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Biomedical subjects

H Shimura

Publications and source records attributed to H Shimura.

At least 55 records · Page 3Linked to original sources

A case of Meckel's diverticulum complicated by stenosis of the colon.

Meckel's diverticulum is a common anomaly of the GI tract that is known to cause small intestinal obstruction. A 17-yr-old male who had no history of previous surgery was admitted with intermittent abdominal pain. A barium enema showed extraintestinal compression of the ascending colon, suggesting the existence of a congenital band. Laparoscopy revealed that the ascending colon was lifted up and compressed by the intestinal end of a Meckel's diverticulum with a fibrous band connecting to the umbilicus. The portion of the ileum including the Meckel's diverticulum was resected. This is the first case of stenosis of the colon caused by a Meckel's diverticulum.

Adolescent↗

Telomerase activity in pancreatic juice differentiates ductal carcinoma from adenoma and pancreatitis.

Telomerase activity was measured in pancreatic juice obtained by endoscopic retrograde pancreatography from 34 patients (12 with ductal carcinoma, 12 with pancreatic adenoma, and 10 with pancreatitis). The activity in pancreatic juice was expressed as the number of cells of a human pancreatic cancer cell line, MIA PaCa-2, that exhibit an activity equal to that expressed in 1 microg of protein from pancreatic juice. A telomerase ladder was detected in the pancreatic juice obtained from a majority of the patients with ductal adenocarcinoma. The median value of relative telomerase activity in the carcinoma samples was 9.38 (25th percentile, 3.14; 75th percentile, 95.8), a value significantly higher than that derived from patients with either pancreatitis or pancreatic adenoma (P < 0.0001). When a threshold value of relative telomerase activity of 3.00 was used, 75% (9 of 12) of the samples obtained from patients with ductal carcinoma were positive. We conclude that telomerase activity in pancreatic juice differentiates adenocarcinoma from adenoma and pancreatitis and may serve as a useful diagnostic tool.

Adenocarcinoma↗

Telomerase elevation in pancreatic ductal carcinoma compared to nonmalignant pathological states.

Telomerase activity was measured in surgically resected tissues of 20 human pancreatic ductal carcinomas, 12 adenomas, 5 pancreatitis tissues, 14 normal pancreatic ducts, and 13 normal pancreatic tissues (primarily made up of acinar cells) using a PCR-based telomerase assay. Relative telomerase activity was expressed as the equivalent telomerase intensity of the number of cells of a human pancreatic cancer cell line, MIA PaCa-2, per microgram of protein in the tissue samples. The median value (25th percentile, 75th percentile) of relative telomerase activity in pancreatic carcinomas was 13.2 (3.58, 244), which was significantly higher relative to normal tissues, normal ducts, pancreatitis tissues, and adenomas (P < 0.0001). When the cutoff value of relative telomerase activity was set at 1.00 and 3.00, the positivity rates of telomerase activity in pancreatic ductal carcinomas were 100 and 80%, respectively. Some of the adenoma samples displayed a weak telomerase ladder. However, when semiquantitatively analyzed, the relative telomerase activity of all adenoma tissues was less than 1.00 equivalent cells per microgram protein of the tissues, which was equivalent to the values encountered in normal ducts. Thus, our results indicate that reactivation of telomerase may occur at a late stage of pancreatic ductal carcinogenesis. Therefore, telomerase may be a specific marker for distinguishing pancreatic cancer from pancreatitis and adenomas.

Adenocarcinoma↗

Functional expression of thyrotropin receptor in differentiated 3T3-L1 cells: a possible model cell line of extrathyroidal expression of thyrotropin receptor.

Thyrotropin receptor (TSHR) in extrathyroidal tissue, especially fat tissue, is supposed to have important roles in the development of extrathyroidal manifestations of Graves' disease. However, the molecular mechanism of TSHR expression is not known. Expression of TSHR mRNA and TSH-dependent cAMP production were observed in differentiated but not in undifferentiated 3T3-L1 cells. Maximal expression was obtained when the cells were differentiated in the presence of insulin, dexamethasone, and isobutylmethylxanthine (IBMX). Dexamethasone and IBMX were indispensable for the first three days. On the other hand, after day 4, insulin was indispensable for the expression of TSHR. 3T3-L1 cell is the first non-thyroidal cell line reported that expresses TSHR and whose expression can be induced. 3T3-L1 cell can be a good model to investigate the mechanism of expression of TSHR and extrathyroidal manifestations of Graves' disease.

