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A Ota

Publications and source records attributed to A Ota.

At least 37 records · Page 2Linked to original sources

Anti-P30-52 monoclonal antibody cross-reacted to Env V3 and inhibited the viral multiplication of HIV-1-infected MT-4 cells.

It is well known that the anti-p17 antibody titer decreases with the disease progression among human immunodeficiency virus type 1 (HIV-1) carriers. We previously established several murine anti-p17 monoclonal antibodies (MAbs) to investigate the immunological role of p17, and to further characterize these MAbs, we examined the anti-p17 antibody titer in serum of a patient who was a long-term nonprogressor with hemophilia, and found that the antibody for the p17-derivative peptide from amino acid residues 30 to 52 (P30-52) cross-reacted to the third variable region of the envelope glycoprotein of HIV-1, Env V3. In the present study, we primed mice with P30-52 to establish anti-P30-52 MAbs (P30-52 MAbs), and examined their affinity and whether they suppressed the viral multiplication of HIV-1-infected MT-4 (HTLV-1-transformed CD4+ T-cell line) cells, in a TCID50 assay. At the same time, an anti-Env V3 MAb (Env V3 MAb) was also established and examined as above. The IgM-type P30-52 MAb and Env V3 MAb showed heteroclitic binding, and the IgM-type P30-52 MAb inhibited the viral multiplication. We also found that an increase of fragmented DNA of HIV-1-infected MT-4 cells co-cultured with P30-52 MAbs. Because DNA fragmentation is one of the features of programmed cell death, the viral multiplication may be suppressed by the apoptosis of HIV-1-infected MT-4 cells co-cultured with P30-52 MAbs. Though the relationship between cross-reactivity and the inhibition mechanism of multiplication of HIV-1 is unclear, P30-52 of p17 may well be a useful region of viral proteins for the development of therapeutic and vaccination strategies.

Amino Acid Sequence↗

Cross-reactivity of anti-HIV-1-p17-derivative peptide (P30-52) antibody to Env V3 peptide.

Strong antibody responses are often seen in human immunodeficiency virus type 1 (HIV-1) carriers, but it is not known whether these antibodies are effective in the inhibition of disease progression. In this study, we examined antigenic epitopes for anti-HIV-1 p17 antibody (p17 Ab) in an HIV-1 carrier's serum, and found that the residues of amino acid numbers 1 to 12 (P1-12), 12 to 29 (P12-29) and 30 to 52 (P30-52) of p17 were highly recognized in the serum. Our examination of purified antibodies from the patient using the p17-derivative-peptide-immunoaffinity columns showed that the reactivity of anti-p30-52 Ab (p30-52Ab) was high for p30-52 and the naive protein, p17. In addition, this P30-52Ab cross-reacted with the third variable region of the envelope glycoprotein (Env V3). To confirm this cross-reactivity, we immunized mice with P30-52, and established a monoclonal antibody (MAb), 8H10. We found that 8H10 was also reactive to Env V3. It is unclear whether this cross-reactivity of P30-52 Ab can function as the inhibitor of HIV-1, but these results will be of help in clarifying the interaction of Env protein with HIV-1 gag polyprotein and the relationship of the decline of the p17 antibody titer with the disease progression in HIV-1 carriers.

Amino Acid Sequence↗

Analysis of the anti-HIV-1 activity of an anti-p17-derivative peptide (P30-52) monoclonal antibody.

The object of this study was to examine the possibility of immunotherapy using anti-human immunodeficiency virus type 1 (HIV-1) p17-derivative peptide monoclonal antibody (MAb), namely MAb 8H10. Previously we established MAb 8H10, and further characterization revealed that it inhibited the viral multiplication of the HIV-1-infected MT-4 cells, and that the inhibitory mechanism related to the decrease of p17 DNA of the infected cells. In the present study, based on the assumption that Hybridoma 8H10 (Hyb 8H10) is a source of this MAb, we examined how Hyb 8H10 influences the infected cells when the two are co-cultured using the transwell or by mixed culture. Hyb 8H10 did not influence the cell growth or viability of MT-4 cells, and MAb 8H10 was transferred to the cluster dish containing the infected cells. Furthermore, Hyb 8H10 could produce MAb 8H10 even when co-cultured with the infected MT-4 cells. However, the infectivity of the supernatant of the infected cells was temporarily enhanced when Hyb 8H10 was co-cultured without MAb 8H10, though it gradually reduced according to the increase in MAb 8H10 produced by Hyb 8H10. Though there were some problems, MAb 8H10 proved to be a strong candidate for immunotherapy against HIV.

