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Biomedical subjects

R F Murphy

Publications and source records attributed to R F Murphy.

At least 145 records · Page 8Linked to original sources

The effects of Mg2+ ions or EDTA on nuclear integrity and apparent subcellular distribution of unoccupied oestrogen receptors in breast cancer cells.

Homogenisation and fractionation of cells in the presence of Mg2+ or EDTA resulted in unoccupied oestrogen receptor being recovered in the particulate fraction. Nuclei were partially purified by pelleting at 100,000 g through 41% and 44% (w/w) sucrose (in buffer containing Mg2+ or EDTA), plasma membranes being collected from the top of the 41% barrier. In Mg2+-prepared fractions, both 5'-nucleotidase and unoccupied receptor were distributed between plasma membrane, partially-pure nuclei and mitochondrial/microsomal pellets. Lactate dehydrogenase was not a significant contaminant of particulate fractions. In EDTA fractions, the majority of binding activity was in the partially-pure nuclei (which were extensively disrupted) and mitochondrial/microsomal pellets. Little or no binding was found in the EDTA-prepared plasma membranes which were amorphous in appearance. Mg2+-prepared nuclei, freed of membranous contamination by pelleting through 1.8 M sucrose, were intact by electron microscopy but had no 5'-nucleotidase or unoccupied receptor. These data suggest that recovery of receptor in partially-pure nuclei during fractionation is not caused by trapping of cytosolic protein but rather by redistributed nuclear receptor having become bound to adhering plasma membrane fragments during homogenisation. Implications for the study of cell-free systems are discussed.

Breast Neoplasms↗

The influence of route of administration on the hepatic uptake of methotrexate.

The present study was designed to determine if the hepatic toxicity of chronic low-dose methotrexate could be circumvented by administering the drug systemically, avoiding high initial hepatic drug exposure resulting from absorption of an oral dose into the portal circulation. Hepatic concentrations of methotrexate were determined in rats following chronic administration of 1 mg/kg by either the intraperitoneal (absorbed via the portal circulation) or subcutaneous route. Plasma drug profiles of methotrexate administered by the two routes were similar. The mean (+/- S.D.) hepatic methotrexate concentration following intraperitoneal administration was 3.12 +/- .47 nmol/gm wet weight and following subcutaneous administration it was 2.68 +/- .52 (p = .06). Renal methotrexate concentrations in the 2 groups were 1.23 +/- .27 and 1.26 +/- .49 nmol/gm wet weight, respectively (p = .88). The results of this study suggest that that oral administration does not lead to greater accumulation of methotrexate in the liver compared to systemic administration.

Animals↗

Synthesis of sequences 1-16 and 63-95 of Cerebratulus lacteus toxin AIII. Hemolytic activity in a toxin fragment.

Sequences 1-16 and 63-95 of C. lacteus toxin AIII were synthesized on benzhydrylamine and PAM resins respectively; the crude peptide products released by HF contained 90 and 33% of the target peptides. Fragment 63-95 was nearly a full agonist, producing greater than 90% of the hemolytic activity of the intact toxin molecule at 10(3)-fold higher concentrations. Fragment 1-16 had no activity.

Amino Acid Sequence↗

Effects of micellar oleic acid on canine jejunal blood flow and neurotensin release.

The purpose of this study was to evaluate the role of neurotensin in the local regulation of the lipid-induced jejunal hyperemia. Total blood flow and the arteriovenous hormone concentration difference were measured in isolated jejunal loops of anesthetized dogs with either saline, bile (10% in normal saline), oleic acid (40 mM in normal saline), or oleic acid and bile in the lumen. The bile-oleic acid mixture produced a sustained increase (+25 +/- 3%) in jejunal blood flow, whereas neurotensin release reached a maximum (1.14 +/- 0.34 pmol X min-1 X 100 g-1) 2 min after initiation of the response and then returned to control. Venous neurotensin concentrations also reached a maximum (51 +/- 17 pmol/l) at 2 min. There were no significant changes in either blood flow or neurotensin release in response to the other test solutions. Intra-arterial infusion of neurotensin did not significantly decrease jejunal vascular resistance (-12 +/- 3%) until venous concentrations of 478 +/- 101 pmol/l were attained. It seems unlikely, then, that neurotensin plays any role in the regulation of the lipid-induced jejunal hyperemia.

Animals↗

Biochemical parameters of mercaptopurine activity in patients with acute lymphoblastic leukemia.