1-Methyl-3-isobutylxanthine↗

In vitro analysis of peritoneal adhesions in peritonitis.

Peritoneal adhesions due to peritonitis make surgery more difficult and may cause complications. Clarifying the formation mechanism of peritoneal adhesions could help identify methods useful for their prevention. We cultured mesothelial monolayers on plates and microcarriers to simulate the parietal and visceral peritoneum, respectively. We then investigated the effects of lipopolysacchride (LPS) and tumor necrosis factor (TNF) on the homologous adhesion of these mesothelial monolayers. There was no adhesion of mesothelial monolayers in the control medium. When monolayers were cultured with endotoxin (LPS), approximately 90% of the microcarriers adhered to the mesothelial microplate. Adhesions occurred at LPS concentrations of 10 ng/ml and increased linearly in a dose-dependent manner. Kinetic studies revealed that the mesothelial adhesion appeared at 12 hr, and that 90% of the microcarriers were adherent after 24 hr. Open intercellular spaces were observed after a 24-hr treatment with LPS. Scanning electron microscopy revealed that the mesothelial cells adhered to the naked glass. LPS also caused increased permeability of the mesothelial monolayer. TNF did not cause any significant adhesion. Through our experiments we were able to develop an in vitro model of peritoneal adhesion using peritoneal mesothelial cell culture. Endotoxin caused an increase in homologous adhesion of peritoneal mesothelial monolayers, which may correspond to the initial stage of peritoneal adhesion formation in peritonitis.

Dose-Response Relationship, Drug↗

Semi-quantitative analysis of telomerase in pancreatic ductal adenocarcinoma.

Using a polymerase chain reaction-based amplification assay, we measured telomerase activity in surgically resected pancreatic ductal carcinomas (n = 16 cases) and normal ducts (n = 6), comparing findings with the telomerase activity of a human pancreatic cancer cell line, MIA PaCa-2, as a standard, i.e., relative telomerase activity was determined. Telomerase activity was expressed as the equivalent telomerase intensity of the number of cells of MIA PaCa-2 per microgram protein of tissue samples. The median value for telomerase activity in normal pancreatic ducts was 0.13 and the 25th and 75th percentile were 0.01 and 0.76. The median value for telomerase activity in pancreatic ductal adenocarcinoma was 34.7 (25th percentile, 4.98; and 75th percentile, 296), significantly higher than that of normal ducts (P < 0.001). When the cut-off value was set at 1.0 and 3.0, the telomerase positivity rate of pancreatic ductal adenocarcinomas was 100% and 81.3%, respectively. Telomerase may be specific marker for pancreatic ductal carcinomas.

Biomarkers, Tumor↗

Acquisition of invasive phenotype in gallbladder cancer cells via mutual interaction of stromal fibroblasts and cancer cells as mediated by hepatocyte growth factor.

Growth and motility of carcinoma cells are regulated through their interactions with host stromal cells, i.e., tumor-stromal interactions. Hepatocyte growth factor (HGF), a ligand for c-Met tyrosine kinase, is a stromal-derived regulator of growth, motility, and morphogenesis. HGF stimulated proliferation and motility of GB-d1 gallbladder carcinoma cells from a patient with gallbladder cancer. HGF induced in vitro invasion of GB-d1 cells into a collagen gel matrix, and this potent, invasive effect was not seen with epidermal growth factor, transforming growth factor-beta 1, basic fibroblast growth factor, or platelet-derived growth factor. Although GB-d1 did not produce HGF, the cells did produce a factor which enhances HGF production in human skin fibroblasts, and this factor proved to be interleukin-1 beta (IL-1 beta). When GB-d1 cells were co-cultured with fibroblasts such that a collagen gel matrix was layered between the GB-d1 cells and fibroblasts, GB-d1 cells invaded the gel, but invasion of the cells in the co-culture system was inhibited by antibodies against HGF and partially inhibited by antibodies against IL-1 beta. Thus, GB-d1 cell-derived IL-1 beta stimulates HGF production in stromal fibroblasts and HGF up-regulated in the fibroblasts induces invasion of GB-d1 cells. The looped interaction of carcinoma cells and stromal fibroblasts mediated by HGF and a HGF-inducer such as IL-1 beta may be one mechanism which would explain the acquisition of malignant phenotype through tumor-stromal interactions.

