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Biomedical subjects

K Sakai

Publications and source records attributed to K Sakai.

At least 91 records · Page 5Linked to original sources

Aqueous dispersion behavior of drug particles by addition of surfactant and polymer.

The effect of surfactant and polymer on dispersion stability of aqueous suspensions of 5-(3-ethoxy-4-pentyloxyphenyl)-2,4-thiazolidinedione (CT112) was investigated by measuring the adsorbed amount of surfactant and polymer, zeta potential, particle size, and sedimentation rate of CT112. The addition of celluloses rather than sodium dodecyl sulfate (SDS) provided a high stable suspension of CT112. In addition, mixed systems of celluloses and SDS enhanced CT112 dispersion more effectively. The mechanism of dispersion stability of CT112 by addition of SDS and celluloses is discussed.

Journal Article↗

Scopolamine fails to diminish chronic haloperidol-induced purposeless chewing in rats.

Chronic haloperidol treatment for 4-12 months gradually induces spontaneous, irregular, purposeless oral chewing movements (CMs), apparently involuntary, in some but not all treated rats. Based on phenomenologic and pharmacologic similarities, this laboratory preparation has been used as an animal model of tardive dyskinesia (TD), which is the human hyperkinetic motor syndrome associated with chronic antipsychotic administration. This putative animal model has received the most severe challenge to its validity by claims that its oral movements can be suppressed by anticholinergic treatments, since resistance to anticholinergic suppression is an accepted pharmacologic feature of TD. In this experiment, we challenged a group of haloperidol-treated rats with CMs using three doses of scopolamine (0.1, 0.3, 1.0 mg/kg) and placebo and rated the change in dyskinetic movements. Each scopolamine dose reduced CMs by a similar magnitude, without any dose effect; the saline dose also reduced CMs to an equivalent degree. Therefore, we concluded that some component of the experiment, not the scopolamine, reduced the CMs. The handling component of the procedure was identified as a likely confound, and we tested this further. Rats with CMs were handled at several levels of "severity"; and the dyskinesias were rated at 1 and 3 h later. CMs were reduced by the experimental handling, in relation to the strength of the handling. Minimal handling produced modest CM reductions with quick recovery; whereas, the "strongest" handling plus the placebo injection produced the greatest CM reduction, evident over 3 h, resembling the CM reductions seen in the scopolamine and placebo experiment. Overall, these results suggest that anticholinergic drugs do not suppress chronic haloperidol-induced rat CMs. However, the movements are sensitive to stressful handling situations, and diminish with stress. In both of these characteristics, rat CMs resemble human TD, further supporting a role for this model in studies of human TD.

Animals↗

Traditional and new antipsychotic drugs differentially alter neurotransmission markers in basal ganglia-thalamocortical neural pathways.

The effects of three chronically administered antipsychotic drugs on selected neurochemical markers of dopaminergic and GABAergic transmission were compared within the cerebral regions making up the basal ganglia-thalamocortical parallel processing neuronal pathways. All three drugs reduce psychosis in humans, whereas only haloperidol, but not olanzapine or sertindole, induce purposeless oral chewing movements (CMs) in rats or cause high rates of parkinsonism or tardive dyskinesia in humans. Male Sprague Dawley rats were treated with haloperidol, sertindole, or olanzapine delivered in drinking water for 6 months at doses which produce drug plasma levels in rat in the human therapeutic range. Results show the expected dopamine D2 receptor upregulation in striatum predominantly with haloperidol, although mild D2 upregulation was apparent in striatum after olanzapine. GAD67 mRNA was increased in striatum and decreased in globus pallidus by haloperidol and sertindole, but not by olanzapine. In the substantia nigra pars reticulata (SNR), both olanzapine and sertindole failed to induce GABA(A) receptor upregulation or D1 receptor downregulation, but haloperidol did both, confirming a previous report. In thalamus, all three drugs increased GAD expression in the reticular nucleus, whereas only haloperidol decreased GABA(A) binding in the mediodorsal nucleus, actions consistent with a reduction in nigrothalamic, GABA-mediated neural transmission. These results are consistent with the idea that the two new antipsychotics tested have mild and regionally restricted actions within the basal ganglia nuclei and a common action on increasing GAD expression in the reticular nucleus of the thalamus (RtN). Haloperidol, in contrast, has a broad and potent action in basal ganglia, causing changes in SNR and in the mediodorsal nucleus, while also altering GAD mRNA in RtN, potentially reflective of its dyskinetic and antipsychotic actions.

