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Biomedical subjects

Daisuke Watanabe

Publications and source records attributed to Daisuke Watanabe.

At least 19 recordsLinked to original sources

Cyclic stretch-induced reactive oxygen species generation enhances apoptosis in retinal pericytes through c-jun NH2-terminal kinase activation.

Hypertension is known to exacerbate diabetic complications, such as retinopathy and nephropathy. Apoptosis of retinal vascular pericytes has been well established as the earliest conceivable change in diabetic retinopathy. In this study, we investigated the contribution of cyclic stretch, which mimics a hypertensive state to pericyte apoptosis. A 48-hour cyclic stretch induced DNA fragmentation in porcine retinal pericytes and increased the number of TUNEL+ cells at a pathophysiologically relevant extension level (10%/60 cycles per minute). Stretch also increased intracellular reactive oxygen species generation and increased c-Jun NH(2)-terminal kinase phosphorylation in a time- and magnitude-dependent manner, which were reduced by the nicotinamide-adenine dinucleotide phosphate oxidase inhibitor diphenylene iodonium or dominant-negative protein kinase C-delta. Stretch activated protein kinase C-delta and increased its association with p47phox. Stretch induced cleavage of caspase-9 and -3 and increased caspase-3 activity. Protein kinase C-delta or c-Jun NH(2)-terminal kinase inhibition normalized stretch-induced caspase-3 activity and prevented stretch-induced apoptosis. These data indicate that cyclic stretch induces apoptosis in porcine retinal pericytes by activation of the reactive oxygen species-c-Jun NH(2)-terminal kinase-caspase cascades, suggesting a novel molecular mechanism to explain the exacerbation of early diabetic retinopathy by concomitant hypertension.

Animals↗

Properties of a herpes simplex virus multiple immediate-early gene-deleted recombinant as a vaccine vector.

Herpes simplex virus (HSV) recombinants induce durable immune responses in rhesus macaques and mice and have induced partial protection in rhesus macaques against mucosal challenge with virulent simian immunodeficiency virus (SIV). In this study, we evaluated the properties of a new generation HSV vaccine vector, an HSV-1 multiple immediate-early (IE) gene deletion mutant virus, d106, which contains deletions in the ICP4, ICP27, ICP22, and ICP47 genes. Because several of the HSV IE genes have been implicated in immune evasion, inactivation of the genes encoding these proteins was expected to result in enhanced immunogenicity. The d106 virus expresses few HSV gene products and shows minimal cytopathic effect in cultured cells. When d106 was inoculated into mice, viral DNA accumulated at high levels in draining lymph nodes, consistent with an ability to transduce dendritic cells and activate their maturation and movement to lymph nodes. A d106 recombinant expressing Escherichia coli beta-galactosidase induced durable beta-gal-specific IgG and CD8(+) T cell responses in naive and HSV-immune mice. Finally, d106-based recombinants have been constructed that express simian immunodeficiency virus (SIV) gag, env, or a rev-tat-nef fusion protein for several days in cultured cells. Thus, d106 shows many of the properties desirable in a vaccine vector: limited expression of HSV gene products and cytopathogenicity, high level expression of transgenes, ability to induce durable immune responses, and an ability to transduce dendritic cells and induce their maturation and migration to lymph nodes.

Animals↗

Ability of herpes simplex virus vectors to boost immune responses to DNA vectors and to protect against challenge by simian immunodeficiency virus.