Animals↗

Cultured rabbit corneal epithelium elicits levofloxacin absorption and secretion.

Abstract Evidence for carrier-mediated transport of levofloxacin in the isolated rabbit cornea has been found. However, it is not known whether this mechanism is located in the epithelium or the endothelium. To resolve this question, we have measured the kinetics of levofloxacin uptake in primary cultures of rabbit corneal epithelial cells. The results indicate that levofloxacin accumulation was time dependent and a steady state was reached after 30 min. Maximal uptake occurred from a solution whose pH was 6.5. The uptake process was stereoselective and concentration dependent. In addition to the uptake, secretion of levofloxacin also occurred. These results indicate that the corneal epithelium is the site of levofloxacin transport mechanisms, mediating both absorption and secretion.

Absorption↗

Characterization of the carrier-mediated transport of levofloxacin, a fluoroquinolone antimicrobial agent, in rabbit cornea.

The cornea presents a formidable barrier to drug penetration. The fluoroquinolone levofloxacin, which is an effective antimicrobial agent, has the potential to be used in the topical treatment of ocular disease. Thus, we sought to characterize how levofloxacin penetrates the cornea. To perform this characterization, we measured the time dependent permeation of levofloxacin across the isolated rabbit cornea using a diffusion chamber, and compared it with antipyrine fluxes. Levofloxacin permeation into the receiver epithelial-side bathing solution (pH = 6.5) from the donor endothelial-side (pH = 7.4) reached 3.00 nmolcm(-2) cornea after 2h, whereas in the opposite direction permeation was 1.89 nmolcm(-2) cornea. Based on the temperature-dependent effects on permeation, the calculated energy of activation for permeation, Ea, was 31.3 kcal mol(-1), whereas Ea for antipyrine, a marker of diffusion, was 11.0 kcalmol(-1). The transport of levofloxacin from epithelium to endothelium was concentration-dependent and had both a linear and saturable component. Evaluation of the kinetic parameters, Jmax, apparent Km and k(d) showed that they were 38.78 pmol min(-1) cm(-2), 3.83 mM and 0.0135 microL min(-1) cm(-2), respectively. These results, coupled with the fact that levofloxacin permeation reached a maximum value at pH 6.5, suggest that levofloxacin transport across the cornea is carrier mediated. However, at present, it cannot be ascertained whether such a system is localized in either the corneal epithelial or the endothelial layer.

Animals↗

Characterization of cyclosporin A transport in cultured rabbit corneal epithelial cells: P-glycoprotein transport activity and binding to cyclophilin.

