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Biomedical subjects

M Sunagawa

Publications and source records attributed to M Sunagawa.

At least 37 records · Page 2Linked to original sources

Angiotensin II stimulation of Ca2+-channel current in vascular smooth muscle cells is inhibited by lavendustin-A and LY-294002.

Angiotensin II (AngII) is coupled to several important intracellular signaling pathways, and increases intracellular Ca2+. In vascular smooth muscle (VSM) cells, AngII is known to activate enzymes such as tyrosine protein kinase (Tyr-PK), phospholipase C (PLC), protein kinase C (PKC), and phophatidylinositol-3-kinase (PI-3-K). A non-receptor Tyr-PK, pp60(c-src), and PKC have been reported to stimulate the Ca2+ channels in VSM cells. However, less is known about AngII action on the voltage-gated Ca2+ channels. The Ca2+-channel currents of a cultured rat aortic smooth muscle cell line, A7r5, were recorded using whole-cell voltage clamp. Application of 50 nM AngII significantly increased the amplitude of Ba2+ currents through the voltage-gated Ca2+ channels (IBa) by 34. 5+/-9.1% (n=10) within 1 min. In the presence of lavendustin-A (5 microM), a selective inhibitor of Tyr-PK, AngII failed to stimulate IBa (n=5). AngII stimulation of IBa was also prevented by (5 microM) LY-294002, an inhibitor of PI-3-K (n=5). In contrast, H-7 (30 microM), an inhibitor of PKC, did not prevent the effect of AngII on IBa (n=6). These results suggest that AngII may stimulate the Ca2+ channels of VSM cells through Tyr-PK and PI-3-K under conditions that probably exclude participation of PK-C.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Antisense oligodeoxynucleotides of sulfonylurea receptors inhibit ATP-sensitive K+ channels in cultured neonatal rat ventricular cells.

To identify the functional sulfonylurea receptor (SUR), a subunit of the adenosine 5'-triphosphate (ATP)-sensitive K+ (KATP) channels, in neonatal rat ventricular cells, such cells in primary culture were treated for 6 days with antisense (AS) oligodeoxynucleotides (ODNs) complementary to the mRNA for SURs. For quantification, single-channel (inside-out patches) and whole-cell currents were measured using the patch-clamp technique. The maximal KATP currents (at 0 mV) induced by metabolic inhibition were 48.9+/-2.8 pA/pF in control (n=48), 34.3+/-3.5 pA/pF in AS-SUR1 (n=21, P<0.05 vs control), and 23.5+/-3.4 pA/pF in AS-SUR2 (n=17, P<0.01 vs control). As a control, scramble oligonucleotides had no effect. The fast Na+ current and inward-rectifying K+ current were not affected by AS-SURs. Treatment with both AS-SUR1 and AS-SUR2 had no additive effects on inhibition of KATP currents compared with AS-SUR2 alone. The single-channel conductance, open probability, and kinetics (in ATP-free solution) were not significantly different between control, AS-SUR1, and AS-SUR2. These results suggest that treatment with AS-ODN for SUR1 or SUR2 reduced the number of functional KATP channels. Furthermore, in four out of seven control cells tested, outward K+ currents were stimulated by diazoxide, which is a potent K+ channel-opening drug for the constructed SUR1/Kir6.2 and SUR2B/Kir6.2 channels, but not for the SUR2A/Kir6.2 channel. Therefore, in neonatal rat ventricular cells, both SUR2 and SUR1 subtypes could be integral components of the functional KATP channels. The larger population of KATP channels may be constructed with SUR2, whereas a smaller population may be constructed with a combination of SUR1 and SUR2.

ATP-Binding Cassette Transporters↗

Immunization with a synthetic peptide conjugate derived from the N-terminal sequence of either the beta-chain of haemoglobin or the immunosuppressive protein (reOLT 4) reduces the litter size of pregnant rats.

