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Biomedical subjects

M Shibata

Publications and source records attributed to M Shibata.

At least 415 records · Page 23Linked to original sources

Applicability of PM3 to transphosphorylation reaction path: toward designing a minimal ribozyme.

A growing body of evidence shows that RNA can catalyze many of the reactions necessary both for replication of genetic material and the possible transition into the modern protein-based world. However, contemporary ribozymes are too large to have self-assembled from a prebiotic oligonucleotide pool. Still, it is likely that the major features of the earliest ribozymes have been preserved as molecular fossils in the catalytic RNA of today. Therefore, the search for a minimal ribozyme has been aimed at finding the necessary structural features of a modern ribozyme (Beaudry and Joyce, 1990). Both a three-dimensional model and quantum chemical calculations are required to quantitatively determine the effects of structural features of the ribozyme on the reaction it catalyzes. Using this model, quantum chemical calculations must be performed to determine quantitatively the effects of structural features on catalysis. Previous studies of the reaction path have been conducted at the ab initio level, but these methods are limited to small models due to enormous computational requirements. Semiempirical methods have been applied to large systems in the past; however, the accuracy of these methods depends largely on the system under investigation. In the present study we assess the validity of the MNDO/PM3 method on a simple model of the ribozyme-catalyzed reaction, or hydrolysis of phosphoric acid. We find that the results are qualitatively similar to ab initio results using large basis sets. Therefore, PM3 is suitable for studying the reaction path of the ribozyme-catalyzed reaction.

Models, Biological↗

Role of substance P in neurogenic inflammation in the rat incisor pulp and the lower lip.

Vascular permeability was significantly increased in the incisor pulp and skin of the lower lip in the rat after antidromic electrical stimulation of the inferior alveolar nerve, and this response was significantly inhibited by a substance-P antagonist. The content of substance P in the pulp and lip was also increased after stimulation. The permeability response was reduced by aspirin and bradykinin antagonists (both B1- and B2-receptor types) in the pulp and lip, indicating that prostaglandins and bradykinin may be involved. Mepyramine and methysergide inhibited the vascular response in the lip but not the pulp; the roles of histamine and serotonin differ in the two tissues. Injection of substance P into the incisor pulp and the lip skin caused dye leakage. This response was inhibited by pretreatment with compound 48/80 in the lip but not the pulp. Lip histamine content was decreased significantly after antidromic stimulation of the inferior alveolar nerve and pretreatment with compound 48/80, but was not changed in the pulp. The results suggest that substance P in the lip, after being released from the peripheral sensory-nerve endings, may act on the vascular system via histamine release from mast cells; but in the pulp may cause vascular response directly because of the scarcity of mast cells.

Animals↗

Sensitive spectrophotometric method for the determination of ethylenediaminetetraacetic acid in foods.

A sensitive spectrophotometric method for the determination of ethylenediaminetetraacetic acid (EDTA) in foods is described. The method involves the reaction of EDTA with Fe3+ to produce the EDTA-Fe chelate, followed by the removal of excess of Fe3+ by a chelate extraction technique using chloroform and N-benzoyl-N-phenylhydroxylamine and the formation of a chromophore with 4,7-diphenyl-1,10-phenanthroline-disulfonic acid. The calibration graph was linear in the range 0.5-40.0 micrograms cm-3 of EDTA with a slope of 21.1. The relative standard deviation at 10 micrograms cm-3 of EDTA was 1.6% (n = 10). There was no interference from most of the common ingredients of commercial foods. More than 90% of EDTA added at two levels was recovered from real samples. The method was applied to the determination of EDTA in various foods, and the results obtained were compared with those given by high-performance liquid chromatography.

Edetic Acid↗

Modeling study on the cleavage step of the self-splicing reaction in group I introns.

