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Biomedical subjects

K Kitamura

Publications and source records attributed to K Kitamura.

At least 361 records · Page 20Linked to original sources

Mutant AF-2 domain of PML-RARalpha in retinoic acid-resistant NB4 cells: differentiation induced by RA is triggered directly through PML-RARalpha and its down-regulation in acute promyelocytic leukemia.

To study the molecular mechanism of the differentiation induced by retinoic acid (RA) in acute promyelocytic leukemia (APL), we established a new RA-resistant NB4 subline, NB4/RA. The NB4/RA cells were neither differentiated by a single or a combination of RA isoforms, nor by the addition of clotrimazole (P450-inhibitor) or interferon gamma. However, the combination of RA and 8-(4-chlorophenylthio) adenosine cyclic 3',5'-monophosphate (a cAMP analog, 8-CPT-cAMP) induced differentiation. Immunostaining of NB4/RA cells using anti-PML antibody showed a microgranular pattern which was not restored even by the combination of RA and 8-CPT-cAMP, whereas the microgranular pattern in NB4 cells was rapidly restored to the normal speckled pattern by RA. Western blot analysis revealed that RA alone or the combination with 8-CPT-cAMP did not down-regulate PML-RARalpha in NB4/RA cells, which was in contrast to NB4 cells. The PML-RARalpha fusion gene and transcript in NB4/RA cells were conserved as well as the RARalpha gene and transcripts. Sequence analysis of the PML-RARalpha transcript in NB4/RA cells indicated a Pro (CCG) to Leu (CTG) mutation at codon 900 (type L) in AF-2 domain, while the RARalpha transcript had a normal sequence. These data suggest that differentiation of APL by RA is triggered directly through PML-RARalpha, and is associated with its degradation. Furthermore, there might be another mechanism of differentiation which does not require the down-regulation of PML-RARalpha and the restoration of the PML-staining pattern.

Amino Acid Sequence↗

Elevation of circulating proadrenomedullin-N terminal 20-peptide in thyrotoxicosis.

BACKGROUND AND OBJECTIVE: Adrenomedullin (AM) is a recently discovered peptide which has potent vasodilatory activity. We have found that the plasma adrenomedullin level is elevated in hyperthyroidism, suggesting a potential role of AM in the decrease of vascular resistance in thyrotoxicosis. Proadrenomedullin, a precursor of adrenomedullin, yields another peptide termed proadrenomedullin-N terminal 20-peptide (PAMP). PAMP also has potent vasodilatory activity. Although the regulation of secretion of AM and PAMP is not fully understood and the mechanism by which the plasma AM level is elevated in hyperthyroidism remains unknown, it is of interest to determine the plasma concentration of PAMP in thyrotoxicosis. DESIGN AND PATIENTS: We measured the plasma concentration of immunoreactive AM and PAMP in newly recruited untreated thyrotoxic Graves' patients using specific antibodies to each peptide. RESULTS: Not only AM, but also the plasma concentration of PAMP in thyrotoxic patients was significantly (P < 0.01) elevated (4.7 +/- 0.9 pmol/l), compared to that in control subjects (2.6 +/- 0.8 pmol/l). The correlation was marginally significant between the plasma AM concentration and serum free thyroid hormone levels. The plasma PAMP level tended to be more elevated when thyrotoxicosis was severe but the correlation was not statistically significant. Correlation was not demonstrated between the AM and PAMP levels in thyrotoxic patients. CONCLUSIONS: Elevation of the plasma adrenomedullin and proadrenomedullin-N terminal 20-peptide levels raises the possibility of involvement of these vasodilatory peptides in the haemodynamic changes in thyrotoxicosis.

Adolescent↗

Binding mode of CA074, a specific irreversible inhibitor, to bovine cathepsin B as determined by X-ray crystal analysis of the complex.