A synthetic peptide conjugate based on the N-terminal sequence of a 10 000 MW immunosuppressive serum protein (reOLT 4) was used to immunize female Lewis rats prior to mating, in order to determine whether blocking this protein had an effect on pregnancy. The N-terminal sequence of (reOLT 4) has close sequence homology to the beta-chain of rat haemoglobin so a peptide conjugate based on the N-terminal sequence of this protein was also used to immunize female Lewis rats. Controls included animals that were not immunized and animals that received the peptide carrier, diphtheria toxoid (DT). No statistical differences were found in gestation time or litter sizes in these groups. Differences were, however, evident between these groups and animals that received DT-(reOLT 4) (group 4) or the DT-beta-chain haemoglobin (group 5). There were no statistical differences in litter size or gestation time for group 4 when compared with group 5. Enzyme-linked immunosorbent assay and dot-blot analysis revealed that rats from both groups also had strong responses against DT, the peptide conjugate they were immunized with and the corresponding full-length protein. In both cases, animals from group 4 and group 5 had weak responses to the peptide that they did not receive, together with lower erythrocyte counts and haematocrits, and elevated heart to body weight ratios. Additionally, antibody purified on a (reOLT 4) immunoaffinity column was capable of binding to rat erythrocytes. A second investigation comparing anaemia prior to fertilization and maintained anaemia over the gestation period revealed that only the latter was capable of decreasing litter size to the same degree as obtained for groups 4 and 5. We conclude that for groups 4 and 5 it is the autoimmune effect of continual anaemia over the gestation period, mediated by autoantibodies, which results in the observed lower litter size.

Animals↗

Direct block of Ca2+ channels by calmidazolium in cultured vascular smooth muscle cells.

We investigated the action of calmidazolium (CMZ), an inhibitor of calmodulin (CaM), on the L-type Ca2+ currents (ICa(L)) of cultured vascular smooth muscle (VSM) cells (A7r5 cell line), by using the whole-cell voltage-clamp method. All experiments were conducted at room temperature (24-25 degrees C). The peak IBa (Ca2+ channel current with 5 mM Ba2+ as charge carrier) was evoked every 15 s by a test potential to +10 mV from a holding potential of -60 mV. To elevate intracellular free Ca2+ concentration ([Ca]i) to pCa 6.5, the pipette solution contained a Ca2+-EGTA buffer (pCa 6.5) to allow equilibration with the cells. Bath application of 1 microM CMZ reduced the peak amplitude of IBa to 36.7+/-4.9% (n = 8); maximal effect occurred within 7-8 min. Peak IBa continued to decrease even after washing out the CMZ. Recovery of IBa was not observed even after 10 min of washout. Even in presence of an peptide inhibitor of CaM-dependent protein kinase-II (5.2 microM) in the pipette solution, CMZ inhibited IBa to 27.8 +/-5.3% (n = 7). To exclude the possibility that other Ca2+/ CaM-dependent kinases and phosphatases may regulate Ca2+ channel activity, we examined the effect of CMZ on IBa when [Ca]i was reduced by use of Ca2+/EGTA-buffered pipette solutions. At pCa approximately equal to 10 (10 mM EGTA and only contaminant Ca2+), CMZ inhibited IBa to 33.4+/-5.9% (n = 14) with a median inhibitory concentration (IC50) value of 0.29 microM. The activation curve (pCa approximately equal to 10) was shifted in the positive direction by 6.3 mV; the inactivation curve was shifted in the negative direction by 5.0 mV. CMZ decreased IBa progressively during repetitive step depolarizations. CMZ did not slow the rate of recovery from inactivation. In conclusion, CMZ inhibits Ca2+ channel current in a use-dependent manner. This inhibition is independent of CaMK-II and other Ca2+/CaM-dependent pathways. Therefore it is likely due to direct blockade of Ca2+ channels by CMZ. CMZ may reduce the outer surface charge and block the open state of the Ca2+ channels.

Calcium Channel Blockers↗

Structure-activity relationships of carbapenems to the antagonism of the antipseudomonal activity of other beta-lactam agents and to the beta-lactamase inducibility in Pseudomonas aeruginosa: effects of 1beta-methyl group and C-2 side chain.

The antagonism of the antipseudomonal activity of ceftazidime by meropenem (1a) was much less than those by imipenem (2a) and panipenem (2b). To reveal the major structural features of carbapenem compounds responsible for the antagonism, we investigated the structure-activity relationships of carbapenems to their antagonism of the antipseudomonal activity of ceftazidime and to their beta-lactamase-inducibility in P. aeruginosa. The antagonistic effect of 1a was less than that of desmethyl-meropenem (1b). Two other meropenem-analogues (3, 4), with the highly basic C-2 side chain, showed greater antagonistic effects than that of 1a, which has a weakly basic C-2 side chain. The beta-lactamase-inducibility of 1a in P. aeruginosa was lower than those of 2a, 1b and 4. These results indicated that the antagonism of the antipseudomonal activity of ceftazidime by carbapenems was due to the induction of beta-lactamase in P. aeruginosa. As a result of the study on the structure-activity relationships, we clarified that the introduction of a 1beta-methyl group and/or the reduction of the basicity (cationic character) of the C-2 side chain in carbapenem skeleton decreased the antagonistic effect of carbapenems on the antipseudomonal activity of ceftazidime resulted mainly from the decreasing the beta-lactamase inducibility.

