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Biomedical subjects

Masahiko Taniguchi

Publications and source records attributed to Masahiko Taniguchi.

At least 19 recordsLinked to original sources

Control of allograft rejection by applying a novel nuclear factor-kappaB inhibitor, dehydroxymethylepoxyquinomicin.

BACKGROUND: Nuclear factor (NF)-kappaB plays a crucial role in lymphocyte activation, proliferation, and survival. We examined the immunosuppressive effect of a newly developed NF-kappaB inhibitor, dehydroxymethylepoxyquinomicin (DHMEQ) in allotransplantation. METHODS: Purified C57BL/6 (H-2b) T cells were used for in vitro studies examining activation, proliferation, cytokine production and nuclear NF-kappaB and nuclear factor of activated T cells (NFAT) protein levels. A fully major histocompatibility complex incompatible BALB/c (H-2d)-to-C57BL/6 mice cardiac transplantation model was utilized for in vivo studies. DHMEQ was given intraperitoneally to transplant recipients at a various dose starting from day 0. In some, DHMEQ was administered concomitantly with tacrolimus. RESULTS: DHMEQ significantly suppressed alphaCD3 + alphaCD28 monoclonal antibody-triggered T-cell proliferation, CD25/CD69 expressions, and both interleukin-2 and interferon (IFN)-gamma production in a dose-dependent fashion. DHMEQ blocked nuclear translocation of NF-kappaB but not NFAT in activated T cells. Combined treatment with DHMEQ and tacrolimus significantly suppressed T cell activation as compared to that of mono-therapy with either agent alone. Single DHMEQ treatment moderately prolonged cardiac allograft survival. Further, combination of DHMEQ plus tacrolimus markedly prolonged graft mean survival time (MST) to 59.5 days when compared to either DHMEQ (MST: 10 days) or tacrolimus (MST: 13 days) treatment alone. Such effect was associated with inhibition of mixed lymphocyte reaction against donor antigen, IFN-gamma producing splenocytes and graft cellular infiltration as examined at 5 and 12 days posttransplantation. CONCLUSION: DHMEQ inhibits nuclear translocation of NF-kappaB but not NFAT in activated T cells, and prolongs allograft survival. Blocking both NF-kappaB and NFAT by DHMEQ and tacrolimus induces potent immunosuppression, which may become a new modality in controlling allograft rejection.

Animals↗

Collapsin response mediator protein 1 mediates reelin signaling in cortical neuronal migration.

Collapsin response mediator protein 1 (CRMP1) is one of the CRMP family members that mediates signal transduction of axon guidance molecules. Here, we show evidence that CRMP1 is involved in Reelin (Reln) signaling to regulate neuronal migration in the cerebral cortex. In crmp1-/- mice, radial migration of cortical neurons was retarded. This phenotype was not observed in the sema3A-/- and crmp1+/-;sema3A+/- cortices. However, CRMP1 was colocalized with disabled-1 (Dab1), an adaptor protein in Reln signaling. In the Reln(rl/rl) cortex, CRMP1 and Dab1 were expressed at a higher level, yet tyrosine phosphorylated at a lower level. Loss of crmp1 in a dab1 heterozygous background led to the disruption of hippocampal lamination, a Reeler-like phenotype. In addition to axon guidance, CRMP1 regulates neuronal migration by mediating Reln signaling.

Animals↗

A selective Sema3A inhibitor enhances regenerative responses and functional recovery of the injured spinal cord.

Axons in the adult mammalian central nervous system (CNS) exhibit little regeneration after injury. It has been suggested that several axonal growth inhibitors prevent CNS axonal regeneration. Recent research has demonstrated that semaphorin3A (Sema3A) is one of the major inhibitors of axonal regeneration. We identified a strong and selective inhibitor of Sema3A, SM-216289, from the fermentation broth of a fungal strain. To examine the effect of SM-216289 in vivo, we transected the spinal cord of adult rats and administered SM-216289 into the lesion site for 4 weeks. Rats treated with SM-216289 showed substantially enhanced regeneration and/or preservation of injured axons, robust Schwann cell-mediated myelination and axonal regeneration in the lesion site, appreciable decreases in apoptotic cell number and marked enhancement of angiogenesis, resulting in considerably better functional recovery. Thus, Sema3A is essential for the inhibition of axonal regeneration and other regenerative responses after spinal cord injury (SCI). These results support the possibility of using Sema3A inhibitors in the treatment of human SCI.