The immunogenicity and protective capacity of replication-defective herpes simplex virus (HSV) vector-based vaccines were examined in rhesus macaques. Three macaques were inoculated with recombinant HSV vectors expressing Gag, Env, and a Tat-Rev-Nef fusion protein of simian immunodeficiency virus (SIV). Three other macaques were primed with recombinant DNA vectors expressing Gag, Env, and a Pol-Tat-Nef-Vif fusion protein prior to boosting with the HSV vectors. Robust anti-Gag and anti-Env cellular responses were detected in all six macaques. Following intravenous challenge with wild-type, cloned SIV239, peak and 12-week plasma viremia levels were significantly lower in vaccinated compared to control macaques. Plasma SIV RNA in vaccinated macaques was inversely correlated with anti-Rev ELISPOT responses on the day of challenge (P value<0.05), anti-Tat ELISPOT responses at 2 weeks post challenge (P value <0.05) and peak neutralizing antibody titers pre-challenge (P value 0.06). These findings support continued study of recombinant herpesviruses as a vaccine approach for AIDS.

Animals↗

Herpes simplex virus US3 protein kinase regulates virus-induced apoptosis in olfactory and vomeronasal chemosensory neurons in vivo.

A role for the US3 protein kinase of herpes simplex virus (HSV) in regulating virus-induced neuronal apoptosis was investigated in an experimental mouse system, in which wild-type HSV invades the central nervous system (CNS) via the olfactory and vomeronasal systems upon intranasal infection. Wild-type HSV-2 strain 186 infected a fraction of olfactory and vomeronasal chemosensory neurons without inducing apoptosis and was transmitted to the CNS, precipitating lethal encephalitis. In sharp contrast, an US3-disrupted mutant, L1BR1, induced neuronal apoptosis in these peripheral conduits upon infection, blocking viral transmission to the CNS and causing no signs of disease. An US3-repaired mutant, L1B(-)11, behaved similarly to the wild-type virus. Only 5 p.f.u. of L1BR1 was sufficient to compromise mice when the mutant virus was introduced directly into the olfactory bulb, a viral entry site of the CNS. These results suggest that the US3 protein kinase of HSV regulates virus-induced neuronal apoptosis in peripheral conduits and determines the neuroinvasive phenotype of HSV. Furthermore, virus-induced neuronal apoptosis of peripheral nervous system cells may be a protective host response that blocks viral transmission to the CNS.

Animals↗

Decreased renal expressions of heat shock protein-72 and -25 are associated with renal dysfunction in biliary cirrhotic rats.

During the course of liver cirrhosis, severe renal complications frequently occur. However, the pathogenesis of renal dysfunction in liver cirrhosis has not been completely understood. In this study, we investigated the association between renal function and expressions of renal heat shock proteins (HSPs) in biliary cirrhotic rats. Following bile duct ligation (BDL), renal function and expressions of HSPs were compared in control and BDL cirrhotic rats. Serum BUN and creatinine levels were significantly higher in cirrhotic rats compared with control rats at 4 weeks post-BDL operation. Renal expressions of HSP72 and HSP25 were decreased with progression of liver cirrhosis in BDL rats by Western blotting. Immunohistochemistry revealed that expression of renal HSP72 was suppressed in tubular epithelial cells, and expression of renal HSP25 was suppressed not only in tubular epithelial cells but also in blood vessels in rats with liver cirrhosis. Renal expressions of HSP90 and HSP60 did not differ between control and BDL rats. Renal function was impaired in biliary cirrhotic rats with decreased expressions of renal HSP72 and HSP25. These findings suggest that decreased expressions of renal HSP72 and HSP25 may be a part of the pathogenesis of renal dysfunction in liver cirrhosis.

Journal Article↗

Epimorphin expression and stellate cell status in mouse liver injury.

Epimorphin, a mesenchymal morphogenic protein expressed by hepatic stellate cells, is considered important to liver morphogenesis in both healthy and pathologic conditions. However, the stellate cell phenotype, quiescent versus activated, that expresses epimorphin is unknown. We studied the relationship between epimorphin expression and stellate cell status in carbon tetrachloride-induced acute and chronic injury to mouse liver and in mouse liver regeneration following 70% partial hepatectomy. Epimorphin-positive cells in sinusoids expressed desmin, indicating that they are stellate cells. Epimorphin-positive cells were more numerous and larger in pericentral than periportal sinusoids in normal liver. In early-phase acute liver injury and liver regeneration, epimorphin expression transiently decreased while alphaSMA-positive stellate cells increased. In the recovery phase of acute and chronic injury as well as the late phase of liver regeneration, epimorphin expression was strikingly enhanced while alphaSMA-positive stellate cells decreased. This expression pattern was seen in both Balb/c and C57BL6 mouse strains irrespective of their differences in response to the hepatotoxin. In conclusion, stellate cells express epimorphin in their quiescent state and in the recovery phase, respectively associated with maintenance and reconstruction of microscopic liver structure.

