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Biomedical subjects

M S Gesell

Publications and source records attributed to M S Gesell.

12 recordsLinked to original sources

Neuropeptide Y (NPY) enhances proliferation of human colonic lamina propria lymphocytes.

Neuropeptide Y (NPY) is one member of a family of peptides with a wide range of physiological effects on the CNS, cardiovascular, and respiratory systems. NPY is widely distributed throughout the peripheral and central nervous systems. It has also been found within the colon, liver and gallbladder in close anatomic proximity to the mucosal immune system. In this study, we investigated the effect of NPY on human gut mucosal immune function. We examined colonic lamina propria lymphocyte (LPL) proliferation by measuring DNA synthesis, ornithine decarboxylase (ODC) activity, and polyamine biosynthesis. NPY enhanced ODC activity and polyamine biosynthesis in Con A-stimulated LPL, and enhanced thymidine incorporation into Con A-stimulated LPL but not into monocyte-depleted LPL. Moreover, exogenous IL1-beta partially restored NPY's stimulatory effect on monocyte-depleted LPL DNA synthesis. Our results demonstrate that NPY enhances human colonic LPL proliferation and that this effect is partially IL1-beta dependent. Our data also suggest that NPY's effect may be mediated via polyamine biosynthesis. We postulate that the NPY may have an important impact on human mucosal immune function.

Cell Division

Analysis of ODC and c-myc gene expression in hepatocellular carcinoma by in situ hybridization and immunohistochemistry.

We quantitated mRNA and protein for ornithine decarboxylase (ODC) and c-myc in formalin-fixed liver sections from 25 specimens of hepatocellular carcinoma (HCC) and seven normal livers by a non-radiolabeled in situ hybridization technique and immunohistochemistry. This non-radioactive in situ hybridization technique was highly specific, with virtually no background, and permitted quantitative analysis based on optical density. Reaction products were quantitated with computer-assisted microdensitometry. Samples were classified as normal, adjacent uninvolved, cirrhosis, well-differentiated HCC, and poorly-differentiated HCC. There was a progressive increase in all four parameters measured, ODC mRNA and protein, and c-myc mRNA and protein, from normal, to adjacent uninvolved liver, to cirrhosis, to well-differentiated HCC, to poorly-differentiated HCC. The sole exception was that ODC mRNA was lowest in cirrhosis. The patterns of ODC and c-myc gene expression are similar in HCC. The quantitative detection of ODC mRNA, c-myc mRNA, and their protein products in hepatocellular carcinoma and cirrhosis by in situ hybridization and immunohistochemical techniques may have a potential role in the study of hepatocarcinogenesis and in the diagnosis of hepatocellular carcinoma.

Carcinoma, Hepatocellular

Cellular distribution of a colonic adenoma-associated antigen as defined by monoclonal antibody Adnab-9.

Adenomatous colonic polyps constitute a precursor for colorectal cancer. Antibodies to these precancerous lesions might identify specific early tumor antigens. Adnab-9 is a murine monoclonal antibody raised against membranes of colonic adenomas. Adnab-9 binding in colonic washings (effluent) correlates with the presence of colorectal cancer. Immunohistochemical staining with Adnab-9 shows cytoplasmic reactivity in scattered cells in 4 of 31 adenomatous tissue sections, 0 of 14 sections of colorectal cancer cells, and 1 of 8 normal-appearing colonic mucosa specimens examined. Adnab-9 recognized a dominant M(r) 87,000 protein species in tissue extracts in the membrane-bound fraction of effluent by Western blotting. Adnab-9 binding by enzyme-linked immunosorbent assay in adenomatous extracts is higher than cancer or normal tissue, is membrane-bound, and is absent from established colorectal cancer cell lines. This distribution and nature of immunostaining suggest that Adnab-9 recognizes a determinant associated with the membrane component of a subpopulation of adenoma cells which may have a role in early colorectal neoplasia.

Adenoma

Detection of ornithine decarboxylase messenger RNA in human hepatocellular carcinoma by in situ hybridization.

