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Biomedical subjects

U Ikeda

Publications and source records attributed to U Ikeda.

At least 19 recordsLinked to original sources

Interleukin 6 gene transcripts are expressed in atherosclerotic lesions of genetically hyperlipidemic rabbits.

We have investigated the involvement of interleukin 6 (IL-6), a growth-regulatory molecule for vascular smooth muscle cells (SMC), in the development of atherosclerotic lesions of Watanabe heritable hyperlipidemic (WHHL) rabbits. In in situ hybridization analysis, quite low levels of IL-6 mRNA were expressed in 'quiescent' SMC cultured from WHHL rabbits; however, high levels of IL-6 mRNA were induced in SMC exposed to 10% fetal bovine serum (FBS), suggesting that growth-stimulated SMC themselves can synthesize IL-6. In in vivo WHHL aortae, transcripts for the IL-6 gene were clearly observed in the fibrous plaques. These findings support the premise that IL-6 is an important autocrine and/or paracrine regulator of SMC proliferation and of pathogenesis of atherosclerosis in this animal model.

Animals

Serum interleukin 6 levels become elevated in acute myocardial infarction.

We have examined serum interleukin 6 (IL-6) levels in 12 patients with acute myocardial infarction (AMI). IL-6 levels became elevated in all patients, following the rise of serum creatine kinase (CK) activity. Peak IL-6 levels showed a good correlation with peak serum C-reactive protein (CRP) levels, while there was no direct relationship between peak IL-6 levels and peak CK activity. IL-6 mRNA was not detected in unstimulated "quiescent" rat cardiocytes cultured in serum-free medium, but its expression was induced by exposure of the cells to serum or ionomycin. These results show that IL-6 is synthesized in the myocardium and serum IL-6 levels become elevated in AMI, suggesting that IL-6 could affect the progression and/or healing processes of AMI.

Aged

Enhanced spontaneous calcium efflux and decrease of calcium-dependent calcium release from the isolated perfused heart of spontaneously hypertensive rats.

OBJECTIVE: The aim of this study was to clarify the further details of calcium handling in hypertension. DESIGN: By preserving the physiological environment of cell membrane, whole hearts were used for comparison of calcium flux between spontaneously hypertensive rats (SHR) and Wistar-Kyoto (WKY) rats. METHODS: Hearts from SHR and WKY rats were perfused with Krebs-Henseleit solution under constant flow and the effluent collected. RESULTS: After labelling of the heart with 45Ca2+ (100 mumol/l), 45Ca2+ binding was found to be saturated, and washing with calcium-free perfusion solution showed two exponential curves for calcium dissociation, indicating a fast (alpha-) and slow (beta-) phase. The half-lives of the beta-phase for both 4- and 8-week-old SHR were significantly shorter than those for age-matched WKY. Also in this phase, infusion of non-radioactive Ca2+ caused a transient dose-dependent release of 45Ca2+. A significant reduction in the amount of 45Ca2+ release induced by 2 mmol/l Ca2+ was observed in both 4- and 8-week-old SHR compared with age-matched WKY rats. Infusion of lanthanum, caffeine, ionomycin (calcium ionophore) and treatment of the hearts with ethyleneglycol-bis-(beta-aminoethylether)-N,N,N,',N'-tetraac etic acid did not alter 45Ca2+ release by non-radioactive Ca2+. From these observations, 45Ca2+ is presumably released from the intracellular calcium pool, and not from extracellular binding sites or sarcoplasmic reticulum. CONCLUSIONS: These findings suggest that an abnormal calcium-handling defect (enhanced calcium efflux and reduction of membrane-bound Ca2+) exists under physiological conditions before and after the onset of hypertension, and that this may be a primary characteristic of SHR.

Aging

Conduction disturbance and pacemaker therapy in patients with corrected transposition of the great arteries.

We observed 4 adult patients with corrected transposition of the great arteries (CTGA) who developed complete atrioventricular block: of 4 patients, 2 received endocardial pacemakers (DDD mode), 1 an epicardial pacemaker (VVI mode), and 1 patient did not have a permanent pacemaker implantation. Endocardial lead fixation in the systemic venous atrium and ventricle is adequate to provide permanent electrode stability in patients with CTGA.

Adult

Regulation of Na,K-ATPase gene expression by thyroid hormone in rat cardiocytes.