PURPOSE: The purpose of this study was to characterize cyclosporin A (CsA) uptake and transport in cultured rabbit corneal epithelial cells (RCECs). METHODS: CsA uptake was evaluated by measuring time-dependent 3H-CsA accumulation in confluent RCECs. Bidirectional 3H-CsA fluxes were measured across the RCEC layers grown on Transwell-COL culture plate inserts. The anti-P-gp monoclonal antibody C219 was used in western blot analysis to probe for the presence of P-gp in these cells. RESULTS: The accumulation of 3H-CsA was time and temperature dependent. Steady state was reached by 60 minutes. The initial uptake was saturable and was suppressed as a function of increases in preloading with unlabeled CsA. This uptake process was enhanced by metabolic inhibition with either 3-O-methylglucose, MG, or 10 mM NaN3 and 3-O-MG. The largest increase was obtained with 10 mM NaN3 in combination with 3-O-MG. In their presence, uptake increased by 40%. A multidrug-resistance (MDR)-reversing agent (i.e., 500 microM verapamil, 100 microM vincristine, 100 microM progesterone, 100 microM testosterone, 500 microM quinidine, or 100 microM chlorpromazine) significantly increased 3H-CsA accumulation. The largest increase was obtained with 500 microM quinidine (i.e., 36%). Conversely, verapamil and vincristine produced the largest inhibition of 3H-CsA efflux (i.e., 19% and 28%, respectively). However, in the presence of 10 microM unlabeled CsA, 3H-CsA efflux increased. 3H-CsA flux across RCEC layers showed marked directional asymmetry. The stromal (S) to tear (T) side transcellular 3H-CsA permeability coefficient (Ptrans) was approximately seven times higher than that in the T-to-S direction. The S-to-T Ptrans was reduced by an MDR-reversing agent by up to 40%. Western blot analysis of lysates revealed a 170-kDa membrane protein band. CONCLUSIONS: These results suggest that in RCEC the tear-side-facing membrane has a P-gp-mediated drug efflux pump. In addition, there is suggestive evidence for the presence of the cytosolic protein, cyclophilin. The presence of P-gp in these cells could help protect them from being damaged by the uptake of toxic substances.

3-O-Methylglucose↗

Hypoxic-ischemic tolerance phenomenon observed in neonatal rat brain.

OBJECTIVE: Our purpose was to determine whether hypoxic-ischemic brain damage would be protected against by advance conditioning of the animal with 4 hours of hypoxic exposure. STUDY DESIGN: Neonatal rats were exposed on postnatal day 7 to (1) 4 hours of hypoxia with 8% oxygen (preconditioning hypoxic group) or (2) 4 hours of normoxia (sham-preconditioning group). At 24 hours after the conditioning, rats from both groups were exposed to left carotid artery ligation followed by 2 hours of hypoxia (8% oxygen/92% nitrogen). All the rats were killed 1 week after hypoxia-ischemia, and their brains were extracted for histologic study. RESULTS: Two types of brain damage were histologically observed at 1 week after hypoxia-ischemia in both groups: (1) generalized infarction in the ligated hemisphere and (2) predominant neuronal loss in the hippocampal region. The total incidence of brain damage was significantly decreased in the preconditioning hypoxic group (10/24 rats, 41.7%) compared with the sham-preconditioning hypoxic group (17/22 rats, 77.3%; P < .05). CONCLUSION: Our results show that the hypoxic-ischemic tolerance phenomenon may be induced in the hypoxic-ischemic brain damage model by conditioning the animal before the insult with 4 hours of hypoxic exposure.

Animals↗

Enzymes related to catecholamine biosynthesis in Tetrahymena pyriformis. Presence of GTP cyclohydrolase I.

We first identified GTP cyclohydrolase I activity (EC 3.5.4.16) in the ciliated protozoa, Tetrahymena pyriformis. The Vmax value of the enzyme in the cellular extract of T. pyriformis was 255 pmol mg-1 protein h-1. Michaelis-Menten kinetics indicated a positive cooperative binding of GTP to the enzyme. The GTP concentration producing half-maximal velocity was 0.8 mM. By high-performance liquid chromatography (HPLC) with fluorescence detection, a major peak corresponding to D-monapterin (2-amino-4-hydroxy-6-[(1'R,2'R)-1',2',3'-trihydroxypropyl]pteridin e, D-threo-neopterin) and minor peaks of D-erythro-neopterin and L-erythro-biopterin were found to be present in the cellular extract of Tetrahymena. Thus, it is strongly suggested that Tetrahymena converts GTP into unconjugated pteridine derivatives. In this study, dopamine was detected as the major catecholamine, while neither epinephrine nor norepinephrine was identified. Indeed, this protozoa was shown to possess the activity of a dopamine synthesizing enzyme, aromatic L-amino acid decarboxylase. On the other hand, activities of tyrosine hydroxylase or tyrosinase which converts tyrosine into dopa, the substrate of aromatic L-amino acid decarboxylase, could not be detected in this protozoa. Furthermore, neither dopamine beta-hydroxylase activity nor phenylethanolamine N-methyltransferase activity could be identified by the HPLC methods.