Carbapenems↗

[Denervation of the cervical sympathetic nerve inhibited the splenic natural killer cell activity by modulation of the splenic sympathetic nerve activities in rats].

It is known that the splenic natural killer cell (NK) activity 4 weeks after unilateral resection of the cervical sympathetic nerve (csn) is significantly lower than that after sham operation in rats. To investigate the role of the splenic sympathetic nerve, the splenic NK activity after csn was compared in the control animals (n = 9) and the splenic sympathetic nerve denervated animals (n = 8). The splenic NK activity in control group was reduced significantly after csn, whereas that in splenic nerve denervated group did not reveal significant change after csn. The results suggest that the reduction of the splenic NK activity after csn is induced through the modulation of the splenic sympathetic nerve activities.

Animals↗

Carbachol inhibition of Ca2+ currents in ventricular cells obtained from neonatal and adult rats.

We investigated the postnatal developmental changes produced by the muscarinic receptor agonist, carbachol, on the L-type Ca2+ current (ICa(L)) in neonatal (aged 5 to 7 days) and adult (aged 2 to 5 months) rat ventricular cells by using the whole-cell voltage clamp technique. Carbachol inhibited the isoproterenol-stimulated ICa(L). The maximal inhibition was 89.3 +/- 4.8% (n = 5) in neonatal cells and 17.7 +/- 7.7% (n = 9) in adult cells. Carbachol inhibited the forskolin-stimulated ICa(L) to almost same extent as the isoproterenol-stimulated ICa(L). In the cells pretreated with pertussis toxin, carbachol failed to inhibit the isoproterenol-stimulated ICa(L), indicating that carbachol produced its effect via a pertussis toxin-sensitive G-protein pathway. The effects of carbachol in adult cells became more pronounced, increasing from 17.7% to 54.8% (n = 11), with the addition of the synthetic inhibitory G-protein alpha subunit (Gi alpha) (1 microM) to the reaction. Conversely, the alpha subunit of another pertussis toxin-sensitive synthetic G-protein (G(o) alpha, 1 microM) failed to mimic the effect of Gi alpha. These results suggest that, in rat ventricular cells, (1) the action of carbachol on ICa(L) showed a marked decrease during development; (2) the decrease in the effect of carbachol in adult cells is in part due to a decrease in the activity of pertussis toxin-sensitive G protein, especially Gi alpha.

Animals↗

Abnormal distribution of intestinal pacemaker (C-KIT-positive) cells in an infant with chronic idiopathic intestinal pseudoobstruction.

BACKGROUND: Chronic idiopathic intestinal pseudoobstruction (CIIPO) is a rare syndrome with an obscure pathogenesis. The proto-oncogene c-kit encodes a transmembrane tyrosine kinase receptor C-KIT that is critical for the development of the interstitial cells of Cajal, cells that are regarded as being the pacemaker cells of the gut. Thus, C-KIT immunopositive (C-KIT-) cells in the muscle layers of the bowel are considered to be intestinal pacemaker cells. METHODS: In this study, the distribution of intestinal pacemaker cells was examined for the first time using C-KIT immunohistochemistry in an infant with CIIPO. RESULTS: C-KIT+ cells were found lying on either side of the border between the two muscle layers (longitudinal and circular) of the bowel and dispersed unevenly throughout both muscle layers. Myenteric plexuses were not demarcated by C-KIT+ cells. In contrast, in controls, C-KIT+ cells were located distinctly between the two muscle layers of the small bowel and dispersed evenly throughout the muscle layers of the colon. Myenteric plexuses were clearly demarcated by C-KIT+ cells. CONCLUSIONS: This case demonstrates for the first time that there is abnormal distribution of intestinal pacemaker cells in CIIPO and provides new evidence that abnormal c-kit gene expression may be responsible for autonomic gut dysmotility. C-KIT immunohistochemistry may be an indispensable tool for diagnosing CIIPO.

Chronic Disease↗

Inhibitory effect of habu antivenom on fibrinopeptide A release induced by Trimeresurus flavoviridis crude venom.

