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Biomedical subjects

T Ishiwata

Publications and source records attributed to T Ishiwata.

At least 37 records · Page 2Linked to original sources

Fas and Fas-ligand expression in human pancreatic cancer.

OBJECTIVE: To investigate Fas and FasL expression in pancreatic tissues and cultured pancreatic cancer cell lines, and to assess the ability of anti-Fas antibodies to induce apoptosis. SUMMARY BACKGROUND DATA: Activation of the Fas receptor by Fas-ligand (FasL) results in apoptosis, and dysregulation of this pathway may contribute to abnormal cell proliferation. METHODS: Northern blotting and immunohistochemistry were used to compare Fas and FasL expression in normal and cancerous tissues. DNA 3'-OH end labeling was used to detect apoptotic cells. The effects of Fas activation on cell growth and signaling pathways were investigated in culture. RESULTS: Pancreatic cancers exhibited increased Fas RNA levels, whereas FasL mRNA levels were similar in both groups. Despite the colocalization of Fas and FasL in the cancer cells, an apoptotic signal was present in approximately 10% of these cells in only 2 of 16 cancer samples. Fas and FasL were coexpressed in all four cell lines, whereas Fas-associated phosphatase 1 was below the level of detection in all cell lines. Only COLO-357 cells underwent apoptosis after Fas activation. Apoptosis was associated with enhanced activation of jun kinase (JNK) and p38 mitogen-activated protein kinase (MAPK). In the presence of actinomycin D, Fas antibody also induced apoptosis in the other three cell lines. CONCLUSIONS: These results suggest that pancreatic cancer cells are resistant to Fas-mediated apoptosis by mechanisms excluding receptor downregulation or Fas-associated phosphatase upregulation and raise the possibility that Fas-mediated apoptosis may be dependent on the activation of the JNK/p38 MAPK pathway in these cells.

Adenocarcinoma↗

Coexpression of FAS and FAS-ligand in chronic pancreatitis: correlation with apoptosis.

Activation of the Fas receptor by Fas-ligand (FasL) results in apoptosis, and dysregulation of this pathway may contribute to abnormal cell proliferation and cell death. The aim of this study was to compare the expression of Fas and FasL in the normal pancreas and chronic pancreatitis (CP). By Northern blotting, Fas messenger RNA (mRNA) levels were increased in CP in comparison to the normal pancreas. Immunostaining revealed that faint Fas and FasL immunoreactivity was present in ductal and islet cells of the normal pancreas. In CP, there was faint Fas and strong FasL immunoreactivity in the proliferating ductal cells. Additionally, many of these ductal cells in the CP samples exhibited an apoptotic signal, as determined by DNA 3'-OH end labeling. These findings suggest that activation of apoptosis through the Fas receptor may contribute to the pathobiology of CP.

Adult↗

Model equation for strongly focused finite-amplitude sound beams

A model equation that describes the propagation of sound beams in a fluid is developed using the oblate spheroidal coordinate system. This spheroidal beam equation (SBE) is a parabolic equation and has a specific application to a theoretical prediction on focused, high-frequency beams from a circular aperture. The aperture angle does not have to be small. The theoretical background is basically along the same analytical lines as the composite method (CM) reported previously [B. Ystad and J. Berntsen, Acustica 82, 698-706 (1996)]. Numerical examples are displayed for the amplitudes of sound pressure along and across the beam axis when sinusoidal waves are radiated from the source with uniform amplitude distribution. The primitive approach to linear field analysis is readily extended to the case where harmonic generation in finite-amplitude sound beams becomes significant due to the inherent nonlinearity of the medium. The theory provides the propagation and beam pattern profiles that differ from the CM solution for each harmonic component.

Journal Article↗

Triple-staining to identify apoptosis of hepatic cells in situ.

To identify apoptosis of nonparenchymal cells in fibrotic livers, we established a triple staining method which combined immunohistochemistry for cell markers and Masson staining for collagen as well as terminal deoxynucleotidyl transferase UTP nick end labeling (TUNEL). Five microm formalin fixed, paraffin-embedded liver sections were prepared for staining. Firstly, TUNEL staining was carried out to detect apoptosis of liver cells. Then, the sections were subjected to immunohistochemistry for alpha-smooth muscle actin (alpha -SMA) or KP-1 to identify hepatic stellate cells or Kupffer cells. Finally, Masson staining was performed to show the relationship between apoptosis and collagens. In addition, we optimized different conditions of fixation, digestion and color development which may affect the results.