Animals↗

Masked imidazolyl-dipyrromethanes in the synthesis of imidazole-substituted porphyrins.

Imidazole-substituted metalloporphyrins are valuable for studies of self-assembly and for applications where water solubility is required. Rational syntheses of porphyrins bearing one or two imidazol-2-yl or imidazol-4-yl groups at the meso positions have been developed. The syntheses employ dipyrromethanes, 1-acyldipyrromethanes, and 1,9-diacyldipyrromethanes bearing an imidazole group at the 5-position. The polar, reactive imidazole unit was successfully masked by use of (1) the 2-(trimethylsilyl)ethoxymethyl (SEM) group at the imidazole pyrrolic nitrogen, and (2) a dialkylboron motif bound to the pyrrole of the dipyrromethane and coordinated to the imidazole imino nitrogen. The nonpolar nature of such doubly masked imidazolyl-dipyrromethanes facilitated handling. Selected masked dipyrromethanes were characterized by 11B and 15N NMR spectroscopy. Five distinct methods were examined to obtain trans-A2B2-, trans-AB2C-, and trans-AB-porphyrins. Each porphyrin contained one or two SEM-protected imidazole units. The SEM group could be removed with TBAF or HCl. Two zinc(II) porphyrins and a palladium(II) porphyrin bearing a single imidazole moiety were prepared and subjected to alkylation (with ethyl iodide, 1,3-propane sultone, or 1,4-butane sultone) to give water-soluble imidazolium- porphyrins. This work establishes the foundation for the rational synthesis of a variety of porphyrins containing imidazole units.

Imidazoles↗

A new route for installing the isocyclic ring on chlorins yielding 13 1-oxophorbines.

A new route to 13(1)-oxophorbines, the parent macrocycle of chlorophylls, begins with the synthesis of a 13-bromochlorin. Pd-mediated coupling of the latter with tributyl(1-ethoxyvinyl)tin and subsequent acidic hydrolysis afforded the 13-acetylchlorin (1). Treatment of 1 with NBS afforded the 15-bromo analogue in 70% yield. Pd-mediated alpha-arylation closed the isocyclic ring to give the 13(1)-oxophorbine (2) in 85% yield. Facile access to 13(1)-oxophorbines should enable a variety of spectroscopic studies and diverse applications.

Chemistry, Organic↗

Impact of double-filtration plasmapheresis in combination with interferon and ribavirin in living donor liver transplant recipients with hepatitis C.

Double-filtration plasmapheresis (DFPP) selectively removes high molecular weight substances including hepatitis C virus (HCV). Four live donor liver transplantation (LDLT) recipients with HCV received combination therapy with low-dose interferon (IFN) and ribavirin with DFPP. Three patients underwent this therapy for prophylaxis of HCV recurrence, and one for treating fibrosing cholestatic hepatitis (FCH). The combination therapy and DFPP decreased HCV RNA levels to 8.2% +/- 2.9% and 0.7% +/- 0.5% by the 5th and 30th day of treatment, respectively. Three patients who underwent DFPP for prophylaxis showed no evidence of HCV recurrence for >1 year after treatment. The patient whose graft showed FCH, recovered dramatically after the DFPP treatment. DFPP appeared to be effective in reducing HCV viremia and preventing HCV recurrence in patients with high HCV RNA levels after LDLT. Moreover, it may become a rescue therapy for FCH in a liver transplant recipient with hepatitis C.

Drug Therapy, Combination↗

Synthetic chlorins bearing auxochromes at the 3- and 13-positions.

