Search PubMed⌕ Search

Biomedical subjects

M Ojima

Publications and source records attributed to M Ojima.

At least 37 records · Page 2Linked to original sources

Protective effects of candesartan cilexetil (TCV-116) against stroke, kidney dysfunction and cardiac hypertrophy in stroke-prone spontaneously hypertensive rats.

The effects of chronic treatment with an angiotensin II receptor antagonist, candesartan cilexetil (TCV-116, 0.1, 1, 10 mg/kg), and an angiotensin converting enzyme inhibitor, enalapril maleate (enalapril, 10 mg/kg), on the development of end-organ damage were examined in stroke-prone spontaneously hypertensive rats (SHRSP). The control SHRSP developed severe hypertension with stroke signs and increased urinary protein excretion. TCV-116 (0.1 mg/kg) reduced the stroke incidence and urinary protein excretion without affecting the blood pressure. TCV-116 (1 and 10 mg/kg) and enalapril reduced blood pressure, the stroke incidence, the urinary indices and left ventricular weight. Circulating renin-angiotensin system (RAS) and renal renin mRNA expression were significantly accelerated or tended to be accelerated in the control SHRSP with end-organ damages. A low dose of TCV-116 tended to reduce the RAS indices in plasma by improving the damages, whereas a high dose (10 mg/kg) increased them by the reflexes with blocking RAS. The present results indicate that chronic All blockade reduces the increase in blood pressure, end-organ damages and RAS related to the damages in SHRSP.

Angiotensin Receptor Antagonists↗

Combined effects of the angiotensin II antagonist candesartan cilexetil (TCV-116) and other classes of antihypertensive drugs in spontaneously hypertensive rats.

The antihypertensive effects of an angiotensin II antagonist, candesartan cilexetil (TCV-116), and other classes of antihypertensive drugs (including a calcium antagonist, manidipine; a diuretic, hydrochlorothiazide (HCTZ); an alpha-blocker, prazosin; and a beta-blocker, atenolol) administered in combination were examined in spontaneously hypertensive rats by oral administration daily for 2 wk. TCV-116 at 1 mg/kg lowered the blood pressure by about 50 and 30 mmHg, 5 and 24 h after dosing, respectively. The blood pressure was slightly lowered by HCTZ at 10 mg/kg, but it was synergistically reduced when HCTZ was given in combination with TCV-116. Manidipine at 3 mg/kg lowered the blood pressure by about 50 mmHg 1 h after administration. When manidipine was given in combination with TCV-116, blood pressure was reduced additively. Prazosin at 1 mg/kg lowered the blood pressure by 40 to 50 mmHg 1 h after dosing. When prazosin was given in combination with TCV-116, the reduction was intensified more than additively, to about 100 mmHg. Atenolol at 50 mg/kg lowered the blood pressure by 10 to 20 mmHg 5 h after dosing. Even when atenolol was administered in combination with TCV-116, the reduction in blood pressure was virtually the same as that observed when TCV-116 was given alone. TCV-116 and HCTZ had no effect on the pulse rate, whereas manidipine and prazosin both increased it, owing to reflex tachycardia, and atenolol decreased it. TCV-116 had no effect on the change in the pulse rate induced by these antihypertensive drugs and no effect on HCTZ-induced diuresis. TCV-116 and HCTZ each caused a significant increase in plasma renin concentration (PRC), and prazosin caused a slight elevation. Manidipine had no effect on the PRC, whereas atenolol reduced it. Given in combination with TCV-116, these antihypertensive drugs had the same effect on the elevated PRC induced by TCV-116 as they did on the basal PRC when administered alone. These results suggest that antihypertensive drugs that cause compensatory activation of the renin-angiotensin system have more marked antihypertensive activity when given in combination with TCV-116, but that there will is no combined effect on the pulse rate.

Adrenergic alpha-Antagonists↗

Comparison of the antihypertensive effects of the new angiotensin II (AT1) receptor antagonist candesartan cilexetil (TCV-116) and the angiotensin converting enzyme inhibitor enalapril in rats.