Mercaptopurine (MP) is a purine antimetabolite widely used for remission maintenance in the therapy of acute lymphoblastic leukemia. In order to study the biochemical parameters affecting MP activity, leukemic cells were obtained from ten patients with acute lymphoblastic leukemia at the time of diagnosis and from the same patients at the time of their initial marrow relapse. Hypoxanthine phosphoribosyltransferase (HPRT), the enzyme that converts MP to its active, nucleotide metabolite, thioinosine monophosphate; alkaline phosphatase, the primary catabolic enzyme of thioinosine monophosphate; and 5-phosphoribosyl-1-pyrophosphate (PRPP), the cellular ribose-phosphate donor essential for MP activation, were all measured within the patients' leukemic cells. There was marked interpatient variability in the three biochemical parameters studied with a greater than 10-fold range in alkaline phosphatase activity and an approximately 100-fold range in HPRT activity and PRPP levels. Four patients developed changes in biochemical parameters that influence MP activity at the time of relapse. In three of the four patients, alterations in more than one of these three biochemical parameters were noted. Three of four patients had a greater than 50% decrease in intracellular HPRT activity, four of four had a greater than 50% decrease in intracellular PRPP, and two of four had a greater than 9-fold increase in intracellular alkaline phosphatase activity at relapse. Two of four patients demonstrated changes in all three parameters at relapse in the directions that could have resulted in decreased MP sensitivity (i.e., decreased HPRT, decreased PRPP, and increased alkaline phosphatase). There was no correlation between pretreatment values of HPRT, PRPP, and alkaline phosphatase and remission duration. These results indicate that: (a) there is marked variation in HPRT, PRPP, and alkaline phosphatase in patients with acute lymphoblastic leukemia and b) following MP-containing maintenance chemotherapy, some patients develop biochemical changes that may result in decreased sensitivity to MP.

Alkaline Phosphatase↗

Reversal of tumor-induced biochemical abnormalities by insulin treatment in rats.

In F344 rats bearing transplantable 3-methylcholanthrene (CAS: 56-49-5)-induced sarcomas, plasma concentrations of immunoreactive insulin were decreased following the development of mild or severe anorexia. Plasma levels of immunoreactive glucagon and lactate were elevated in severely anorectic tumor-bearing (TB) rats, while plasma glucose concentrations remained normal. Both groups of TB rats exhibited decreased plasma levels of serine, glutamine, citrulline, and tryptophan and increased concentrations of alanine. Plasma levels of proline and phenylalanine were also elevated in the severely anorectic TB rats. In a second experiment, 7 daily treatments with insulin corrected the anorexia for 6 days and increased body weights of TB rats. Plasma concentrations of lactate and immunoreactive glucagon were decreased, and the abnormal plasma concentrations of glutamine, proline, analine, and phenylalanine were altered toward normal following the insulin treatments. Therefore, these data are consistent with insulin treatments benefiting the TB host by increasing feeding, increasing body weight, reducing tumor glycolysis and metabolism, reducing gluconeogenesis, and reducing host catabolism, while not stimulating tumor growth. Thus insulin therapy may have potential benefits in cancer treatment by shifting glucose metabolism toward the host and away from the tumor.

Amino Acids↗

Measurement of cytoplasmic pH in Dictyostelium discoideum by using a new method for introducing macromolecules into living cells.

We have developed a novel method for introducing exogenous macromolecules from solution into the cytoplasm of living amoebae of the cellular slime mold Dictyostelium discoideum and have used it to measure the cytoplasmic pH of these cells. Amoebae (strain NC-4) were loaded with fluorescein-labelled dextran by sonication in a solution containing 17 mM phosphate buffer, 1 mM CaCl2, and 10 mg/ml of fluorescein-labelled dextran, pH 6.1. The recovery of living cells was approximately 40% after sonication and washing. A significant fraction (10%) of the recovered cells were loaded and contained 10(5) to 10(7) molecules of fluorescein-labelled dextran per cell as assessed by flow cytometry. The cells loaded by sonication appeared both viable and healthy, since they exhibited normal morphology and locomotion, could differentiate to form mature fruiting bodies, could chemotax in a gradient of extracellular cAMP, and could endocytose latex microspheres. The pH of single cells was estimated by using flow cytometry to measure the fluorescence ratio (fluorescein/rhodamine) in cells loaded with a mixture of the two fluorochrome-labelled dextrans. The fluorescence ratios were calibrated in situ with the flow cytometer after treatment of the cells with either weak acid or weak base to clamp the internal pH at known values. The intracellular pH measured in cells loaded with dextran in a simple salt solution was 5.9. The intracellular pH measured in cells loaded with dextran in the same solution supplemented with amino acids and glucose was 6.7. The novel sonication loading technique described may have general utility for loading diverse types of macromolecules into suspensions of living cells.

Cytoplasm↗

Effect of cytotoxic drugs on estrogen receptor expression and response to tamoxifen in MCF-7 cells.

