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T Suda

Publications and source records attributed to T Suda.

At least 109 records · Page 6Linked to original sources

Hematopoietic stem cells express Tie-2 receptor in the murine fetal liver.

Tie-2 receptor tyrosine kinase expressed in endothelial and hematopoietic cells is believed to play a role in both angiogenesis and hematopoiesis during development of the mouse embryo. This article addressed whether Tie-2 is expressed on fetal liver hematopoietic stem cells (HSCs) at day 14 of gestation. With the use of anti-Tie-2 monoclonal antibody, its expression was detected in approximately 7% of an HSC population of Kit-positive, Sca-1-positive, lineage-negative or -low, and AA4.1-positive (KSLA) cells. These Tie-2-positive KSLA (T(+) KSLA) cells represent 0.01% to 0.02% of fetal liver cells. In vitro colony and in vivo competitive repopulation assays were performed for T(+) KSLA cells and Tie-2-negative KSLA (T(-) KSLA) cells. In the presence of stem cell factor, interleukin-3, and erythropoietin, 80% of T(+) KSLA cells formed colonies in vitro, compared with 40% of T(-) KSLA cells. Long-term multilineage repopulating cells were detected in T(+) KSLA cells, but not in T(-) KSLA cells. An in vivo limiting dilution analysis revealed that at least 1 of 8 T(+) KSLA cells were such repopulating cells. The successful secondary transplantation initiated with a limited number of T(+) KSLA cells suggests that these cells have self-renewal potential. In addition, engraftment of T(+) KSLA cells in conditioned newborn mice indicates that these HSCs can be adapted equally by the adult and newborn hematopoietic environments. The data suggest that T(+) KSLA cells represent HSCs in the murine fetal liver. (Blood. 2000;96:3757-3762)

Animals↗

VEGF-C signaling pathways through VEGFR-2 and VEGFR-3 in vasculoangiogenesis and hematopoiesis.

Signaling by vascular endothelial growth factors (VEGFs) through VEGF receptors (VEGFRs) plays important roles in vascular development and hematopoiesis. The authors analyzed the function of VEGF-C signaling through both VEGFR-2 and VEGFR-3 in vasculoangiogenesis and hematopoiesis using a coculture of para-aortic splanchnopleural mesoderm (P-Sp) explants from mouse embryos with stromal cells (OP9). Vasculogenesis and angiogenesis were evaluated by the extent of vascular bed and network formation, respectively. Addition of VEGF-C to the P-Sp culture enhanced vascular bed formation and suppressed definitive hematopoiesis. Both vascular bed and network formations were completely suppressed by addition of soluble VEGFR-1-Fc competitor protein. Formation of vascular beds but not networks could be rescued by VEGF-C in the presence of the competitor, while both were rescued by VEGF-A. VEGFR-3-deficient embryos show the abnormal vasculature and severe anemia. Consistent with these in vivo findings, vascular bed formation in the P-Sp from the VEGFR-3-deficient embryos was enhanced to that in wild-type or heterozygous embryos, and hematopoiesis was severely suppressed. When VEGFR-3-Fc chimeric protein was added to trap endogenous VEGF-C in the P-Sp culture of the VEGFR-3-deficient embryos, vascular bed formation was suppressed and hematopoiesis was partially rescued. These results demonstrate that because VEGF-C signaling through VEGFR-2 works synergistically with VEGF-A, the binding of VEGF-C to VEGFR-3 consequently regulates VEGFR-2 signaling. In VEGFR-3-deficient embryos, an excess of VEGF-C signals through VEGFR-2 induced the disturbance of vasculogenesis and hematopoiesis during embryogenesis. This indicates that elaborated control through VEGFR-3 signaling is critical in vasculoangiogenesis and hematopoiesis. (Blood. 2000;96:3793-3800)

Animals↗

A role for hematopoietic stem cells in promoting angiogenesis.

Angiogenesis is an important event for embryonic organogenesis as well as for tissue repair in the adult. Here, we show that hematopoietic stem cells (HSCs) play important roles for angiogenesis during embryogenesis. To investigate the role of HSCs in endothelial cell (EC) development, we analyzed AML1-deficient embryos, which lack definitive hematopoiesis. These embryos showed defective angiogenesis in the head and pericardium. Para-aortic splanchnopleural (P-Sp) explant cultures on stromal cells (P-Sp culture) did not generate definitive hematopoietic cells and showed defective angiogenesis in the AML1 null embryo. Disrupted angiogenesis in P-Sp cultures from AML1 null embryos was rescued by addition of HSCs or angiopoietin-1 (Ang1). HSCs, which express Ang1, directly promoted migration of ECs in vivo and in vitro. These results indicate that HSCs are critical for angiogenesis.