The correlation between the clotting activity of crude venom and concentration of fibrinopeptide A (FPA) released by the crude venom in rabbit plasma was evaluated and expressed as the coefficient of correlation (r = 0.850). The venom-induced FPA release was inhibited by habu antivenom. For such inhibition of FPA release, the correlation between the concentration of habu antivenom (Y) and that of crude venom (X) could be expressed by the equation Y = 7.115 + 0.709X. An absence of venom-induced FPA release in rabbit plasma had suggested that the clotting activity of crude venom could be neutralized by the habu antivenom. It is suggested that determinations of the FPA level in the plasma are effective in providing an indication of the reliability for serotherapy using habu antivenom.

Animals↗

Inhibition of habutobin activities by habu antivenom.

This study investigated whether habu antivenom inhibits the clotting activity of habutobin, a thrombin-like enzyme from Trimeresurus flavoviridis venom. Habu antivenom, which is available as a commercial antibody against the crude venom of T. flavoviridis, has been used to treat envenoming by T. flavoviridis (the habu snake). The present study was undertaken to determine whether habu antivenom inhibits the activities of habutobin, which involve digestion of the A alpha chain and release of fibrinopeptide A (FPA) in rabbit fibrinogen. The results of sodium dodecyl sulfate-polyacrylamide gel electrophoresis demonstrated that habu antivenom inhibited the habutobin-induced digestion of the A alpha chain in rabbit fibrinogen. The results of FPA measurements using competitive enzyme-linked immunoassay (CELIA) revealed that habu antivenom inhibited the release of FPA from rabbit fibrinogen induced by habutobin. In addition, a correlation was noted between the digestion of the A alpha chain and release of FPA from rabbit fibrinogen. Analysis of the inhibition kinetics of habu antivenom against the habutobin activity yielded a competitive double-reciprocal plot.

Animals↗

Structural comparison of 1 beta-methylcarbapenem, carbapenem and penem: NMR studies and theoretical calculations.

Structural comparisons of meropenem (1), desmethyl meropenem (2) and the penem analogue (3) which contain the same side chains at both C-2 and C-6 were performed using 1H NMR measurements together with 3-21G* level of ab initio MO and molecular mechanics calculations. The ab initio MO calculations reproduced the skeletons of these strained beta-lactam rings in good agreement with the crystallographic data. 1H NMR measurements in aqueous solution together with molecular modeling studies indicated that there were conformational differences of the C-2 and C-6 side chains in this series of compounds. These observations suggested that the conformational differences could affect their biological activities.

Anti-Bacterial Agents↗

ATP-sensitive K+ channels in pancreatic, cardiac, and vascular smooth muscle cells.

ATP-sensitive K+ (KATP) channels are therapeutic targets for several diseases, including angina, hypertension, and diabetes. This is because stimulation of KATP channels is thought to produce vasorelaxation and myocardial protection against ischemia, whereas inhibition facilitates insulin secretion. It is well known that native KATP channels are inhibited by ATP and sulfonylurea (SU) compounds and stimulated by nucleotide diphosphates and K+ channel-opening drugs (KCOs). Although these characteristics can be shared with KATP channels in different tissues, differences in properties among pancreatic, cardiac, and vascular smooth muscle (VSM) cells do exist in terms of the actions produced by such regulators. Recent molecular biology and electrophysiological studies have provided useful information toward the better understanding of KATP channels. For example, native KATP channels appear to be a complex of a regulatory protein containing the SU-binding site [sulfonylurea receptor (SUR)] and an inward-rectifying K+ channel (Kir) serving as a pore-forming subunit. Three isoforms of SUR (SUR1, SUR2A, and SUR2B) have been cloned and found to have two nucleotide-binding folds (NBFs). It seems that these NBFs play an essential role in conferring the MgADP and KCO sensitivity to the channel, whereas the Kir channel subunit itself possesses the ATP-sensing mechanism as an intrinsic property. The molecular structure of KATP channels is thought to be a heteromultimeric (tetrameric) assembly of these complexes: Kir6.2 with SUR1 (SUR1/Kir6.2, pancreatic type), Kir6.2 with SUR2A (SUR2A/ Kir6.2, cardiac type), and Kir6.1 with SUR2B (SUR2B/Kir6.1, VSM type) [i.e., (SUR/Kir6.x)4]. It remains to be determined what are the molecular connections between the SUR and Kir subunits that enable this unique complex to work as a functional KATP channel.

Adenosine Triphosphate↗

Levosimendan, a novel Ca2+ sensitizer, activates the glibenclamide-sensitive K+ channel in rat arterial myocytes.

