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Molecular genetics of APUDomas.

It is tempting to speculate that genetic studies of the human APUDomas, particularly those of a hereditary nature, may ultimately provide valuable clues to the molecular basis of malignant transformation in cells of all types, uncover the mechanisms responsible for tumor progression, and perhaps decipher the signals important in the differentiation of normal neural crest-derived tissue. Generally, several strategies have been used in the genetic analysis of these tumors with success. These include (1) cytogenetic examination of recurring chromosomal abnormalities in hopes of pinpointing critical neighboring growth regulatory sequences important in tumor evolution, (2) identification of dominant acting oncogenes in tumor cells, (3) search for recessive inactivated suppressor genes that may regulate cell growth by analyzing tumors for loss of heterozygosity (LOH), and (4) genetic linkage studies of kindreds affected with familial APUDomas to identify and subsequently characterize the predisposition gene using a positional or functional cloning approach. The results of these strategies as they have been employed in the investigation of cutaneous malignant melanoma (CMM), the dysplastic nevus syndrome (DNS), and the multiple endocrine neoplasia (MEN) syndromes are summarized.

Apudoma↗

Chiasmal gliomas: results of irradiation management in 57 patients and review of literature.

Fifty-seven patients with optic gliomas, treated by megavoltage radiotherapy between May 1970 and March 1986, are retrospectively analyzed. The mean follow-up was 7.5 years (2.5-16.5). At presentation, 46% were under 10 years old, 40% had neurofibromatosis, and 51% had neurological and/or endocrinological signs. Twenty-one tumors (37%) were confined to the optic chiasm, and 36 tumors (63%) extended to the hypothalamus, the posterior optic tract, or the adjacent brain. Two among the 16 biopsy-proven tumors were high grade gliomas. Delivered tumor doses were 40 to 60 Gy in 5 to 7 weeks. Forty-nine patients were alive (five with tumor evolution) and eight had died (five from the tumor, one from cerebrovascular complication, two from intercurrent disease). Overall actuarial survival was 83.5% at 5 and 10 years. Control of the disease in 53 evaluables patients was: complete response in 8 (15%), partial response in 25 (46%), and no progression in 12 (22%). Progressive disease was observed in three patients and signs evocative of recurrence in five others. Stabilization of visual impairment or improvement of vision was recorded in 93% of patients who were evaluable. A critical review of the literature is presented and complications discussed. Radiotherapy seems thus effective in chiasmal gliomas and must be delivered in cases of rapidly developing symptoms visual, neurological, or endocrine.

Adolescent↗

Two different types of concomitant resistance induced by murine tumors: morphological aspects and intrinsic mechanisms.

Concomitant resistance (CR) is the phenomenon according to which a tumor-bearing host inhibits the growth of a secondary implant of the same tumor at a distant site. Confirming and extending previous results of our laboratory, histological studies have revealed that two temporally separate peaks of CR can be detected throughout tumor evolution. The first peak induced by immunogenic small tumors, in euthymic but not in nude mice, is associated with extensive necrosis of the secondary tumor implant and a profuse infiltration of polymorphonuclear granulocytes and mononuclear cells resulting in its final destruction; these features correspond to a typical immunological rejection. The second peak of CR induced by both immunogenic and non-immunogenic large tumors, in euthymic as well as in nude mice, is characterized by a dormant tumor stage with scarce or null mononuclear infiltration, associated with a significant reduction of tumor mitotic index and of the number of PCNA+ cells along with an increase in apoptosis and an arrest in S phase. In previous reports we suggested that a 1000 D serum fraction from mice bearing large tumors could be responsible for the induction of this dormant tumor stage. In this study tumor cells incubated in vitro with that serum factor mimicked the inhibition and cellular alterations observed in vivo in the secondary tumor inhibited by the second peak of CR. Moreover, the passive transfer of this factor by the intra-peritoneal (i.p.) route induced an in vivo inhibition of an i.p. tumor reproducing the image characteristic of the second peak of CR. This represents a direct proof that this serum factor can restrain tumor growth in vivo and that it is, most probably, the effector of the second peak of CR.