Amino Acid Sequence↗

Functional regulation of tyrosinase and LAMP gene family of melanogenesis and cell death in immortal murine melanocytes after repeated exposure to ultraviolet B.

This study characterizes the induction of melanogenesis and the expression of tyrosinase, tyrosinase-related protein (TRP) and lysosome-associated membrane protein (LAMP) gene families in the cultured melanocyte lines of non-agouti mice with four major genetic loci, i.e. melan-a2 (black, wild type), melan-b (brown, TRP-1 mutation), melan-s (black, piebaldism mutation) and melan-c (white, tyrosinase mutation) in response to repeated exposure to ultraviolet (UV) B (5 mJ/cm2, 7 consecutive days). Electron microscopy showed that new melanogenesis was induced in melan-a2, melan-s and melan-b melanocytes. Melan-a2, melan-s and melan-b showed an almost twofold increase in tyrosinase activity and gene expression with increased synthesis of melanosomes, although melan-b showed a minimum increase in tyrosinase activity. There was a twofold upregulation of LAMP-1 mRNA but no alteration in LAMP-2 and LAMP-3 mRNA expression in melan-a2, while there was no alteration in LAMP-1 mRNA expression but increased expression of LAMP-2 and LAMP-3 mRNA in melan-s, LAMP-3 showing a higher increase. Melan-b cells showed the same gene expression of LAMP-1, LAMP-2 and LAMP-3 as that of non-UV exposed cells. All three lines, however, exhibited simultaneously cell death, melan-b reaching the highest rate of cell death (96.5%). In contrast, melan-c, which did not have any tyrosinase activity with failure of melanogenesis induction, expressed all the mRNAs of the tyrosinase and LAMP gene families, but was not associated with any significant melanocyte death. Our study indicated: (i) that melanogenesis induction and melanocyte death are two photobiological processes occurring simultaneously after repeated UVB exposure, (ii) that in response to an upregulation of tyrosinase mRNA and enzymic activity, there was a co-ordinated upregulation of the LAMP-1 gene in wild type melan-a2, while no upregulation was found in melan-s and melan-b mutants, and (iii) that UV-induced melanocyte death is related to the upregulation of the tyrosinase gene, induction of new melanogenesis and mutation of the TRP-1 gene in immortal murine melanocytes.

Animals↗

Beta adrenergic antagonist permeation across cultured rabbit corneal epithelial cells grown on permeable supports.

PURPOSE: To determine whether cultured rabbit corneal epithelial cells (RCEC), grown on permeable supports, provide a suitable in vivo model for characterizing transcellular drug permeation and metabolism. METHODS: Primary rabbit corneal epithelial cells grown in DMEM-F12 were seeded on Transwell-COL inserts coated with fibronectin. The epithelial barrier integrity was evaluated, based on measurements of 14C-mannitol and 3H-PEG900, and their transepithelial electrical resistance (TEER). Ultrastructure evaluation was based on scanning electron microscopy and transmission electron microscopy, which were performed 8 days after seeding. Measurements of beta adrenergic antagonist permeability were performed to assess transcellular permeability. RESULTS: Eight days after seeding, the TEER reached a peak of 144 omega.cm2 and the 14C-mannitol and 3H-PEG900 permeabilities were 6.8 x 10(-6) and 2.9 x 10(-6) cm/sec, respectively. Ultrastructural analysis revealed a multilayered structure with numerous microplicae and typical cytoplasmic organelles along with desmosomes. The relationship between permeation of beta-blockers and lipophilicity resembled the intact isolated cornea. CONCLUSIONS: This is the first description of cultured RCEC grown on permeable support. Many of its properties mimic those described in the intact corneal epithelium. Even though its electrical tightness is less than that of the intact cornea, the transcellular permeability to lipophilic beta-antagonists is comparable to the isolated preparation. Therefore, this model will facilitate characterization of ocular permeation mechanisms of hydrophobic drugs whose route of permeation is transcellular.

Adrenergic beta-Antagonists↗

Evaluation of the affinity measurement of anti-HIV-1 p17 monoclonal antibody by BIAcore.