Angiopoietin-1↗

Impaired bone resorption to prostaglandin E2 in prostaglandin E receptor EP4-knockout mice.

Prostaglandin E(2) (PGE(2)) acts as a potent stimulator of bone resorption. In this study, we first clarified in normal ddy mice the involvement of protein kinase A and induction of matrix metalloproteinases (MMPs) in PGE(2)-induced bone resorption, and then identified PGE receptor subtype(s) mediating this PGE(2) action using mice lacking each subtype (EP1, EP2, EP3, and EP4) of PGE receptor. In calvarial culture obtained from normal ddy mice, both PGE(2) and dibutyryl cyclic AMP (Bt(2)cAMP) stimulated bone resorption and induced MMPs including MMP-2 and MMP-13. Addition of an inhibitor of protein kinase A, H89, or an inhibitor of MMPs, BB94, significantly suppressed bone-resorbing activity induced by PGE(2.) In calvarial culture from EP1-, EP2-, and EP3-knockout mice, PGE(2) stimulated bone resorption to an extent similar to that found in calvaria from the wild-type mice. On the other hand, a marked reduction in bone resorption to PGE(2) was found in the calvarial culture from EP4-knockout mice. The impaired bone resorption to PGE(2) was also detected in long bone cultures from EP4-knockout mice. Bt(2)cAMP greatly stimulated bone resorption similarly in both wild-type and EP4-knockout mice. Induction of MMP-2 and MMP-13 by PGE(2) was greatly impaired in calvarial culture from EP4-knockout mice, but Bt(2)cAMP stimulated MMPs induction similarly in the wild-type and EP4-knockout mice. These findings suggest that PGE(2) stimulates bone resorption by a cAMP-dependent mechanism via the EP4 receptor.

Animals↗

Peripheral and central conduction abnormalities in diabetes mellitus.

OBJECTIVES: To investigate peripheral and central somatosensory conduction in patients with diabetes. METHODS: The authors recorded sensory nerve action potentials and 5-channel somatosensory evoked potentials (SEPs) with noncephalic reference after median nerve stimulation in 55 patients with diabetes and 41 age- and height-matched normal subjects. The authors determined onset or peak latencies of the Erb's potential (N9) and the spinal N13-P13 and the cortical N20-P20 components, and obtained the central conduction time (CCT) by onset-to-onset and peak-to-peak measurements. RESULTS: Both onset and peak latencies of all SEP components were prolonged in patients with diabetes. The mean onset CCT in the diabetic group was 6.3 +/- 0.5 msec (mean +/- SD)-significantly longer than that in the control group (6.1 +/- 0.2 msec)-whereas no significant difference was found in the peak CCT. The amplitudes of N9 and N13-P13 components (but not N20-P20) were significantly smaller in the diabetic group. The peripheral sensory conduction velocity was also decreased in the diabetic group, but there was no significant correlation between peripheral conduction slowing and the onset of CCT prolongation. CONCLUSIONS: Diabetes affects conductive function in the central as well as peripheral somatosensory pathways. The CCT abnormality does not coincide with lowering of the peripheral sensory conduction. The current results do not favor a hypothesis that a central-peripheral distal axonopathy plays an important role in development of diabetic polyneuropathy.

Adult↗

Evaluation of the role for prolactin-releasing peptide in prolactin secretion induced by ether stress and suckling in the rat: comparison with vasoactive intestinal peptide.

Prolactin (PRL)-releasing peptide (PrRP) is a recently discovered hypothalamic peptide possessing a specific stimulatory action on PRL secretion. In this study, we examined whether PrRP plays a role in mediating ether stress- and suckling-induced PRL secretion in rats through administering anti-PrRP antisera intracerebroventricularly. For comparison, we also tested the effect of anti-vasoactive intestinal peptide (VIP) antisera on the hormonal responses, since VIP is another candidate for a physiological PRL-releasing factor. The immunoneutralization of VIP, but not of PrRP, led to a significant suppression of PRL responses to both ether and suckling. These results suggest that PrRP may not play a significant role, or at least play a much weaker role than VIP, in mediating PRL release induced by ether stress and suckling in the rat.