Animals↗

Genetic and phenotypic heterogeneity of human malignancies: finding order in chaos.

The presence of cellular heterogeneity within human tumors has been recognized for many years. Current concepts regarding the clonal origin of human neoplasms, and recent advances in the study of successive genetic changes that occur during tumor evolution may now make it possible to understand in greater depth the biological and clinical implications of intra-tumor heterogeneity at both the phenotypic and genotypic levels. In order to explore these concepts further, and to better identify the potential contributions that flow and image cytometry can make to our understanding of tumor heterogeneity, a session of the 1994 ISAC Congress was dedicated to plenary presentations on human cancer cell heterogeneity. Here, we provide a brief overview of the genetic evolutionary progression of human cancers, some considerations of clinically important phenotypic and genotypic markers, and an outline that might serve as a basis for framing relevant issues that are ammenable to further study. All Nature is but Art, unknown to thee; All Chance, Direction, which thou canst not see; All Discord, Harmony not understood: All partial Evil, universal Good. (Alexander Pope, Essay on Man, end of Epistle 1).

Biological Evolution↗

[Biologic behavior of human chorionic gonadotropin hormone (HCGH) in transitional cell carcinomas of the bladder].

Transitional cell carcinoma of the bladder carries a high rate of local recurrence and 15%-30% of the cases progress to advanced stages of the disease. The multiple forms of the tumor make it difficult to find reliable diagnostic elements of tumor evolution and some authors have advocated the use of tumor markers for the diagnosis and follow-up of malignant bladder tumors. This study was conducted to determine the biological behaviour of the HCG beta subunit it transitional cell carcinoma of the bladder. One hundred patients were entered into the study; the control group comprised 30 healthy subjects and the patient group comprised 70 cases of transitional cell carcinoma of the bladder. The results showed the HCG beta subunit increased with the size and degree of tumor infiltration, although the data were not statistically significant. Similarly, analysis of the degree of tumor differentiation/non differentiation provided no statistically significant data.

Biomarkers, Tumor↗

Evolution of cooperation among tumor cells.

The evolution of cooperation has a well established theoretical framework based on game theory. This approach has made valuable contributions to a wide variety of disciplines, including political science, economics, and evolutionary biology. Existing cancer theory suggests that individual clones of cancer cells evolve independently from one another, acquiring all of the genetic traits or hallmarks necessary to form a malignant tumor. It is also now recognized that tumors are heterotypic, with cancer cells interacting with normal stromal cells within the tissue microenvironment, including endothelial, stromal, and nerve cells. This tumor cell-stromal cell interaction in itself is a form of commensalism, because it has been demonstrated that these nonmalignant cells support and even enable tumor growth. Here, we add to this theory by regarding tumor cells as game players whose interactions help to determine their Darwinian fitness. We marshal evidence that tumor cells overcome certain host defenses by means of diffusible products. Our original contribution is to raise the possibility that two nearby cells can protect each other from a set of host defenses that neither could survive alone. Cooperation can evolve as by-product mutualism among genetically diverse tumor cells. Our hypothesis supplements, but does not supplant, the traditional view of carcinogenesis in which one clonal population of cells develops all of the necessary genetic traits independently to form a tumor. Cooperation through the sharing of diffusible products raises new questions about tumorigenesis and has implications for understanding observed phenomena, designing new experiments, and developing new therapeutic approaches.

Biological Evolution↗

Growth and progression of head and neck cancer: a report of the Upper Aerodigestive Cancer Task Force Workshop.

Factors governing the initiation, growth, and progression of squamous cell carcinoma were the focus of a recent Upper Aerodigestive Cancer Task Force workshop sponsored by the National Cancer Institute. The goal of the daylong workshop was to identify critical research concepts in head and neck cancer biology. Discussed were the multistep processes potentially involved in tumor evolution, including the role of carcinogens, viral promotors, host and tumor karyotypes, microenvironment growth factors and growth factor receptors, as well as host/tumor components inherent to the metastatic process. Concepts developed from research in other neoplastic processes but potentially relevant to head and neck cancer were emphasized. The process of identifying critical research directions is the first step by the National Cancer Institute in program development designed to advance the treatment of head and neck cancer.

