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Biomedical subjects

M Koono

Publications and source records attributed to M Koono.

At least 73 records · Page 4Linked to original sources

Expression of intestinal trefoil factor mRNA is downregulated during progression of colorectal carcinomas.

AIMS: Intestinal trefoil factor is a mucosa associated trefoil peptide expressed predominantly in the goblet cells of the small and large intestine. The aim of this work was to investigate the expression of the intestinal trefoil factor gene in human colorectal cancers. METHODS: The expression of intestinal trefoil factor mRNA was examined by northern blot analysis in 27 cases of surgically resected primary colorectal carcinoma of various stages. RESULTS: Although intestinal trefoil factor mRNA was expressed consistently in the tumours, the levels of expression varied considerably among the cases examined. The levels of expression were low in advanced stage tumours (Dukes's B, C, and D) compared with early stage tumours (Dukes's A) (p < 0.05). In addition, there was a tendency towards a positive correlation, albeit not well defined, between the amounts of intestinal trefoil factor mRNA and the histological differentiation of tumours. CONCLUSIONS: Intestinal trefoil factor mRNA was expressed consistently in the cases of colorectal carcinoma studied and expression was inversely associated with tumour progression.

Adult↗

Progressive retinitis-encephalitis due to ganciclovir-resistant cytomegalovirus associated with aplastic anemia.

A 29-year-old woman with aplastic anemia who complained of visual disturbances and pain in the right eyeball was diagnosed as having cytomegalovirus (CMV) retinitis based upon the characteristic retinal changes and isolation of CMV. She received treatment with ganciclovir (GCV), and the retinitis initially responded for several months. However, the patient was found to have CMV lesions in the left eye followed by neurological symptoms. The CMV isolated just before her death was approximately 20 times more resistant to GCV than that isolated previously, suggesting that the GCV-resistant CMV had developed during the long-term treatment with GCV.

Adult↗

Modulation of E-cadherin expression in TPA-induced cell motility: well-differentiated human adenocarcinoma cells move as coherent sheets associated with phosphorylation of E-cadherin-catenin complex.

We previously presented a two-dimensional cell motility assay using L-10, a highly metastatic variant of the human rectal adenocarcinoma cell line RCM-1, as a motility model of tumor cells of epithelial origin. In this model, L-10 cells moved outward from the cell islands mainly as a localized coherent sheet of cells when stimulated with 12-O-tetradecanoylphorbol-13-acetate (TPA). Electronmicroscopic study of the migrating cell sheets revealed that wide intercellular gaps had developed at the lower portion of the cells, allowing them to extend leading lamellae, whereas close cell-cell contacts remained at the upper portion of the cells. In the present study, the mechanism involved in this localized modulation of cell-cell adhesion at the lower portion of the cells was investigated with special reference to E-cadherin expression. E-cadherin immunostaining, which was demonstrated using an anti-E-cadherin mAb, HECD-1, was decreased in migrating L-10 cell sheets. Apparently, however, E-cadherin was involved in the sheet formation of migrating cells because simultaneous or sequential treatment with TPA and HECD-1 inhibited sheet formation and caused scattering of migrating cells. With immunoelectron microscopic study, E-cadherin immunoreactivity was confined to the upper portion of migrating cells and lost at the lower portion. The level of E-cadherin and alpha-catenin expression was not altered by TPA treatment, although tyrosine phosphorylation of E-cadherin and catenins increased 1.6- to 1.9-fold. We propose that cells are released from cell-cell adhesion only at the lower portion of the cells via phosphorylation of the E-cadherin-catenin complex when stimulated with TPA. This change allows the cells to extend leading lamella and thus move together as coherent sheets (cohort migration).

Adenocarcinoma↗

Modulation of matrix metalloproteinase-7 (matrilysin) secretion in coculture of human colon carcinoma cells with fibroblasts from orthotopic and ectopic organs.

