, radial proliferation of granulosa cell clones, which form long, thin, unbranched columns across the follicle wall. Qualitative and quantitative studies revealed that both peripheral and central granulosa cells are derived from the same progenitor cells. Phenotypic differences may therefore be due to positional cues within the follicle rather than being cell lineage dependent. It is suggested that granulosa cells and germinal epithelium may be partly derived from the same progenitor cells and that theca externa is probably derived from interstitial tissue. However, results from this study did not support the contention that theca interna and theca externa-interstitial tissue have the same origin, and it is suggested that the former cell type may exist in an undifferentiated state from early stages of follicle development. Furthermore, granulosa and germinal epithelium appear to be derived from different progenitor cells from either theca interna or theca externa-interstitial cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Clonal analysis of isolated single fundic and pyloric gland of stomach using X-linked polymorphism.

In order to understand the histogenesis of precancerous and cancerous lesions, we investigated the clonality of normal single fundic gland and single pyloric gland using X-chromosome inactivation. Sixty percent of single fundic glands were cell populations methylated at the same alleles of the X-chromosome (homotypic) and 40% consisted of mixed cells methylated at different alleles of the X-chromosome (heterotypic). Among 28 fundic glands in which the clonality of the upper parts and that of the lower parts were analyzed separately, 11 glands were heterotypic in either part and 4 glands were homotypic with different allelic methylation in the upper part and in the lower part. Ninety-six percent of the single pyloric glands were homotypic and 4% were heterotypic. The results show the differences in the development of the fundic glands and the pyloric glands.

Female↗

Clonal analysis of peripheral blood lymphocytes from three patients with advanced neuroblastoma receiving recombinant interleukin-2 and interferon alpha.

In this study we have investigated, at the population and the clonal levels, the immunophenotypes and the non-specific cytotoxic functions of peripheral blood lymphocytes from three stage IV neuroblastoma patients receiving treatment with recombinant interleukin-2 (IL-2) and interferon alpha (IFN alpha). Both IL-2 alone and the combination of IL-2 and IFN alpha caused an in vivo expansion of CD56+, CD3- NK cells most of which expressed the p75 molecule, i.e. the beta chain of the IL-2 receptor. Peripheral blood mononuclear cells (PBMC), drawn after treatment, displayed an increased NK activity, but no lymphokine-activated killer (LAK) activity. However, the subsequent in vitro culture of PBMC with high-dose IL-2 induced the generation of a potent LAK activity, which was mediated by an expanded population of CD3+, CD8+ T cells. Finally lymphocytes that had been isolated after cytokine therapy were cloned, in the presence of low-dose phytohemagglutin, immediately or following culture with IL-2. Clones derived from LAK cells expanded in vitro had predominantly a CD3+, CD8+ immunophenotype, whereas those raised from freshly separated lymphocytes were either CD3+, CD4+ or CD3+, CD8+ in equal proportions. Most of the above clones were poorly or not at all cytolytic against NK-sensitive or NK-resistant targets. In contrast, the few NK clones obtained (CD3-, CD56+) lysed all targets with high efficiency.

Antigens, CD↗

Evidence for pluripotent stem cell origin of idiopathic myelofibrosis: clonal analysis of a case characterized by a N-ras gene mutation.

Three cases of idiopathic myelofibrosis were screened for the presence of mutations at codon 12, 13, or 61 of the ras gene family by a rapid method based on polymerase chain reaction and hybridization to mutation-specific oligonucleotides. PB cells of one patient showed a point mutation at codon 12 of the N-ras oncogene. This molecular genetic hallmark was used to investigate the clonal relationship of different cell lineages by cell separation analysis. Presence of the N-ras 12 mutation in granulocytes, monocytes, B cells, and T lymphocytes, as well as erythroblasts, indicates that idiopathic myelofibrosis originates from a pluripotent stem cell, at least in this patient.

Clone Cells↗

Clonal analysis of the cell lineages in the male flower of maize.

The cell lineages in the male flower of maize were characterized using X-rays and transposable elements to produce clonal sectors differing in anthocyanin pigmentation. Less than 50% of the somatic tassel mutations (caused by reversion of unstable color mutations) that were visible on the anther wall were sexually transmitted by the male gametes, unless the sectors were larger than half the tassel circumference. This result is explained by showing that: (a) both the outer (LI) and inner (LII) lineages of the shoot apical meristem form a cell layer in the bilayered anther wall, and that anther pigmentation can be derived from either cell layer; and that (b) the male germ cells are derived almost exclusively from the LII. Therefore, while reversion events in either the LI or LII are visible on the anther, only the LII events are heritable. Reversion events that occur prior to the organization of the shoot apical meristem however, produce large (usually more than one-half tassel) sectors that include both the outer and inner lineages. In contrast to the high level of cell layer invasion previously reported during leaf development, during anther development less than 10(-3) cells in the LI invade the LII to form male gametes. The strong correlation between cell lineage and cell fate in the maize anther has implications for studies on plant evolution and the genetic improvement of cereals by DNA transformation.