Animals↗

[Progressive limb-kinetic apraxia with myoclonus focal atrophy in the postcentral gyrus and the supplementary motor area].

We report a 70-year-old right handed man with a 5-year history of slowly progressive clumsiness of his left hand. A neurological examination disclosed mild rigidity and myoclonus in his left hand. He showed limb-kinetic apraxia, but neither ideational apraxia nor ideomotor apraxia was present. Aphasia and agnosia were also absent. He was thought to have the primary progressive limb-kinetic apraxia clinically. Brain CT and MRI revealed focal atrophy in the right postcentral gyrus and the supplementary motor area. A positron emission tomography (PET) study showed diffuse decrement of cerebral blood flow, predominantly in the right hemisphere. The decrease in the uptake of [18F]-Fluoro-deoxyglucose also revealed glucose hypo-metabolism, especially in the right frontal and parietal lobe. Striatal [11C]NMSP and [18F]FDOPA uptake were also reduced in an asymmetric pattern. These findings suggest that our patient is likely to have corticobasal degeneration. Transcranial magnetic stimulation using double pulse paradigm revealed a decrease in the level of cortico-cortical inhibition in the motor cortex on the affected side. Our results indicate increase in the excitability of motor cortical neurons in primary progressive limb-kinetic apraxia, likely due to a decreased excitability of cortico-cortical inhibitory mechanism as a result of focal degeneration of cortical neurons.

Aged↗

The TGF-beta signaling inhibitor Smad7 enhances tumorigenicity in pancreatic cancer.

Transforming growth factor-beta (TGF-beta) signaling is dependent on the heterodimerization of the type II TGF-beta receptor (TbetaRII) with the type I TGF-beta receptor (TbetaRI). Activated TbetaRI then mediates TGF-beta signals by inducing the phosphorylation of Smad2 and/or Smad3, which separately hetetorodimerize with Smad4 and translocate to the nucleus. Phosphorylation of Smad2/Smad3 by activated TbetaRI is inhibited by two newly discovered members of the Smad family, Smad6 and Smad7. We now report that Smad7 mRNA levels are increased in human pancreatic cancer by comparison with the normal pancreas, and that by in situ hybridization, Smad7 is over-expressed in the cancer cells within the tumor mass. Stable transfection of COLO-357 human pancreatic cancer cells with a full-length Smad7 construct leads to complete loss of the growth inhibitory response to TGF-beta1, without altering TGF-beta1-mediated induction of PAI-I. Furthermore, Smad7 transfected COLO-357 cells display enhanced anchorage-independent growth and accelerated growth in nude mice. These findings point to a previously unrecognized mechanism for selective suppression of TGF-beta-mediated growth inhibition in cancer cells that allows for continued activation of the PAI-I promoter by TGF-beta1, which may act to enhance the tumorigenicity of certain cancer cells.

Adolescent↗

Detection and localization of Mip-3alpha/LARC/Exodus, a macrophage proinflammatory chemokine, and its CCR6 receptor in human pancreatic cancer.

Macrophage Proinflammatory Human Chemokine-3alpha (Mip-3alpha/LARC/Exodus) belongs to a large family of chemotactic cytokines, which participate in directing inflammatory cell migration and in modulating angiogenesis. Mip-3alpha signals through a recently identified G-protein linked 7-transmembrane receptor, CCR6. In this study, we have characterized the expression of Mip-3alpha and CCR6 in 12 normal and 16 cancerous human pancreatic tissues and in 4 cultured pancreatic cancer cell lines, and assessed the effects of Mip-3alpha on growth and invasion of these cell lines. Pancreatic cancer tissues markedly overexpressed Mip-3alpha in comparison with normal pancreatic samples. By in situ hybridization Mip-3alpha and CCR6 mRNA moieties were present in cancer cells within the tumors. In addition, Mip-3alpha was abundant in the macrophages infiltrating the tumor mass. Mip-3alpha and its receptor CCR6 were expressed in all 4 tested pancreatic cancer cell lines. Mip-3alpha stimulated the growth of one cell line, enhanced the migration of another cell line, and was without effect in the other 2 cell lines. Together, our findings suggest that Mip-3alpha has the potential to act via autocrine and paracrine mechanisms to contribute to the pathobiology of human pancreatic cancer.