Ornithine decarboxylase (ODC) has been shown by biochemical analysis, to be important for cell proliferation and carcinogenesis in a variety of tissues, including the liver. We detected messenger RNA (mRNA) specific for the enzyme ODC in 18 patients with hepatocellular carcinoma by an in situ hybridization technique using a radiolabelled ODC probe on formalin-fixed liver specimens. Adjacent uninvolved liver tissues were used as controls. Among the adjacent uninvolved liver tissues, five showed evidence of cirrhosis. Poorly differentiated hepatocellular carcinoma has significantly higher levels of ODC mRNA than does well-differentiated hepatocellular carcinoma, which in turn has a significantly higher ODC mRNA level than adjacent uninvolved liver tissues; tissues showing evidence of cirrhosis, on the other hand, had a significantly lower ODC mRNA level than adjacent uninvolved liver tissue. This pattern of ODC gene expression in hepatocellular carcinoma is similar to the pattern of expression of other oncogenes in liver tumours. The quantitative detection of ODC mRNA in hepatocellular carcinoma by in situ hybridization may help elucidate the potential role of ODC in hepatocarcinogenesis.

Carcinoma, Hepatocellular

Intracellular growth factors in polycythemia vera and other myeloproliferative disorders.

In polycythemia vera, idiopathic myelofibrosis, and essential thrombocytosis, hematopoietic cell proliferation is increased in the absence of a recognizable stimulus, suggesting the autonomous production of growth factors in these disorders. Sonicates of peripheral blood mononuclear cells (PBMNC) from patients with polycythemia vera, idiopathic myelofibrosis, and essential thrombocytosis contained soluble factors that stimulated the proliferation of quiescent-confluent 3T3 cells. PBMNC sonicates from normal individuals; from patients with secondary erythrocytosis, chronic myelogenous leukemia, B-cell chronic lymphocytic leukemia, and acute myelogenous leukemia; and from K-562 and HL-60 cells did not stimulate proliferation. Polycythemia vera PBMNC sonicates also induced anchorage-independent colony formation in soft agar by normal rat kidney fibroblasts. Both the mitogenic and transforming activities of the polycythemia vera PBMNC sonicates resided in the T-lymphocyte-depleted mononuclear fraction of the PBMNC and were not secreted. By gel filtration, reversed-phase HPLC and NaDodSO4/PAGE, the mitogenic and transforming activities in the polycythemia vera PBMNC were localized to three proteins with molecular masses of 13-, 17-, and 65-kDa. The 13-kDa protein was only mitogenic, and the 17-kDa protein was only transforming, whereas the 65-kDa protein had both mitogenic and transforming activity. These proteins may be involved in the autonomous hematopoiesis that characterizes polycythemia vera, idiopathic myelofibrosis, and essential thrombocytosis.

Animals

Human medullary thyroid carcinoma in culture provides a model relating growth dynamics, endocrine cell differentiation, and tumor progression.

We used an unique model, human medullary thyroid carcinoma (MTC) in culture (the TT line), to study features of neuroendocrine-related biochemistry in relationship to growth, differentiation, and tumor progression. Tumor tissues from patients with virulent MTC contain a very heterogeneous distribution of cells staining for calcitonin (CT) and have a high ratio of intracellular L-dopa decarboxylase activity (DDC) to CT. We found, in a culture line of MTC derived from a patient with virulent disease, that the degree of the inverse relationship between DDC and CT and the heterogeneous cellular distribution of CT probably relate to the rate of cellular growth and the biochemical set of individual cell clones. During exponential growth of the parent TT cell line, intracellular DDC and CT varied. DDC increased by 70% and CT decreased by 40%. Single time-point measurements in 54 cell clones or highly enriched cell populations revealed a more dramatic variability for CT (15-fold) than for DDC (5-fold). During growth of the clones having the highest and lowest CT measurements, respectively, inverse dynamics between DDC and CT were again found. However, each clone maintained a distinct range of CT during the entire growth curve, with a 2- to 4-fold difference in CT between the two clones throughout. In the low producing CT clone, ratios between DDC and CT rose to greater than 1.0 during growth, a very high value found before this study only in MTC tissues from patients with virulent disease. Immunohistochemical staining for CT of parent cells and clones grown on embryonic chick skin revealed increased cellular heterogeneity for CT distribution during growth. The TT line provides a powerful tool to study neuroendocrine related biochemical events in relationship to growth, differentiation, and tumor progression in MTC. Our in vitro findings in the TT line well explain observations made previously in patients. We conclude that: (1) DDC, a neural property of MTC, is an early differentiation marker as compared to CT and that the differentiation status of MTC cells varies inversely with cell growth rate; and (2) in patients with MTC, the virulence of the tumor probably varies inversely with differentiation status. The inverse ratio of DDC to CT is probably determined in MTC by the proportion of rapidly growing cells and numbers of cell clones which have a poor ability for maturation.

Calcitonin

Retinoic acid binding protein in normal and neopolastic rat prostate.