Cell Communication↗

Experimental correspondence between spore dosimetry and spectral photometry of solar ultraviolet radiation.

The biologically effective dose of solar UV radiation was estimated from the inactivation of UV-sensitive Bacillus subtilis spores. Two types of independent measurements were carried out concurrently at the Aerological Observatory in Tsukuba: one was the direct measurement of colony-forming survival that provided the inactivation dose per minute (ID/min) and the other was the measurement of the spectral irradiance by a Brewer spectrophotometer. To obtain the effective spectrum, the irradiance for each 1 nm wavelenght interval from 290 to 400 nm was multiplied with the efficiency for inactivation derived from the inactivation action spectrum of identically prepared spore samples. Integration of the effective spectrum provided the estimate for ID/min. The observed values of ID/min were closely concordant with the calculated values for the data obtained in four afternoons in 1993. The average ratio (+/- SD) between them was 1.24 (+/- 0.16) for 14 data points showing high inactivation rates (> 0.05 ID/min). Considering difficulties in the absolute dosimetry of UV radiation, the concordance was satisfactory and improved credibility of the two types of monitoring systems of biologically effective dose of solar UV radiation.

Bacillus subtilis↗

Differentiation of rat preadipocytes is accompanied by expression of thyrotropin receptors.

To investigate the regulation of expression of the TSH receptor (TSHR) in extrathyroidal tissues, the level of TSHR messenger RNA (mRNA) and TSH-dependent signal transduction were determined in isolated rat adipocytes and cultured preadipocytes. The epididymal, sc, and perirenal, but not the interscapular brown adipose tissues, possessed TSHR mRNA and increased cAMP responses to TSH and were thus used as the source of preadipocytes. Morphological analysis revealed that the combination of insulin and T3 most effectively caused the differentiation of rat preadipocytes. These differentiated preadipocytes exhibited increased cAMP production in response to TSH. The addition of FCS to the culture medium inhibited the differentiation of rat preadipocytes as well as TSH-stimulated production of cAMP. The stimulation of differentiation was associated with an increased expression of TSHR mRNA levels, whereas the inhibition of differentiation was associated with a decreased expression of TSHR mRNA, as detected by Northern blot analysis. The results indicate that the expression and function of the TSHR in cultured rat preadipocytes are closely related to cellular differentiation. Cultured rat preadipocytes appear to provide a useful system for studying the mechanism of extrathyroidal expression of TSHR.

Adipocytes↗

A Y-box protein is a suppressor factor that decreases thyrotropin receptor gene expression.

The decanucleotides in a tandem repeat, -162 to -140 bp, are suppressor elements that decrease TSH receptor (TSHR) gene expression by different mechanisms. A factor(s) interacting with the 3'-decanucleotide compete for proteins that bind the cAMP response element, -139 to -132 bp, a constitutive enhancer necessary for efficient TSHR expression. The 5'-decanucleotide is in a CT-rich, S1 nuclease-sensitive region of the promoter; its suppressor activity has been related to its ability to bind a nonthyroid-specific protein to its coding strand. In this report we clone a complementary DNA encoding a single strand DNA-binding protein that forms a specific protein-DNA complex with the coding strand of the 5'- but not the 3'-decanucleotide and not with the 5'-decanucleotide noncoding or double strand. We show, by cotransfection with TSHR promoter-chloramphenicol acetyltransferase chimeras, that the protein is a suppressor that regulates the function of the 5'- but not the 3'-decanucleotide. The protein is a Y-box protein that was previously cloned as an enhancer factor from the rat liver; it is, however, 95% identical to human YB-1, which suppresses major histocompatibility class II gene expression, and to human nuclease-sensitive element protein-1, a Y-box protein identified by its ability to bind single strand, CT-rich, nuclease-sensitive elements of genes that, like the TSHR, have GC-rich promoters. Unexpectedly, the Y-box protein binds two other sites in the minimal TSHR promoter in a single strand-specific fashion and acts a suppressor at each of these sites. One is associated with the insulin response element of the minimal TSHR promoter and is not in an overtly CT-rich region. The other is located 3' to the cAMP response element in a region termed the S-box, -120 to -113 bp, because of its homology to the S-box of the major histocompatibility class II promoter; this site is in a CT-rich area and, as in the class II promoter, is linked to cAMP-induced gene suppression. A conserved CCTC sequence in each site is important for the binding and suppressor function of the Y-box protein.