A three-dimensional model of the Tetrahymena thermophila group I intron is used to further explore the catalytic mechanism of the transphosphorylation reaction of the cleavage step. Based on the coordinates of the catalytic core model proposed by Michel and Westhof (Michel, F., Westhof, E. J. Mol. Biol. 216, 585-610 (1990)), we first converted their ligation step model into a model of the cleavage step by the substitution of several bases and the removal of helix P9. Next, an attempt to place a trigonal bipyramidal transition state model in the active site revealed that this modified model for the cleavage step could not accommodate the transition state due to insufficient space. A lowering of P1 helix relative to surrounding helices provided the additional space required. Simultaneously, it provided a better starting geometry to model the molecular contacts proposed by Pyle et al. (Pyle, A. M., Murphy, F. L., Cech, T. R. Nature 358, 123-128. (1992)), based on mutational studies involving the J8/7 segment. Two hydrated Mg2+ complexes were placed in the active site of the ribozyme model, using the crystal structure of the functionally similar Klenow fragment (Beese, L.S., Steitz, T.A. EMBO J. 10, 25-33 (1991)) as a guide. The presence of two metal ions in the active site of the intron differs from previous models, which incorporate one metal ion in the catalytic site to fulfill the postulated roles of Mg2+ in catalysis. The reaction profile is simulated based on a trigonal bipyramidal transition state, and the role of the hydrated Mg2+ complexes in catalysis is further explored using molecular orbital calculations.

Animals↗

Recent advances and controversies in cerebrovascular physiology in the newborn.

Important differences exist between adult and newborn responses to different cerebrovascular influences. This review discusses the important influence that the prostanoid system has in newborn cerebral hemodynamics. Activated oxygen species and their generation through different cerebral insults are discussed. The role of several radical scavengers as modes of therapy is reviewed. The endothelium-derived relaxing factor system and its major influence in the adult is compared with its lesser role in the newborn. Finally, the pathophysiology of the alterations in newborn cerebral hemodynamics seen with experimentally induced seizures is reviewed.

Acetylcholine↗

Spontaneous amyloidosis in senile NSY mice.

Senile Nagoya, Shibata, Yasuda (NSY) mice developed amyloidosis and died from renal failure as a result of amyloidosis. NSY mice were first reported as experimental congenital diabetic mice by Shibata et al. in 1980. This study questioned whether NSY mice died from diabetic nephropathy. The authors of the present study investigated the life span and cause of death in these mice. The life span of NSY mice was found to be 618.7 +/- 72.5 days. NSY mice that lived for more than 400 days showed rising blood urea nitrogen and large amounts of amyloid deposits in the glomerulus of the kidneys. NSY mice died of renal amyloidosis. Immunological methods revealed that AApoAII was evident in the amyloid deposits of NSY mice. Apart from the kidneys, amyloid deposition was also found in the tongue, esophagus, stomach, small intestine, large intestine, rectum, lung, heart and adrenal glands. Amyloid deposits were found to a slight degree in the liver and the spleen. The most dominant amyloid deposition in NSY mice was seen in the glomerulus of the kidneys. From the point of view of amyloid depositional distribution, NSY mice were unique compared with other spontaneous amyloid mice.

Amyloidosis↗

[Epidemiology of sporadic pediatric enteritis patients due to verotoxin-producing Escherichia coli].

We tried to isolate verotoxin-producing Escherichia coli (VTEC) from 323 sporadic pediatric enteritis patients who came to three clinics in the Fukuoka area. We used the sorbitol-MacConkey medium for the isolation of VTEC O157:H7. For non-O157 VTEC strains we used the V1/PECS method. VT/PECS method was applied. VTEC strains were isolated from three patients (0.9%). None of the patients were seriously, ill or developed the hemolytic uremic syndrome. The three patients were all seen in the summer season, July and August. O157:H7 strains were isolated from two patients, and O145:NM from one. This study showed that sporadic enteritis cases due to VTEC exist in the Fukuoka area. In the future a rapid and easy method for the detection of VT or VTEC should be developed and commercialized to proceed with epidemiological studies of VTEC infections throughout Japan.

Bacterial Toxins↗

Transforming growth factor-beta attenuates ischemia-induced alterations in cerebrovascular responses.

