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Colon, analysis

Keshavarzian, A., Sedghi, S., Kanofiky, J.R, List, T., Robinson, C., Ibrahim, C. and Winship, D. (1992c). Excessive production of reactive oxygen metabolites by inflamed colon analysis by chemiluminescence probe. Gastroenterology 103, 177-185. [Pg.166]

Tsumuia N, Kawazoe D, Nakaguchi T et al. (2008) Regression-Based Moxlel of Skin DiDuse Reflectance for Skin Colon- Analysis. Optical Review Vol. 15 No.6292 294. [Pg.396]

Perhaps the most useful contribution made by flavonoids in this group of plants, however, was the assistance they provided in studies of natural hybridization between Dubautia scabra and D. ciliolata (Crins et al., 1988a). Dubautia scabra is a pioneer plant that colonizes new lava moderately D. ciliolata occurs on somewhat older lava. Where newer flows overlap older ones, one can often find plants with features intermediate between the two species. This phenomenon is readily observed in the vicinity of Kilauea Volcano on the island of Hawaii, where one finds D. scabra subsp. scabra on newer substrate and D. ciliolata subsp. glutinosa on the older substrate. Since the two taxa exhibit different flavonoid profiles, and we know that flavonoid profiles are inherited in an additive fashion, hybrids would be expected to exhibit flavonoid markers inherited from each parent. A major advantage in this study was the availability of known Fj hybrids that had been produced from controlled crosses at the University of Hawaii (by G. D. Carr). Analysis of the... [Pg.256]

Hoffmann, R, Ji, H., Moritz, R. L., Connolly, L. M., Frecklington, D. F., Layton, M. J., Eddes, J. S., Simpson, R. J. (2001). Continuous free-flow electrophoresis separation of cytosolic proteins from the human colon carcinoma cell line LIM 1215 a non two-dimensional gel electrophoresis-based proteome analysis strategy. Proteomics 1(7), 807. [Pg.239]

Zhang, Z., Krylov, S., Arriaga, E.A., Polakowski, R., Dovichi, N.J. (2000). One-dimensional protein analysis of an HT29 human colon adenocarcinoma cell. Anal. Chem. 72, 318-322. [Pg.363]

Cole AR et al. Proteomic analysis of colonic crypts from normal, multiple intestinal neoplasia and p53-null mice a comparison with colonic polyps. Electrophoresis 2000 21 1772-1781. [Pg.119]

Minowa T et al. Proteomic analysis of the small intestine and colon epithelia of adenomatous polyposis coli gene-mutant mice by two-dimensional gel electrophoresis. Electrophoresis 2000 21 1782—1786. [Pg.119]

Simpson RJ et al. Proteomic analysis of the human colon carcinoma cell line (LIM 1215] development of a membrane protein database. Electrophoresis 2000 21 1707-1732. [Pg.119]

Careskey JM, Weber TR, Grosfeld JL Total colonic aganglionosis. Analysis of 16 cases. Am JSurg 1982 143 160-168. [Pg.21]

Narasaka T, Watanabe H, Yamagata S, Muna-kata A, Tajima T, Matatsunaga F Statistical analysis of diverticulosis of the colon. Tohoku J Exp Med 1975 115 271-275. [Pg.114]

Mahon, G.A.T., Green, M.H.L., Middleton, B., Mitchell, I.DeG., Robinson, W.D. and Tweats, D.J. (1989). Analysis of data from microbial colon assays. In Statistical Evaluation of Mutagenicity Test Data (Kirkland, D.J., Ed.). Cambridge University Press, pp. 26-65. [Pg.232]

Figure 2.13 Comparison of gene expression levels for (A) MDR1 (i.e. P-gp) and (B) human CYP3A4 and the homology in rat (CYP3A9), in duodenum and colon of human and rat intestine. The expression levels of transporters and metabolic enzymes are normalised by GADPH expression, transformed by natural logarithm and absolute values were used in the correlation analysis [121]. Figure 2.13 Comparison of gene expression levels for (A) MDR1 (i.e. P-gp) and (B) human CYP3A4 and the homology in rat (CYP3A9), in duodenum and colon of human and rat intestine. The expression levels of transporters and metabolic enzymes are normalised by GADPH expression, transformed by natural logarithm and absolute values were used in the correlation analysis [121].
Bryan EJ, Jokubaitis VJ, Chamberlain NL, Baxter SW, Dawson E, Choong DY, Campbell IG (2002) Mutation analysis of EP300 in colon, breast and ovarian carcinomas. Int J Cancer 102 137—141 Cairns BR (2001) Emerging roles for chromatin remodeUng in cancer biology. Trends Cell Biol 11 S15-S21... [Pg.254]

Rubinstein, A., and Rudai, R., In vitro and in vivo analysis of colon specificity of calcium pectinate formulations, Eur. J. Pharm. Biopharm., 41 291-295 (1995). [Pg.60]


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See also in sourсe #XX -- [ Pg.31 , Pg.142 , Pg.150 , Pg.151 , Pg.153 ]




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