Anthocyanins↗

Detailed clonality analysis of relapsing precursor B acute lymphoblastic leukemia: implications for minimal residual disease detection.

Genetic instability has important implications for detection of minimal residual disease (MRD) when the target is a clonal genetic marker revealed at diagnosis. A successful MRD detection approach requires a stable marker and for lymphoid leukemias clonal rearrangements of immunoglobulin (Ig) and T cell receptor (TCR) genes are commonly used. In the present study, Ig heavy chain (IgH) and TCR (gamma and delta) genes were studied in 18 consecutive, relapsing precursor-B ALL patients. At least one clonal rearrangement was found in all cases at presentation (IgH 94%, TCRgamma 39% and TCRdelta 28%). An altered rearrangement pattern between diagnosis and relapse was demonstrated in 14 patients (78%). At least one stable molecular target was found in 13 out of 18 cases (72%). Clonal differences between diagnostic and relapse samples were explained by: (1) loss of original rearrangements; (2) V(H) to DJ(H) joining; (3) V(H) gene replacement; (4) appearance of new rearrangements. In two cases with apparently new IgH gene rearrangements at relapse extended sequencing of the diagnostic samples revealed minor clonal rearrangements identical to the relapse clones. Interestingly, one patient displayed instability on both the IgH and TCR gene loci, whereas a stable Igkappa rearrangement was found at presentation and relapse. These data show that clonal diversity is common in precursor-B ALL and strongly suggest that MRD detection should include multiple gene targets to minimize false-negative samples. Even so, five of our 18 relapse cases (28%) lacked stable clonal markers and should have been unsuitable for MRD detection.

Adult↗

Changes in cellular virus load and zidovudine resistance of syncytium-inducing and non-syncytium-inducing human immunodeficiency virus populations under zidovudine pressure: a clonal analysis.

Zidovudine treatment preferentially benefits persons with only non-syncytium-inducing (NSI) human immunodeficiency virus type 1 (HIV-1) variants. To understand this differential efficacy, changes in cellular virus load, clonal composition of HIV-1 populations, and development of resistance-conferring reverse transcriptase mutations were studied in 17 persons initiating zidovudine therapy. Zidovudine treatment resulted in larger and more sustained decreases in cellular virus load in persons with NSI variants only compared with persons also carrying syncytium-inducing (SI) variants. Although the former group had a delayed emergence of resistance mutations, differences in initial responses between the 2 groups were independent of the emergence of resistance mutations. Changes in virus load in subjects also carrying SI variants were due mainly to loss of coexisting NSI virus. Resistance mutations emerged at similar rates in both coexisting variants. Data suggest that mechanisms other than drug resistance are necessary to completely explain the phenotype-dependent benefit of zidovudine.

Acquired Immunodeficiency Syndrome↗

Clonal analysis of Hodgkin's disease shows absence of TCR/Ig gene rearrangement, compared with T-cell-rich B-cell lymphoma and incipient adult T-cell leukemia/lymphoma.