Antihypertensive effects of an angiotensin (Ang) II receptor antagonist, candesartan cilexetil (TCV-116), were compared with those of an angiotensin converting enzyme (ACE) inhibitor, enalapril, in spontaneously hypertensive rats (SHR), 2-kidney, 1-clip hypertensive rats (2K, 1C-HR) and 1-kidney, 1-clip hypertensive rats (1K, 1C-HR). CV-11974, the active form of TCV-116, had no inhibitory activity for plasma ACE. In rats, TCV-116 inhibited the pressor responses to Ang I, Ang II, and Ang III without an effect on the bradykinin (BK)-induced depressor response. Enalapril inhibited only the Ang I-response and potentiated the BK-response. In SHR, the antihypertensive effect of TCV-116 (10 mg/kg) was larger than the maximum antihypertensive effect of enalapril and was not intensified by combination with enalapril. Administration of CV-11974 potentiated the maximum antihypertensive effect of enalapril. Although both agents reduced blood pressure in 2K, 1C-HR, only TCV-116 had a marked antihypertensive effect in 1K, 1C-HR. These findings indicate that TCV-116 is more effective than enalapril in reducing blood pressure in SHR and 1K, 1C-HR, and that the BK- and/or prostaglandin-potentiating effect of enalapril contributes little to its antihypertensive mechanism in SHR.

Administration, Oral↗

Molecular and enzymatic properties of an aspartic proteinase from Rhizopus hangchow.

An aspartic proteinase, rhizopuspepsin (EC 3.4.23.21), from Rhizopus hangchow was purified. The M(r) and isoelectric point were determined as ca 37,000 and 4.5, respectively. The first 19 amino acids in the N-terminal region were SGSGVVPMTDYEYDIEYYG. The contents of the alpha-helix, beta-structure and random coil were calculated to be ca 7.5, 88.9 and 2.7%, respectively. The enzyme can activate trypsinogen at pH 3.0. The activity was completely inactivated by pepstatin A. The specificity and mode of action of the enzyme were investigated with oxidized insulin B-chain at pH 3. The enzyme hydrolysed primarily two peptide bonds, the Leu15-Tyr16 bond and the Tyr16-Leu17 bond, while additional cleavage of the bonds, Ala14-Leu15 and Phe24-Phe25 was also noted.

Amino Acid Sequence↗

A possible approach to the suppression of side effects induced by PGE1.

Prostaglandin E1 (PGE1) is known to possess various actions in vivo. Of these actions, the contraction of the ileum and inflammation are undesirable side effects. We previously proposed a hypothesis concerning the receptors for human blood platelet aggregation and its inhibition, and the contraction of the ileum and uterus based on a study of structure-activity relationships. If the same principle can be applied to contraction of the ileum and inflammation induced by PGE1, compounds that suppress the side effects of PGE1 can be developed. The antihistamine diphenylpyraline and the anticholinergic atropine antagonized PGE1-induced contraction of the ileum in guinea pigs. Papaverine, which is a smooth muscle relaxant, also acted as an antagonist. Gabexate mesylate (FOY), a non-peptide proteinase inhibitor, inhibits guinea pig ileum contraction induced by PGE1, but epsilon-guanidinocaproic acid (GCA), a metabolite of FOY, does not. Increased microvascular permeability of the abdominal skin in rats induced by the local injection of PGE1 and histamine was suppressed by atropine, papaverine and diphenylpyraline. FOY, not GCA, had a weak inhibitory action. We demonstrate the possibility of suppressing the side effects of PGE1 based on the results obtained in the present and previous studies.

Alprostadil↗

Effects of delapril on stroke, kidney dysfunction and cardiac hypertrophy in stroke-prone spontaneously hypertensive rats.