Carcinogens↗

Anaplastic thyroid cancer evolved from papillary carcinoma: demonstration of anaplastic transformation by means of the inter-simple sequence repeat polymerase chain reaction.

BACKGROUND: In thyroid tumors, the coexistence of well- and poorly differentiated tumor types has led to the hypothesis that poorly differentiated thyroid tumors develop from well-differentiated thyroid tumors. By evaluating the genomic instability of histologically distinct but coexisting tumor foci, this study aimed to develop an improved understanding of thyroid tumorigenesis and tumor evolution. DESIGN: Laser capture microdissection (LCM) was carried out on archival formalin-fixed, paraffin-embedded sections from a tumor containing foci of classic papillary thyroid cancer and anaplastic thyroid cancer. DNA was extracted from each microdissected tumor focus. In addition, cryopreserved bulk normal and neoplastic thyroid tissue underwent DNA extraction. All DNA samples were subsequently evaluated for genomic instability by means of inter-simple sequence repeat polymerase chain reaction. RESULTS: The LCM DNA from each archival paraffin-embedded tumor focus demonstrated unique patterns of banding as compared with the cryopreserved tumor and normal tissue DNA. Thus, intratumoral variability in genomic instability was observed. Comparison of inter-simple sequence repeat polymerase chain reaction patterns of LCM DNA from adjacent foci of papillary and anaplastic tumors showed conserved genome alterations. CONCLUSIONS: At the genome level, thyroid tumors may be highly heterogeneous. The intratumoral histologic heterogeneity observed in thyroid neoplasms reflects genetically heterogeneous underlying tumor cell populations that are demonstrated by the observed differences in their rates and extents of genomic instability. The conserved genomic alterations in the microdissected papillary and anaplastic foci suggest intratumoral evolution, with transformation of a preexisting papillary tumor to anaplastic carcinoma.

Aged↗

Genetic and cytogenetic analyses of breast cancer yield different perspectives of a complex disease.

Genomic instability in breast cancer results in low-level changes in DNA copy number, a significant but poorly understood mechanism underlying the genetic heterogeneity of this disorder. Two different approaches, loss of heterozygosity (LOH) and comparative genomic hybridization (CGH), have been used to probe the genetics of breast cancer evolution. LOH is a locus specific method that detects the variation in the parental origin of DNA, but is not quantitative. CGH provides a genome-wide accounting of the magnitude of DNA copy number changes, but not parental origin. Both methods have identified complex and heterogeneous patterns of DNA losses, duplications, and amplifications during breast cancer evolution. LOH and CGH technologies interrogate very distinct mechanisms driving breast tumor evolution, yet are seldom used in parallel to profile specimens. Thus, the relative significance of genetic versus numerical variations of DNA in breast cancer evolution remains undefined. This review will attempt to summarize some of the successes of these investigations, highlight some complex and confounding observations emerging from these studies, and discuss the potential of these studies to improve our understanding of breast cancer biology and treatment.

Breast Neoplasms↗

Loss of heterozygosity and protein expression of APC gene in renal cell carcinomas.

This study evaluated the potential contribution of the APC gene to malignant transformation in patients with renal cell carcinoma. We tested 36 human renal cell carcinoma samples and 18 adjacent normal kidney tissues for the expression of APC protein, both wild and truncated types, by western blot using antibodies that recognize either the carboxy or the amino epitope of the APC protein. The same tumor samples together with autologous peripheral blood were also analyzed at the DNA level. Using specific oligonucleotide primers for exons 11 and 15, gene instability was followed by polymerase chain reaction/loss of heterozygosity (LOH) (on the basis of restriction fragment length polymorphism). Molecular data were also compared to pathohistological diagnosis, TNM stage, and patient's age using multivariate statistical methods. All normal renal tissues revealed expression of the wild-type APC protein. Neither wild nor mutant type proteins were found in 36% (13/36) of tumor samples; the rest of tumor tissues expressed the wild-type protein (312 kDa). Mutated APC protein, with a molecular weight of 117 kDa, was found in only one tumor sample. From 36 tumor samples 16 (44.4%) were informative for RsaI exon 11 polymorphic site, while only half of these (8/16) demonstrated LOH. From 13 tumor samples that had no detectable protein product by western blot analysis eight were homozygous for the exon 11 polymorphism and were tested for another polymorphic site, MspI/exon 15. The overall proportion of LOH cases for both polymorphisms tested was 52.9% (9/17). Pathohistological diagnosis and molecular data showed no correlation. However, multivariate analysis determined a stage strong positive correlation of age and TNM with the presence of LOH and the absence of the wild-type APC protein. Out results suggest that the APC tumor suppressor gene plays a role in renal carcinogenesis. Alterations in this gene are responsible for tumor evolution and progression, but cannot be considered as a first event in tumor initiation.