The binding mode of CA074 [N-(L-3-trans-propylcarbamoyl-oxirane-2-carbonyl)-L-isoleucyl-L-pr oline], a specific irreversible inhibitor, to bovine spleen cathepsin B was elucidated by X-ray crystal structure analysis of the complex at 2.2 A resolution (conventional R=0.185). Inconsistently with our model used for the development of CA074, the L-isoleucyl-L-proline and propylcarbamoyl moieties are located at the S' and S subsites, respectively. This unexpected binding is primarily due to (i) similar extended chain conformations (due to the same S configurations) at the oxirane C2 and C3 atoms of CA074 and (ii) the just fit formation of double hydrogen bonds between the carboxyl oxygens of L-proline and the imidazole nitrogens of His-110 and His-111 residues (these residues are missing in papain, the tertiary structure of which was used for the design of CA074). The oxirane C3 atom possessing the P' substituent is covalently bound to the Cys-29 Sgamma atom (C3-Sgamma=1.79 A) and the S configuration is maintained. The present result will provide useful information for characterizing the substrate-specificity of cathepsin B.

Animals↗

The effect of hypothermic cardiopulmonary bypass on plasma adrenomedullin in adult cardiac surgical patients.

Cardiopulmonary bypass (CPB) can evoke a systemic inflammatory response, which is accompanied by an increase in plasma cytokines that may stimulate the production of adrenomedullin (AM), a potent vasodilator peptide. This study was undertaken to investigate whether CPB influenced plasma AM concentration in 10 patients undergoing cardiac surgical procedures. We found that the plasma AM concentration increased significantly after the commencement of CPB, with the greatest increase observed at weaning from bypass (P < 0.01). After CPB, plasma AM concentration declined but still exceeded baseline significantly 24 h postoperatively. The increase in the plasma AM concentration at weaning from CPB correlated significantly with aortic cross-clamp time (r = 0.74, P < 0.05). The authors conclude that the secretion of AM into circulation is augmented by CPB in patients undergoing cardiac surgery, which suggests a possible role of AM in cardiovascular regulation during and after surgery with CPB.

Adrenergic beta-Agonists↗

Increased plasma concentrations of adrenomedullin correlate with relaxation of vascular tone in patients with septic shock.

OBJECTIVE: To investigate plasma concentrations of adrenomedullin in patients with septic shock and the potential association of these concentrations with relaxation of vascular tone. DESIGN: Prospective, case series. SETTING: Department of Emergency and Critical Care Medicine, Nara Medical University. PATIENTS: Twelve patients who fulfilled the clinical criteria for severe sepsis or septic shock (as defined by the Members of the American College of Chest Physicians/Society of Critical Care Medicine Consensus Conference Committee) and 13 healthy volunteers. INTERVENTIONS: Arterial blood samples were obtained via a 20-gauge cannula inserted into each patient's radial artery. MEASUREMENTS AND MAIN RESULTS: After extraction and purification, plasma adrenomedullin was measured by radioimmunoassay. Systemic vascular resistance index, pulmonary vascular resistance, cardiac index, and stroke volume index were determined with a thermodilution catheter. The mean plasma concentration of adrenomedullin was markedly higher in patients than in controls (226.1 +/- 66.4 [SEM] vs. 5.05 +/- 0.21 fmol/mL, p < .01). Moreover, these concentrations correlated significantly with cardiac index, stroke volume index, and heart rate values, and correlated significantly with decreases in diastolic blood pressure, systemic vascular resistance index, and pulmonary vascular resistance index values. CONCLUSIONS: Enhanced production of adrenomedullin in patients with septic shock may contribute to reduced vascular tone, hypotension, or both. More data are needed to clarify the role of adrenomedullin in the regulation of vascular tone in this patient population.

Adrenomedullin↗

Adrenomedullin--physiological regulator of the cardiovascular system or biochemical curiosity?

Adrenomedullin is a potent vasodilator peptide that exerts major effects on cardiovascular function. Adrenomedullin is biosynthesized in a wide variety of organs and cells, although it was initially isolated from human pheochromocytoma tissue. In addition to adrenomedullin, proadrenomedullin N-terminal 20 peptide was found to be processed from adrenomedullin precursor. Both adrenomedullin and proadrenomedullin N-terminal 20 peptide show hypotensive effects in anesthetized rats, but exhibit different hypotensive mechanisms. Further, adrenomedullin possesses multiple biological effects involved in cardiovascular homeostasis. Plasma adrenomedullin concentration is increased in patients with cardiovascular diseases such as hypertension, congestive heart failure, renal failure and septic shock. The present review summarizes the recent advancement of adrenomedullin research and demonstrates that adrenomedullin is one of the important vasoactive peptides involved in the physiology and pathophysiology of circulatory control and control of body fluid.