This study was performed to investigate the beneficial effects of prolonged treatment with an angiotensin converting enzyme (ACE) inhibitor, delapril, on the appearance of symptoms of hypertensive cardiovascular disease in stroke-prone spontaneously hypertensive rats (SHRSP). Cardiovascular disease symptoms: stroke, kidney dysfunction and cardiac hypertrophy, were evaluated by monitoring the incidence of stroke signs, urinary excretion of protein and the heart weight, respectively. The SHRSP that were kept under salt-loaded conditions (1% NaCl drinking solution) from six weeks of age developed severe hypertension, showed an increased incidence of stroke signs and increased urinary excretion of protein. Long-term treatment with delapril (10mg/kg/day, p.o. for four weeks) decreased the blood pressure and completely inhibited the incidence of stroke signs and the increase in urinary excretion of protein. In SHRSP that were kept under normal conditions (without 1% NaCl drinking solution), long term treatment with delapril at the same dose decreased the heart weight and, after five weeks of treatment, left ventricular weight was decreased significantly and the wall/lumen ratio of small coronary arterioles and the thickness of the left ventricular wall were decreased slightly. These results indicate that delapril can prevent the development of symptoms of hypertensive cardiovascular diseases: stroke, kidney dysfunction and cardiac hypertrophy, with antihypertensive activity in SHRSP.

Angiotensin-Converting Enzyme Inhibitors↗

Estimation of motility of subgingival microflora using high speed shutter camera and image analysis system.

This paper reports on the development of a motility measuring system for human subgingival microflora using a high speed shutter camera and an image analysis system. The paper first presents the method for estimating the motility of subgingival microflora by the total number of pixels and then describes the evaluation of the total number of pixels as an indicator of bacterial motility. Our results with this system demonstrate that the motility of subgingival microflora can be expressed as the total number of pixels.

Bacterial Physiological Phenomena↗

Clinical evaluation of the plaque removal efficacy of three toothbrushes.

A single-blind, randomized triple crossover study was conducted to compare the plaque removal effectiveness of three toothbrushes: Sunstar Do New Type, Reach Compact Head, and New Dental-H. Thirty-three female students were recruited from a dental school and a dental hygiene school. All subjects brushed with a control toothbrush for the first week and with each one of the three test toothbrushes in each subsequent one-week period. Plaque removal efficacy was determined by subtracting the plaque score for the test toothbrush from that of the control toothbrush. The Sunstar Do New Type toothbrush had a significantly (p<0.05) higher plaque removal efficacy than the other two toothbrushes. The differences were prominent on the distal line angle of the second molars. Differences in plaque removal efficacy between the Reach Compact Head and the New Dental-H toothbrushes were not statistically significant (p<0.05) in this study.

Adult↗

[A case of unilateral primary adrenal nodular hyperplasia with elevated plasma adrenocorticotropin (ACTH)].

A 57-year-old woman was admitted to our hospital with occipital headache and nausea. She had severe hypertension (192/122mmHg), hypokalemia (2.8mEq/l) and fasting hyperglycemia (127 mg/dl). Further examination revealed elevated plasma ACTH (124pg/ml) and cortisol (26.5 mu g/dl) with a lack of diurnal rhythm. Plasma ACTH or cortisol did not increase by injection of corticotropin releasing hormone (CRH). Rapid ACTH test resulted in an exaggerated response of plasma cortisol. Abdominal MRI scan showed a left adrenal tumor. Since the bilateral adrenal venous blood sampling revealed a significant increase of cortisol on the left, left adrenalectomy was performed. Histological examination of the resected adrenal gland revealed marked cortical hyperplasia. Postoperative investigations revealed that despite a small dose of steroid replacement for only 20 days, plasma ACTH level was decreased for a period of 6 months. Both plasma ACTH and cortisol increased by a CRH injection 38 days after surgery. CRH test during bilateral inferior petrosal sinus sampling indicated that this patient had no functioning pituitary tumor. Although the exact mechanism of high plasma ACTH level in this case was unknown, these findings suggest that any substance secreted from primary adrenal nodular hyperplasia adrenal nodular hyperplasia may stimulate pituitary ACTH production. This is a very rare case of Cushing's syndrome due to unilateral primary adrenal nodular hyperplasia with elevated plasma ACTH.

Adrenal Glands↗

Effect of an angiotensin II receptor antagonist, CV-11974, and its prodrug, TCV-116, on production of aldosterone.