Adolescent↗

Expression of hsp90 and cyclin D1 in human breast cancer.

The integral roles of heat shock proteins (hsps) in the cell cycle and in multistep processes leading to tumorigenesis have been implied. We examined the expression of hsp90alpha, hsp90beta and cyclin D1 in human breast cancer. Levels of mRNAs coding for hsp90alpha and cyclin D1 were significantly higher in cancer tissues than in non-cancer tissues. Moreover, there was a close relationship between the extent of the two mRNA levels, suggesting that increased expression of hsp90alpha, an isoform of the hsp90 family, is associated with the proliferation of human breast cancer. Hsp90beta was expressed in cancer cells, but not associated with cell proliferation.

Breast Neoplasms↗

Bone morphogenetic protein 2 exerts diverse effects on cell growth in vitro and is expressed in human pancreatic cancer in vivo.

BACKGROUND & AIMS: Bone morphogenetic proteins (BMPs) belong to the transforming growth factor beta superfamily of signaling molecules. We characterized the expression of BMP-2 and its receptors in human pancreatic tissues and pancreatic cancer cell lines and examined the effects of BMP-2 on mitogenesis. METHODS: Expression of BMP-2 and its receptors was determined by Northern blot analysis using specific complementary DNA probes. Distribution of BMP-2 in pancreatic cancers was examined by immunohistochemistry and in situ hybridization. Effects of BMP-2 on mitogenesis were assessed by monitoring cell proliferation and activation of mitogen-activated protein kinase (MAPK). RESULTS: Compared with the normal pancreas, pancreatic cancers showed a 12.5-fold (P < 0.01), 2-fold (P < 0.01), and 8-fold (P < 0.01) increase of BMP-2, BMP receptor (R)-IA, and BMPR-II messenger RNA levels, respectively. By immunohistochemistry and in situ hybridization, BMP-2 was expressed in the cancer cells within the tumor mass. There was a significant correlation between the presence of BMP-2 immunostaining in the tumors and shorter postoperative survival. Pancreatic cancer cell lines expressed variable levels of messenger RNA encoding BMP-2 and its receptors. BMP-2 stimulated the growth of two pancreatic cancer cell lines (ASPC-1 and CAPAN-1). This mitogenic effect was associated with MAPK activation and blocked by the MAPK inhibitor PD98059 in CAPAN-1 but not in ASPC-1 cells. In both cell lines, expression of wild-type Smad4 abolished the BMP-2-mediated growth stimulation. BMP-2 inhibited the growth of COLO-357 cells, an effect that was blocked by expressing a dominant negative Smad4. BMP-2 had no effect in three cell lines that underexpressed either the BMP receptors or Smad1. CONCLUSIONS: These findings indicate that BMP-2 has the capacity to act as a mitogen when Smad4 is mutated and suggest that it might play a role in the pathobiology of human pancreatic cancer.

Adolescent↗

Alteration of fibroblast growth factor and receptor expression after acute pancreatitis in humans.

After an episode of acute pancreatitis (AP) in humans, the pancreas exhibits varying degrees of fibrosis, acinar cell regeneration, and the formation of tubular complexes. The mechanisms underlying these changes are unknown. By using Northern blot analysis and immunohistochemistry, we assessed the expression and distribution of fibroblast growth factors (FGFs) and their receptor in human pancreatic tissues obtained from patients with AP. By comparison with the normal pancreas, acidic FGF (aFGF) and FGF-receptor 1 (FGFR-1, flg), mRNA levels were significantly decreased in human pancreatic tissues, which were obtained approximately 8 days after onset of AP. In the normal pancreas, acidic FGF, basic FGF, and FGFR-1 immunoreactivity was present at low to moderate levels in a heterogeneous pattern in the cytoplasm of acinar and ductal cells. Two patterns of immunoreactivity were observed in the AP group. In regions that have undergone necrosis, there was complete loss of aFGF, bFGF, and FGFR-1 immunostaining. In contrast, in the regenerating areas, aFGF and bFGF were readily evident in exocrine-type cells, in association with a marked increase in FGFR-1 immunoreactivity. These findings indicate that FGF/receptor expression is altered after AP, and raise the possibility that FGFs may be involved in the process of pancreatic exocrine regeneration during recovery from AP.

Acute Disease↗

Insulin-like growth factor I improves cardiovascular function and suppresses apoptosis of cardiomyocytes in dilated cardiomyopathy.