Animals↗

A significant role of leukemia inhibitory factor in the brain and periphery in endotoxin stimulation of adrenocorticotropin secretion in the rat.

Leukemia inhibitory factor (LIF) is considered as another important cytokine regulating the activity of the hypothalamo-pituitary-adrenal axis. In this study, we examined the effects of intravenous (iv) and intracerebroventricular (icv) administrations of anti-LIF antibody on plasma adrenocorticotropin (ACTH) responses induced by intraperitoneal administration of lipopolysaccharide (LPS, 250 microg/kg) in male rats. Fifteen minutes before the LPS injection, anti-rat LIF antibody or control serum was given iv or icv. The antibody was administered at two different concentrations, i.e. undiluted and five-times diluted. Irrespective of the route of administration, the anti-LIF antibody partially but significantly suppressed ACTH responses to LPS, and its suppressive effect was similar between its two different concentrations. These results indicate that the anti-LIF antibody already exerted its maximal effects at its diluted preparation, and hence that the role of LIF in LPS-stimulated ACTH secretion is essentially partial. This is the first study to demonstrate in vivo that LIF in both the brain and general circulation plays a significant role in mediating endotoxin-stimulated ACTH secretion in the rat.

Adrenocorticotropic Hormone↗

Tumor necrosis factor alpha stimulates osteoclast differentiation by a mechanism independent of the ODF/RANKL-RANK interaction.

Osteoclast differentiation factor (ODF, also called RANKL/TRANCE/OPGL) stimulates the differentiation of osteoclast progenitors of the monocyte/macrophage lineage into osteoclasts in the presence of macrophage colony-stimulating factor (M-CSF, also called CSF-1). When mouse bone marrow cells were cultured with M-CSF, M-CSF-dependent bone marrow macrophages (M-BMM phi) appeared within 3 d. Tartrate-resistant acid phosphatase-positive osteoclasts were also formed when M-BMM phi were further cultured for 3 d with mouse tumor necrosis factor alpha (TNF-alpha) in the presence of M-CSF. Osteoclast formation induced by TNF-alpha was inhibited by the addition of respective antibodies against TNF receptor 1 (TNFR1) or TNFR2, but not by osteoclastogenesis inhibitory factor (OCIF, also called OPG, a decoy receptor of ODF/RANKL), nor the Fab fragment of anti-RANK (ODF/RANKL receptor) antibody. Experiments using M-BMM phi prepared from TNFR1- or TNFR2-deficient mice showed that both TNFR1- and TNFR2-induced signals were important for osteoclast formation induced by TNF-alpha. Osteoclasts induced by TNF-alpha formed resorption pits on dentine slices only in the presence of IL-1alpha. These results demonstrate that TNF-alpha stimulates osteoclast differentiation in the presence of M-CSF through a mechanism independent of the ODF/RANKL-RANK system. TNF-alpha together with IL-1alpha may play an important role in bone resorption of inflammatory bone diseases.

Acid Phosphatase↗

Downregulation of melanocortin receptors in brain areas involved in food intake and reward mechanisms in obese (OLETF) rats.

The melanocortin (MC)4 receptor is important for food intake and weight homeostasis as it mediates the orexigenic and anorexigenic effects of the MCs. OLETF (Otsuka-Long-Evans-Tokushima-Fatty) rats are a selective inbred strain of polygenic variant rats which overeat and develop obesity with elevated leptin levels. We investigated by autoradiography if the expression of MC receptors were altered in ovariectomized estradiol-replaced female OLETF rats compared to their controls (Long-Evans-Tokushima-Otsuka (LETO) rats). We found that OLETF rats show a reduction in total [125I]NDP-MSH MC receptor binding in the ventromedial hypothalamic nucleus, perhaps reflecting an increased release of MC peptides in this region. The levels of MC receptors in the arcuate nucleus and the paraventricular hypothalamic nucleus were not changed. Interestingly, the OLETF rats also showed reduced MC-receptor binding in areas such as the nucleus accumbens shell, and the ventral tegmental area, both of which are believed to be involved in reward systems. Similarities in the changes of MC receptor expression in obese animals and in animals treated with opiates may suggest a neurobiological link between food intake mediated through the MC receptors and reward.