Amino Acid Sequence↗

Cloning of the single strand DNA-binding protein important for maximal expression and thyrotropin (TSH)-induced negative regulation of the TSH receptor.

Contiguous with the 5'-end of the thyroid transcription factor-1 (TTF-1) element upstream of the minimal TSH receptor (TSHR) promoter and within it, there is an element on the noncoding strand with single strand- binding activity. Mutation analyses indicate that it is functionally distinct from the TTF-1 element and is important for the constitutive expression and TSH/cAMP-induced negative autoregulation of the TSHR in thyroid cells but only constitutive expression in nonthyroid cells. In this report we identify a cDNA encoding a single strand-binding protein (SSBP) that forms a specific complex with the noncoding strand of the TSHR, contiguous with the 5'-end of both TTF-1 elements; we term it SSBP-1. SSBP-1 increases promoter activity when contransfected with heterologous SV40 promoter-chloramphenicol acetyltransferase (CAT) chimeras containing the upstream SSBP-binding element from the TSHR promoter or with TSHR promoter-CAT chimeras containing both or only the downstream SSBP element. Mutational analyses reveal that a GXXXXG motif is important for the binding and enhancer function of SSBP-1. TSH/cAMP decreases SSBP-1 RNA levels, as well as SSBP-1/TSHR DNA complex formation, in functioning rat FRTL-5 thyroid cells but not nonfunctioning FRT thyroid or Buffalo rat liver cells that have no TTF-1. SSBP-1 RNA is present ubiquitously; however, its levels are higher in FRTL-5 cells and are increased by overexpression of TTF-1 in cells treated with TSH. This reverses TSH-induced negative regulation of the TSHR. SSBP-1 is, therefore, a positive regulator of TSHR gene expression that contributes to TSHR maximal expression by binding to the SSBP elements. It is a ubiquitous, single-strand transcription factor whose expression in FRTL-5 thyroid cells is, however, regulated by a thyroid-specific gene, TTF-1. TSH/cAMP induces negative autoregulation of the TSHR, in part, by decreasing maximal expression resultant from SSBP-1 binding to the SSBP elements. Like Y-box proteins, which are involved in negative regulation of the TSHR, SSBP-1 also interacts with the major histocompatibility class II promoter S-box; the interaction is single strand-specific. This supports the hypothesis that common transcription factors regulate TSHR and major histocompatibility gene expression. Of additional interest and again like Y-box proteins, SSBP-1 is a member of a family of SSBPs that interact with RNA and are important in RNA processing, can interact with the promoter of retroviruses, and can interact with a gene linked to growth and DNA replication, c-myc.

Amino Acid Sequence↗

Value of the staged segmental crossclamp to the aorta technique and reimplantation of intercostal arteries for the prevention of spinal complications associated with surgery for descending and thoraco-abdominal aortic aneurysms.