Synthetic chlorins bearing diverse auxochromes at the 3- and 13-positions of the macrocycle are valuable targets given their resemblance to chlorophylls a and b, which bear 3-vinyl and 13-keto groups. A de novo route has been exploited to construct nine zinc chlorins bearing substituents at the 3- and 13-positions and two benchmark zinc chlorins lacking such substituents. The chlorins are sterically uncongested and bear (1) a geminal dimethyl group in the reduced pyrroline ring, (2) a H, an acetyl, a triisopropylsilylethynyl (TIPS-ethynyl), or a vinyl at the 3-position, (3) a H, an acetyl, or TIPS-ethynyl at the 13-position, and (4) a H or a mesityl at the 10-position. The synthesis of the 13-substituted chlorins relied on p-TsOH x H2O-catalyzed condensation of an 8,9-dibromo-1-formyldipyrromethane (eastern half) and 2,3,4,5-tetrahydro-1,3,3-trimethyldipyrrin (western half), followed by metal-mediated oxidative cyclization, affording the 13-bromochlorin. Similar use of a bromo- or TIPS-ethynyl-substituted western half provided access to 3-substituted chlorins. A 3-bromo, 13-bromo, or 3,13-dibromochlorin was further transformed by Pd-coupling to introduce the vinyl group (via tributylvinyltin), TIPS-ethynyl group (via TIPS-acetylene), or acetyl group (via tributyl(1-ethoxyvinyl)tin, followed by acidic hydrolysis). In the 10-mesityl-substituted zinc chlorins, the series of substituents, 3-vinyl, 13-TIPS-ethynyl, 3-TIPS-ethynyl, 13-acetyl, 3,13-bis(TIPS-ethynyl), 3-TIPS-ethynyl-13-acetyl, or 3,13-diacetyl, progressively causes (1) a redshift in the absorption maximum of the B band (405-436 nm) and the Q(y) band (606-662 nm), (2) a relative increase in the intensity of the Q(y) band (I(B)/I(Q) = 4.2-1.5), and (3) an increase in the fluorescence quantum yield phi(f) (0.059-0.29). The zinc chlorins bearing a 3-TIPS-ethynyl-13-acetyl or a 3,13-diacetyl group exhibit a number of spectral properties resembling those of chlorophyll a or its zinc analogue. Taken together, this study provides access to finely tuned chlorins for spectroscopic studies and diverse applications.

Chlorophyll↗

Hepatic venous reconstruction of anterior sector using three-dimensional helical computed tomography in living donor liver transplantation.

In right lobe living donor liver transplantation (RL-LDLT), venous reconstruction of large middle hepatic vein (MHV) tributaries is often necessary. However the standard for reconstruction is unclear. In two recent RL-LDLT cases, we reconstructed a MHV tributary after estimating the donor's liver volume by three-dimensional images using helical computed tomography (3D-CT). 3D-CT demonstrated that the expected donor right lobe volume was 437 ml, which represented 46.2% of graft volume/recipient's standard volume ratio (GV/SV ratio) in case 1, and 600 ml (46.4%) in case 2. Moreover, 3D-CT revealed a large MHV tributary, 8 mm in diameter, drained 190 ml in volume of segment 8 in case 1, and, 7 mm in diameter, drained 138 ml in case 2. In these cases, when the area drained by the MHV tributary was excluded, GV/SV ratio were 26.1% and 35.7%, respectively. Based on this data, we reconstructed a large MHV tributary in both cases.

Carcinoma, Hepatocellular↗

Regulation of dendritic branching and spine maturation by semaphorin3A-Fyn signaling.

A member of semaphorin family, semaphorin3A (Sema3A), acts as a chemorepellent or chemoattractant on a wide variety of axons and dendrites in the development of the nervous systems. We here show that Sema3A induces clustering of both postsynaptic density-95 (PSD-95) and presynaptic synapsin I in cultured cortical neurons without changing the density of spines or filopodia. Neuropilin-1 (NRP-1), a receptor for Sema3A, is present on both axons and dendrites. When the cultured neurons are exposed to Sema3A, the cluster size of PSD-95 is markedly enhanced, and an extensive colocalization of PSD-95 and NRP-1 or actin-rich protrusion is seen. The effects of Sema3A on spine morphology are blocked by PP2, an Src type tyrosine kinase inhibitor, but not by the PP3, the inactive-related compound. In the cultured cortical neurons from fyn(-/-) mice, dendrites bear few spines, and Sema3A does not induce PSD-95 cluster formation on the dendrites. Sema3A and its receptor genes are highly expressed during the synaptogenic period of postnatal days 10 and 15. The cortical neurons in layer V, but not layer III, show a lowered density of synaptic bouton-like structure on dendrites in sema3A- and fyn-deficient mice. The neurons of the double-heterozygous mice show the lowered spine density, whereas those of single heterozygous mice show similar levels of the spine density as the wild type. These findings suggest that the Sema3A signaling pathway plays an important role in the regulation of dendritic spine maturation in the cerebral cortex neurons.