Adenomatous Polyposis Coli Protein↗

Measurement and analysis of the chemotherapy-induced genetic instability in pediatric cancer patients.

Bleomycin sensitivity has been proven to be a useful biomarker for environmental carcinogenesis and tumor genetic instability. We have previously reported a significant increase in the chromosomal aberrations induced by chemotherapy regimens. This study aimed to test whether there is an inherent increased genetic instability in cancer patients at diagnosis, to determine the increase and time course of the chemotherapy-induced instability and to test whether bleomycin sensitivity can be used as a predictor of tumor evolution or relapse. The analysis included 99 pediatric cancer patients with four different tumor types (Ewing's sarcoma, osteosarcoma, lymphoma and CNS tumors) and 25 controls. Blood samples (n = 171) were obtained before and at the end of treatment, during clinical remission and at relapse and bleomycin tests on lymphocyte cultures were performed. We detected a significant increase (P = 0.004) in mutagen sensitivity in patients at the end of treatment compared with untreated patients, regardless of the tumor type. In both the longitudinal and cross-sectional analyses maximal and similar values of mutagen sensitivity were found in patients during treatment (1.84 +/- 0.82) and at relapse (1.78 +/- 0.52); minimum and similar values were found in controls (0.93 +/- 0.23), untreated patients (1.15 +/- 0.65) and in those who had fulfilled the chemotherapy protocols for at least 2 years before their sample was collected (1.09 +/- 0.53). From this preliminary data we can conclude that cytostatic drugs induce a transient increase in chromosomal instability in pediatric cancer patients that can be monitored by bleomycin-induced sensitivity tests and that the genetic instability indices should be further investigated as predictors of relapse.

Adolescent↗

Loss of heterozygosity at the TP53 gene: independent occurrence from genetic instability events in node-negative breast cancer.

TP53 abnormalities have been reported as an early event in the process of cellular transformation of human breast cancers, and involved in mammary-tumor evolution, from in situ to invasive disease. In this study, node-negative (N-) tumors were examined for TP53 allelic loss in relation to different genetic instability events, including allelic loss at chromosome 17p13.3 and c-H-ras-1 loci, as well as alteration of the c-myc and c-erbB-2/neu oncogenes. TP53 allelic loss was analyzed to determine whether such an abnormality was the more important, among other genetic events, in the N- tumors, whether it appeared independently of these genetic events, and whether accumulation of genetic events arises in this group of breast tumors. Clinicopathological parameters were also examined. Loss of heterozygosity (LOH) at the TP53 gene appears the most frequent alteration detected (26% vs. 13%, 8%, 9% and 3% for LOH at D17S30 and c-H-ras-1 loci, and amplification of c-myc and c-erbB-2/neu respectively). There was no association between LOH at the TP53 locus and other genetic events. Among clinicopathological parameters, significant associations were observed only with estrogen-receptor-negative tumors (p = 0.05). Our results demonstrate that LOH at TP53 arises more frequently in the N- breast cancer, thus supporting earlier findings suggesting that TP53 abnormality has a role early in the pathogenesis of breast lesions. Moreover, the data indicate that accumulation of many genetic events occurs at a low level in N- breast tumors, and that TP53 abnormality occurs independently of these genetic events.

Adult↗

The mechanism of malignant progression in extramammary Paget's disease (EMPD): hallmarks of EMPD.

