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Biomedical subjects

S Pathak

Publications and source records attributed to S Pathak.

At least 19 recordsLinked to original sources

Cytogenetics of epithelial malignant lesions.

Chromosomal abnormalities have been believed to be responsible for neoplastic transformation and tumor growth for a long time. The confirming observations are of two types: (1) primary cytogenetic alterations that are responsible for tumor initiation and (2) secondary abnormalities that are acquired late and are associated with tumor growth, heterogeneity, and metastasis. Primary chromosomal abnormalities (such as the 13q deletion in retinoblastoma, 11p deletion in Wilms' tumor, 3p anomalies in renal cell carcinoma, and 5q deletion in colorectal carcinomas) first were identified in lymphocyte cultures as constitutional defects. Later, similar types of defects were observed as tumor-specific aberrations from patients whose lymphocytes otherwise had normal chromosomes. Recently, it has become clear that classes of known cancer-related genes (dominant protooncogenes and recessive tumor-suppressor or anti-oncogenes) are located at those hot spots that are involved in neoplasia-associated chromosomal alterations. In breast carcinoma, such a specific chromosomal alteration has not been identified conclusively in lymphocyte cultures, although chromosome 1 alterations have been observed in cell lines, directly processed effusions, and primary breast tumors. Lymphocyte cultures; primary tumors; and established cell lines from breast carcinomas, colorectal carcinomas, and renal cell carcinomas were analyzed to identify (1) primary chromosomal alterations precisely and (2) secondary cytogenetic defects that are associated with these most common solid adult neoplasms. Peripheral blood analysis indicated that chromosomes 1, 17, and 18 in breast carcinomas; chromosomes 3 and 14 in renal cell carcinomas; and chromosomes 5, 12, and 17 in colorectal carcinomas were involved nonrandomly in structural anomalies in a small number of lymphocyte cells (1-4%). These chromosomal aberrations were considered primary defects because of their involvement as marker formations in tumor cells; other structural and numeric abnormalities also were found. These results indicate that lymphocyte chromosomal analysis might identify those at high risk for breast, colorectal, and renal cell carcinomas, among other malignant lesions. Such identifications could facilitate early selection for primary and secondary cancer prevention or interventional trials.

Chromosome Aberrations

The use of molecular genetic markers to demonstrate the effect of organ environment on clonal dominance in a human renal-cell carcinoma grown in nude mice.

Transduction of the SN12C human renal-cell carcinoma line with the neoR gene produces a genetically "tagged" cell population within which individual clones can be identified if they dominate the tumor during its growth in vivo. We used this technique to determine whether the clones that dominate the primary local tumor and its metastases are the same or different when the tumor is growing in different organ sites in nude mice. The results show that clonal dominance is influenced by the organ environment in which the primary tumor grows, i.e., distinct clones dominated in the kidney, colon and subcutaneous sites. In addition, tumors grown in the orthotopic site (kidney) were all populated by the same dominant clones, and each distant visceral metastasis retained the same clonality. SN12C neoR-cells grown in an epithelial, ectopic site (colon) produced tumors with uniquely different dominant clones, and their visceral metastases retained the dominant pattern expressed by the parent tumor from which they were derived. In contrast, SN12C tumors growing subcutaneously showed a random pattern of clonal dominance in both their primary and metastatic sites. Parallel cytogenetic analyses could not demonstrate these patterns. We conclude that the organ environment significantly influences clonal dominance of human renal carcinoma and that tumor injection into orthotopic sites may produce a more reproducible selection of dominant clones.

Animals

Trisomy 12 in Epstein-Barr virus-transformed lymphoblastoid cell lines of normal individuals and patients with nonhematologic malignancies.

Karyotypes of 36 lymphoblastoid cell lines established by Epstein-Barr virus (EBV) transformation of peripheral blood lymphocytes (PBL) of eight normal individuals and 28 patients with various nonhematologic malignancies were analyzed. In seven lines (19.4%), cells with trisomy 12 were noted, with clonality in two of these lines. In two of 11 metaphases with such trisomy, chromosome 12 was involved in structural rearrangements [t(8;12)(q12;p12) and t(12;12)(q11;q24)]. No cells with trisomy 12 were observed in phytohemagglutinin (PHA)-stimulated PBL cultures of these individuals. In 250 individuals (normal and with nonhematologic malignancies) examined in our laboratory in the last 5 years, extra copies of chromosome 12 in PHA-stimulated PBL cultures were observed in only five of 23,216 cells (0.02%). There were no cases of clonality in these samples. The frequency of an extra chromosome 12 was comparable to that of the other chromosomes except 21 and X, whose frequency of occurrence was 0.08% and 0.09%, respectively. These findings should be considered random events in PHA-stimulated PBL. On the contrary, in lymphoblastoid cell lines established by EBV transformation, trisomy of chromosome 12 was the most frequent numerical abnormality. It was observed in 64.7% of all cases with chromosome gains and therefore could not be considered a random occurrence. The specificity of this phenomenon for EBV transformation is supported by the results of cytogenetic analysis of eight lymphoblastoid cell lines established by an alternative procedure in our laboratory [1]. In 400 cells analyzed not a single cell with trisomy 12 was observed. We suggest that EBV transformation might either randomly induce formation of such cells in immortalized B-cell populations or show potentially blastomogenic cells or proneness to their formation in certain individuals who could be predisposed to develop lymphoproliferative diseases, especially chronic lymphocytic leukemia (CLL) in which trisomy of chromosome 12 is the most common alteration.