Animals↗

Induction of cytotoxic T lymphocytes specific for paraneoplastic cerebellar degeneration-associated antigen in vivo by DNA immunization.

Paraneoplastic cerebellar degeneration associated with gynecological and breast malignancies (PCD) is known to develop autoantibodies and autoreactive cytotoxic T lymphocytes (CTLs) specific for a cytoplasmic protein of Purkinje cells PCD17/cdr2, in the blood of patients. The functional roles of these antibodies and CTLs in the pathogenesis of PCD are unknown. Induction of immune response to this antigen in experimental animals should be useful to clarify the immune mechanisms in PCD patients. We immunized Balb/c mice with naked DNA, which is encoded human PCD17 neural protein in an eukaryotic expression plasmid under control of CMV promoter, and explored whether or not humoral and cell-mediated immune responses against PCD17 could be induced in vivo. We show that DNA immunization with naked pcd17 cDNA could induce autoantibodies against the cytoplasmic protein of Purkinje cells and CTLs could lyse syngenic myeloma cells pulsed with H-2K-restricted PCD17 peptide. In spite of the generation of anti-Purkinje cell antibodies and PCD17-specific CTLs in vivo, neither clinical nor pathological changes consistent with significant cerebellar degeneration have been detected.

Animals↗

Change in signal intensity on MRI of fat in the head of markedly emaciated patients.

The amount of fat in various parts of the body decreases in emaciated patients, but responds differently to disease processes. The order of disappearance of fat in various parts of the head has rarely been studied with MRI. We imaged ten patients with anorexia nervosa and one cachectic patient with a psychiatric disorder with a 1.5 T imager. Signal intensities of bone marrow of the skull, subcutaneous tissue, and orbits were assessed on T1- and T2-weighted images, and correlated with the body mass index (BMI) and haemoglobin concentration (Hb). On T1-weighted images, five patients (BMI 15.6-17.8 kg/m2, mean 16.6 kg/m2; Hb 10.1-14.2 g/dl, mean 13.8 g/dl) showed the normal pattern of fat. One (BMI 13.6 kg/m2, Hb 10.4 g/dl) lost the high signal of bone marrow, but high signal of subcutaneous tissue and the orbits was preserved. High signal from bone marrow and subcutaneous tissue disappeared in three patients (BMI 11.5-13.5 kg/m2, mean 12.5 kg/m2; Hb 7.9-9.7 g/dl, mean 8.7 g/dl), but orbital high signal was preserved. The remaining two patients (BMI 9.3 and 13.5 kg/m2, mean 11.5 kg/m2; Hb 7.6 and 8.9 g/dl, mean 8.3 g/dl) showed complete loss of high signal from fat in the head. The order of disappearance of fat (bone marrow, subcutaneous fat, then orbits) correlated with both BMI and Hb. Atrophy of bone marrow was demonstrated on T2-weighted images in five patients with BMI 13.5 kg/m2 or less, and Hb 9.7 g/dl or less.

Adipose Tissue↗

MRI in essential primary cutis verticis gyrata.

We report MRI findings in four patients with essential primary cutis verticis gyrata (CVG). The patients were all men, aged 49-81 years (mean 65 years). They had no symptoms related to this rare scalp condition, preceding scalp disease or associated systemic disease. Coronal images showed a characteristic corrugated appearance of the thickened scalp at the vertex, diagnostic of CVG. Neuroradiologists should be aware of this condition.

Aged↗

Improved beta-thujaplicin production in Cupressus lusitanica suspension cultures by fungal elicitor and methyl jasmonate.