We observed previously that 20 min of global cerebral ischemia followed by 45 min of reperfusion selectively blocked cerebral vasodilation to hypercapnia and hypotension. This study determines the effects of pretreatment with transforming growth factor-beta (TGF-beta) on cerebrovascular responses after cerebral ischemia in piglets equipped with closed cranial windows. Hypercapnia-induced pial arteriolar dilation was blocked after cerebral ischemia (20 +/- 1 vs. 2 +/- 1% dilation before and after ischemia, respectively). Similarly, the increases in periarachnoid cortical cerebrospinal fluid 6-ketoprostaglandin F1 alpha (6-keto-PGF1 alpha) and prostaglandin E2 (PGE2) concentration in response to hypercapnia were blocked (2.5 +/- 0.2- vs. 0.2 +/- 0.4-fold and 2.1 +/- 0.1- vs. 0.3 +/- 0.4-fold increase in 6-keto-PGF1 alpha and PGE2, respectively). Treatment with topical TGF-beta (400 ng/ml) before and during ischemia-reperfusion attenuated the loss of hypercapnia-induced cerebrovascular dilation (20 +/- 1 vs. 14 +/- 1% dilation before and after ischemia, respectively) and the loss of associated changes in cerebrospinal fluid prostanoids (2.0 +/- 0.2- vs. 1.7 +/- 0.2-fold and 2.3 +/- 0.2- vs. 2.2 +/- 0.3-fold increase in 6-keto-PGF1 alpha and PGE2 before and after ischemia, respectively). The loss of cerebrovascular dilation in response to hemorrhagic hypotension after ischemia was similarly prevented by TGF-beta. Cerebrovascular dilation to topical isoproterenol was unchanged after ischemia. TGF-beta may preserve endothelial cell function. We conclude that topical TGF-beta can attenuate cerebromicrovascular compromise caused by ischemia-reperfusion in newborn pigs.

6-Ketoprostaglandin F1 alpha↗

Prostanoid synthesis in response to high CO2 in newborn pig brain microvascular endothelial cells.

Hypercapnia-induced cerebral vasodilation involves prostanoids in newborn pigs. However, the source of prostanoids has not been determined. The current study was designed to address the hypothesis that piglet cerebral microvascular endothelial cells increase their synthesis of prostanoids in response to high CO2. Microvascular endothelial cells, smooth muscle cells, and glia were isolated and grown in primary culture. They were identified morphologically and by indirect immunofluorescence staining. Cerebral microvascular endothelial cell cultures from newborn pigs produced equal amounts of 6-ketoprostaglandin (PG) F1 alpha (stable hydrolysis product of PGI2), PGE2 and a small amount of PGF2 alpha under basal conditions. Administration of calcium ionophore A23187 to the endothelial cells increased release of all three prostanoids in a dose- and time-dependent manner. Exposure of piglet cerebral microvascular endothelial cells to higher than normal CO2 increased the production of 6-keto-PGF1 alpha and PGE2 but not of PGF2 alpha. The enhanced prostanoid biosynthesis was concentration dependent, peaking at 14% CO2, and was detected during the first 10 min exposure to 14% CO2. Hypercapnia-induced increased synthesis of prostanoids was blocked dose dependently by the simultaneous addition of PGH synthase inhibitor indomethacin. High CO2 did not increase prostanoid production by cerebral microvascular smooth muscle cells or glia, although A23187 enhanced prostanoid formation by both cell types. These data show that high CO2 stimulates prostanoid synthesis by newborn pig cerebral microvascular endothelial cells, which is consistent with an involvement of cerebral vascular endothelium in hypercapnia-induced vasodilation.

Animals↗

Cyclic nucleotides and cerebrovascular tone in newborn pigs.

Relationships between cyclic nucleotides and cerebrovascular tone were investigated using closed cranial windows in anesthetized newborn pigs. Pial arteriolar diameter was monitored and cerebrospinal fluid (CSF) was collected from beneath the cranial window. Adenosine 3',5'-cyclic monophosphate (cAMP) and guanosine 3',5'-cyclic monophosphate (cGMP) concentrations in CSF were 1,690 +/- 200 and 730 +/- 40 fmol/ml, respectively. Topically applied isozyme-selective and nonselective inhibitors [3-isobutyl-1-methylxanthine (IBMX), theophylline, Ro 201724, dipyridamole, zaprinast, calmidazolium, and W-7] of cyclic nucleotide phosphodiesterases dilated pial arterioles with concomitant increases in cAMP and/or cGMP levels in CSF. Topical application of dibutyryl-cAMP and dibutyryl-cGMP also resulted in pial arteriolar dilation. Ten-minute hypercapnia, which results in pial arteriolar dilation, increased cAMP to 5,240 +/- 900 and cGMP to 1,350 +/- 200 fmol/ml. IBMX and zaprinast potentiated the increases in cAMP and cGMP as well as the cerebrovascular dilation in response to hypercapnia. These data suggest that cyclic nucleotides contribute to regulation of cerebral vascular tone during control conditions. Furthermore, cAMP and/or cGMP appears to be involved in arterial vasodilation in response to hypercapnia in newborn pigs.