To investigate how insulin-like growth factor I (IGF-I) modulates cardiovascular function and myocardial apoptosis in heart failure, the therapeutic effects of IGF-I were determined in a canine model of dilated cardiomyopathy. The animals were paced at 220 beats/min, and the left ventricular (LV) chamber became dilated after 2 weeks. A subset of paced dogs was treated with s.c. injections of IGF-I from week 3 to week 4. After 4 weeks of pacing, untreated paced dogs developed significant ventricular dysfunction. IGF-I-treated paced dogs showed better cardiac output, stroke volume, LV end-systolic pressure, and LV end-diastolic pressure. Moreover, pulmonary wedge pressure and systemic vascular resistance were increased in the untreated group and decreased in the IGF-I-treated group. IGF-I treatment was associated with less thinning of the ventricular wall. Compared with the controls, untreated paced dogs showed increased apoptosis of cardiac muscle cells, which was partially suppressed by IGF-I treatment. The myocardial apoptotic index was negatively related to the thickness of the ventricular wall and to cardiac output, suggesting that ventricular remodeling/dysfunction involves the occurrence of myocardial apoptosis. Due to the close resemblance between this experimental model of dilated cardiomyopathy and human heart failure, the results of this study provide evidence that IGF-I may be a potential therapeutic agent for the failing human heart.

Animals↗

The cell-surface heparan sulfate proteoglycan glypican-1 regulates growth factor action in pancreatic carcinoma cells and is overexpressed in human pancreatic cancer.

Heparan sulfate proteoglycans (HSPGs) play diverse roles in cell recognition, growth, and adhesion. In vitro studies suggest that cell-surface HSPGs act as coreceptors for heparin-binding mitogenic growth factors. Here we show that the glycosylphosphatidylinositol- (GPI-) anchored HSPG glypican-1 is strongly expressed in human pancreatic cancer, both by the cancer cells and the adjacent fibroblasts, whereas expression of glypican-1 is low in the normal pancreas and in chronic pancreatitis. Treatment of two pancreatic cancer cell lines, which express glypican-1, with the enzyme phosphoinositide-specific phospholipase-C (PI-PLC) abrogated their mitogenic responses to two heparin-binding growth factors that are commonly overexpressed in pancreatic cancer: fibroblast growth factor 2 (FGF2) and heparin-binding EGF-like growth factor (HB-EGF). PI-PLC did not alter the response to the non-heparin-binding growth factors EGF and IGF-1. Stable expression of a form of glypican-1 engineered to possess a transmembrane domain instead of a GPI anchor conferred resistance to the inhibitory effects of PI-PLC on growth factor responsiveness. Furthermore, transfection of a glypican-1 antisense construct attenuated glypican-1 protein levels and the mitogenic response to FGF2 and HB-EGF. We propose that glypican-1 plays an essential role in the responses of pancreatic cancer cells to certain mitogenic stimuli, that it is relatively unique in relation to other HSPGs, and that its expression by pancreatic cancer cells may be of importance in the pathobiology of this disorder.

Adolescent↗

Concomitant over-expression of activin/inhibin beta subunits and their receptors in human pancreatic cancer.

Activins and inhibins belong to the transforming growth factor-beta (TGF-beta) superfamily of multifunctional cytokines that bind to transmembrane receptors with serine/threonine kinase activity. In this study, we characterized the levels of expression of 3 activin/inhibin subunits (betaA, betaB, alpha), and 2 type I and type II activin receptors (actRI/Ib, actRII/IIb) in pancreatic cancer cell lines and in human pancreatic tissues. In addition, we assessed the growth responsiveness to activin A in these cell lines. All 6 cell lines (ASPC-1, CAPAN-1, COLO-357, MIA-PaCa-2, PANC-1 and T3M4) expressed the activin/inhibin betaA subunit, whereas expression levels of the activin/inhibin betaB and alpha subunits were undetectable. Furthermore, actRI, actRII and actRIIb were expressed in all cell lines and actRIb mRNA was evident in ASPC-1, CAPAN-1, COLO-357 and PANC-1 cells. CAPAN-I and COLO-357 cells were growth-stimulated by activin A in the presence of 10% serum, whereas the other cell lines were resistant to activin A. In contrast, in serum-free medium activin A inhibited the growth of CAPAN-1, COLO-357 and MIA-PaCa-2 cells. Pancreatic cancer samples markedly over-expressed the activin/inhibin betaA subunit, whereas the betaB subunit was only moderately increased in comparison to normal pancreatic samples. Pancreatic cancer tissues also markedly over-expressed actRI, actRIb and actRII. By in situ hybridization, activin/inhibin betaA, actRI, actRIb and actRII were strongly expressed in diffuse infiltrative and duct-like cancer cells. Both the ligand and its receptors were often co-expressed in these cells. Together, our findings suggest that activin A may participate in autocrine activation of pancreatic cancer cells in vivo.