The pathogenesis of cancer is characterized by the acceleration of tumor growth, inhibition of tumor suppression, genetic and epigenetic alteration, lubricative transformation and tumor microenvironment. Extramammary Paget's disease (EMPD) is a rare skin cancer that originates from apocrine glands in genital and axillary area. Although the pathogenesis of EMPD is still poorly understood, increasing evidence reveals that the mechanism of EMPD progression is regulated by the acquired ability of EMPD cells and tumor microenvironment. HER2/PI3K/AKT signaling and hormone receptor pathways are activated. Whereas tumor mutation burden is low, numerous driver genes such as ERBB2 and PIK3CA are detected. Tumor evolution in EMPD is characterized by high genetic intratumor heterogeneity with shared background factors. Tumor microenvironment in EMPD promotes immune evasion through the reduction of reduced CD4 + and CD8 + T cells and the increase of Treg cells and CD163 + macrophages. Enhanced Warburg effect and S. aureus contribute to the suppression of antitumor immunity. This review focuses on the mechanism of malignant progression in EMPD (hallmarks of EMPD).

Genome mutation↗

Inhibition of tumor progression and paraneoplastic syndrome development in a murine lung adenocarcinoma by medroxyprogesterone acetate and indomethacin.

Mice bearing LP07 lung adenocarcinoma present some characteristics similar to those shown in patients with several malignant diseases. LP07 tumor bearers develop paraneoplastic syndromes such as cachexia, leukocytosis, and hypercalcemia, partly due to a systemic inflammatory response. We analyzed some of the mechanisms involved in the effectiveness of the association of the appetite-stimulant medroxiprogesterone acetate (MPA) and the nonselective cyclooxigenase (COX) inhibitor indomethacin (INDO) in LP07 tumor bearing mice. INDO and INDO plus MPA treatments significantly inhibited tumor growth, which was not inhibited by MPA. The number of lung metastatic nodules was decreased with all treatments, being most effective INDO alone and INDO plus MPA. A significant decrease of plasmatic levels of the matrix metalloproteinases MMP-9 and MMP-2 correlated with these results. Paraneoplastic syndromes, leukocytosis, and cachexia were abolished by all treatments. We determined effects of the treatments on circulating cytokines shown to regulate cachexia and inflammation. Both treatments alone, and INDO plus MPA, reduced circulating IL-6 throughout tumor evolution. A pronounced increase in serum IL-1ss levels was detected in untreated tumor bearers. These levels decreased and were closer to normal serum values when LP07 mice were treated with INDO plus MPA. The combination of a nonsteroidal antiinflammatory drug as INDO and MPA showed to be effective in inhibiting tumor and metastatic growth and diminishing paraneoplastic symptoms and SIR. A variety of specific molecules are implicated as playing a role in cancer-induced cachexia and hematological alterations.

Adenocarcinoma↗

Gastrointestinal stromal tumors and the evolution of targeted therapy.

Gastrointestinal stromal tumors (GISTs) historically have differed from other soft-tissue sarcomas in demonstrating a particularly grim prognosis. GISTs have an extraordinarily high rate of recurrence after surgical resection and are highly resistant to radiation and standard chemotherapy. The discovery that constitutive activation of the c-kit gene drives malignant behavior in GISTs exposed a weakness that was soon exploited through the application of the novel targeted therapy imatinib, a small-molecule tyrosine kinase inhibitor of Bcr-Abl, KIT, and the platelet-derived growth factor receptor-alpha and -beta. Imatinib had shown unparalleled results in patients with advanced chronic myelogenous leukemia (remission rates approaching 98%), and the first GIST patients treated with imatinib demonstrated dramatic response rates unseen with other therapeutic modalities. Thousands of patients worldwide with advanced GIST have been treated with imatinib, with the demonstration of significant response rates, prolongation of survival, and improvement in quality of life. Studies of imatinib in both the neoadjuvant and adjuvant settings are now being conducted to evaluate whether low rates of cure with surgical resection alone can be improved. Additionally, multiple new targeted agents are being tested in patients with imatinib-resistant GIST. The gains that have been made in the treatment of GIST through the use of imatinib have helped to open the door to a new era of development of targeted therapeutic agents in oncology. Whether this new era of targeted therapy will provide the same advances in more common malignancies will be determined only through the ongoing application and development of clinical trials.