Adrenomedullin↗

trans-4-(Aminomethyl)cyclohexane carboxylic acid (T-AMCHA), an anti-fibrinolytic agent, accelerates barrier recovery and prevents the epidermal hyperplasia induced by epidermal injury in hairless mice and humans.

Because wounding the epidermis increases proteolytic activity and because disorders associated with barrier dysfunction have elevated protease activity, we studied the effect of protease inhibitors on the time course of barrier recovery and on the development of epidermal hyperplasia induced by repeated injury. After injuries to the epidermis produced by tape stripping, acetone treatment, or detergent (SDS) treatment that disrupt the barrier, a single application of 5% tranexamic acid [4-(aminomethyl)cyclohexane carboxylic acid, t-AMCHA], a well known anti-plasmin reagent, accelerated barrier recovery in both hairless mouse and human skin. In contrast, neither aminocaproic acid nor aminobutyric acid, inactive analogs of t-AMCHA, affected the time course of barrier recovery. Several trypsin-like serine protease inhibitors, e.g., leupeptin, TLCK, and PMSF, also accelerated barrier repair. In contrast other types of protease inhibitors, e.g., EDTA, pepstatin, N-ethylmaleimide, chymostatin, and TPCK, did not accelerate barrier recovery. We next evaluated the effects of daily topical application of t-AMCHA on epidermal hyperplasia, induced by repeated tape stripping or acetone treatment for 7 d. The degree of hyperplasia, quantified by the measurement of epidermal thickness, was reduced in both models by repeated applications of t-AMCHA. Finally, proteolytic activity in both human and mouse epidermis increased 1-2 h after epidermal injuries that disrupt the barrier. These results demonstrate that the inhibition of plasmin, a serine protease, accelerates barrier recovery and inhibits the epidermal hyperplasia induced by repeated barrier disruption, perhaps by decreasing the extent of attendant epidermal injury.

Animals↗

Decreased renal accumulation of biotinylated chimeric monoclonal antibody-neocarzinostatin conjugate after administration of avidin.

Murine monoclonal antibodies (mAbs) such as A7 administered to humans induce a human anti-mouse antibody response. Moreover, because Fab fragments of mAbs are able to penetrate target tumors easily, they may be more suitable than intact mAb to be carriers of anticancer agents such as neocarzinostatin (NCS), which are rapidly inactivated in the blood. To address these problems, chimeric A7 Fab fragment-NCS conjugate (chA7Fab-NCS) was produced. However, large amounts of 125I-labeled chA7Fab-NCS accumulate in the kidney and can lead to renal dysfunction. To decrease renal accumulation of chA7Fab-NCS, chA7Fab was biotinylated and administered with a subsequent injection of avidin. Human pancreatic carcinoma-bearing nude mice were injected with 125I-labeled biotinylated chA7Fab-NCS with or without subsequent administration of avidin. The accumulation of 125I-labeled biotinylated chA7Fab-NCS in tissue samples was measured at appropriate time intervals. 125I-labeled biotinylated chA7Fab-NCS was cleared more rapidly from the blood and the kidney with the administration of avidin than without it. There was no difference between tumor accumulation in these groups. The tumor/blood ratio of radioactivity of 125I-labeled biotinylated chA7Fab-NCS was significantly higher with subsequent administration of avidin than without avidin. The administration of biotinylated chA7Fab-NCS followed by avidin may enhance safety and permit the administration of larger doses of NCS without the subsequent development of renal failure. A larger amount of 125I-labeled biotinylated chA7Fab-NCS was retained in the liver and spleen with the subsequent administration of avidin than without avidin.

Adenocarcinoma↗

Effect of exercise on plasma adrenomedullin and natriuretic peptide levels in myocardial infarction.