Animals↗

Extended operation for non-small-cell lung cancer invading into the liver.

Direct invasion of a lung cancer into the liver is rare. Here we report a case with a non-small-cell lung cancer invading through the diaphragm into the liver. A 77-year-old woman was admitted to our hospital with a complaint of right chest pain. Chest X-ray showed a 10-cm shadow in the right lower lung field. Chest CT demonstrated a large heterogeneous tumor located in the right lower lobe of the lung. Chest MRI revealed the tumor directly invading through the diaphragm into the liver. Bronchoscopic biopsy revealed squamous cell carcinoma. Surgical resection was performed to prevent intrapulmonary rupture of the necrotic contents. A right lower lobectomy was performed with partial resection of the diaphragm, liver and chest wall. Marlex mesh was used to reconstruct the diaphragm and chest wall. The patient was discharged on the 23rd postoperative day without complications, but died 4 months later from bilateral pulmonary metastases. Invasion to the diaphragm and liver may increase the risk for hematological spread. Although there are limited reports on treatment options, combined resection of the liver should be considered in the case of non-small-cell lung cancer invading the liver, particularly in c-N0M0 case.

Aged↗

Migratory patterns of thoracic duct lymphocytes into bronchus-associated lymphoid tissue of immunized rats.

Lymphocytes continuously circulate between the bloodstream and lymphoid organs, and their migration into lymphatic tissues presumably occurs through selective mechanisms. Although bronchus-associated lymphoid tissue (BALT) is known as an inductive tissue of the common mucosal immune system, little is known about how effectively the lymphocytes in the blood vessels migrate into the BALT, thereby enabling the BALT to act as an effector tissue in the immunologic responses of the lungs. To analyze whether or not thoracic duct lymphocytes (TDL) from immunized and nonimmunized rats possess different migratory patterns to the BALT, 5-(6)-carboxyfluorescein diacetate succinimidyl ester (CFSE)-labeled TDL were injected into rats with BALT hyperplasia that was produced by intratracheal administration of TNP-KLH, and then the number of labeled cells in the BALT were examined by immunohistochemical methods. We studied the following three groups at 12 h after the injection: group A, intraintestinally immunized donors and intratracheally immunized recipients; group B, nonimmunized donors and intratracheally immunized recipients; group C (control group), nonimmunized donors and nonimmunized recipients. Time course studies 0.5, 4, 12, and 24 h after the injection were done in groups A and C. In a cytokinetic study, larger numbers of CFSE-labeled lymphocytes were found at 12 h and 24 h in group A than in group C. At 12 h after the injection, the absolute number of CFSE-labeled lymphocytes per BALT was significantly higher in group A than in group B (p < 0.05), and was lowest in group C. Histologically, there was a marked proliferation of high endothelial venules (HEV), with findings of adhesion and influx of lymphocytes inside the HEV in group A. These observations indicate that the immunized BALT actively recruits immunized TDL through a specific mechanism of lymphocyte-endothelium recognition in HEV, which partially explains the process of BALT development as an effector tissue for local immunity.

Animals↗

Ileal duplication presenting as perforation: report of a case.

We describe herein the case of a 10-year-old boy in whom generalized peritonitis was caused by perforation of a tubular communicating ileal duplication cyst. Alimentary tract duplication cysts are rare congenital malformations, found primarily in children under the age of 15 years. The perforation was caused by heterotopic gastric mucosa within the duplication, giving rise to peptic ulceration in the adjacent intestinal mucosa. The presence of heterotopic gastric tissue is a primary cause of perforation that has been reported in as many as one third of patients with small intestine duplications; however, the detection of such ectopic tissue is time-consuming, and there is no readily available method of diagnosing tubular duplications. Although very few patients present with peritonitis as the initial manifestation, the possibility should be borne in mind when diagnosing and planning therapy for such emergencies, particularly in children.

Child↗

Key factors influencing bowel function after ileal W-pouch anal anastomosis: a spectral analysis of W-pouch motor activity.