Matrix metalloproteinase-7 (MMP-7) is a member of the family of matrix-degrading metalloproteinases that are believed to contribute to the complex process of cancer invasion and metastasis. The secretion level of MMP-7 as assayed by immunoblot analysis was low but distinct in the culture medium of a human colon carcinoma cell line, WIDr, whereas none of the fibroblasts secreted the detectable level of MMP-7. The coculture of WiDr with various human fibroblasts from orthotopic (colon) and ectopic (thyroid, brain, lung, and skin) organs significantly stimulated the secretion of MMP-7 compared with the cultures of individual cells. Reverse transcriptase-polymerase chain reaction analysis and RNA blot analysis suggested that this enhancement occurred at a pretranslational level. The extent of the stimulation was widely varied by the fibroblasts used and was dependent on the cellular ratios and density in the coculture. There may exist a tendency that fibroblasts of orthotopic origin stimulate more extensively than do those of ectopic origin. Moreover, in the coculture of high cell density, normal fibroblasts from the ectopic organs reduced the MMP-7 secretion. The stimulation of MMP-7 secretion may be partially mediated through soluble factor(s); however, direct cell-cell interactions would be required for maximum stimulation. The enhanced MMP-7 secretion was also observed in coculture of colon fibroblasts with other colorectal carcinoma cell lines such as RCM-1 and SW837, which secreted hardly detectable levels of MMP-7 in the individual culture. These results suggest that MMP-7 secretion by colon carcinoma cells is influenced by specific interactions between the carcinoma cells and host fibroblasts.

Cell Communication↗

Establishment and characterization of a new human glioblastoma cell line (MGM-1) with highly motile phenotype.

A new cell line MGM-1 was established from a primary tumor of the left temporal lobe with histological diagnosis of glioblastoma multiforme, removed from a 64-year-old Japanese male. The patient died of recurrence and unusual extracranial metastases of the tumor 7 months after the surgery. The cultured MGM-1 cells are spindle or polygonal in shape. After serial passages, glial fibrillary acidic protein became negative immunocytochemically in vitro. The modal chromosome number was 61-64. Doubling time and soft agar colony forming efficiency were 42.9h and 0.4%, respectively (at 25th passage). MGM-1 is a highly motile cell line in vitro and its serum-free conditioned medium is chemotactic and chemokinetic for other glioma cells. Secretion of gelatinases (probably MMP-2/72-kDa type i.v. collagenase) and MMP-9/92-kDa type i.v. collagenase) and urokinase-type plasminogen activator were also investigated. MGM-1 would therefore be useful for studying the mechanisms regulating glioma-cell motility and invasion. The MGM-1 cell line has been propagated continuously by serial passages (more than 100 passages) during the past 4 years.

Brain Neoplasms↗

Effects of hepatocyte growth factor (HGF) on human glioma cells in vitro: HGF acts as a motility factor in glioma cells.

Expression of c-Met, the receptor for hepatocyte growth factor (HGF), and the biological roles of HGF were examined in cultured human glioma cells. All of the 5 glioma cell lines examined expressed c-Met protein as well as the c-met gene. Expression of the c-met gene was also confirmed in a glioblastoma tissue. Three cell lines (MGM-3, U251, KG-1-C) demonstrated chemotactic response to HGF in a dose-dependent manner. The response was not only chemotactic but also chemokinetic as judged by a checkerboard analysis. The amounts of c-Met mRNA and protein were abundant in the cell lines which showed a migratory response to HGF. Moreover, c-Met protein expression was highest in U251 with the highest migratory response to HGF. Among the cell lines, KG-1-C produced notable amounts of HGF protein as well as of c-Met, suggesting that HGF may act in an autocrine fashion in this case. HGF did not act as an apparent growth factor in the glioma cell lines examined. Furthermore, HGF stimulated the production of metalloproteinase, probably gelatinase A, in U251 cells.

Cell Division↗

Stimulation of gelatinase B and tissue inhibitors of metalloproteinase (TIMP) production in co-culture of human osteosarcoma cells and human fibroblasts: gelatinase B production was stimulated via up-regulation of fibroblast growth factor (FGF) receptor.

Co-cultures of human osteosarcoma Takase (OST) cells with various human fibroblasts derived from surgical specimens stimulated production of gelatinase B (92-kDa type-IV collagenase, MMP-9), tissue inhibitors of metalloproteinase (TIMP)-1, and TIMP-2 when compared to cultures of individual cells. The maximum stimulation of gelatinase-B production occurred at a cellular ratio of 1:1. Conditioned media from several fibroblast cultures stimulated OST cells to produce gelatinase B, TIMP-1 and TIMP-2, but not vice versa. Among various recombinant growth factors or cytokines, tumor necrosis factor (TNF)-alpha stimulated gelatinase-B production in cultures of OST cells alone, while recombinant basic fibroblast growth factor (bFGF) stimulated gelatinase-B production in co-cultures of OST cells with skin fibroblasts but not in individual cultures of each cell type. In the co-cultures, gelatinase-B production was inhibited by anti-bFGF monoclonal antibody (MAb), but not by anti TNF-alpha MAb. This co-culture-specific stimulation of gelatinase-B production by bFGF was associated with increased expression of the FGF receptor in the co-culture.

Animals↗

Feasibility of archival non-buffered formalin-fixed and paraffin-embedded tissues for PCR amplification: an analysis of resected gastric carcinoma.