Spinal complication associated with descending and thoracoabdominal aortic aneurysm surgery is most serious. This report deals with the value of the segmental crossclamp technique and/or reimplantation of intercostal arteries for the prevention of this serious complication. The subjects were 107 patients, 87 with descending thoracic and 21 with thoracoabdominal aortic aneurysm who were operated on from May 1987 to March 1992 at the National Cardiovascular Center in Osaka. The staged segmental crossclamp technique was applied in 24, while the reconstruction of intercostal arteries was undertaken in 25 patients. Thirteen patients received both procedures simultaneously. The surgical and hospital mortality rates were 1.8% and 8.4%, respectively. Spinal complications were encountered in 11 patients (8.3%), paraplegia in 2 (1.8%) and paralysis in 7 (6.5%). The incidence of paraplegia or paralysis did not decrease under the crossclamp technique and/or reimplantation of intercostal arteries, although no spinal complication was observed in the last consecutive 33 cases. It was speculated that although advances in surgical techniques in dealing with these lesions have been obtained, these two procedures did not completely prevent spinal ischemia/complication during surgical intervention.

Aorta↗

Laparoscopic splenectomy aided by balloon occlusion of the splenic artery: report of a case.

Laparoscopic splenectomy often involves difficulties in patients with splenomegaly because of a poor visual field and distorted and enlarged vessels secondary to the enlarged spleen. For safe and efficient laparoscopic splenectomy, we performed balloon occlusion of the splenic artery with the interventional angiographic technique in a patient with hereditary spherocytosis and splenomegaly. This new approach may be useful in terms of safety and time savings, especially in patients with splenomegaly.

Adult↗

The thyrotropin receptor.

This chapter has outlined the complex process required for thyroid growth and function. Both events are regulated by TSHR via a multiplicity of signals, with the aid of and requirement for a multiplicity of hormones that regulate the TSHR via receptor cross-talk: insulin, IGF-I, adrenergic receptors, and purinergic receptors. Cross-talk appears to regulate G-protein interactions or activities induced by TSH as well as TSHR gene expression. The TSHR structure and its mechanism of signal transduction is being rapidly unraveled in several laboratories, since the recent cloning of the receptor. In addition, the epitopes for autoantibodies against the receptor that can subvert the normal regulated synthesis and secretion of thyroid hormones, causing hyper- or hypofunction, have been defined. Studies of regulation of the TSHR minimal promotor have uncovered a better understanding of the mechanisms by which TSH regulates both growth and function of the thyroid cell. A key novel component of this phenomenon involves TSH AMP positive and negative regulation of the TSHR. Negative transcriptional regulation is a common feature of MHC class I genes in the thyroid. Subversion of negative regulation or too little negative regulation is suggested to result in autoimmune disease. Methimazole and iodide at autoregulatory levels may be important in reversing this process and returning thyroid function to normal. Their action appears to involve factors that react with the IREs on both the TSHR and the TG promoter. Too much negative regulation, as in the case of ras transformation, results in abnormal growth without function. TTF-1 is implicated as a critical autoregulatory component in both positive and negative regulation of the TSHR and appears to be the link between TSH, the TSHR, TSHR-mediated signals, TG and TPO biosynthesis, and thyroid hormone formation. Differentially regulated expression of the TSHR and TG by cAMP and insulin depend on differences in the specificity of the TTF-1 site, that is, the lack of Pax-8 interactions with the TSHR, and the IRE sites. Single-strand binding proteins will become important in determining how TSHR transcription is controlled mechanistically.

Amino Acid Sequence↗

Laparoscopic adrenalectomy: review of 14 cases and comparison with open adrenalectomy.

We reviewed 14 cases of laparoscopic adrenalectomy and compared the results with those of a recent series of 15 consecutive patients undergoing a traditional open adrenalectomy for a benign tumor. The laparoscopic adrenalectomy group included nine patients with primary aldosteronism, three with Cushing's syndrome, one with pheochromocytoma, and one with a nonfunctioning incidentaloma. In the patient with pheochromocytoma, a good operative field was safely obtained by a combination of pneumoperitoneum at less than 6 mm Hg insufflation pressure and the abdominal wall-lift method. In both groups, the tumors were removed successfully in all cases. Laparoscopic adrenalectomy, which required neither a large skin and muscle incision nor any resection of the ribs, offered a lower morbidity and earlier recovery in spite of the longer operation time. The most important complication observed in laparoscopic adrenalectomy was that of pneumothorax secondary to an injury of the diaphragm and pleura during the dissection of the left adrenal gland using electrocautery. However, the injury wound was small, and the pneumothorax was resolved by suturing the tear under laparoscopy. These results suggest that laparoscopic adrenalectomy is a minimally invasive alternative to traditional open adrenalectomy and thus has the potential soon to become a standard procedure for the treatment of benign adrenal tumors.