To better characterize the clonality and pathogenesis of Hodgkin's disease (HD), we used polymerase chain reaction (PCR) and Southern blot to analyze the rearrangement of immunoglobulin (Ig) and T-cell receptor (TCR) genes, the bcl-2 oncogene, and the Epstein-Barr virus (EBV) genotype. In situ hybridization studies of EBV were also done. Twenty-six cases of HD were compared with 15 cases of non-specific lymphadenitis, 7 with incipient adult T-cell leukemia/lymphoma (ATLL), and 4 T-cell rich B-cell lymphomas (TRBL), all of which histologically resembled HD. EBV genes were detected in 20 of 26 HD patients (77%) and in 7 of 15 patients with non-specific lymphadenitis (47%), 5 of 7 with incipient ATLL (71%), and 1 of 4 with TRBL (25%). In contrast to specimens of non-specific lymphadenitis, TRBL, and incipient ATLL, only one EBV genotype was evident in the specimens of HD. EBV latent membrane protein (LMP) was detected immunologically in 16 of 26 HD patients (62%), one of four TRBL (25%) and one of seven incipient ATLL (14%), but it was not evident in non-specific lymphadenitis. The LMP positive cases showed amplified EBV genomes. Only one of the 26 cases of HD had a bcl-2 gene rearrangement by PCR, but this was not seen in any other disease. The bcl-2 protein was detected immunologically in seven of the 26 HD patients (27%) and in one of the seven incipient ATLL cases (14%). EBV has been reported to upregulate bcl-2 expression, but in this study the presence of bcl-2 protein did not correlate with the presence of the t(14;18) translocation or EBV-LMP. All TRBLs showed rearrangement of the immunoglobulin genes by PCR and/or Southern blot, and the giant cells were of B-cell type. All incipient ATLLs displayed rearrangement of the TCR genes, and the giant cells were of T-cell origin. In seven of 26 HD cases, the giant cells were weakly stained with T-cell antibodies, in another seven positive with B-cell antibodies and in 18 instances polyclonally positive for both kappa and lambda. However, PCR and Southern blot displayed only two cases of TCR gene rearrangement, while two others had very weak rearrangements of immunoglobulin gene positive only by PCR. Thus the T and B-cell genotype did not correlate with the T and B-cell phenotype recorded in these cases. The absence of Ig and TCR gene rearrangements seems to be common in HD, compared with in TRBL and incipient ATLL.

Base Sequence↗

Clonal analysis of T lymphocytes infiltrating the thyroid gland in Hashimoto's thyroiditis.

T cells isolated from thyroid tissue and peripheral blood of 2 patients with Hashimoto's thyroiditis were studied by a high cloning efficiency microculture technique. Clonal efficiencies of 37 and 24% were obtained from thyroid-derived T cell cultures, while 40 and 90% efficiencies resulted from peripheral-blood-derived cultures. A prevalence of T4-/T8+ T cell clones were found in thyroid infiltrates. The functional analysis of the clones demonstrated significantly higher proportions of clones with cytolytic activity in a lectin-dependent assay in thyroid-derived microcultures, as compared to peripheral blood-derived ones. The proportion of clones displaying natural-killer-like activity was increased in 1 patient only. Cytolytic activity was displayed not only by all T4-/T8+, but also by several T4+/T8- intrathyroid clones. Remarkable proportions of cytolytic clones were also able to release interleukin-2 upon phytohemagglutinin stimulation. Finally, the proportion of T cell clones able to release gamma-interferon following mitogen stimulation was significantly higher in thyroid- vs. peripheral-blood-derived microcultures. These results provide further data about the possible pathogenetical role of both regulatory and effector T lymphocytes in human autoimmune thyroiditis.

Adult↗

Clonal analysis of urothelial carcinomas in C3H/HeN<-->BALB/c chimeric mice treated with N-butyl-N-(4-hydroxybutyl)nitrosamine.

The histological background for multifocal and metachronous development of urothelial carcinomas remains equivocal, although accumulated genetic evidence suggests monoclonal origin of multiple urothelial carcinomas. Clonal development of various preneoplastic and neoplastic urothelial lesions of C3H<-->BALB/c chimeric mice induced by N-butyl-N-(4-hydroxybutyl)nitrosamine (BBN) was immunohistochemically investigated using a C3H strain-specific antibody. All tumor masses induced in the mice treated with 0.05% BBN for 20 weeks were composed of neoplastic cells of a single parental type, which is indicative of monoclonal lesions. Three of 10 animals harbored two or more separate carcinomas of different clonal type, which is indicative of multicentric development applicable in this model. Using DNAs derived from urothelial carcinomas and tumor-adjacent urothelium of chimeric mice, polymerase chain reaction-single strand conformation polymorphism (PCR-SSCP) analysis and direct sequencing were performed for p53 gene exons 5-7. p53 mutations were identified in four of 11 (36%) dysplasias and non-invasive carcinomas (carcinoma in situ and pTa tumor) and 13 of 22 (59%) invasive carcinomas. Only in a single case were identical p53 mutations found in separate urinary bladder carcinomas. In contrast to the random distribution of urothelial proliferating units in chimeric mice without chemical supplement, invasive carcinomas in BBN-treated mice were accompanied by widely-distributed preneoplastic and neoplastic lesions of the same clonality, which occasionally had frequent foci of microinvasion. This is indicative of lateral clonal expansion of the clones, which precedes the bulk of invasive carcinomas. Thus, two aspects of 'field change' of the urothelium became evident in this model: either independent transformation events or lateral clonal expansion might, respectively, result in multicentric and monoclonal carcinoma development in the urinary tract.

Animals↗