In dispersed rabbit adrenocortical glomerulosa cells, a non-peptide angiotensin II (AT1) receptor antagonist, CV-11974 (10(-10)-10(-5) M), competitively inhibited angiotensin II- or angiotensin III-stimulated aldosterone production, whereas PD123177, an angiotensin AT2 receptor antagonist, did not. CV-11974 inhibited aldosterone production induced by 4 mM K+ but not by 12 mM K+. CV-11974 had no effect on adrenocorticotropic hormone-stimulated aldosterone or corticosterone production, but inhibited angiotensin II-stimulated corticosterone production. In the rat, TCV-116, the prodrug of CV-11974, (0.1 and 1 mg/kg, p.o.) markedly reduced the elevation of both plasma aldosterone concentration and blood pressure induced by i.v. infusion of angiotensin II. In spontaneously hypertensive rats, TCV-116 at daily p.o. doses of 0.1, 1 and 10 mg/kg for 2 weeks caused a dose-dependent reduction of blood pressure and plasma aldosterone concentration without affecting plasma corticosterone. Thus, TCV-116 inhibited the induction of aldosterone production by not only exogenous but also endogenous angiotensin II.

Administration, Oral↗

Effect of mechanical stimulation by tooth brushing on oxygen tension in dog gingiva.

To determine oxygen tension (pO2) in gingival tissue, an oxygen micro-electrode with a membrane-coated Pt needle was inserted into the gingiva of 12 dogs. Teeth were brushed using a modified Bass technique for 10 s under 200 g pressure. pO2 increased and reached a maximum 15 min after brushing, then gradually returned to the baseline. A significant increase in pO2 persisted for approx. 1 h. These findings suggest that short-term stimulation by tooth brushing increases oxygen tension in the gingiva.

Animals↗

Effect of topical application of coenzyme Q10 on adult periodontitis.

Topical application of Coenzyme Q10 (CoQ10) to the periodontal pocket was evaluated with and without subgingival mechanical debridement. Ten male patients with adult periodontitis participated and 30 periodontal pockets were selected. During the first 3 weeks, the patients did not receive any periodontal therapy except the topical application of CoQ10. After the first 3-week period, root planning and subgingival scaling were performed in all sites. CoQ10 was applied in 20 of the pockets once a week for a period of 6 weeks. Soybean oil was applied to the remaining 10 sites as a control. In the first 3-week period, significant reductions in gingival crevicular fluid flow, probing depth and attachment loss were found only at experimental sites. After mechanical subgingival debridement, significant decreases in the plaque index, gingival crevicular fluid flow, probing depth and attachment loss were found both at experimental and control sites. However, significant improvements in the modified gingival index, bleeding on probing and peptidase activity derived from periodontopathic bacteria were observed only at experimental sites. These results suggest that topical application of CoQ10 improves adult periodontitis not only as a sole treatment but also in combination with traditional nonsurgical periodontal therapy.

Administration, Topical↗

Effect of binding of fibrinogen to each bacterium on coaggregation between Porphyromonas gingivalis and Streptococcus oralis.

Fibrinogen inhibits the coaggregation between Porphyromonas gingivalis and Streptococcus oralis. In this study, we determined which bacterium interacts with fibrinogen in this inhibitory process. Although preincubation of each bacterium with fibrinogen did not inhibit coaggregation, its activity was completely eliminated by the addition of protease inhibitors such as N-ethylmaleimide (NEM), p-chloromercuriphenyl sulfonate and N alpha-p-tosyl-L-lysine chloromethyl ketone to the preincubation mixture with fibrinogen and P. gingivalis. However, the inhibition of coaggregation was not found after preincubation of S. oralis with fibrinogen in the presence or absence of the protease inhibitors. Labelled materials were recovered from the extract of P. gingivalis cells incubated with radioiodinated fibrinogen in the presence of NEM but not in the absence of NEM. In the binding experiment, P. gingivalis showed a much higher binding activity to fibrinogen than S. oralis. These findings suggest that fibrinogen and its fragment(s) may mask directly or indirectly the aggregation site with S. oralis on the P. gingivalis cells in its inhibitory process of coaggregation.