Synthesis and activity of the enzymatic equivalent of the sodium pump, Na,K-ATPase, are regulated by thyroid hormone in responsive tissues. The purpose of this study was to determine whether triiodothyronine (T3) regulates the level of the messenger RNA (mRNA) coding for Na,K-ATPase alpha- and beta-subunits in the heart. The expression of Na,K-ATPase mRNAs in in vitro myocardial cells was directly assayed by Northern and slot blot hybridization using Na,K-ATPase alpha- and beta-isoform-specific cDNA probes. Exposure of cultured neonatal rat cardiocytes to 10(-8) M T3 resulted in 1) threefold to fourfold increase in alpha 1- and beta 1-mRNA accumulation, with a maximum elevation at 48 hours, 2) sevenfold increase in alpha 2-mRNA accumulation with a peak elevation at 72 hours, and 3) transient threefold increase in alpha 3-mRNA within the first 24 hours followed by a deinduction thereafter. The increase in alpha 1-mRNA accumulation by T3 occurred over the physiological T3 concentration range with an EC50 of 5 x 10(-10) M. This was associated with a twofold increase in alpha 1-subunit protein accumulation and an increase in Na,K-ATPase transport activity. The half-life of alpha 1-mRNA analyzed by actinomycin D chase was less than 3 hours and was not affected by T3. Transfection experiments with the luciferase reporter gene revealed that thyroid hormone response sequences are located within the 5'-flanking regions of each alpha-isoform gene.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Long-term survival in aged patients with corrected transposition of the great arteries.

Corrected transposition of the great arteries is a rare condition, and few patients with this abnormality survive past 50 years of age because of associated congenital defects or the subsequent development of atrioventricular valvular insufficiency or heart block or both. We describe four men with uncomplicated C-TGA. Our patients are of interest for the following reasons: (a) their condition is very rare; (b) the diagnosis of C-TGA traditionally has been verified through invasive cardiac catheterization procedures; however, in our latest two patients, recently developed noninvasive diagnostic techniques played the decisive role in the diagnosis of C-TGA; (c) in these modalities, they presented as a "natural experimental model" that the right ventricle submitted to a high systemic pressure load is capable of increasing muscle mass over long-term adaptation. Our four patients illustrate that patients with C-TGA, even with the associated cardiac anomalies, may live a normal life span with proper management.

Aged

Recombinant interleukin-6 inhibits the growth of rat mesangial cells in culture.

Murine recombinant interleukin-6 (IL-6) inhibited [3H]thymidine uptake by cultured rat mesangial cells in a dose-dependent manner in the presence of 0.5% fetal bovine serum (FBS). The inhibitory effect of IL-6 on the growth of mesangial cells was also confirmed by a change in cell numbers. In the presence of increased concentrations of FBS (5% or 10%), the effect of IL-6 was not prominent. IL-6 showed no effects on intracellular Ca2+ levels of mesangial cells. IL-6 gene expression was rapidly induced in the "quiescent" mesangial cells by exposure to 20% FBS. These observations support the premise that IL-6 is synthesized in mesangial cells and inhibits the growth of mesangial cells in an autocrine manner.

Animals

Aldosterone-mediated regulation of Na+, K(+)-ATPase gene expression in adult and neonatal rat cardiocytes.

By altering the Na+/K+ electrochemical gradient, Na+,K(+)-ATPase activity profoundly influences cardiac cell excitability and contractility. The recent finding of mineralocorticoid hormone receptors in the heart implies that Na+,K(+)-ATPase gene expression, and hence cardiac function, is regulated by aldosterone, a corticosteroid hormone associated with certain forms of hypertension and classically involved in regulating Na+,K(+)-ATPase gene expression and transepithelial Na+ transport in tissues such as the kidney. The regulation by aldosterone of the major cardiac Na+,K(+)-ATPase isoform genes, alpha-1 and beta-1, were studied in adult and neonatal rat ventricular cardiocytes grown in defined serum-free media. In both cell types, aldosterone-induced a rapid and sustained 3-fold induction in alpha-1 mRNA accumulation within 6 h. beta-1 mRNA was similarly induced. alpha-1 mRNA induction occurred over the physiological range with an EC50 of 1-2 nM, consistent with binding of aldosterone to the high affinity mineralocorticoid hormone receptor. In adult cardiocytes, this was associated with a 36% increase in alpha subunit protein accumulation and an increase in Na(+)-K(+)-ATPase transport activity. Aldosterone did not alter the 3-h half-life of alpha-1 mRNA, indicating an induction of alpha-1 mRNA synthesis. Aldosterone-dependent alpha-1 mRNA accumulation was not blocked by the protein synthesis inhibitor cycloheximide, whereas amiloride inhibited both an aldosterone-dependent increase in intracellular Na+ [Na+]i) and alpha-1 mRNA accumulation. This demonstrates that aldosterone directly stimulates Na+,K(+)-ATPase alpha-1 subunit mRNA synthesis and protein accumulation in cardiac cells throughout development and suggests that the heart is a mineralocorticoid-responsive organ. An early increase in [Na+]i may be a proximal event in the mediation of the hormone effect.