Journal Article↗

Suramin prevents fulminant hepatic failure resulting in reduction of lethality through the suppression of NF-kappaB activity.

AIM: Suramin is a symmetrical polysulfonated naphthylamine derivative of urea. There have been few studies on the effect of suramin on cytokines. We examined the effects of suramin on production of inflammatory cytokines. METHODS: We made an acute liver injury model treated with d-galactosamine (GalN) and lipopolysaccharide (LPS). Plasma AST, ALT, tumor necrosis factor (TNF)-alpha, and interleukin (IL)-6 levels were measured. We compared with survival rate, histological found and NF-kappaB activity between with and without treatment of suramin. In macrophage like cell line, TNF-alpha and IL-6 production, TNF-alpha and IL-6 mRNA expression, and NF-kappaB activity was measured. RESULTS: The lethality of mice administered suramin with GalN/LPS was significantly decreased compared with that in mice without suramin. Changes of hepatic necrosis and apoptosis were slight in suramin-treated mice. Serum AST, ALT, TNF-alpha, IL-6 levels and NF-kappaB activity in the liver were significantly lower in mice administered suramin. In an in vitro model, suramin preincubation inhibited TNF-alpha and IL-6 production, TNF-alpha and IL-6 mRNA expression, and NF-kappaB activity. CONCLUSIONS: Suramin inhibits TNF-alpha and IL-6 production through the suppression of NF-kappaB activity from macrophages and shows therapeutic effects on acute liver damage.

Alanine Transaminase↗

Intravitreal tissue plasminogen activator to treat macular edema associated with branch retinal vein occlusion.

PURPOSE: To evaluate the efficacy of intravitreal tissue plasminogen activator (tPA) injection for branch retinal vein occlusion (BRVO). DESIGN: Retrospective, interventional case series. METHODS: Seventeen eyes presenting with macular edema caused by BRVO were treated with an intravitreal tPA (Monteplase, 40 k IU) injection. We assessed the visual acuity (VA) and foveal thickness measured with optical coherence tomography. RESULTS: The mean duration of symptoms before surgery was 3.6 +/- 3.8 weeks. The mean logMAR VA significantly improved from 0.603 +/- 0.327 at baseline to 0.388 +/- 0.248 (P < .01) at one month and 0.359 +/- 0.319 (P < .05) at six months. The mean foveal thickness significantly decreased from 738 +/- 156 microm at baseline to 454 +/- 213 microm (P < .001) at one month and 253 +/- 164 microm (P < .001) six months. CONCLUSION: Intravitreal tPA injection may be an effective treatment for resolving macular edema and improving the VA in BRVO.

Aged↗

Zinc L-carnosine protects against mucosal injury in portal hypertensive gastropathy through induction of heat shock protein 72.