Although several factors affecting the sensitivity of polymerase chain reaction (PCR) amplification from formalin-fixed tissues have been investigated mostly by experiments, the feasibility of archival formalin-fixed, paraffin-embedded tissue samples stored in pathology departments for PCR amplification has rarely been examined directly. Thus, the feasibility of 74 archival unbuffered 10% formalin-fixed, paraffin-embedded tissues for PCR amplification with primers producing a 190 b.p. DNA segment of p53 exon 5 was investigated. Fixation time was the critical factor influencing the sensitivity of PCR amplification. All (6/6) of the samples fixed for only 1 day, 44% (7/16) of the samples fixed for 2-3 days and 14% (4/28) of the samples fixed for 4-6 days showed successful amplification, while no amplification was obtained for the samples fixed for 7 days or more. The peak size of DNA extracted from the archival tissues decreased as the fixation time became longer. Experiments using xenografted tumor tissues fixed for various times showed longer permissible fixation time; up to 9 days of fixation, decreasing amounts of PCR products were obtained while no amplification was obtained for the samples fixed for 12 days or more. The time in paraffin seemed to be a minor factor for PCR amplification since all of the 1 day fixation samples, including those that had been embedded for up to 5 years, resulted in efficient amplification. The size of the amplified DNA segments, however, could be another factor influencing the sensitivity of amplification because even the 1 day fixation samples showed less amplification of 345 b.p. DNA compared with those of 167 and 262 b.p. DNA. Additionally, a point mutation was detected in the amplified p53 products from archival tissues using a non-isotopic method, temperature gradient gel electrophoresis. In conclusion, archival tissue samples that had been fixed immediately for only up to 1 day were constantly available for PCR amplification of approximately 200 b.p. DNA segments, suggesting that surgical specimens should be subjected to cutting and paraffin embedding just after 1 day or less fixation for subsequent use in PCR amplification.

Animals↗

Concomitant expression of hepatocyte growth factor (HGF), HGF activator and c-met genes in human glioma cells in vitro.

Three new cell lines of human glioblastoma have been established. These cells co-expressed hepatocyte growth factor (HGF) and its receptor, c-Met, genes in vitro. Reverse-transcriptase/polymerase-chain reaction study revealed that the cells also expressed gene for HGF activator, a recently cloned serine proteinase, suggesting that HGF might have a role in glioma cells in vitro as an autocrine factor. The activator mRNA was also detected in other well-established glioma cell lines, glioma tissues and normal brain. The concomitant expression of HGF, HGF activator and c-met was also detected in one glioblastoma case in vivo out of five tested.

Base Sequence↗

Reverse-zymographic analysis of protease nexin-II/amyloid beta protein precursor of human carcinoma cell lines, with special reference to the grade of differentiation and metastatic phenotype.

Trypsin inhibitors in serum-free conditioned media (SFCM) of various human carcinoma cell lines were analyzed by reverse zymography. Most of the cells secreted high-molecular-weight trypsin inhibitors (HMTI) larger than 100 kDa. The cell lines of colorectal carcinoma origin had a tendency to secrete HMTI whose molecular weight was a little higher than that of the other cell lines. Analysis of SFCM of subclones with different histological differentiation and metastatic/invasive potentials derived from a single pancreatic carcinoma cell line SUIT-2 showed that the HMTI activity in SFCM was correlated to the degree of histological differentiation in vivo and tended to be inversely correlated to their metastatic/invasive capabilities. Immunoblotting analysis revealed that these HMTI were protease nexin-II/amyloid beta protein precursors (PN-II/APP). Semi-quantificative reverse-transcriptase/polymerase-chain reaction study for PN-II/APP mRNAs suggested that the differences in PN-II/APP activities in SFCM between the subclones might be post-transcriptional or post-secretional events. In addition, SFCM of a highly metastatic subclone contained 43-kDa protein which reacted to anti-APP monoclonal antibody (MAb) suggesting that the subclone may have APP-degrading activity.

Adenocarcinoma↗

Ultrastructural study of TPA-induced cell motility: human well-differentiated rectal adenocarcinoma cells move as coherent sheets via localized modulation of cell-cell adhesion.