The methods of measuring the affinity constants of anti-HIV-1 p17 monoclonal antibodies (MAbs) using the double antibody methods in the liquid phase and the biomolecular interaction analysis by BIAcore system (Pharmacia Biosensor AB, Uppsala, Sweden) were compared. MAbs, HyHIV1-6, recognizing residues 12-29 (P12-29) of p17 and the naive protein, p17, were used. The kinetic association constants (KAs) obtained using the double antibody method were 2.40 x 10(7) - 1.40 x 10(8)M(-1) for P12-29, and 4.80 x 106 - 1.80 x 10(7) M(-1) for p17. In the BIAcore system where P12-29 or p17 was used as immobilized antigens onto the sensorchip, the KAs were 1.57 x 10(9) - 4.81 x 10(9) M(-1) for P12-29, and 1.52 x 10(9) - 1.21 x 10(10) M(-1) for p17. On the other hand, when MAbs were immobilized onto the sensorchip and P12-29 or rp17 was used as analyte, the KAs for P12-29 and p17 were in the region 3 x10(8) - 3 x 10(9), 1 x 10(8) - 3 x 10(9) M(-1), respectively. These data show that the KAs were higher than those obtained using the double antibody method, however, no significant difference could be observed. Moreover, the KAs obtained for p17 using MAbs as ligand were similar for BIAcore and the double antibody method except for HyHIV2. Therefore, the BIAcore system can be used for the affinity measurement instead of the double antibody method.

Animals↗

Random expression of human immunodeficiency virus-1 (HIV-1) p17 (epitopes) on the surface of the HIV-1-infected cell.

Twenty monoclonal antibodies (MAbs) were obtained by immunizing Balb/c mice with recombinant p17 (rp17) of HIV-1. Epitope specificity of each MAb was determined using six peptides that cover the entire region of p17. We found that each MAb reacts with only one of the peptides, residues 12-29, 30-52, 53-87, and 87-115 (P12-29, P30-52, P53-87, P87-115) of p17 with the exception of one MAb. Three kinds of MAbs that recognize P30-52, P87-115, and a conformational epitope, suppressed the infectivity of HIV-1 (JMH-1) when they added in the culture of MT-4 cells infected by HIV-1 within 24 h of the infection.

Anti-HIV Agents↗

Structure-function relationship of T-2 toxin and its metabolites in inducing thymic apoptosis in vivo in mice.

Recently we found that a single administration of T-2 toxin (T-2), a trichothecene mycotoxin, into mice induced DNA fragmentation, a biochemical hallmark of apoptosis, in the thymus. In this study, we investigated the effective chemical structure(s) of T-2-derived metabolites capable of inducing thymic apoptosis in vivo in mice. Metabolic conversion of T-2 to 3'-hydroxy-T-2 toxin (3'-OH-T-2) did not diminish the apoptosis-inducing activity, since essentially the same level of fragmented DNA was detected in the thymus taken from mice injected with either T-2 or 3'-OH-T-2. In contrast, hydrolysis of T-2 and 3'-OH-T-2 at the carbon-4 (C-4) position to HT-2 toxin (HT-2) and 3'-hydroxy-HT-2 toxin (3'-OH-HT-2), respectively, greatly decreased the level of DNA fragmentation. Similarly, hydrolysis of T-2 at the carbon-8 (C-8) position to neosolaniol strongly diminished its ability to induce DNA fragmentation. T-2 tetraol, having no ester groups, was unable to induce apoptosis. Based on the data presented in this study, we concluded that both the acetyl group at the C-4 position and the isovaleryl or 3'-hydroxyisovaleryl group at the C-8 position of the T-2 molecule are important for inducing cell death through apoptosis in the thymus.

Animals↗

Effect of lipopolysaccharide on the gene expression of the enzymes involved in tetrahydrobiopterin de novo biosynthesis in murine neuroblastoma cell line N1E-115.