Aging

Vascular smooth muscle cells from genetically hyperlipidemic rabbit (WHHL rabbit) exhibit decreased growth response.

The Watanabe Heritable Hyperlipidemic (WHHL) rabbit is a widely studied animal model for the human genetic disorder familial hypercholesterolemia, and spontaneously develops atherosclerotic disease. We studied the growth characteristics of cultured vascular smooth muscle cells (VSMC) from WHHL rabbits compared with VSMC from Japanese white rabbits. We measured cell proliferation, DNA synthesis, and c-myc proto-oncogene expression, in response to growth stimuli such as fetal bovine serum (FBS) and platelet-derived growth factor (PDGF). VSMC from Japanese white rabbits exhibited a 4-fold increase in cell numbers during a 5-day incubation period compared with those from WHHL rabbits. FBS and PDGF stimulated DNA synthesis, as measured by thymidine incorporation into VSMC, in both Japanese white rabbits and WHHL rabbits, however the response was significantly higher in the former strain. The intracellular pH value of VSMC determined using the pH-sensitive fluorescence dye 2',7'-bis-carboxyethyl-carboxyfluorescein was significantly higher in WHHL rabbits than in Japanese white rabbits. Proto-oncogene c-myc was induced by exposure of VSMC to FBS, however there was no significant difference in c-myc mRNA levels between the two strains. These results suggest that VSMC from WHHL rabbits are not genetically growth accelerated, but show decreased growth response to growth stimuli.

Animals

Interleukin-1 suppresses mesangial cell growth via inhibition of Ca2+ entry.

We have investigated the effect of interleukin-1 (IL-1) on the cell growth and Ca2+ homeostasis of rat mesangial cells in culture. DNA synthesis measured by [3H]thymidine uptake by mesangial cells was significantly inhibited by IL-1 (10 U/ml) and the calcium channel antagonist nicardipine (5 x 10(-6) M). 45Ca2+ uptake by mesangial cells was also significantly inhibited by IL-1 and nicardipine. The above observations support the premise that IL-1 suppresses the growth of mesangial cells via inhibition of extracellular Ca2+ entry to the cytosol.

Angiotensin II

Recombinant interleukin-1 alpha inhibits the growth of rat mesangial cells in culture.

We have investigated the effect of interleukin-1 (IL-1) on the growth of mesangial cells isolated from rat kidney. Recombinant IL-1 alpha inhibited 3H-thymidine uptake by mesangial cells in a dose-dependent manner in the presence of either 0.5% or 5% fetal bovine serum (FBS). In the presence of high concentration of FBS (10%), the effect of IL-1 was not prominent. The inhibitory effect of IL-1 on the growth of mesangial cells was also confirmed by a change in cell numbers and measurements of protein synthesis with 3H-leucine. IL-1-induced inhibition of mesangial cell growth was not affected by indomethacin. IL-1 showed no effects on intracellular Ca2+ levels in mesangial cells. These observations indicate that IL-1 inhibits the growth of mesangial cells, and thus may play a protective role for mesangial cells from abnormal proliferation in some pathophysiological states.

Angiotensin II

Alpha 1-adrenergic stimulation is coupled to cardiac myocyte hypertrophy.

We have investigated whether alpha 1-adrenergic stimulation is coupled to myocardial hypertrophy in adult rat ventricular cells (ARVC) in culture. Exposure of ARVC to norepinephrine (NE) caused a significant increase in [3H]-leucine incorporation and total protein content in ARVC. Prazosin totally inhibited the NE-stimulated leucine uptake by ARVC. Inhibition of spontaneous contraction of ARVC with KCl or verapamil did not prevent the stimulation of hypertrophy by NE. Protooncogene c-myc expression in ARVC was induced at 1 h after exposure to NE. Above results support the premise that activation of the alpha 1-adrenergic receptors by NE induces hypertrophy of ARVC, independent of changes in contractile activity.