3',5'-Cyclic-AMP Phosphodiesterases↗

Effects of indomethacin on newborn pig pial arteriolar responses to PCO2.

The present experiments were designed to determine whether hypocapnic cerebral vasoconstriction, like hypercapnic dilation, involves prostanoids and, if not, whether alternative mechanisms are related to the absolute arterial PCO2 (PaCO2) or the direction of change. We determined effects of indomethacin (5 mg/kg iv) on pial arteriolar responses to 1) increased PCO2 from normal, 2) decreased PCO2 from normal, and 3) increased PCO2 from hypocapnia to normocapnia in anesthetized newborn pigs. Pial arterioles constricted in response to hypocapnia (PaCO2 = 15-24 Torr) similarly before (-13 +/- 3%) and after (-16 +/- 2%) indomethacin. Cortical periarachnoid cerebrospinal fluid prostanoids were not increased by hypocapnia. As previously reported, cerebral vascular responses to hypercapnia (which increases cerebrospinal fluid prostanoids) were lost after indomethacin. To determine whether the failure of indomethacin to affect the responses to hypocapnia was due to the direction of change (decreasing) or the absolute level of PCO2, piglets were hyperventilated to approximately 15 Torr PaCO2. Increasing PaCO2 in these piglets to approximately 44 Torr caused pial arteriolar dilation (46 +/- 7%) that was not blocked by indomethacin (33 +/- 5%). Cortical periarachnoid prostanoids were not altered when PaCO2 was raised from hypocapnia to normocapnia. Therefore the relationship between CO2 and piglet cerebral vascular tone appears to involve multiple mechanisms. Specifically, dilation in response to CO2 above the normal range appears to involve prostanoids but changes in pial arteriolar diameter at low PaCO2 do not.

Animals↗

Subarachnoid blood causes pial arteriolar constriction in newborn pigs.

BACKGROUND AND PURPOSE: The present study was designed to determine in newborn animals the delayed effect of subarachnoid blood on pial arteriolar diameter and eicosanoid concentrations in cortical periarachnoid fluid. METHODS: Forty-eight to 96 hours after subarachnoid blood installation, closed cranial windows were implanted over the cerebral area exposed to blood in anesthetized, artificially ventilated newborn piglets. All pial arterioles greater than 60 microns in diameter were measured, and cortical periarachnoid fluid was collected for the determination of eicosanoids. RESULTS: Subarachnoid blood resulted in a 20% to 30% decrease in the average diameter of pial arterioles exposed to blood for 48 to 96 hours, a decreased number of large pial arterioles (greater than 200 microns), and an increased number of small arterioles (60 to 100 microns). No changes in dilator prostanoids (prostacyclin [as 6-keto-prostaglandin F1 alpha] and prostaglandin E2) were detected. Concentrations of vasoconstrictor prostanoids in cortical cerebrospinal fluid increased. Thromboxane B2 increased to 430 +/- 70 pg/mL, and prostaglandin F2 alpha increased to 1370 +/- 180 pg/mL compared with 250 +/- 20 and 860 +/- 70 pg/mL, respectively, in the control group. The concentration of peptidoleukotrienes increased to 400 to 600 pg/mL 72 to 96 hours after blood installation, while the level in the control group was less than 80 pg/mL. CONCLUSIONS: The altered balance between vasodilator and vasoconstrictor eicosanoids could contribute to cerebral vasoconstriction after subarachnoid blood installation in newborn pigs.

6-Ketoprostaglandin F1 alpha↗

Superoxide scavengers do not prevent ischemia-induced alteration of cerebral vasodilation in piglets.