We have examined the effects of a 24-h exposure to clinically achievable concentrations of adriamycin, melphalan, 5-fluorouracil, and vincristine on the estrogen binding capacity of MCF-7 human breast cancer cells using a whole cell binding assay. Adriamycin (0.018 to 1.8 microM), melphalan (0.1 to 5 microM), 5-fluorouracil (0.077 to 15.4 microM), and vincristine (0.01 to 1 nM) reduce the estrogen binding capacity in a dose dependent manner. The rate of protein synthesis is reduced following exposure to 5-fluorouracil but not following exposure to adriamycin, melphalan, or vincristine. The rate of cell proliferation, influx of the ligand, and the Kd of remaining estrogen receptor are unaltered following drug exposure. These drugs may, therefore, be inducing a nonspecific reduction in the rate of receptor recycling and/or synthesis. Vincristine (1 nM) abolished estrogen receptor expression but following removal of the drug receptor levels did not reach that expressed in untreated cells for at least 48 h. Prior exposure to vincristine (1 nM) reduced the antiproliferative effects of tamoxifen (2 microM) toward MCF-7 cells.

Antineoplastic Agents↗

The effect of the rate of cell proliferation on the synthesis of methotrexate poly-gamma-glutamates in two human breast cancer cell lines.

The synthesis of methotrexate poly-gamma-glutamates by the MDA-MB-436 and MCF-7 human breast cancer cell lines is highly dependent on the rate of cell growth. Slowly proliferating cells accumulate methotrexate to the same extent as rapidly proliferating cells but convert a lower percentage of the drug to polyglutamate forms. The longest polyglutamate-derivatives of methotrexate are generally only synthesized when the cells are doubling rapidly. The MDA-MB-436 cells exhibit a biphasic response of doubling time and polyglutamation to increasing initial cell number. Extremes of cell density are associated with long doubling times and reduced polyglutamate synthesis. MCF-7 cells show increasing doubling time and decreasing polyglutamate synthesis in response to increasing initial cell number.

Breast Neoplasms↗

The effect of leucovorin on the synthesis of methotrexate poly-gamma-glutamates in the MCF-7 human breast cancer cell line.

The modulating effects of leucovorin on the synthesis of methotrexate (MTX) polyglutamates in the MCF-7 human breast cancer cell line have been investigated using a paired-ion high performance liquid chromatography (HPLC) system. Leucovorin decreased the intracellular level of MTX and profoundly affected polyglutamate synthesis irrespective of whether it was administered with or after MTX. Inhibition of MTX polyglutamate synthesis was also observed when concentrations of leucovorin too low to affect intracellular levels of MTX were employed. Leucovorin did not promote efflux of MTX from the MCF-7 cells and did not affect the distribution of the retained drug amongst the various polyglutamate forms.

Breast Neoplasms↗

Structure of the Escherichia coli 16 S ribosomal RNA. Psoralen crosslinks and N-acetyl-N'-(p-glyoxylylbenzoyl)cystamine crosslinks detected by electron microscopy.

Escherichia coli 16 S ribosomal RNA in reconstitution buffer has been photochemically crosslinked with aminomethyltrimethylpsoralen and chemically crosslinked with N-acetyl-N'-(p-glyoxylylbenzoyl)cystamine. The positions of crosslinking have been detected by viewing the molecules in the electron microscope. DNA restriction fragments that contain psoralen mono-adducts were hybridized and crosslinked to the samples so that the orientations of the crosslinked molecules were seen directly. A two-dimensional histogram method has been used to classify the different types of looped crosslinked molecules. These methods allow the identification of 13 distinct types of loops in the photochemically crosslinked molecules and 31 distinct types of loops in the chemically crosslinked molecules. The psoralen experiments are a reinvestigation of some of our earlier results. Some of the crosslinks were previously reported in the incorrect orientation; with the corrected orientation, seven of the psoralen crosslinks can now be correlated with complementarities in the proposed secondary-structure models. However, there are still six other psoralen crosslinks that indicate additional contacts not found in the current models. The chemical crosslinks indicate pairs of single-stranded regions that must be close in the folded molecule. Many of these crosslinks occur between regions that are distant in the secondary structure; these crosslinks indicate part of the three-dimensional form of the folded molecule.

Cross-Linking Reagents↗

Light-scattering changes during chemotactic stimulation of human neutrophils: kinetics followed by flow cytometry.

The light-scattering properties of human neutrophils were compared on a cell-by-cell basis before and after stimulation with chemotactic peptide using flow cytometry. Between 20 and 180 sec after peptide addition, side (90 degrees) scatter declined by up to 4% and forward scatter increased up to 6%. Between 3 and 15 min, side scatter increased up to 15% and forward scatter decreased up to 5%. Association of a fluorescence chemoattractant with neutrophils was most rapid during the initial phase of increasing forward and decreasing side scatter, and association saturated before the maximum increase in side scatter. Evidence is presented that the observed changes in scatter were not a consequence of chemoattractant-induced cell-cell adhesion or neutrophil degranulation. Rather, the early phases of light-scattering changes are interpreted to represent membrane ruffling by the stimulated neutrophil; the later phases polarization of the neutrophil morphology.