The electrophysiological effect of levosimendan, a novel Ca(2+)-sensitizing positive inotropic agent and vasodilator, was examined on rat mesenteric arterial myocytes using the patch clamp technique. Resting potential was significantly hyperpolarized with levosimendan, with an EC50 of 2.9 microM and maximal effect (19.5 +/- 3.5 mV; n = 12) at 10 microM. Levosimendan (10 microM) significantly increased the whole-cell outward current. The currents intersected close to the calculated EK (-84 mV), suggesting that the activated current was a K+ current. Hyperpolarization and stimulation of K+ current by levosimendan were not prevented by 30 microM H-7 (a non-specific inhibitor of protein kinases) and 100 nM charybdotoxin (a blocker of Ca(2+)-activated K+ channels), but were abolished by 10 microM glibenclamide. In single-channel current recording in open cell-attached patches, two types of K+ channels were observed having conductances of 26 and 154 pS. The 154 pS channels were not affected by levosimendan and glibenclamide. The 26 pS channels were evoked in one-fourth of the patches when 10 microM levosimendan (and 0.1 mM UDP) was added (at -60 mV) and channel activity was abolished by glibenclamide. The mean open probability of the 26 pS channels was 0.094 +/- 0.017 (n = 9), and the mean open time (at -60 mV) was 6.6 ms in the presence of UDP and levosimendan. Although significant hyperpolarization (4.7 +/- 1.5 mV, n = 8) was observed at 1 microM levosimendan, the same concentration did not affect Ca2+ channel currents (n = 10). In summary, levosimendan hyperpolarized the arterial myocytes, probably through activation of a glibenclamide-sensitive K+ channel. This mechanism may contribute to the vasodilating action of levosimendan.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

The concentration of u-PA and PAI-1 antigen in tissue extracts of nasopharyngeal carcinoma.

We measured the antigen levels of urokinase-type plasminogen activator (u-PA) and plasminogen activator inhibitor-1 (PAI-1) in tissue extracts from nasopharyngeal carcinomas. An increase in u-PA antigen was observed with the advanced stages of disease. However, the levels of PAI-1 antigen decreased with each advanced stage. These results suggest that local administration of antiplasminic agents may be effective in suppressing tumor invasion.

Adult↗

Modified Boerema technique for the closure of congenital abdominal wall defects to prevent incisional herniation and infection.

Tension and infection often cause wound dehiscence or incisional herniation after the fascial closure of congenital abdominal wall defects in neonates. To overcome these problems, a modification of the Boerema technique (a method for repairing large incisional hernia in adults) was applied to repair abdominal wall defects in 14 neonates. The efficacy of this technique is discussed in this report.

Abdominal Muscles↗

Intestinal pacemaker C-KIT+ cells and synapses in allied Hirschsprung's disorders.

The cause of bowel dysmotility in allied Hirschsprung's disorders (AHDs) such as hypoganglionosis (HYPG), immature ganglia (IMG) and neuronal intestinal dysplasia (NID) remains unexplained. Recent experimental studies in mice have shown that c-kit gene product positive (C-KIT+) cells are responsible for intestinal pacemaker activity and that c-kit is also closely involved in synapse formation. To further understand the pathophysiology of AHDs, the authors used immunohistochemistry to study the distribution of C-KIT+ cells and synapses in the muscle layers of normal bowel from controls (12 cases) and bowel from patients with AHDs (10 patients; mean age, 3.0 years; 5 HYPG, 3 NID, 2 IMG). Anti-human C-KIT serum and monoclonal antibody 171B5 (a novel marker of synapses) were used for visualization of C-KIT+ cells and 171B5+ synapses, respectively. In normal bowel from controls and patients with AHDs, moderate to many C-KIT immunoreactive (C-KIT-IR+) cells were observed in the muscle layers. Myenteric plexuses were clearly demarcated by C-KIT-IR+ cells. 171B5 immunoreactive (171B5-IR+) synapses were abundant in the muscle layers and within the myenteric plexuses. In contrast, the number of C-KIT-IR+ cells or 171 B5-IR+ synapses was reduced in the muscle layers of bowel affected by AHDs, except within the myenteric plexuses, where there was a moderate to large number of 171B5-IR+ synapses identified. A lack of intestinal pacemaker C-KIT+ cells may be of great significance with respect to the bowel dysmotility associated with AHDs and also to the abnormal synapse formation seen in the muscle layers of bowel affected by these disorders.

Adolescent↗