Actins↗

Alkylthio unit as an alpha-pyrrole protecting group for use in dipyrromethane synthesis.

The synthesis of porphyrin precursors requires the successive introduction of substituents at the pyrrole alpha- and alpha'-positions (2- and 5-, respectively). An alpha-pyrrole substituent that serves as a temporary masking agent and is not deactivating would greatly facilitate such syntheses, particularly for beta-(3,4)-unsubstituted pyrroles, but has heretofore not been available. A series of alpha-RS groups (R = Me, Et, n-decyl, Ph) have been investigated in this regard, including the determination of the kinetics of substitution at the pyrrolic 3-, 4-, and 5-positions and the application to dipyrromethane formation. The RS group was readily introduced into the pyrrole alpha-position by the reaction of 2-thiocyanatopyrrole (prepared from pyrrole, ammonium thiocyanate, and iodine) and the corresponding Grignard reagent RMgBr. Each 2-alkylthio group activated the pyrrole ring toward deuteration at the 3- or 5- (vs 4-) position. The dipyrromethane synthesis was carried out using a 2:1 ratio of 2-(RS)pyrrole/benzaldehyde with a catalytic amount of InCl3 at room temperature in the absence of any solvent. The alpha-RS group was removed by hydrodesulfurization using Raney nickel or nickel complexes. This stoichiometric synthesis using the alpha-RS-protected pyrrole is in contrast to the traditional synthesis that employs an aldehyde and 25-100 mol equiv of pyrrole. Six meso-substituted dipyrromethanes were prepared by the reaction of 2-(n-decylthio)pyrrole/aldehyde/InCl3 (2.2:1:0.2 ratio) followed by hydrodesulfurization. Other reactions of the 1,9-bis(RS)dipyrromethane include oxidation to give (i) the 1,9-bis(RS)dipyrrin or (ii) the 1,9-bis(RSO2)dipyrromethane, which underwent subsequent complexation with dibutyltin dichloride. In summary, under mild reaction conditions, the 2-alkylthio group is readily introduced to the pyrrole nucleus, directs electrophilic substitution to the 5-position, and is readily removed as required for elaboration of porphyrinic precursors.

Alkylation↗

Living-donor liver transplantation for hepatocellular carcinoma.

Transplant surgeons have long dreamed of achieving a complete cure for hepatocellular carcinoma (HCC) by replacing the liver with a new graft. Although the early results of liver transplantation for HCC were disappointing, with 5-year survival less than 40%, improved results in patients who met the so-called Milan criteria rekindled the enthusiasm for the treatment of HCC with liver transplantation. Furthermore, the recent development of living-donor liver transplantation in adults has allowed timely grafting for HCC patients and tentative expansion of the criteria for transplant candidacy in patients with HCC - although such expansion is fraught with controversy. Identification of a noninvasive marker that could predict the biological behavior as well as the prognosis of HCC would indeed be a major breakthrough.

Adult↗

Rautandiols A and B, pterocarpans and cytotoxic constituents from Neorautanenia mitis.

As part of a study on potential antitumor agents from rainforest plants, two new pterocarpans, rautandiol A (1) and rautandiol B (2), together with eight known compounds, were isolated from Neorautanenia mitis. Among the compounds isolated, rotenone (3) and 12-hydroxyrotenone (4) showed significant cytotoxic activity with IC(50) values of 0.008-0.010 and 0.04-0.06 microg/mL against MCF-7 and A-549 cells, respectively.

Antineoplastic Agents, Phytogenic↗

AFP mRNA detected in bone marrow by real-time quantitative RT-PCR analysis predicts survival and recurrence after curative hepatectomy for hepatocellular carcinoma.