We previously found that 12-O-tetradecanoylphorbol-13-acetate (TPA)-enhanced invasion of Matrigel was associated with augmentation of cell motility but not with metalloproteinase activity in a highly metastatic variant (L-10) of human rectal adenocarcinoma cell line RCM-1. In a two-dimensional cell motility assay, TPA induced active L-10 cell locomotion with characteristic morphology; the cells moved outwards from the cell islands mainly as a localized coherent sheet of cells. The leading cells showed locomotor morphologies with fan-shaped leading lamellae while the following cells had cell contacts on all sides and appeared to lack leading lamellae. In the present ultrastructural study, the following cells frequently showed tapering cytoplasmic protrusions and leading lamella-like processes underlapping a preceding cell, indicating that the locomotion mechanism is almost the same for both the leading and following cells. For this type of locomotion as a coherent sheet we propose that localized modulation of cell-cell adhesion was induced such that wide intercellular gaps occurred at the lower portion of the cells to allow the cells to extend the tapering cytoplasmic processes and leading lamellae while close cell-cell contacts remained at the upper portion of the cells. These TPA-induced changes took place predominantly in the cells at the periphery of the cell islands, while the cells in the middle of the cell islands maintained close cell-cell contacts including complex interdigitation all around the cells, suggesting the modulation of TPA action by cell-cell interaction. Additionally, consistent with the evidence for junctional complexes between the cells moving outwards, the Lucifer-yellow dye transfer studies showed some, limited cell-cell coupling, suggesting the presence of at least some gap junctional intercellular communication in the moving cell sheets.

Actin Cytoskeleton↗

Application of in situ hybridization with a novel phenytoin-labeled probe to conventional formalin-fixed, paraffin-embedded tissue sections.

Non-isotopic in situ hybridization with a novel phenytoin (PHE)-labeled probe was developed. The mixture of cloned cytomegalovirus (CMV) DNA fragments was labeled by random primer technique using PHE-11(spacer)-dUTP, instead of dTTP. The tissue sections were treated with 0.2 N HCl and with proteinase K (1 microgram/ml), and then heated at 70 degrees C in the presence of 50 or 75% formamide. The sections were hybridized with PHE-labeled probe at 37 degrees C overnight. The hybridization signal was visualized by alkaline phosphatase-5-bromo-4-chloro-3-indolyl phosphate (BCIP)/4-nitroblue tetazolium (NBT) system. Strong hybridization signals were detected in sections of the small intestine and the placenta, even when denatured in the presence of 50% formamide. In the case of small intestine, CMV DNA was also detected in the endothelial cells of the mucosa where apparent infected cell was not observed histologically. In the sections of the submaxillary gland, the lung, the adrenal gland and the ovary, hybridization signal was not detected when denatured in the presence of 50% formamide, but detected after denaturation with 75% formamide. Thus, in situ hybridization with the novel PHE-labeled probe is applicable to conventional formalin-fixed, paraffin-embedded tissue sections.

Adrenal Glands↗

A two-dimensional model of cell movement. Well differentiated human rectal adenocarcinoma cells move as coherent sheets upon TPA stimulation.

We previously found that 12-O-tetradecanoylphorbol-13-acetate (TPA)-enhanced invasion of Matrigel was associated with augmentation of cell motility but not with metalloproteinase activity in a highly metastatic variant (L-10) of human rectal adenocarcinoma cell line RCM-1. In the present study, with a two-dimensional cell motility assay, we investigated morphology of TPA-induced motility and biochemical pathways that may be involved in the induction of such a motile response to TPA. TPA induced active cell locomotion in L-10 cells with characteristic morphology: the cells moved outwards from the cell islands mainly as a localized coherent sheet of cells with few single moved out cells, but not cell proliferation. The front cells showed locomotor morphologies with front-tail polarity and well-spread leading lamella. Thus, this TPA-induced L-10 cell spreading and motility system seems to be a good model to investigate how well-differentiated adenocarcinoma cells move as cohesive cell nests. Agents which selectively modulate the adenylate cyclase or G protein-related pathways, e.g., 2',5'-dideoxyadenosine and pertussis toxin, had negligible effect upon motility. In contrast, the membrane-permeable synthetic diacylglycerol 1-oleoyl-2-acetyl-glycerol, which has been reported to activate protein kinase C (PKC) directly, could induce cell spreading and motility. Unexpectedly, PKC inhibitors staurosporine and H-7 enhanced TPA-induced cell spreading and motility. Staurosporine itself could induce cell spreading and motility. Taken together, these observations suggested possible involvement of PKC in TPA-induced L-10 cell spreading and motility and that staurosporine might have PKC agonist effect on induction of the spreading and motility.

Adenocarcinoma↗

Establishment of a new human urinary bladder mixed carcinoma cell line UMK-1 and its cell-density-dependent secretion of gelatinases and tissue inhibitor of metalloproteinase-1.