Restorative proctocolectomy with ileal pouch anal anastomosis (IPAA) has become the standard surgical procedure for ulcerative colitis (UC). The purpose of this study was to determine which factors are important to achieve good anal continence after IPAA in terms of the motor activity and pressure-volume relationship. A total of 17 patients with UC who underwent IPAA were evaluated. The internal ileal pouch pressure was transanally measured with and without volume-loading of the pouch which induces the urge to evacuate. The maximum tolerable volume (MTV), first urge volume (FUV), and ileal pouch compliance were calculated and the internal ileal pouch pressure records were subjected to spectral analysis for intensive evaluation of the intraluminal pressure waves. The FUV, correlation of the compliance of the FUV with MTV, and the remaining volume up to the MTV (RVMTV) were analyzed. Compliance of the FUV was significantly correlated with the RVMTV (r = 0.736, P < 0.01). The frequency of the phasic waves in the pouch decreased with length of follow up, reflecting improved function (r = -0.588, P < 0.05). The findings of this intensive analysis of manometric measurement indicate that the key factors in postoperative pouch function are RVMTV and the frequency of phasic waves in the W-pouch.

Adult↗

Roles of macrophage-colony stimulating factor and osteoclast differentiation factor in osteoclastogenesis.

We have isolated osteoclast precursors (OCPs) from cocultures of mouse calvarial cells and bone marrow cells without adding any osteotropic factors. OCPs expressed Mac-1, Mac-2, and Gr-1 antigens but not osteoclast markers such as tartrate-resistant acid phosphatase (TRAP) and calcitonin receptors, and they differentiated into TRAP-positive cells within 48 h on a fixed calvarial cell layer pretreated with osteotropic factors such as 1 alpha, 25-dihydroxyvitamin D3. In the present study, we investigated the regulatory mechanisms of OCP formation from hemopoietic cells and TRAP-positive cell formation from OCPs. Calvarial osteoblasts obtained from macrophage-colony stimulating factor (M-CSF)-deficient op/op mice failed to support OCP formation or the differentiation of OCPs into TRAP-positive cells. Both OCP formation and TRAP-positive cell formation supported by osteoblasts were completely inhibited by osteoclastogenesis inhibitory factor (OCIF, also called OPG), which is a decoy receptor of osteoclast differentiation factor (ODF; also called TRANCE, RANKL, and OPGL). When bone marrow cells were cultured for 4 days with soluble ODF (sODF/sRANKL) together with M-CSF, OCPs were formed even in the absence of osteoblasts. When OCPs were treated with sODF/sRANKL and M-CSF in the absence of osteoblasts, they differentiated into TRAP-positive cells within 48 h even in the presence of hydroxyurea. Northern blotting analysis revealed that osteoblasts constitutively expressed a certain level of ODF/RANKL mRNA. These results indicated that M-CSF and sODF/sRANKL produced by osteoblasts are two essential factors for both OCP formation and TRAP-positive osteoclast formation.

Acid Phosphatase↗

Plasma oxysterols and tocopherol in patients with diabetes mellitus and hyperlipidemia.

The plasma levels of free oxysterols (7-ketocholesterol; 7alpha-hydroxy-, 7beta-hydroxy-, 25-hydroxy-, and 27-hydroxycholesterol; and 5alpha,6alpha-epoxycholestanol) in patients with diabetes mellitus and hypercholesterolemia were determined using gas chromatography-mass spectrometry with selective ion monitoring. We studied 39 patients with diabetes mellitus, 20 nondiabetic patients with hypercholesterolemia, and 37 normal controls. Plasma cholesterol levels in diabetic and hypercholesterolemic patients showed no statistical difference. Plasma 7-ketocholesterol was significantly higher in patients with diabetes (31.6+/-2.8 ng/mL) or hypercholesterolemia (52.3+/-5.9) than in the control group (22.4+/-1.2). The increased plasma cholesterol can be regarded as an oxidation substrate for the oxidant stress and the higher absolute levels of oxysterols in hypercholesterolemic plasma compared with the control plasma. This difference disappeared when 7-ketocholesterol was expressed in proportion to total cholesterol. The oxidizability of plasma cholesterol was evaluated by comparing the increased ratio of 7-ketocholesterol after CuSO4 oxidation to the ratio before. We demonstrated that the patients with diabetes showed increased oxidizability (77.5%) compared with the control (36.6%) or hyperlipemic group (45.3%), which is likely due to the lower amounts of alpha-tocopherol in the diabetics. Measurement of oxysterols may serve as a marker for in vivo oxidized lipoproteins in diabetes and hyperlipemia.

Cholesterol↗