Sucrose density gradient analysis of cytosol from normal and neoplastic rat prostatic tissues exhibited a peak of (3H) retinoic acid binding in the 2S region, corresponding to the cytoplasmic retinoic acid binding protein (cRABP). In the Fisher-Copenhagen F1 rat, cRABP was present in the lateral lobe, but could not be detected in the ventral nor in the dorsal prostatic lobes. Four sublines of the R-3327 rat prostatic tumor contained similar levels of this binding protein. The absence of cRABP in the normal tissue of origin of the R-3327 tumor, the rat dorsal prostate, and reappearance in the neoplastic tissues follows a pattern described in other human and animal tumors. The occurrence of cRABP in the well-differentiated as well as in the anaplastic R-3327 tumors in which markers which reflect a state of differentiation and hormonal regulation, such as androgen receptor, 5 alpha reductase, and secretory acid phosphatase are either markedly reduced or absent, points to cRABP as a marker of malignant transformation.

Adenocarcinoma

Decrease in rat uterine estrogen receptors during aging: physio- and immunochemical properties.

Rat uterine estrogen receptors decrease in concentration by about 45% between maturity (6-12 months) and senescence (22-24 months). No change in binding affinity occurs over this period. No age differences were observed in the thermostability, hormone-induced stability, or specificity of binding for various steroids. Most importantly, immunochemical titration of receptors with specific antiserum revealed that the ratio of immunoreactive to functional receptor is not changed with age. Thus, the apparent loss of rat uterine estrogen receptors during aging does not seem to be due to the appearance of a nonfunctional receptor population detectable by presently available immunoreagents.

Aging

The effects of retinoids on proliferative capacities and macromolecular synthesis in human breast cancer MCF-7 cells.

The effects of various retinoids on the proliferative capacities and on the synthesis of DNA, RNA, and protein have been investigated in MCF-7 mammary carcinoma cells in culture. Of the various retinoids tested, retinoic acid revealed maximum activity in inhibiting cell proliferation and thymidine incorporation. The degree of inhibition of cell proliferation by the various retinoids paralleled their capacity to inhibit thymidine incorporation, suggesting suppression of DNA synthesis as a primary cause of restriction of cell growth by these compounds. Two nonepithelial human cell lines were tested for sensitivity to retinoids, and showed diminished responses compared with MCF-7 cells. This suggests a correlation between the ability of retinoids to exert control of differentiation and cell proliferation for a given cell type. Reversibility of the effect of retinoid treatment, high cell viability, and lack of retinoid-induced lysosomal enzyme release, as shown in our studies, indicate that cytotoxicity may be excluded as a cause of decreased cell proliferation and inhibition of thymidine incorporation by retinoids.

Breast Neoplasms

Effects of indomethacin on renomedullary interstitial cells.

The effects of indomethacin, an inhibitor of prostaglandin synthesis, on rat renomedullary interstitial cells were studied. Indomethacin, 5 mg. per kg. intravenously in divided doses over 48 hours, resulted in reduced granularity of interstitial cells (5.56+/-1.37 versus 9.85+/-1.07 granules per cell, (p is less than 0.001) and, at the same time, inhibited the incorporation of 14C-arachidonate into renomedullary phospholipids (715 + 11 versus 1299 + 42 c.pm.per mug. of lipid orthophosphate; p is less than 0.001) 14C-arachidonate incorporation into cortical phospholipids was not affected by indomethacin. There was a close correlation between individual granule counts and 14C-arachidonate incorporation into medullary phospholipids for both control (r=0.85) and indomethacin-treated animals (r=0.9). Radioactivity in the cytosol fraction was depressed by indomethacin reflecting inhibition of prostaglandin synthesis; cytosol radioactivity correlated closely with individual granule count (r=0.81) in the indomethacin-treated but not in the control rats. Indomethacin given as a single dose 4 hours prior to sacrifice resulted in a significant depression of 14C-arachidonate incorporation but did not affect granularity of interstitial cells. The results suggest that granularity of renomedullary interstitial cells reflects the activity of prostaglandin synthesis and the rate of prostaglandin precursor delivery from microsomal phospholipids.

Animals

Retinoic acid binding protein in human and experimental pancreatic carcinomas in hamsters.

Cytoplasmic retinoic acid binding protein (cRABP) is present in human fetal pancreas and becomes nondetectable in the normal adult pancreas. The binding protein for retinoic acid becomes apparent again in pancreatic cancer. Similar fluctuations in the content of cRABP occur in the hamster. The binding protein is undetectable in the normal adult hamster pancreas, while it was detected in several transplantable adenocarcinomas in the Syrian golden hamster.

Adenocarcinoma