BACKGROUND AND AIMS: Increased susceptibility to gastric mucosal injury is observed in portal hypertensive gastropathy (PHG). In this study, the effects of zinc L-carnosine, an anti-ulcer drug, were evaluated on expression of heat shock protein (hsp) 72 and cytoprotection in gastric mucosa in a rat model of PHG. METHODS: Portal hypertensive gastropathy with liver cirrhosis was induced by bile duct ligation for 4 weeks in male Sprague-Dawley rats. Expression of gastric mucosal hsp72 was evaluated by Western blotting at 6 h after intragastric administration of L-carnosine, zinc sulfate, or zinc L-carnosine. Blood was also collected for determination of serum zinc level. Mucosal protective abilities against hydrochloric acid (HCl) (0.6N) followed by pretreatment with L-carnosine, zinc sulfate or zinc L-carnosine were also studied. RESULTS: L-carnosine, zinc sulfate, and zinc L-carnosine induced hsp72 in gastric mucosa of rats with bile duct ligation. Zinc sulfate and zinc L-carnosine suppressed HCl-induced mucosal injury. However, L-carnosine could not suppress HCl-induced mucosal injury. Serum zinc levels were significantly elevated after zinc L-carnosine administration. Furthermore, pretreatment with zinc L-carnosine (30-300 mg/kg) increased the expression of hsp72 in gastric mucosa and prevented HCl-induced mucosal injury in rats with bile duct ligation in a dose-dependent manner. CONCLUSIONS: Zinc derivatives, especially zinc L-carnosine, protected portal hypertensive gastric mucosa with increased hsp72 expression in cirrhotic rats. It is postulated that zinc L-carnosine may be beneficial to the mucosal protection in PHG as a 'chaperone inducer'.

Animals↗

Time-lapse imaging of vitreoretinal angiogenesis originating from both quiescent and mature vessels in a novel ex vivo system.

PURPOSE: Diabetic retinopathy (DR) is an angiogenic disease that leads to severe visual loss. However, adequate animal models of vitreoretinal neovascularization in proliferative diabetic retinopathy (PDR) have not yet been described. The purpose of this study was to develop a novel ex vivo system for assessing vitreoretinal angiogenic processes that originate from both quiescent and mature vessels that could be observed with time-sequential imaging. METHODS: The retinas of 7- to 8-week-old mice were cultured for 4 days, with or without several growth factors with novel procedures, and immunohistochemistry was performed. The retinas from Tie2-GFP mice were cultured with vascular endothelial growth factor (VEGF), and time-sequential imaging of vitreoretinal angiogenesis was acquired. RESULTS: Vascular sprouts were induced by both VEGF and placenta growth factor, but not by insulin-like growth factor-1, basic fibroblast growth factor or angiopoietin-2. In explants with or without VEGF, perivascular mural cells were dissociated from endothelial cells, which is an important step during angiogenesis and in the progression of DR. Furthermore, use of time-lapse observations of retinal neovascularization events visualized that the first step in vascular sprout emergence from quiescent vessels was a single cell extension. The leading edges of a sprouting endothelial cell extended and retracted in a sequential manner. From newly formed vessels, additional vascular sprouts then emerged and new vessels fused to each other, resulting in vascular branching. CONCLUSIONS: Time-lapse imaging of this system visualized the dynamic process in vitreoretinal neovascularization from quiescent and mature vessels.

Animals↗

Transcatheter arterial embolization for the treatment of liver metastases in a patient with malignant pheochromocytoma.

A 63-year-old male patient was admitted for the treatment of malignant pheochromocytoma with multiple liver metastases. Plasma and urinary levels of catecholamines were elevated. Transcatheter arterial embolization (TAE) with concomitant administration of mitomycin C and gelatin sponge was performed for the treatment of liver metastases. Dose of alpha-1 blocker before TAE was increased to prevent hypertensive crisis during and after TAE. The hepatic metastatic lesion of CT findings was decreased after TAE. Although blood pressure showed a transient hypertension (180/100 mmHg) after every TAE, it returned rapidly to normal. The patient experienced transient abdominal pain, nausea, and loss of appetite after every TAE; however, those symptoms were readily controlled by conventional medications. Slight elevation of liver transaminases was recognized but returned to normal range within 3 weeks. No other major side effects were seen with TAE. While plasma and urinary level of catecholamines were unchanged, plasma chromogranin A (CgA) level was significantly decreased. These results suggest that TAE is a useful treatment for hepatic metastases. Plasma CgA level is a useful marker in the treatment of malignant pheochromocytoma.