Chemotaxis, Leukocyte↗

Automated identification of subpopulations in flow cytometric list mode data using cluster analysis.

The application of K-means (ISODATA) cluster analysis to flow cytometric data is described. The results of analyses of flow cytometric data for mixtures of fluorescent microspheres and samples of peripheral blood mononuclear cells are presented. A method for simultaneously displaying list mode data for any number of parameters, which had previously been applied to a continuous set of parameters such as multi-angle light scattering data, is used to present the results of cluster analysis on physically unrelated parameters; this method allows rapid evaluation of the success of subpopulation identification. The factors that influence automated identification of subpopulations are examined, and methods for determining optimal values for these factors are described.

Flow Cytometry↗

Effect of chronic ethanol consumption on the pancreas of the hamster.

The purpose of this study was to determine the effect of chronic ethanol consumption on pancreatic morphology and biochemistry in the hamster, with special attention to lipid changes. A control group of Syrian golden hamsters fed a synthetic liquid diet was compared to an ethanol group pair-fed the same diet with ethanol substituted for 35% of the carbohydrate calories. The animals were sacrificed at 7 weeks and 3, 6, 9, and 12 months. After 12 months of ethanol consumption, a significant decrease in pancreatic triglycerides and a significant increase in pancreatic RNA was seen. These changes were associated with a rise in pancreatic weight and protein content in the ethanol group, reversing a six-month decline in these values. This rise in RNA and protein in the ethanol-treated group corresponded with the appearance of large abnormal zymogen granules. Other ultrastructural features such as lipid droplets, mitochondria, and endoplasmic reticulum were not altered by ethanol. Ethanol did increase the water content of the pancreas. Although ethanol had no effect on the fasting levels of insulin or pancreatic polypeptide, the fasting serum gastrin immunoreactivity was significantly lower in the ethanol animals. This study shows that chronic ethanol consumption produces a metabolic change in the hamster by 12 months which is suggestive of increased protein synthesis with a decrease in pancreatic triglycerides and no lipid droplet formation.

Age Factors↗

Postoperative enteral versus parenteral nutritional support in gastrointestinal surgery. A matched prospective study.

The effects of an elemental-enteral diet administered by a needle catheter jejunostomy or central total parenteral nutrition were prospectively studied in 15 patients undergoing abdominal operations. Infusions were started 1 day after operation and continued for 7 to 10 days. The two nutrient modalities were matched to deliver equal amounts of nitrogen and calories. Both promoted positive nitrogen balance and preserved body weight and serum proteins (albumin, transferrin, thyroxine-binding prealbumin, and retinol-binding protein). Both enteral and parenteral nitrogen caused a similar increase in plasma insulin levels. Pancreatic glucagon, total glucagon, gastrin, and pancreatic polypeptide were also maintained at similar levels in both groups. Plasma vasoactive intestinal polypeptide levels declined in patients receiving total parenteral nutrition but remained stable in the patients who were fed enterally. Both routes caused modest, inconsequential elevations in liver enzymes, but were otherwise equally safe. Patients tolerated total parenteral nutrition far better in the early postoperative period. Patients whose needs are great are probably better treated by total parenteral nutrition. Needle catheter jejunostomy feeding, however, is much less expensive. These studies do not support the commonly held belief that enteral nutrition is a more efficient route for administration of calories and protein.

Adult↗

Oestrogen receptor status and the response of human breast cancer cell lines to a combination of methotrexate and 17-beta oestradiol.

We have investigated the modifying influence of 17-beta oestradiol (E2), on the cytotoxicity of methotrexate (MTX) towards two cell lines derived from human breast carcinoma. E2 (10(-7) M-10(-6) M) significantly reduced the antimetabolic effects of the drug towards an E2 non-responsive cell line, MDA-MB-436, whilst potentiating the action of MTX in an E2 responsive line, MCF-7. Similarly, E2 (10(-6) M) partially reversed the anti-proliferative effects of MTX in the MDA-MB-436 line and potentiated growth inhibition in the E2 responsive cells. This potentiation was not observed if E2 was replaced by the less biologically active alpha-isomer. In both cell lines pharmacological concentrations of the E2 reduced intracellular levels of MTX achieved during a 48 h treatment period. The latter finding is consistent with the ability of E2 to protect MDA-MB-436 cells from the action of MTX. Potentiation of the effects of MTX towards MCF-7 cells occurs despite reduced intra-cellular drug levels.

Breast Neoplasms↗