Breast Neoplasms

Specific chromosomal defects associated with ultraviolet radiation-induced cutaneous tumors in Monodelphis domestica (Marsupialia, mammalia).

Cytogenetic analysis of eight ultraviolet radiation (UVR)-induced cutaneous tumors and one spontaneously transformed fibroblast cell line of Monodelphis domestica showed that two of the tumor cell lines were of murine origin and that the remaining six marsupial tumor cell lines had hyperdiploid stemline numbers ranging from 21 to 31. Each tumor cell line showed structural and numerical abnormalities. The single transformed fibroblast cell line also showed a hyperdiploid chromosome number with structural and numerical defects. All M. domestica tumor cell lines and the fibroblast line showed a common structural abnormality: deletion of the short arm (p) of a chromosome 1. In some cell lines, the short arm of chromosome 1 was replaced by a translocation with the X chromosome. We suggest, based on the Giemsa-banding homology of chromosome 1p in M. domestica and human chromosome 6q involved in melanomas, that marsupial chromosome 1p may harbor tumor suppressor gene(s) that are associated with UVR-induced cutaneous tumors.

Animals

KBM-3, an in vitro model of human acute myelomonocytic leukemia.

A human acute myelomonocytic leukemia cell line, KBM-3, was developed to study the pathophysiology of human acute myeloid leukemia. This cell line was characterized by morphology, immunophenotype, Giemsa-banding pattern, in vitro proliferation capacity, and tumorigenicity in nude mice. The KBM-3 cell line was established in the presence of exogenous lymphokines (human placenta-conditioned medium, HPCM), but medium for later passages did not contain HPCM. We found high cellular expression of the mRNA message for granulocyte-macrophage colony-stimulating factor (GM-CSF), which we suggest may be important for the immortalization of the cell line. KBM-3 cells have an immature myelomonocytic phenotype. Cytogenetic analysis revealed a pseudodiploid karyotype with five characteristic marker chromosomes and ranging in total number from 45 to 49. In suspension cultures, the cells had a doubling time of 23 h and a cloning efficiency of about 30% in soft agar independent of exogenous lymphokines. Two-thirds of nude mice injected with 1 x 10(4) KBM-3 cells and all animals injected with 1 x 10(5) cells developed S.C. granulocytic sarcomas within 6-8 weeks. These tumors were locally invasive but did not give rise to distant metastases. When transplanted to a new set of nude mice, all tumors formed secondary sarcomas at the site of implant. We conclude that the KBM-3 cell line may have value for studying the molecular events that underlie the neoplastic transformation in human myeloid leukemia.

Adult

Predominance of the metastatic phenotype in somatic cell hybrids of the K-1735 murine melanoma.

The purpose of these studies was to determine whether the metastatic phenotype will dominate when metastatic and nonmetastatic clones of the K-1735 mouse melanoma are hybridized by somatic cell fusion. Three nonmetastatic and three metastatic clones were transfected with DNA from plasmids pSV2neo or pSV2hygro, which confer resistance to the drugs neomycin or hygromycin, respectively. The metastatic properties of the six clones were not altered by these transfections. The tumorigenicity and metastatic capacity of cell hybrids formed by somatic cell fusion of nonmetastatic and metastatic clones were examined. To do so, near-tetraploid hybrids containing a nearly complete chromosomal complement from both parental cells were injected i.v. into syngeneic mice, and the number of metastatic nodules in the lung was determined at 45 days or when the mice became moribund. Seven of nine hybrids produced from the fusion of metastatic and nonmetastatic clones exhibited a highly metastatic phenotype, although in most cases the metastatic potential of the hybrids was lower than that of the metastatic parent cells. Very similar results were obtained in athymic nude mice. The metastatic potential of the hybrids was directly correlated with their growth in the subcutis of nude mice. These results indicate that the metastatic capacity of K-1735 cells predominates in somatic cell hybrids between nonmetastatic and metastatic cells. When fusion of nonmetastatic and metastatic cells yields a hybrid with nonmetastatic properties, it may be due to suppression of growth.