Piglet brains generate superoxide during postischemic reperfusion, and topical application of activated oxygen species alters pial arteriolar responses. We investigated effects of pretreatment with scavengers of superoxide and H2O2 on ischemia-induced alterations of pial arteriolar responses in anesthetized newborn pigs. Four groups were studied: 1) time control, 2) untreated ischemia, 3) ischemia pretreated topically and systemically (conjugated to polyethylene glycol) with superoxide dismutase (SOD) and catalase, and 4) ischemia pretreated with Tiron. Pretreatment with SOD conjugated to polyethylene glycol alone during postischemic reperfusion effectively removed superoxide from its site of generation during postischemic reperfusion, but topical SOD was used also an insurance. Piglets were studied before and after 20 min of total cerebral ischemia caused by maintaining intracranial pressure above mean arterial pressure. As reported previously, before ischemia, hypercapnia and isoproterenol dilated pial arteries and arterioles and hypercapnia but not isoproterenol increased cortical periarachnoid cerebrospinal fluid 6-keto-prostaglandin F1 alpha, measured as an index of cerebral cortical prostacyclin synthesis. After cerebral ischemia, pial arterioles did not dilate in response to hypercapnia and 6-keto-prostaglandin F1 alpha did not increase, but dilation to isoproterenol was unchanged. The present study found that treatment with SOD/catalase or Tiron did not prevent loss of vasodilation to hypercapnia or the loss of hypercapnia-induced cerebral 6-keto-prostaglandin F1 alpha synthesis after cerebral ischemia. The postischemic loss of cerebral vasodilation to hypercapnia does not appear to involve superoxide or a subsequent reduced form of oxygen.

6-Ketoprostaglandin F1 alpha↗

Effects of indomethacin on cerebral vasodilator responses to arachidonic acid and hypercapnia in newborn pigs.

Responses of pial arterioles to topically applied arachidonic acid, conversion of exogenous arachidonic acid to prostanoids, and pial arteriolar dilation to hypercapnia were examined before and at progressive times after treatment with indomethacin (5 mg/kg i.v.) in chloralose-anesthetized newborn pigs with closed cranial windows. Before treatment with indomethacin, arachidonic acid and hypercapnia dilated pial arterioles and increased cortical periarachnoid cerebrospinal fluid concentrations of 6-keto-prostaglandin (PG) F1 alpha and PGE2. One h after indomethacin treatment, the dilations and prostanoid synthesis were blocked. By 2 h after indomethacin treatment, hypercapnia produced significant dilation of pial arterioles, and dilation to both stimuli had returned to preindomethacin levels by 3 h. Inhibition of conversion of exogenous arachidonic acid to prostanoids as monitored by increases in 6-keto-PGF1 alpha and PGE2 in cerebrospinal fluid under the window also was reversed by 3 h after treatment with indomethacin. Repeated indomethacin treatment again blocked dilations and conversion of arachidonic acid to prostanoids on the brain surface. The possibility of short duration of vascular effectiveness of indomethacin when it is administered systemically needs to be considered, both when it is used as a probe for understanding contributions of PGH synthase products to control of cerebral circulation and when it is used therapeutically in attempts to alter the newborn cerebral circulation.

Animals↗

Syntheses of 3-substituted 1-methyl-6-phenylpyrimido[5,4-e]-1,2,4-triazine-5,7(1H,6H)-diones (6-phenyl analogs of toxoflavin) and their 4-oxides, and evaluation of antimicrobial activity of toxoflavins and their analogs.

6-Phenyl analogs of toxoflavin (1-methyl-6-phenylpyrimido[5,4-e]-1,2,4-triazine-5,7(1H,6H)-diones ) (7a--f) and their 4-oxides (8a-f) were synthesized by nitrosative or nitrative cyclization of the aldehyde hydrazones (6a-f) of 6-(1-methylhydrazino)-3-phenyluracil (5). Both sets of compounds, 7a-f and 8a-f, gave the corresponding 1-demethyl derivatives (10a-f) upon treatment with nucleophiles such as dimethylformamide (DMF) and acetic acid under heating. The activities of toxoflavins (1a-e), toxoflavin 4-oxides (3a-e) and their 6-phenyl analogs (7a-f and 8a-f) against a variety of bacterial and fungal strains were examined. Most of the compounds showed strong inhibitory activities against gram-positive bacteria. Among the compounds, 1c, 1d, 1e, and 3c exhibited the strongest inhibitions of Micrococcus lutea (0.5 micrograms/ml minimal growth-inhibitory concentration) and Staphylococcus aureus 4R (1 microgram/ml), as well as Bacillus subtilis and Staphylococcus aureus (1-2 micrograms/ml). Most of the compounds had strong antifungal activity (2-100 micrograms/ml minimal growth-inhibitory concentration) against Candida albicans and Saccharomyces cerevisiae.