Production of a novel antimicrobial tropolone, beta-thujaplicin, in Cupressus lusitanica suspension cultures was studied by using a variety of chemicals and fungal elicitors. Sodium alginate, chitin, and methyl jasmonate resulted in 2-, 2.5-, and 3-fold higher beta-thujaplicin production, respectively, than in the control. Significantly improved beta-thujaplicin production (187 mg l(-1)) was obtained using a high cell density (180-200 g l(-1)) and fungal elicitor treatment [10 mg (g fresh cells)(-1)] in a production medium with a high ferrous ion concentration (0.3 mM). This improved volumetric productivity was 3- to 4-fold higher than obtained under standard conditions. A synergistic effect of fungal elicitor and ferrous ion on beta-thujaplicin production was also suggested by our study. Plant cell culture technology is a promising alternative for producing a large variety of secondary metabolites that are widely used as food additives, pharmaceuticals, and dairy products (Verpoorte et al. 1999). Thus, beta-thujaplicin production by plant cell cultures was developed with the goal of commercial application (Berlin and Witte 1988; Itose and Sakai 1997; Ono et al. 1998). However, the production of beta-thujaplicin by plant cell cultures is still not competitive for use in industrial applications. In this study, we assessed the effects of methyl jasmonate, alginate, chitin, and fungal elicitor on beta-thujaplicin production; we obtained a significantly elevated beta-thujaplicin production by using an improved culture strategy.

Acetates↗

Novel vitamin E derivative with 4-substituted resorcinol moiety has both antioxidant and tyrosinase inhibitory properties.

A novel vitamin E derivative, (6"-hydroxy-2",5",7",8"-tetramethylchroman-2"-yl)methyl 3-(2',4'-dihydroxyphenyl)propionate (TM4R), which has a chromanoxyl ring and 4-substituted resorcinol moieties, was synthesized; and its inhibitory effects on tyrosinase, antioxidant ability, and lightening effect of ultraviolet B (UVB)-induced hyperpigmentation were estimated. TM4R showed potent inhibitory activity on tyrosinase, which is the rate-limiting enzyme in melanogenesis. The scavenging activities of TM4R on 1,1-diphenyl-2-picrylhydrazyl and hydroxyl radicals were found to be nearly the same as those of alpha-tocopherol. Furthermore, an efficient lightening effect was observed following topical application of TM4R to UVB-stimulated hyperpigmented dorsal skin of brownish guinea pigs. These results suggest that TM4R may be a candidate for an efficient whitening agent, possibly by inhibiting tyrosinase activity and biological reactions caused by reactive oxygen species.

Animals↗

Dopamine and serotonin uptake inhibitors on the release of dopamine and serotonin in the nucleus accumbens of young and aged rats.

Nucleus accumbens (ACC) of young (4 months old) and aged (24 months old) Wistar rats were perfused with dopamine (DA) uptake blocker, cocaine, or the serotonin (5-HT) selective reuptake inhibitor, fluoxetine, through the microdialysis probe membrane, used to assess the dopamine transporter (DAT) or serotonin transporter (SERT) modulation. The basal extracellular DA release in the ACC was significantly lower in aged rats than young rats. Analysis of DA and 5-HT concentrations in the ACC with increased positive GFAP revealed that DA and DOPAC levels of aged rats were decreased to 55 and 60% of those in young rats, respectively. After co-perfusion with cocaine, both DA and 5-HT releases in the ACC were increased in the young and aged groups. However, the magnitude of the increased DA release was lower in aged rats than young rats. Co-perfusion with fluoxetine showed lower magnitude of the increased DA release in aged rats. It appears that the DAT and SERT system responds initially to ACC cell loss with age, and that especially ACC DAT in the aged rat is more degenerative compared with the young rats. These findings suggest that the serotonergic system with SERT in the remaining ACC neurons show an early adaptive response and resistance to the normal aging and maintain the multiple regulatory system in the ACC despite neural loss since the dopaminergic neurons in the aged animals are vulnerable to aging.

Aging↗

Differentiation of presumed serotonergic dorsal raphe neurons in relation to behavior and wake-sleep states.