The amounts of messenger RNA for three enzymes, namely guanosine triphosphate (GTP) cyclohydrolase 1,6-pyruvoyltetrahydropterin synthase, and sepiapterin reductase, all of which are involved in the de novo biosynthesis of (6R)-L-erythrodihydroxypropyl-2-amino-4-hydroxy-5,6,7,8-tetrahydro pteridine (BH4) from GTP, were measured quantitatively in murine neuroblastoma cell line N1E-115 by the competitive polymerase chain reaction (PCR) technique after reverse transcription using a heterologous DNA fragment as an internal standard. Twenty-four hour activation of this cell line with 1 microg/ml lipopolysaccharide resulted in statistically significant increases in the amounts of the messages of all three enzymes. Our data suggest that lipopolysaccharide can activate the intrinsic pathway resulting in the enhanced gene expression of these three enzymes in neuron-derived cells such as N1E-115.

Alcohol Oxidoreductases↗

Effects of dopamine on N-terminus-deleted human tyrosine hydroxylase type 1 expressed in Escherichia coli.

N-Terminus-deleted mutants and wild-type human tyrosine hydroxylase type 1 were expressed in Escherichia coli (E. coli) and utilized to investigate the dopamine-induced decrease in the enzyme catalytic activity and also to identify the specific portion in the N-terminus that affects the efficiency of the inhibitory action of dopamine. Supernatants of bacterial lysates were used as enzyme samples. The pH profiles of the enzyme catalytic activity were affected according to the degree of the deletion. The deletion up to 39 amino acid residues was enough to abolish the inhibitory effect of dopamine in the basic pH range. These results suggest that the inhibition by dopamine of tyrosine hydroxylase activity is closely related to the amino acid sequence in the N-terminus of the enzyme.

Amino Acid Sequence↗

Sequence of neuronal responses assessed by immunohistochemistry in the newborn rat brain after hypoxia-ischemia.

OBJECTIVE: Our purpose was to study the neuronal responses of heat shock protein-72 (a stress-inducible protein) and microtubule-associated protein-2 (a constitutive protein of the neuronal cytoskeleton) after hypoxia-ischemia and their relationship with permanent damage in the newborn rat brain. STUDY DESIGN: Seven-day-old rats were exposed to unilateral carotid artery ligation followed by 2 hours of hypoxia (8% oxygen/92% nitrogen) and then killed at time points ranging from 1 to 72 hours after injury. Brains were removed for immunohistochemical and routine staining. RESULTS: Heat shock protein-72 appearance and microtubule-associated protein-2 disappearance occurred from 1 hour after injury, mainly in the dentate gyrus of the hippocampal formation and the cerebral cortex. Such alterations reached maximal levels at 24 hours for both proteins. Microtubule-associated protein-2 staining recovered in almost all parts of the brain. However, the hippocampal CA3 showed a delay in the responses for both proteins, and microtubule-associated protein-2 did not recover the response to immunostaining. Histologic evaluation at 72 hours after hypoxia by routine methods showed predominant damage in the hippocampal CA3. CONCLUSION: Our results show that delayed responses of heat shock protein-72 and microtubule-associated protein-2 are related to a high incidence of neuronal cell loss in the hippocampal CA3 region.

Animals↗

Dissociated release of tetrahydrobiopterin and nitric oxide by lipopolysaccharide from mouse neuroblastoma cells.

We examined the release of tetrahydrobiopterin ((6R)-L-erythro-dihydroxypropyl-2-amino-4-hydroxy-5,6,7, 8-tetrahydropteridine; BH4) and nitric oxide induced by lipopolysaccharide from mouse neuroblastoma N1E-115 cells by measuring BH4 and nitric oxide derivatives, nitrites and nitrates, harbored in the conditioned media. The stimulation of the cells by 1 microgram/ml of lipopolysaccharide for 24 h induced 2-fold increase in the release of BH4 from the cells, but did not induce the nitric oxide release from the cells. Although such increase in BH4 release from the cells was blocked by the inhibitors of nuclear factor-kappa B or protein tyrosine kinases, the release of nitric oxide was not affected by such inhibitors. Our results may suggest that the inductions of BH4 and nitric oxide in this neuroblastoma cell line are processed in different ways and that this cell line is also different from the immune cells in the central nervous system such as microglia in this respect.

Animals↗