Benzamides↗

Evolution of instability at coding and non-coding repeat sequences in human MSI-H colorectal cancers.

A number of human genes containing coding mononucleotide repeat sequences are particularly prone to mutations in tumors with defects in mismatch repair (MMR) genes (MSI-H cancers). In a large series of MSI-H colorectal tumors, we looked for mutations in 25 coding repeats contained in eight genes already known to be mutated in these cancers or in 17 other genes with an expected role in carcinogenesis. Mutations were found in 19 of the 25 candidate genes. Using a maximum likelihood statistical method, they were separated into two different groups that differed significantly in their mutation frequencies, and were likely to represent mutations that do or do not provide selective pressures during MSI-H tumoral progression, respectively. Three new target genes were found (GRB-14, RHAMM, RAD50). Our results provide evidence that MSI-H tumoral progression involves the cumulative mutations of a large number of genes. For each MSI-H tumor we calculated indexes representing the number of mutations found in genes of these groups. We also evaluated a shortening index at both the Bat-25 and Bat-26 non-coding mononucleotide tracts that are known to be almost always unstable in MSI-H cancers. A significant correlation was observed between instability at both coding and non-coding repeats, suggesting that Bat-25 and Bat-26 could be used as simple phenotypical markers of the tumoral evolution. A preferential order of mutations was deduced. During this process, hMSH3 alterations, a target gene encoding for a MMR protein, was found to play an important role by increasing the instability phenomenon characterizing these cancers.

Base Pair Mismatch↗

Effect of splenectomy on the efficiency of chemo-immunotherapy of melanoma-bearing mice.

Determination by the immune system of chemo- and immunotherapy of a murine tumor was investigated. The effect of cyclophosphamide and levan (polyfructose) in single and combined treatment on the growth of the F10 variant of B16 melanoma was tested in splenectomized and non-splenectomized mice. Splenectomy was found to increase markedly the efficiency of all treatments, particularly the combined treatment, as judged by the delay of appearance and size of the subcutaneous tumors at the site of inoculation. Nevertheless, mortality rate was not always in correlation with the rate of local tumor evolution: some of the treated splenectomized mice died earlier than expected, with relatively small local tumors, due to enhanced metastasis. The results indicate that elements in the spleen of C57BL mice decrease the therapeutic efficiency of the drugs tested. It can be deduced that splenectomy must not be considered to increase the risk of a tumor-bearing host in all cases. On the contrary, it may improve the efficiency of cancer treatment in certain tumor-host systems.

Animals↗

CGH analysis of radon-induced rat lung tumors indicates similarities with human lung cancers.

Epidemiological studies have shown that inhalation of radon, a radioactive gas, is associated with an increased risk for lung cancer. We have developed a model of radon-induced rat lung tumors to characterize cytogenetic and molecular events involved in radon-induced lung tumorigenesis. Using comparative genomic hybridization (CGH), gains and losses of genetic material were investigated in a series of 13 carcinomas and four adenomas of the lung. Frequent losses occurred at 4q12-21, 5q11-33, and 15q, which are homologous to human chromosome (HSA) bands 7q21-36, 1p31-36/9p21-31, and 13q14.1-14.3/3p14.2, respectively. These regions are frequently (30-80%) deleted in human lung cancer and contain tumor suppressor genes or proto-oncogenes such as MET, CDKN2A/p16/MTS1, CDKN2B/p15/MTS2, FHIT, and RB1 or yet to be identified genes. Frequent gains involved 6, 7q34-qter, and 19q; chromosomes 6 and 7 being homologous to human 2p21-25 and 8q21-24 where the MYCN and MYC oncogenes are located. The genetic similarities between rat and human lung cancer suggest common underlying mechanisms for tumor evolution in both species. Moreover, cytogenetic and molecular genetic analyses of radon-induced rat lung tumors could help to better understand the development and progression of radon-induced lung cancer in man.

Adenoma↗