Anti-Bacterial Agents↗

A new potent teratogen in CD rats inducing cleft palate.

The teratogenic potential of cis-1-[4-(p-menthane-8-yloxy)phenyl] [corrected] piperidine (YM9429) was evaluated using CD (SD) rats. YM9429 induced cleft palate and specific skeletal variations including accessory cervical and lumbar ribs or excessive formation of the 7th lumbar vertebra by oral treatment during the organogenetic periods. No visceral or external malformations were induced, and no embryo/fetal mortality or fetal growth retardation was observed. Maternal plasma biochemical examination revealed decreases of cholesterol and phospholipid levels during days 15-17 of pregnancy after the treatment. The results suggest that YM9429 is a potent and specific teratogen inducing cleft palate in CD rats, and the reduced maternal plasma levels of cholesterol and phospholipid during the period of palatine closure are related to the induction of cleft palate.

Abnormalities, Drug-Induced↗

Cerebral blood flow decreased by adrenergic stimulation of cerebral vessels in anesthetized newborn pigs with traumatic brain injury.

Changes in cerebral blood flow (CBF), pial arteriolar diameter, and arterial blood pressure, gases, and pH were examined before and for 3 hours after fluid-percussion brain injury in alpha-chloralose-anesthetized piglets. The brain injury was induced by a percussion of 2.28 +/- 0.06 atm applied for 23.7 +/- 0.5 msec to the right parietal cortex. Regional CBF was measured with radiolabeled microspheres, and changes in pial arteriolar diameter were monitored in the left parietal cortex using closed cranial windows. Immediately following brain injury, mean blood pressure transiently (for approximately 10 minutes) either increased or decreased and then exhibited a prolonged decrease in all of the animals. The brains showed changes consistent with traumatic brain injury such as subarachnoid hemorrhage, contusions, or reactive axonal swelling; none showed histological evidence of a global alternative pathogenetic mechanism such as hypoxic ischemic damage. While CBF of uninjured control animals did not change over a 3-hour observation period, after brain injury blood flow decreased 30% +/- 1% below the baseline level within 10 minutes and remained there for 2 to 3 hours posttrauma. After adrenergic blockade, CBF did not decrease at any time during the 3-hour period in either the uninjured control or the injured animals. Concomitant with the decreased blood flow after brain injury, pial arteriolar diameter decreased 14% below the preinjury level. However, in piglets treated with adrenoceptor antagonists, uninjured control and brain-injured animals did not show a decrease in pial arteriolar diameter. The present results support the hypothesis that increased sympathetic outflow to the cephalic vasculature following the fluid-percussion brain injury causes cerebral vasoconstriction decreasing pial arteriolar diameter and regional CBF.

Adrenergic alpha-Antagonists↗

Pituitary adenylate cyclase-activating polypeptide dilates cerebral arterioles of newborn pigs.

The actions of the 38- and 27-amino acid forms of synthetic pituitary adenylate cyclase-activating polypeptide (PACAP-38 and PACAP-27) on cerebral arterioles were tested in anesthetized newborn pigs equipped with closed cranial windows. The diameter changes of pial arterioles to topical PACAP were measured and cortical periarachnoid cerebrospinal fluid samples were collected for measurement of cAMP. The 38- and 27-amino acid forms of PACAP produced similar dose-dependent vasodilations. The increases of pial arteriolar diameter produced by PACAP-38 were 6 +/- 1%, 15 +/- 2%, 23 +/- 3%, and 38 +/- 3%, and those produced by PACAP-27 were 6 +/- 1%, 15 +/- 2%, 27 +/- 5%, and 38 +/- 8% at 10((-9), 10(-8), 10(-7), and 10(-6) M, respectively. Arteriolar diameter began to increase 1-2 min and reached a maximum 6-8 min after topical application of PACAP. Vasoactive concentrations of PACAP-38 and PACAP-27 increased cerebrospinal fluid cAMP levels dose dependently. Thus, PACAP-38 and PACAP-27 appear to stimulate cerebral adenylate cyclase and are potent dilators of newborn pigs pial arterioles.

Animals↗