A new human carcinoma cell line, UMK-1, was established from primary urinary bladder carcinoma with histological diagnosis of transitional cell carcinoma grade 2, with squamous and adenocarcinomatous differentiation. These histologic features were maintained in the cultured cells and in xenografted tumors in nude mice. Ultrastructurally, the cultured cells were characterized by formation of glandular structure with well-formed junctional complexes and microvilli, intracytoplasmic lumina and tonofilament bundles. Upon continuous propagation in serum-free medium, UMK-1 cells secreted gelatinases and tissue inhibitor of metalloproteinase (TIMP)-1 into the conditioned medium. The gelatinolytic activities which were inhibited by EDTA, were composed of a major band at 95 kD and a minor band at 68 kD on gelatin zymography. The measurement of TIMP-1 in the conditioned medium was performed by the one-step sandwich enzyme immunoassay system. The production of gelatinases and TIMP-1 was observed during the late log phase of the cell growth and those productions showed similar kinetics. UMK-1 cells can be used to study the interaction of tumor cell-derived gelatinolytic proteinases and TIMP-1 in cancer invasion and metastasis.

Animals↗

A case report of colonic ileus due to eosinophilic nodular lesions caused by Gnathostoma doloresi infection.

Gnathostomiasis is primarily a disease of the skin characterized as creeping eruption or mobile erythema. However, larval Gnathostoma sometimes migrate into an unexpected site to elicit serious illness. Here we describe a case of colonic ileus caused by Gnathostoma doloresi. The patient was a 57-year-old man living in Miyazaki Prefecture, Japan, which is known as an area endemic for this parasite. One week after having eaten a few slices of the flesh of a snake (Agkistrodon halys), he developed severe abdominal pain. An abdominal radiograph revealed multiple gas-fluid levels with a distended bowel of an inverted U shape. A barium enema revealed a tumor in the ascending colon near the hepatic flexure that was surgically removed by simple colonic resection. An oblique section of a parasite surrounded by massive infiltration of eosinophils was found by postoperative histopathologic examination. The entire body of the advanced third-stage larva of G. doloresi was dissected from a specimen-embedded paraffin block.

Animals↗

Establishment and characterization of a human renal carcinoma cell line MRT-1, with special reference to the production of serine proteinase inhibitors.

A new human cell line MRT-1 was established from a metastatic lymph node of renal cell carcinoma of a 47 years old Japanese male. The cultured MRT-1 cells exhibit an epithelial appearance and contain lipid vacuoles in their cytoplasm in vitro. The modal chromosome number was 70. Doubling time and plating efficiency were 32.5 h and 5%, respectively (at the 47th passage). Injection of 1X10(6) MRT-1 cells beneath the renal capsule of nude mice resulted in tumor formation resembling the original tumor. Serine proteinase inhibitors produced by the cell line were analyzed. The cultured cells produced alpha 1-antitrypsin (alpha 1-AT) and plasminogen activator inhibitor-1 (PAl-1) into the conditioned medium. Most of the MRT-1 derived alpha 1-AT had lost the affinity to Concanavalin A when compared to the normal plasma alpha 1-AT.

Animals↗

Discovertebral junction of the spine--a cadaveric study by spin-echo MR imaging.

To evaluate the MR appearance of the discovertebral junction (DVJ) of the spine, we examined 161 DVJs in 27 cadaveric spines using superconductive MR imaging. T1-, proton density-, and T2-weighted spin-echo imaging were used. With a small surface coil, higher resolution and more sharply defined contours of the DVJ were obtained than when using a head coil. Cortical bone had very low signal intensity in all sequences. Cartilaginous end-plate (CP) was of low to intermediate signal intensity on T1-weighted images, and of low signal intensity on proton density- and T2-weighted images. MR images were able to reveal the gross CP appearances, Schmorl's nodules, and adjacent bone marrow pathology. We conclude that MR imaging is valuable for assessing abnormalities of the DVJ.

Artifacts↗

Preferential alternative splicing in cancer generates a K-sam messenger RNA with higher transforming activity.

K-sam, also designated fibroblast growth factor receptor 2/BEK, was originally cloned from a stomach cancer cell line KATO-III. The gene is amplified and overexpressed preferentially in poorly differentiated types of stomach cancers. The major K-sam transcript in KATO-III cells encodes a receptor protein with a truncated carboxyl terminus and with a high-affinity binding site for keratinocyte growth factor. This truncated type is produced by an alternative splicing mechanism, and in normal tissues, the truncated type is far less prevalent than the untruncated form. The variant K-sam complementary DNA lacks tyrosine 769, which is a putative phospholipase C gamma 1 association site, and showed a higher transforming activity to NIH3T3 cells than the untruncated form, which is identical with the keratinocyte growth factor receptor.

3T3 Cells↗