Adrenal Gland Neoplasms↗

EphrinA1 inhibits vascular endothelial growth factor-induced intracellular signaling and suppresses retinal neovascularization and blood-retinal barrier breakdown.

The Eph receptor/ephrin system is a recently discovered regulator of vascular development during embryogenesis. Activation of EphA2, one of the Eph receptors, reportedly suppresses cell proliferation and adhesion in a wide range of cell types, including vascular endothelial cells. Vascular endothelial growth factor (VEGF) plays a primary role in both pathological angiogenesis and abnormal vascular leakage in diabetic retinopathy. In the study described herein, we demonstrated that EphA2 stimulation by ephrinA1 in cultured bovine retinal endothelial cells inhibits VEGF-induced VEGFR2 receptor phosphorylation and its downstream signaling cascades, including PKC (protein kinase C)-ERK (extracellular signal-regulated kinase) 1/2 and Akt. This inhibition resulted in the reduction of VEGF-induced angiogenic cell activity, including migration, tube formation, and cellular proliferation. These inhibitory effects were further confirmed in animal models. Intraocular injection of ephrinA1 suppressed ischemic retinal neovascularization in a dose-dependent manner in a mouse model. At a dose of 125 ng/eye, the inhibition was 36.0 +/- 14.9% (P < 0.001). EphrinA1 also inhibited VEGF-induced retinal vascular permeability in a rat model by 46.0 +/- 10.0% (P < 0.05). These findings suggest a novel therapeutic potential for EphA2/ephrinA1 in the treatment of neovascularization and vasopermeability abnormalities in diabetic retinopathy.

Animals↗

Genipin prevents fulminant hepatic failure resulting in reduction of lethality through the suppression of TNF-alpha production.

Genipin is a metabolite derived from the herbal medicine Inchinko-to. Little is known about the mechanism of genipin action on acute liver injury through inflammatory cytokines. We examined the effects of genipin on production of TNF-alpha in vivo and in vitro. Mice were given GalN/LPS with or without genipin treatment. All mice not given genipin died within 12h. But in mice given genipin, 8 of 15 mice survived for 24h after GalN/LPS administration. Histologically, hepatic necrosis and inflammatory cells infiltration were significantly slight in mice given genipin. Serum AST and ALT activity were significantly lower in mice given genipin. Serum and liver homogenate TNF-alpha levels were significantly lower in mice given genipin. However, in IL-6 and IL-1beta, there were no significant differences in mice given and not given genipin. TNF-alpha, NF-kappaB activation and TNF-alpha mRNA expression in a cultured mouse macrophage-like cell line J774.1 were significantly suppressed by genipin administration. In conclusion, the present findings suggest that genipin, a metabolite derived form the herbal medicine Inchinko-to improved acute liver dysfunction by suppressive effect of TNF-alpha production.

Journal Article↗

Effects of pulmonary surfactant system on rifampicin release from rifampicin-loaded PLGA microspheres.

Pulmonary surfactants little affected the release ratio of rifampicin from rifampicin-loaded poly(lactide-co-glycolide) PLGA microspheres. The release ratio of rifampicin was depending on pH of pulmonary surfactant solution, showing that rifampicin-loaded PLGA microspheres have an ideal property to deliver rifampicin into alveolar macrophages inside of which Mycobacterium tuberculosis bacilli reside and to kill them. That is, little amount of rifampicin is released in alveolar lining liquid before the microspheres are phagocytosed by alveolar macrophages, then rifampicin is released in phagosome or cytoplasm, but little amount of rifampicin is released in lysosome of alveolar macrophages after the microspheres are internalized. Pulmonary surfactants also little affected the changes in molecular weight of residual PLGA during its hydrolytic degradation process. From the electrophoretic mobility measurements of PLGA microspheres, it was shown that pulmonary surfactants changed the surface charge density of PLGA microspheres by adsorbing on their surfaces.

Lactic Acid↗