Bacterial Adhesion↗

Pharmacological profile of a novel nonpeptide angiotensin II subtype 1 receptor antagonist, TCV-116.

TCV-116, an angiotensin II (AII) receptor antagonist, is a prodrug that is converted in vivo to the active form, CV-11974. CV-11974 selectively and competitively inhibited the specific binding of [125I]AII-(Sar1,lle8) to All subtype 1 (AT1) receptors in rabbit aortic membranes (Ki = 0.64 nM) and insurmountably inhibited the AII-induced maximal contractile response of rabbit aortic strips (pD'2 = 9.97). TCV-116 inhibited the AII-induced pressor response in rats (ID50 = 0.069 mg/kg. p.o.). In spontaneously hypertensive rats (SHR), TCV-116 had a sustained antihypertensive effect (ED25 = 0.68 mg/kg, p.o.). Repeated oral administration of TCV-116 (1 mg/kg) to SHR once daily for 2 weeks reduced blood pressure by 30-50 mmHg over 24 h. The antihypertensive effects of TCV-116 correlated well with the inhibition of AII-induced contractile responses of aortic strips prepared ex vivo after administration of TCV-116. TCV-116 had sustained effects in both 2 kidney, 1 clip hypertensive rats and in 1 kidney, 1 clip hypertensive rats, but had no effect in DOCA/salt hypertensive rats. Unlike enalapril, TCV-116 had no potentiating effect on the incidence of cough induced by citric acid in guinea pigs. These results suggest that TCV-116 is a promising antihypertensive agent with once daily administration.

Angiotensin Receptor Antagonists↗

Antihypertensive effects of a highly potent and long-acting angiotensin II subtype-1 receptor antagonist, (+-)-1-(cyclohexyloxycarbonyloxy)ethyl 2-ethoxy-1-[[2'-(1H-tetrazol-5-yl)biphenyl-4-yl]methyl]-1H- benzimidazole-7-carboxylate (TCV-116), in various hypertensive rats.

The antihypertensive effects of (+-)-(cyclohexyloxycarbonyloxy)ethyl2-ethoxy-1-[[2'-(1H- tetrazol-5- yl)biphenyl-4-yl]methyl]-1-H-benzimidazole-7-carboxylate (TCV-116), an angiotensin II (AII) subtype-1 receptor antagonist, were studied in various hypertensive and normotensive rats, using 2-n-butyl-4-chloro-5-hydroxymethyl-1-[(2'-(1H-tetrazol-5-yl)bip hen yl-4- yl)methyl]-imidazole, potassium salt (losartan) as a reference compound. TCV-116 is a prodrug, which is converted in vivo to the active component, 2-ethoxy-1-[[2'-(1H-tetrazol-5-yl)biphenyl-4-yl)]methyl]-1H- benzimidazole-7-carboxylic acid (CV-11974). In spontaneously hypertensive rats (SHR) p.o. TCV-116 (0.1 mg/kg) demonstrated a sustained antihypertensive effect that lasted for more than 10 hr and the dose that reduced the blood pressure by an average of 25 mm Hg for 24 hr (ED25), was 0.68 mg/kg. Intravenous CV-11974 reduced the blood pressure with an ED25 of 0.0027 mg/kg. Repeated p.o. administration of TCV-116 (1 mg/kg) to SHR once daily for 2 weeks reduced the blood pressure by 30 to 50 mm Hg over 24 hr without any heart rate changes. The antihypertensive effects of TCV-116 correlated well with the inhibition of angiotensin II-induced contractile responses of aortic strips prepared ex vivo after p.o. administration of TCV-116. Oral TCV-116 had a sustained antihypertensive effect with ED25 of 0.03 and 0.23 mg/kg in two-kidney, one-clip and one-kidney, one-clip hypertensive rats, respectively, and was much more potent in SHR and renal-hypertensive rats than losartan.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin Receptor Antagonists↗

Inhibition of rabbit aortic angiotensin II (AII) receptor by CV-11974, a new nonpeptide AII antagonist.