Animals

Interleukin 6 stimulates growth of vascular smooth muscle cells in a PDGF-dependent manner.

We have investigated the effect of interleukin 6 (IL-6) on the growth of vascular smooth muscle cells (VSMC) isolated from rat aortas. Murine recombinant IL-6 significantly increased the number of VSMC and stimulated tritiated thymidine incorporation into VSMC in a dose-dependent manner. The IL-6-induced thymidine incorporation into VSMC was totally inhibited by the Ca2+ channel blocker verapamil; however, IL-6 showed no effects on the intracellular Ca2+ level ([Ca2+]i) in VSMC. Antibody against platelet-derived growth factor (PDGF) also totally inhibited the IL-6-induced thymidine uptake. PDGF caused a significant increase in the [Ca2+]i, which was totally inhibited by verapamil. IL-6 mRNA was not detected in unstimulated "quiescent" VSMC, but its expression was stimulated by exposure of VSMC to 10% fetal bovine serum. Immunohistochemical study using anti-PDGF antibody showed that IL-6 stimulated PDGF production in VSMC. These results support the premise that IL-6 is released by VSMC in an autocrine manner and promotes the growth of VSMC via induction of endogenous PDGF production.

Animals

Complete atrioventricular block induced during left heart catheterization.

Complete atrioventricular block (CAVB) during cardiac catheterization is a rare complication. We describe a patient with preexisting complete right bundle branch block who developed CAVB during left-sided cardiac catheterization. CAVB was induced when a left-sided catheter was passed through the aortic valve. We speculate that the patient's His bundle was injured by mechanical compression. Physicians should always pay attention to the possibility of the development of CAVB during cardiac catheterization, particularly in patients with preexisting heart block.

Animals

Stenotic lesions and the bifurcation angle of coronary arteries in the young.

To determine the genesis of the high incidence of stenotic lesions of the left anterior descending artery (LAD) in the young, we have investigated the anatomical characteristics of coronary arteries in the following 3 groups; young (less than or equal to 40 yr) myocardial infarction (MI) patients with LAD lesions, young (less than or equal to 40 yr) patients without coronary stenosis and aged (greater than or equal to 60 yr) MI patients. The angle between the left main coronary artery (LMT) and the LAD in the young MI patient group (146.7 +/- 7.4 degrees) was significantly wider than those of the young normal (126.0 +/- 13.4 degrees) or the aged MI patient groups (127.1 +/- 18.6 degrees) (p less than 0.01, p less than 0.02, respectively). The angle between the LMT and the left circumflex artery (LCX), and the angle between the LAD and the LCX were not significantly different among the 3 groups. The LMT length in the young MI patient group was 18.3 +/- 4.7 mm, which was not significantly longer than those of the young normal (12.7 +/- 6.9 mm) or the aged patient groups (14.8 +/- 6.0 mm). The internal diameter ratio of the LAD and LCX was also not significantly different among the 3 groups. These results suggest that the angle between the LMT and LAD was significantly wider in young MI patients, and should be regarded as an inherited characteristic influencing the development of coronary atherosclerosis of the LAD, particularly in young MI patients.

Adult

Augmented Na,K-ATPase gene expression in spontaneously hypertensive rat hearts.

Abnormalities in cardiovascular Na,K-ATPase ion-transport function and regulation may play an important role in the pathogenesis of hypertension. However, it is not known whether these abnormalities are secondary to the effects of hypertension, such as increased pressure, or reflect an intrinsic abnormality in Na,K-ATPase gene expression and regulation. A genetic model of hypertension was used to address this issue. Na,K-ATPase alpha subunit gene expression in hearts was compared between spontaneously hypertensive rats (SHR) and normotensive Wistar-Kyoto rats (WKY). Pre-hypertensive, 4-week old SHR hearts exhibited an approximately 4 fold elevation in alpha 1 and 8 fold elevation in alpha 2 mRNA levels compared with age-matched WKY hearts. These SHR mRNA levels remained almost equivalent throughout the development of hypertension at 8 and 16 weeks of age. WKY alpha 1 and alpha 2 mRNA levels exhibited a progressive increase during the same time period. The neonatal alpha 3 mRNA isoform was detected only in pre-hypertensive (4-week) SHR hearts. We conclude that cardiac Na,K-ATPase alpha subunit gene expression is significantly altered in SHR even before the onset of hypertension. These findings suggest that an abnormality in cardiac Na,K-ATPase gene expression constitutes an early, if not primary, event in spontaneous hypertension.

Animals