Animals

Specific chromosomal defects associated with metastatic potential in K-1735 melanoma clones. Involvement of chromosomes 4 and 14.

In this study we sought to identify specific cytogenetic defects associated with the metastatic phenotypes in clones isolated from the parental K-1735 murine melanoma. All nonmetastatic clones (C-3, C-10, and C-19) exhibited trisomy of chromosomes 1, 3, 12, and 15. The only structural defect present in these clones was an interstitial deletion in a chromosome 4. In contrast, the highly metastatic clones (C-4, M-2, BB1, and X-21) exhibited trisomy of chromosomes 1, 3, 12, and 15, plus structural abnormalities of chromosomes 4 and 14, with the net result of a deletion in both. Parental K-1735 cells and clone C-16 cells, which are intermediate in their metastatic potential, had some cells with 4 and 14 alterations and others with only a deletion of chromosome 4. Clone C-16 revealed other non-clonal structural abnormalities. Our results indicate that structural anomaly of chromosome 4 and numerical alterations of certain autosomes may be associated with tumorigenic properties. In addition, structural defect in chromosome 14 is associated with high metastatic potential of K-1735 melanoma cells.

Animals

Postcoital contraceptive action in rats of a hexane extract of the aerial parts of Ferula jaeschkeana.

The hexane extract of Ferula jaeschkeana aerial parts was studied at an oral dose of 25 mg/kg per day for its postcoital effects in pregnant rats. Ovaries of treated rats remained in a cyclic state rather than undergoing pregnancy as demonstrated by constant ovulation accompanied by newly formed corpora lutea. Follicles were present in different stages of development. Uterine histoarchitecture of treated rats appeared non-receptive for implantation. No decidcoma were observed on day 5 of pregnancy and the luminal epithelium remained unresponsive. Uterus was non-oedematous and lumen was considerably wider. Administration of the extract caused increases in the protein and glycogen content of ovary and uterus, while the activity of acid phosphatase remained essentially unchanged and the activity of alkaline phosphatase was increased. The volume of uterine fluid in the treated rats was increased considerably on day 5 post coitum. It appears that the histological and biochemical modifications in the ovary and uterus of treated pregnant rats do not support the preparation of uterus for implantation.

Alkaline Phosphatase

Identification of colon cancer-predisposed individuals: a cytogenetic analysis.

Peripheral blood lymphocyte cultures from 23 individuals with polyps and 10 age-matched controls were cytogenetically studied. Of 23 individuals with polyps, 13 were males and 10 females. The age distribution of these patients was between 22 and 84 yr, with a medium age of 49.6 yr. Chromosome 5 was involved in structural rearrangements in 10 of the 18 patients with adenomatous polyps (55.5%). All those who showed involvement of chromosome 5 alterations had either adenomatous polyps or Gardner's syndrome, and two had colon adenocarcinoma. Of the remainder who did not show involvement of chromosome 5, eight had adenomatous polyps and five had hyerplastic polyps (non-neoplastic). Of the 10 control samples, only one showed alteration of chromosome 5. Of the 10 adenomatous polyp subjects that showed chromosome 5 defects, two had translocations of chromosome 5 and the short arm of 17. Chromosome 5 was broken 13 times (5 times in the q arm and 8 times in the p arm). Based on our present cytogenetic data, we tentatively conclude that lymphocyte metaphases may be used to identify colon cancer-predisposed individuals.

Adenoma

Spontaneous abnormalities in normal fibroblasts from patients with Li-Fraumeni cancer syndrome: aneuploidy and immortalization.

Families of patients with the Li-Fraumeni cancer syndrome have an inherited pattern of sarcomas and various other types of cancers that follow a dominant mode of transmission, an early age of onset, and exhibit multiple primary tumors. As soft tissue sarcomas (including fibrosarcomas) are frequently observed with this syndrome, the in vitro growth characteristics of fibroblasts derived from skin biopsies of Li-Fraumeni syndrome patients were studied. Control fibroblasts maintained a normal morphology and eventually senesced in culture. Fibroblasts from seven of eight affected individuals developed changes in morphology, anchorage-independent growth, and chromosomal abnormalities. In a fashion similar to that of fibroblasts from normal donors they underwent a growth crisis during which their growth was slow, but they continued to grow past the point at which control samples had stopped dividing (35 population doublings). Fibroblasts from Li-Fraumeni cancer patients escape senescence, growing well beyond 35 population doublings with growth rates similar to early-passage cells. Patient fibroblasts maintain the morphology of a transformed cell but remain nontumorigenic in nude mice. These observations of the behavior of fibroblasts from patients with the Li-Fraumeni syndrome may have predictive value for the determination of gene carriers within these families who are at high risk of cancer.

Aneuploidy

Orthotopic implantation is essential for the selection, growth and metastasis of human renal cell cancer in nude mice [corrected].

