Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0027627 (metastases)
103,950 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Human lung adenocarcinoma sub-cell lines HAL-8, HAL-24 and HAL-33, showing different lung colonization potential (LCP), were established from human lung adenocarcinoma cell line KUM-LK-2 using repeated cloning with limiting dilution technique. Cell lines HAL-8 and -33 were characterized by high and low LCP, respectively, while HAL-24 did not give rise to lung colonies. The cell surface protein and carbohydrate profiles were determined by cell surface labeling (with lactoperoxidase-dependent 125I-iodination and galactose oxidase-NaB3H4, respectively) followed by SDS-gel electrophoresis. Various carbohydrate epitopes expressed at the cell surface were analysed by cytofluorometry using various monoclonal antibodies (MAbs) directed to Le(x), sialosyl-Le(x), sialosyl dimeric Le(x), T, Tn and sialosyl-Tn structures, which are often reported as being highly expressed in a variety of human cancers, particularly adenocarcinoma. Expression of sialosyl dimeric Le(x) (defined by MAb FH6) was high on HAL-8, moderate on HAL-33, and relatively low on HAL-24. In contrast, each of the three lines showed essentially equal expression (as determined by MAb reactivity) of sialosyl-Tn (defined by MAb TKH2), Le(x) (defined by MAb SH1), and Tn (defined by MAb 1E3). The cell lines showed extremely weak expression of T (defined by MAb HH8). LCP of HAL-8 and -33 was completely inhibited by sialidase treatment of cells. It is suggested that higher expression of sialosyl dimeric Le(x) (defined by MAb FH6) in HAL-8 cells may play an important role in higher potential of blood-borne lung colonization.
Clin Exp Metastasis
PMID:Human lung adenocarcinoma cell lines with different lung colonization potential (LCP), and a correlation between expression of sialosyl dimeric Le(x) (defined by MAb FH6) and LCP. 167 53

From the highly metastatic in vivo-passaged Friend leukemia cells (FLC), WGA-resistant (WR) tumor cell variants were selected. These WR FLC had lost their capacity to metastasize when injected i.v. or s.c. into DBA/2 mice. We have characterized the plasma membrane glycoproteins of the different FLC types by: (i) metabolic labelling with (3H)-galactose; (ii) surface labelling with galactose oxidase-borohydride; (iii) direct binding of (125I)-lectins on glycoproteins separated by SDS-PAGE. The ensemble of these approaches showed that the 100- to 200-kDa glycoproteins of in vivo-passaged FLC and WR FLC exhibited a very similar distribution of the terminal galactose in their oligosaccharide moieties. In contrast, the expression of terminal sialic acid was reduced in WR FLC with respect to in vivo-passaged counterparts as appreciated by: (i) binding experiments with (125I)-WGA; (ii) cathodic shift of the 100- to 200-kDa glycoproteins in 2-dimensional electrophoresis studies, and (iii) thiobarbituric acid assay after FLC treatment with neuraminidase. Moreover, binding experiments with (125I)-LPHA, (125I)-ConA and (125I)-WGA (after Smith degradation) indicated that, in the 100- to 200-kDa region, virtually identical asparagine-linked tri- or tetra-antennary complex-type oligosaccharides were expressed in both cell types. We conclude that the sialylation of high-molecular-weight surface glycoproteins (particularly in the 150-kDa region) is strongly associated with the metastatic potential of FLC, especially to the liver.
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PMID:Hyposialylation of high-molecular-weight membrane glycoproteins parallels the loss of metastatic potential in wheat-germ agglutinin-resistant Friend leukemia cells. 291 Aug 24

Gastric and intestinal phenotypic expression in 37 surgically obtained primary signet ring cell carcinomas, five of their metastases to lymph nodes, and three signet ring cell carcinomas transplanted into nude mice were determined by biochemical, mucin, histochemical, and ultrastructural studies. Crude extracts of cancer tissues were used for measurements of pepsinogen isozymes, sucrase, aminopeptidase (microsomal), and alkaline phosphatase. Histochemical staining of mucin by paradoxical concanavalin A, the galactose oxidase-Schiff sequence and sialidase-galactose oxidase-Schiff, and the periodate-borohydride technique/potassium hydroxide/periodic acid-Schiff procedure was performed. The procedures allowed clear definition of pyloric gland, surface mucous, small and large intestinal goblet, and intestinal absorptive cell types. Of 40 specimens examined, 19 consisted entirely of gastric-type cells, and three entirely of intestinal-type cells. The others consisted of mixtures of gastric and intestinal-type cells. The observed high incidence of intestinal-type cells in signet ring cell carcinomas suggested that intestinal-type cells develop independently from intestinal metaplasia within signet ring cell carcinomas (diffuse-type gastric cancers), which probably originate from nonmetaplastic gastric mucosa.
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PMID:Gastric and intestinal phenotypic expressions of human signet ring cell carcinomas revealed by their biochemistry, mucin histochemistry, and ultrastructure. 301