OBJECTIVE: To determine whether detection of hepatocellular carcinoma (HCC) cells by real-time quantitative RT-PCR targeting of alpha-fetoprotein mRNA (AFP mRNA) before or after curative hepatectomy predicts HCC recurrence and patient survival. SUMMARY BACKGROUND DATA: The presence of cancer cells in peripheral blood and/or bone marrow in patients with malignant disease has been reported to correlate with outcome. METHODS: Between July 2000 and June 2005, 136 consecutive HCC patients underwent primary curative hepatectomy. Bone marrow aspirated preoperatively, and peripheral blood samples collected before and after operation were subjected to real-time quantitative RT-PCR analysis using AFP mRNA as a target molecule. Median follow-up was 23 months (range, 6-54 months). Patient survival (PS), disease-free survival (DFS), and clinicopathologic features were compared between patients with positive and negative AFP mRNA. RESULTS: Twenty-four patients died (22 from HCC). HCC recurred in 66 patients (hepatic in 37 [56.1%]; hepatic and remote in 17 [25.8%], and remote alone in 12 [18.2%]). Bone marrow was positive for AFP mRNA in 38 patients (27.9%) and negative in 98 (72.1%). One- and 3-year PS was 96.6% and 91.4%, respectively, with negative AFP mRNA versus 86.2% and 55.5%, respectively, with positive AFP mRNA (P < 0.0001). One- and 3-year DFS were 73.2% and 44.8%, respectively, with negative AFP mRNA versus 54.5% and 25.8%, respectively, with positive AFP mRNA (P = 0.0399). Portal vascular invasion, tumor size, multiple tumors, and tumor differentiation correlated with inferior PS and DFS on univariate analysis. On multivariate analysis, positive AFP mRNA was the most important risk factor for PS (P = 0.001) and DFS (P = 0.0165). In addition, positive AFP mRNA in peripheral blood after operation tended to predict reduced DFS. CONCLUSION: AFP mRNA in the bone marrow and systemic circulation during the perioperative period predicts patient survival and recurrence after curative hepatic resection for HCC.

Biomarkers, Tumor↗

[Plasma levobupivacaine concentrations following epidural administration of levobupivacaine conjugated with or without maltosyl-beta-cyclodextrin].

BACKGROUND: To investigate the pharmacokinetics of complexation of levobupivacaine with maltosyl-beta-cyclodextrin, the plasma concentrations of levobupivacaine were measured following epidural administration of levobupivacaine conjugated with maltosyl-beta-cyclodextrin or levobupivacaine alone in a rabbit model. METHODS: Rabbits were randomly divided into two groups, levobupivacaine (1%) group (n = 6) and levobupivacaine (1%) conjugated with maltosyl-beta-cyclodextrin (100 mM) group (n = 6). One ml of each solution was randomly injected through an epidural catheter placed at L5-6. The plasma levobupivacaine concentrations were measured before and 5, 10, 15, 30, 60, 120, 240, 360, and 480 min after injection. RESULTS: The plasma levobupivacaine concentrations were significantly higher in the levobupivacaine conjugated with maltosyl-beta-cyclodextrin group than in levobupivacaine group at 5 min (1,465 +/- 311, 1,033 +/- 347 ng x ml(-1)), 10 min (1,068 +/- 237, 731 +/- 191), and 15 min (958 +/- 311, 605 +/- 118). There were no differences in area under the curve (1,551 +/- 387, 1,176 +/- 154 ng x hr x ml(-1)) and elimination half life (100 +/- 54, 78 +/- 37 min) between the two groups. CONCLUSIONS: The results of this study indicated that the absorption of levobupivacaine conjugated with maltosyl-beta-cyclodextrin from the epidural space and the elimination from the blood were similar to plain levobupivacaine.

Anesthesia, Epidural↗

Absence of leukotriene B4 receptor 1 confers resistance to airway hyperresponsiveness and Th2-type immune responses.