Human neoplasms are heterogeneous for a variety of biological properties that include invasion and metastasis. The presence of a small subpopulation of cells with a highly metastatic phenotype has important clinical implications for diagnosis and therapy of cancer. For this reason, it is important to develop an animal model for the selection and isolation of metastatic variants from human neoplasms and for testing the metastatic potential of human tumor cells. We have implanted human renal cell carcinoma (HRCC) cells (obtained from a surgical specimen) into different organs of nude mice and then recovered the tumors and established each in culture. The 5 established lines differed in their biological-metastatic properties and had a unique karyotype, indicating that growth at different organs selects for different subpopulations of HRCC. Moreover, the HRCC did not metastasize unless they were implanted orthotopically. These findings indicate that the appropriate nude mouse model for studying the biology and therapy of HRCC must be based on the orthotopic implantation of tumor cells.

Adult

Cytogenetic abnormalities in cancer: with special emphasis on tumor heterogeneity.

There is a considerable amount of cytogenetic data available to support the statements that (1) cancer is a genetic disease; (2) most cancers are monoclonal in origin; (3) tumor cells are more genetically unstable than normal cells; (4) the genetic instability may be inherited, acquired, or both during the lifespan of the individual tumor; (5) tumor metastasis is a nonrandom, controlled process, and clonal in origin; (6) malignant tumors are genetically heterogeneous and contain multiple subpopulations that may differ in their biological properties; (7) some tumors might be difficult to treat successfully because of their resistant nature; and (8) tumor cells may acquire resistance because of gene amplification. For these reasons it is extremely important to study the biology of malignant tumor cells in order to determine their effective treatments and control this dreadful disease.

Cell Transformation, Neoplastic

Induction of membrane proliferation in mouse CNS by gold sodium thiomalate with reference to increased virulence of the avirulent Semliki Forest virus.

Separation of smooth membrane vesicles from whole mouse brain by isopycnic centrifugation in discontinuous sucrose density gradients show an increased membrane proliferation in gold sodium thiomalate (GSTM) treated mice. Induction of membrane proliferation by GSTM seems to be an important factor in converting the avirulent Semliki Forest virus infection into a lethal one.

Animals

Immunoelectron microscopical labelling of a glycolipid in the envelopes of brain cell-derived budding viruses, Semliki Forest, influenza and measles, using a monoclonal antibody directed chiefly against galactocerebroside resulting from Semliki Forest virus infection.

Neurotropic RNA budding viruses such as Semliki Forest virus (SFV), influenza and measles were each grown in identical mouse brain cell cultures. Positive immunoelectron microscopical labelling with gold was seen in the envelope of these viruses using an anti-SFV derived glycolipid monoclonal antibody (MAb), 373 shown to be directed chiefly against galactocerebroside. The results indicate that each enveloped virus grown from the same cell type contains the same glycolipid in its envelope. The presence of common glycolipids derived from the host cell in the envelopes of various enveloped budding viruses may play a significant role in the pathogenesis of virus induced, immune mediated CNS autoimmunity and demyelination, particularly in multiple sclerosis (MS).

Animals

Familial renal cell carcinoma: hereditary or coincidental?

The familial clustering of some cancers may be related to genetic factors, shared carcinogenic exposure among relatives or chance association. In cases of familial renal cell carcinoma identifying those persons at risk for renal tumors is difficult. There have been 28 family aggregates of renal carcinoma reported since 1961 but an abnormality in the constitutional karyotype has been demonstrated in the members of only 1 of these families. Since 1980 we have identified 5 more families in which a total of 12 relatives had renal cell carcinoma. However, peripheral blood karyotypes obtained from the 7 patients and 5 unaffected relatives whom we studied showed no significant abnormalities. With current laboratory techniques it is not possible to differentiate reliably familial renal tumors occurring by chance from those hereditary tumors posing a threat to remaining relatives. Therefore, in families with multiple cases of renal cell carcinoma we recommend that screening be conducted as has been suggested for families with von Hippel-Lindau's disease, with an initial renal ultrasound for family members at age 30 years and repeat examinations every 2 to 3 years.

Adult

Establishment of a new human pancreatic adenocarcinoma cell line, MDAPanc-3.

A new cell line was established from a liver metastasis of a human pancreatic adenocarcinoma. The cell line, MDAPanc-3, which arose from a moderately differentiated adenocarcinoma, produces carbonic anhydrase II mRNA, but no detectable levels of insulin or alpha amylase mRNA. The stem line chromosome number was determined to be 43, with six marker chromosomes. Growth of MDAPanc-3 is stimulated by cholecystokinin (CCK) fragment 26-33. The cell line will be useful in further studies on the mechanism(s) by which CCK stimulates growth of certain human pancreatic adenocarcinomas and normal human pancreatic exocrine tissue.

Adenocarcinoma