Using extracellular single unit recording, either alone or in combination with microdialysis application of drugs, we examined the characteristics of presumed serotonergic dorsal raphe neurons during wake-sleep states in the freely moving cat. Recordings were made from a total of 272 neurons in the dorsal raphe nucleus. Of these, 240 (88%) were classified as serotonergic on the basis of their typical long-duration action potential, slow discharge activity, and reduced spontaneous discharge rate during paradoxical sleep compared to during slow-wave sleep. An inhibitory response to serotonergic agonists and a slow conduction velocity were seen in all neurons of this type tested or identified by stimulation of the main ascending serotonergic pathway. These presumed serotonergic dorsal raphe neurons could be subdivided into two typical previously identified groups (types I-A and I-B) and four atypical new groups (types I-C, II-A, II-B, and II-C) according to differences in firing patterns during wake-sleep states. The typical neurons were evenly distributed in the dorsal raphe nucleus and their activity was related to the level of behavioral arousal, since they discharged regularly at a high rate during waking and at progressively slower rates during slow-wave sleep, and ceased firing either during slow-wave sleep with ponto-geniculo-occipital waves and paradoxical sleep (type I-A) or only during paradoxical sleep (type I-B). In contrast, the atypical subgroups were unevenly distributed in the dorsal raphe nucleus and exhibited firing patterns distinct from those of the typical neurons, such as sustained tonic activity during paradoxical sleep (types I-C and II-C) or showing their highest rate of tonic discharge during slow-wave sleep, with suppression of discharge during both waking and paradoxical sleep (type II-B). From these data we suggest that presumed serotonergic dorsal raphe neurons play different roles in behavioral state control and that there is functional topographic organization in the dorsal raphe nucleus.

Action Potentials↗

Stage-and tissue-specific expression of a Col2a1-Cre fusion gene in transgenic mice.

To achieve chondrocyte-specific deletion of floxed genes we generated a transgenic mouse line expressing the Cre recombinase under the control of the mouse type II collagen gene (Col2a1) regulatory regions. Northern and in situ hybridization analyses demonstrated the expression of the transgene (Col2a1-Cre) in cartilaginous tissues. To test the excision efficiency of Cre, the Col2a1-Cre strain was crossed with the ROSA26 reporter strain. LacZ staining of double transgenic mice revealed Cre activity in both chondrogenic and non-chondrogenic tissues. During early embryonic development (E9.5-11.5), LacZ expression was detected in tissues where the endogenous Col2a1 transcript is expressed such as the otic capsule, notochord, developing brain, sclerotome and mesenchymal condensations of future cartilage. At later stages, Cre activity was observed in all cartilaginous tissues with virtually 100% of chondrocytes being LacZ positive. These data suggest that the Col2a1-Cre mouse strain described here can be useful to achieve Cre-mediated recombination in Col2a1 expressing cells, especially in chondrocytes.

Animals↗

Analysis of the cell-dependent replication potentials of human immunodeficiency virus type 1 vif mutants.

Eleven in-frame vif gene mutants of HIV type 1 produced in non-permissive cells were examined for their replication potentials in various CD4-positive and -negative cell lines. Virus replication for each mutant was monitored by using several single- and multiple-cycle infectivity assays. Except for a mutant with wild-type phenotype, most mutants were severely defective for replication in all the cell lines as expected from the producer cell-dependent functioning of Vif so far reported. In contrast, two mutants, which have mutations in the hydrophilic or effector regions of Vif were found to have target cell-dependent replication potentials. These results demonstrate the presence of a novel category of the vif mutants important for elucidation of the Vif function.

Amino Acid Sequence↗

Plasma fibronectin supports neuronal survival and reduces brain injury following transient focal cerebral ischemia but is not essential for skin-wound healing and hemostasis.