Adrenal Gland Diseases↗

Induction of invasive growth in a gallbladder cancer cell line by hepatocyte growth factor in vitro.

To study the mechanism of invasion and metastasis of gallbladder cancer cells, we established a cancer cell line, GB-d1, from a metastatic lymphnode of poorly differentiated adenocarcinoma of the gallbladder. GB-d1 cells proliferate well in a dish culture and form small cystic cell clusters in a collagen gel containing 10% fetal bovine serum. A conditioned medium of human embryonic lung fibroblasts (HEL) stimulated the proliferation of GB-d1 cells and induced cell scattering in the dish culture. In the gel culture, the conditioned medium induced a transformation of the spherical clusters to arborizating colonies with tubular projections that mimicked an invasion of cancer cells into the surrounding tissue. Similar results were obtained when 10 ng/ml of human recombinant hepatocyte growth factor (h-rHGF) was added to the culture medium. The proliferative and morphological changes induced by the conditioned medium were inhibited by antiserum against h-HGF. HEL and human gallbladder stromal fibroblast-like cells produced substantial levels of HGF in the culture media, while GB-d1 did not produce any detectable level of HGF. These results suggest that HGF promotes the invasive growth of gallbladder cancer cells in vitro, and it was also suggested that stromal fibroblasts may play an important role in the invasive progression of gallbladder cancer in a paracrine fashion.

Adenocarcinoma↗

Characterization of an up-stream thyroid transcription factor-1-binding site in the thyrotropin receptor promoter.

A thyroid transcription factor-1 (TTF-1)-binding element in the rat TSH receptor (TSHR) promoter, between -189 and -175 basepairs (bp), is important for both thyroid-specific expression and thyroid-specific TSH/cAMP autoregulation of the TSHR. The identification of an up-stream TTF-1-binding site and its relationship to the function of the down-stream TTF-1 element are the subjects of this report. Sequence analysis identifies a potential TTF-1 site at -878 bp; deoxyribonuclease-I footprinting shows that the -881 to -866 bp region is protected by recombinant TTF-1 protein and by nuclear extracts from FRTL-5 thyroid cells that contain TTF-1, but not by extracts from nonfunctioning FRT thyroid or Buffalo rat liver (BRL) cells, which have no TTF-1, or by Pax-8. FRTL-5, but not FRT or BRL cell nuclear extracts, form a specific protein-DNA complex with this region in gel mobility shift analyses; its formation is prevented by TTF-1-binding elements from the thyroglobulin promoter. The upstream TTF-1 site acts as an enhancer when coupled to a heterologous simian virus-40 promoter-chloramphenicol acetyltransferase (CAT) chimera and transfected into FRTL-5 thyroid cells. There is a greater increase, 3-vs. 2-fold (P < 0.05), when TSHR promoter-CAT chimeras, which contain the up-stream TTF-1 element, pTRCAT5'-907 or pTRCAT5'-886, as opposed to those in which it is deleted, pTRCAT5'-907 delta USTTF-1, are transfected into FRTL-5 cells or cotransfected with a TTF-1 expression vector into BRL cells, which have no endogenous TTF-1. The TTF-1-dependent activity of pTRCAT5'-907 delta USTTF-1 is the same as that of the minimal promoter, -220 to -39 bp, containing only the down-stream TTF-1 site in both cells. Transfection of chimeric TSHR-CAT plasmids with the down- and/or up-stream TTF-1 site deleted reveals that the down-stream TTF-1 element functions in the absence of the up-stream element, but function of the up-stream site requires the down-stream TTF-1 element. Like the down-stream TSHR TTF-1-binding site, the up-stream TTF-1 site is different from TTF-1 sites in the thyroglobulin and thyroid peroxidase promoter, in that it does not interact with Pax-8.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