Activin Receptors↗

The helix-loop-helix protein Id2 is overexpressed in human pancreatic cancer.

Id2 belongs to the Id family of helix-loop-helix (HLH) proteins, which upon heterodimerization with basic HLH proteins prevent basic HLH proteins from DNA binding. Proteins of the Id family act as negative regulatory transcriptional factors, and their expression correlates with cell proliferation and arrested differentiation in many cell lineages. In this study, we characterized the expression of Id2 in normal and cancerous pancreatic tissues. Pancreatic cancers markedly overexpressed Id2 mRNA in comparison to the normal pancreas. Furthermore, there was abundant Id2 immunoreactivity in the cancer cells within the pancreatic tumor mass. In PANC-1 human pancreatic cancer cells, steady-state Id2 mRNA levels increased upon serum addition and decreased after induction of differentiation with either sodium butyrate or 12-O-tetradecanoylphorbol-13-acetate. Inhibition of Id2 expression with Id2 antisense oligonucleotides inhibited the growth of these cells, whereas random and sense oligonucleotides were without effect. These findings suggest that Id2 may have a role in human pancreatic cancer.

Adolescent↗

Characterization of keratinocyte growth factor and receptor expression in human pancreatic cancer.

Keratinocyte growth factor (KGF) is an angiogenic and mitogenic polypeptide that has been implicated in cancer growth and tissue development and repair. Its actions are dependent on its binding to a specific cell-surface KGF receptor (KGFR), which is encoded by the fibroblast growth factor (FGF) receptor type II (FGFR-2) gene. In the present study, we compared the immunohistochemical localization of KGF and KGFR/FGFR-2 in the normal and cancerous pancreas using specific antibodies that recognize KGF and KGFR/FGFR-2 and examined the expression of KGF, KGFR, and FGFR-2 in human pancreatic cancer by in situ hybridization with the corresponding riboprobes. In the normal pancreas, KGF immunoreactivity was present principally in the islet cells, whereas KGFR/FGFR-2 immunoreactivity was present both in the islet and ductal cells. In the pancreatic cancers, moderate KGF and moderate to strong KGFR/FGFR-2 immunoreactivity was present in many of the cancer cells. Furthermore, the ductal and acinar cells adjacent to the cancer cells exhibited moderate to strong KGF and KGFR/FGFR-2 immunoreactivity. By in situ hybridization, KGF, KGFR, and FGFR-2 were overexpressed and co-localized in the cancer cells within the pancreatic tumor mass but were even more abundant in the acinar and ductal cells adjacent to the cancer cells. These findings indicate that KGF, KGFR, and FGFR-2 are overexpressed in both the cancer cells and the adjacent pancreatic parenchyma and raise the possibility that KGF may act in an autocrine and paracrine manner to enhance pancreatic cancer cell growth in vivo.

Fibroblast Growth Factor 10↗

Increased cyclin D1 expression in chronic pancreatitis.

Cyclin D1 is an important regulator of the G1 phase of the cell cycle. In this study we examined the expression and localization of cyclin D1 in chronic pancreatitis (CP), a condition associated with fibrosis, acinar cell degeneration, and foci of duct cell proliferation. Northern blotting of total RNA from the normal pancreas and from the pancreas of patients with CP revealed the presence of a 4.4-kb cyclin D1 mRNA transcript in all samples. Densitometric analysis indicated that pancreatic cyclin D1 mRNA levels were 2.0-fold increased in CP compared to normal controls (p = 0.0046). In the normal pancreas, faint cyclin D1 immunoreactivity was present in the nuclei and cytoplasm of some ductal cells and islet cells. In contrast, in CP, moderate to strong cyclin D1 immunoreactivity was present in many ductal and islet cells, as well as in some acinar cells and fibroblasts. These findings raise the possibility that enhanced cyclin D1 expression may contribute to a hyperproliferative state in CP.

Adult↗