Fibronectin performs essential roles in embryonic development and is prominently expressed during tissue repair. Two forms of fibronectin have been identified: plasma fibronectin (pFn), which is expressed by hepatocytes and secreted in soluble form into plasma; and cellular fibronectin (cFn), an insoluble form expressed locally by fibroblasts and other cell types and deposited and assembled into the extracellular matrix. To investigate the role of pFn in vivo, we generated pFn-deficient adult mice using Cre-loxP conditional gene-knockout technology. Here we show that pFn-deficient mice show increased neuronal apoptosis and larger infarction areas following transient focal cerebral ischemia. However, pFn is dispensable for skin-wound healing and hemostasis.

Animals↗

Angiotensin-converting enzyme (ACE) I/D genotype and renal ACE gene expression.

BACKGROUND: The angiotensin-converting enzyme (ACE) I/D genotype affects serum ACE levels and the onset and progression of renal disease, but little is known about the mechanism. We investigated a possible association between the ACE I/D genotype and renal ACE mRNA levels in healthy subjects. METHODS: Renal biopsy samples were obtained from 50 healthy kidney donors. The ACE I/D genotype was determined by polymerase chain reaction (PCR). Renal ACE mRNA quantification was performed by competitive RNA-PCR. In situ hybridization (ISH) for ACE mRNA on renal biopsy specimens was also performed. RESULTS: The number of ACE transcripts in 100 ng of total RNA was significantly (P < 0.01) lower in subjects with II genotype (5.6 +/- 5.3 x 10(5), N = 20) compared with those with the ID (17.9 +/- 13.6 x 10(5), N = 23) or the DD genotype (36.9 +/- 14.6 x 10(5), N = 7) in healthy donors. The ISH studies showed that both tubular and glomerular ACE mRNA expressions were weak in subjects with the II genotype, intermediate in subjects with ID genotype, and strong in subjects with DD genotype. CONCLUSIONS: It is suggested that renal ACE gene expression is associated with the ACE I/D genotype in healthy Japanese subjects.

Biopsy↗

Effect of oxatomide, an antiallergic agent, on QT interval in dogs.

Oxatomide (CAS 60607-34-3, KW-4354) is an effective antiallergic agent for allergic rhinitis, urticaria, pruritus cutaneous, and eczema/dermatitis, etc. Terfenadine (CAS 50679-08-8) and astemizole (CAS 68844-77-9), antiallergic agents, have been reported to induce QT prolongation leading to serious ventricular arrhythmia (torsades de pointes) as cardiovascular adverse effects. The present study was carried out to determine whether oxatomide and terfenadine have effects on QT interval as a single drug or in combination with itraconazole (CAS 84625-61-6), an antifungal agent with a CYP3A4 inhibitory effect, in conscious dogs. Terfenadine alone induced QT prolongation at the dose of 30 mg/kg p.o. When itraconazole was administered at the dose of 100 mg/kg p.o. 1 h before terfenadine administration, terfenadine induced QT prolongation at the dose of 10 mg/kg p.o. On the other hand, oxatomide did not induce QT prolongation either as a single agent at the dose of 30 mg/kg p.o. or in combination with itraconazole at the dose of 10 mg/kg p.o. The results present no evidence that oxatomide has the potential to provoke ventricular arrhythmia.

Animals↗

Interspecific interactions among species of the coral genus Porites from Okinawa, Japan.

Analysis of field established xenogeneic interactions among five Porites species from Sesoko Island, Okinawa, revealed a transitive type of hierarchy as: P. rus >P. cylindrica >P. lobata >P. australiensis>P. lutea. Out of the 111 interspecific encounters studied, in only 5.4% reciprocal interactions were recorded, and in a single case, the opposite directionality of hierarchy was documented. Allogeneic encounters were also observed. A single major effector mechanism, an overgrowth (together with secondary outcomes such as the formation of small points of rejection, bleaching and pink color formation along a narrow peripheral belt of contacting tissues), was the only response in all 10 xenogeneic and 5 allogeneic combinations. In some massive colonies, a long contacting line of up to 50 cm was established. No sign for allelopathy, stand-off or rejection from a distance (i.e., by sweeper tentacles, sweeper polyps) was observed. Results are discussed with the accumulated data on Porites species from different reefs, worldwide, confirming that this genus is commonly lower in the hierarchy of xenogeneic interactions.

Journal Article↗