The angiotensin II (AII) antagonistic action of CV-11974 (2-ethoxy-1-[[2'-(1H-tetrazol-5-yl)biphenyl-4-yl]methyl] benzimidazole-7-carboxylic acid) was investigated in an AII-receptor binding assay using rabbit aortic membranes and an AII-induced contraction assay using rabbit aortic strips. A single class of [125I]AII-(Sar1,Ile8) binding sites was found in the membranes with a dissociation constant (Kd) of 0.15 nM and a receptor concentration (Bmax) of 86.9 fmol/mg protein. CV-11974 markedly reduced Kd without affecting Bmax. The specific binding of [125I]AII-(Sar1,Ile8) in this preparation was inhibited completely by CV-11974 [the inhibition constant (Ki) = 0.64 nM], DuP 753 [an angiotensin II type I (AT1) receptor-selective antagonist] (Ki = 51 nM) and EXP3174 (an active metabolite of DuP 753) (Ki = 6.8 nM), but was not affected by PD123177 (an AT2 receptor-selective antagonist). These results suggest that the single binding site in rabbit aortic membranes is an AT1 receptor subtype. The affinity of CV-11974 to these AT1 receptors was approximately 80 and 10 times higher than that of DuP 753 and EXP3174, respectively. CV-11974 showed no appreciable affinity for the AT2 receptors found in bovine cerebellum. In the in vitro functional study, CV-11974 markedly reduced the AII-induced maximal contractile response of rabbit aortic strips (pD'2 = 9.97). In contrast, Compound 7-H, which lacks the carboxyl group at the benzimidazole ring of CV-11974, inhibited the contraction in a competitive manner. The inhibition by CV-11974 was long lasting. These results suggest that CV-11974 is a potent and long-acting AT1 receptor-selective, competitive antagonist. The carboxyl group at the benzimidazole ring plays an important role in the interaction between CV-11974 and the AT1 receptor.

Angiotensin II↗

Nonpeptide angiotensin II receptor antagonists. Synthesis and biological activity of benzimidazoles.

A series of substituted 2-butylbenzimidazoles bearing a biphenylylmethyl moiety at the 1-position was prepared via three synthetic routes and evaluated for angiotensin II (AII) receptor antagonistic activity (in vitro and in vivo). Binding affinity was determined using bovine adrenal cortical membrane. Substitution at the 4-, 5-, or 6-position reduced the affinity relative to that of the unsubstituted compound (13a). However, most of the compounds with a substituent at the 7-position showed binding affinity comparable to that of DuP 753 (losartan). In functional studies, a carboxyl group was found to be very important for antagonistic activity against AII. Comparison of 2-butyl-1-[[2'-(1H-tetrazol-5-yl)biphenyl-4-yl]methyl]- 1H-benzimidazole-4-, -5-, -6-, and -7-carboxylic acids (15a-d) in an AII-induced rabbit aortic ring contraction assay clearly demonstrated the importance of the substitutional position of the carboxyl group. In an in vivo assay, oral administration of benzimidazole-7-carboxylic acids caused long-lasting inhibition of the AII-induced pressor response in rats. The optimum substituent at the 7-position of the benzimidazole ring was found to be a carboxyl or an ester group. The representative compound, 2-butyl-1-[[2'- (1H-tetrazol-5-yl)biphenyl-4-yl]methyl]-1H-benzimidazole-7-carboxy lic acid (15d, CV-11194), inhibited the specific binding of [125I]AII to bovine adrenal cortical membrane with an IC50 value of 5.5 x 10(-7) M. The AII-induced contraction of rabbit aortic strips was antagonized by CV-11194 (IC50 value, 5.5 x 10(-11) M), while the compound had no effect on the contraction induced by norepinephrine or KCl. Orally administered CV-11194 at doses of 0.3-10 mg/kg dose-dependently inhibited the AII-induced pressor response in rats and dogs. CV-11194 at 1 mg/kg po reduced blood pressure in spontaneously hypertensive rats (SHR). The three-dimensional molecular structure of CV-11194 was determined by X-ray diffraction.

Adrenal Cortex↗