Bronchial asthma is an increasingly common disorder that remains poorly understood and difficult to manage. The disease is characterized by airway hyperresponsiveness, chronic inflammation, and mucus overproduction. Based on the finding that leukotriene B4 receptor 1 (BLT1) is expressed highly in Th2 lymphocytes, we analyzed the roles of BLT1 using an OVA-induced bronchial asthma model. BLT1-null mice did not develop airway hyperresponsiveness, eosinophilic inflammation, and hyperplasia of goblet cells. Attenuated symptoms were accompanied by reduced IgE production, and accumulation of IL-5 and IL-13 in bronchoalveolar lavage fluid, suggesting attenuated Th2-type immune response in BLT1-null mice. Peribronchial lymph node cells of sensitized BLT1-null mice showed much attenuated proliferation and production of Th2 cytokines upon re-stimulation with Ag in vitro. Thus, LTB4-BLT1 axis is required for the development of Th2-type immune response, and blockade of LTB4 functions through BLT1 would be novel and useful in the effort to ameliorate bronchial asthma and related Th2-biased immune disorders.

Animals↗

A radical scavenger, edaravone, protects canine kidneys from ischemia-reperfusion injury after 72 hours of cold preservation and autotransplantation.

BACKGROUND: Cold ischemia-reperfusion (I/R) injury is a prominent cause of delayed graft function after kidney transplantation. Reactive oxygen species play a crucial role in I/R injury. Edaravone is a synthetic radical scavenger that has been used in acute stroke. Some animal experiments have revealed its beneficial effects against I/R injury, but its effects after cold preservation and transplantation of canine kidneys are unknown. METHODS: Female hybrid dogs weighing 11 to 13 kg were used. Under anesthesia, the left kidney was harvested. After 72 hr of preservation in cold histidine-tryptophan-ketoglutarate solution, autotransplantation was performed in the right iliac fossa, with contralateral nephrectomy. Animals were divided into control and treatment groups (n=6 per group). In the treatment group, edaravone was administered intravenously at harvest and at reperfusion (3 mg/kg) and in addition was added to the preservation solution (50 microM). RESULTS: Animal survival at 2 weeks was four of six in the control group and six of six in the treatment group. Compared with controls, treated animals had higher mean urine output, higher mean glomerular filtration rate, improved tubular cell function, lower mean serum creatinine, and lower renal vascular resistance. Biopsy specimens from treated animals showed less tubular cell damage and decreased P-selectin expression in endothelial cells. Lipid peroxidation of renal tissue and urinary excretion of 8-hydroxy-2'-deoxyguanosine were suppressed by the treatment. CONCLUSIONS: Edaravone reduced cold I/R injury in canine renal transplantation. The agent has the potential to ameliorate preservation injury in clinical transplantation.

Animals↗

Lipid peroxidation during ischemia depends on ischemia time in warm ischemia and reperfusion of rat liver.

Prolonged hepatic warm ischemia has been incriminated in oxidative stress after reperfusion. However, the magnitude of oxidative stress during ischemia has been controversial. The aims of the present study were to elucidate whether lipid peroxidation progressed during ischemia and to clarify whether oxidative stress during ischemia aggravated the oxidative damage after reperfusion. Rats were subjected to 30 to 120 min of 70% warm ischemia alone or followed by reperfusion for 60 min. Lipid peroxidation (LPO) was evaluated by amounts of phosphatidylcholine hydroperoxide (PC-OOH) and phosphatidylethanolamine hydroperoxide (PE-OOH) as primary LPO products. Total amounts of malondialdehyde and 4-hydroxy-2-nonenal (MDA + 4-HNE), degraded from hydroperoxides, were also determined. PC-OOH and PE-OOH significantly increased at 60 and 120 min ischemia with concomitant increase of oxidized glutathione. These hydroperoxides did not increase at 60 min reperfusion after 60 min ischemia, whereas they did increase at 60 min reperfusion after 120 min ischemia with deactivation of phospholipid hydroperoxide glutathione peroxidase and superoxide dismutase. The amount of MDA + 4-HNE exhibited similar changes, but the velocity of production dropped with ischemic time longer than 60 min. In conclusion, oxidative stress progressed during ischemia and triggered the oxidative injury after reperfusion. Secondary LPO products are less sensitive, especially during ischemia, which may cause possible underestimation and discrepancy.

Aldehydes↗