1. We investigated the effect of exercise on plasma adrenomedullin, atrial natriuretic peptide (ANP) and brain natriuretic peptide (BNP) concentrations and studied the relationship between these peptides and haemodynamic parameters in nine patients with old myocardial infarction (MI) and in eight normal subjects. 2. The exercise protocol consisted of two fixed work loads (40 and 80 W) for 4 min each and venous blood samples were taken at rest, during each exercise stage and after exercise while monitoring the mean arterial pressure (MAP) and heart rate (HR). In MI, pulmonary arterial pressure (PAP), pulmonary capillary wedge pressure (PCWP), left ventricular end-diastolic pressure (LVEDP) and cardiac output (CO) were measured throughout exercise. 3. Adrenomedullin levels did not significantly increase with exercise. Adrenomedullin levels correlated with PAP and PCWP at rest (P < 0.05). Atrial natriuretic peptide levels correlated with PAP, PCWP and LVEDP throughout exercise (P < 0.05) but, on multiple regression analysis, PCWP correlated only with ANP (P < 0.01). Brain natriuretic peptide levels correlated with LVEDP throughout exercise (P < 0.01) and its increment correlated closely with basal BNP levels at rest (P < 0.01). 4. These results suggest that adrenomedullin does not respond to the acute haemodynamic changes of exercise, whereas ANP responds to it and PCWP is the major stimulus factor. Brain natriuretic peptide responds to exercise in proportion to the basal synthesis of BNP in patients with left ventricular dysfunction and LVEDP may play a role in increasing BNP during exercise.

Adrenomedullin↗

Hypotensive effect of chronically infused adrenomedullin in conscious Wistar-Kyoto and spontaneously hypertensive rats.

1. The hypotensive effect of chronically infused human adrenomedullin (hAM), a potent vasodilator peptide that has been reported to have a natriuretic action, was examined in normotensive Wistar-Kyoto (WKY) rats and spontaneously hypertensive rats (SHR). 2. Conscious WKY rats and SHR were infused with 200 ng/h synthetic hAM for 14 days by means of osmotic minipumps. Control groups were infused at the same schedule with 0.9% saline. Systolic blood pressure (SBP) and daily urinary excretion of Na+ and K+ were measured before and during the infusion period. In addition, plasma renin activity (PRA), aldosterone and hAM concentrations were measured on day 14 of infusion. 3. A significant reduction in SBP was observed in hAM-treated SHR at day 2 and SBP remained significantly lower throughout the experiment compared with control SHR. Similarly, SBP in the hAM-treated WKY rats was found to be significantly lower than in control WKY rats during infusion. However, the hypotensive effect was not accompanied by any significant increase in urinary volume or Na+ excretion in hAM-treated rats of either strain. Chronic infusion with hAM significantly suppressed PRA and lowered the concentration of plasma aldosterone in WKY rats but not in SHR. The plasma aldosterone in WKY rats and SHR were 0.9 +/- 0.4 and 0.6 +/- 0.2 fmol/mL, respectively. 4. These findings demonstrate that chronically infused hAM has a hypotensive effect in both WKY rats and SHR without an increase in urinary volume or Na+ excretion at a plasma AM concentration within the physiological limit.

Adrenomedullin↗

Plasma concentrations of adrenomedullin correlate with the extent of pulmonary hypertension in patients with mitral stenosis.

OBJECTIVE: To examine the pathophysiological significance of adrenomedullin in the pulmonary circulation by investigating the relation between plasma concentrations of adrenomedullin and central haemodynamics in patients with mitral stenosis. METHODS: Plasma concentrations of adrenomedullin in blood samples obtained from the femoral vein, pulmonary artery, left atrium, and aorta were measured by a newly developed specific radio-immunoassay in 23 consecutive patients with mitral stenosis (16 females and seven males, aged 53 (10) years (mean (SD)) who were undergoing percutaneous mitral commissurotomy. RESULTS: Patients with mitral stenosis had higher concentrations of adrenomedullin than age matched normal controls (3.9 (0.3) v 2.5 (0.3) pmol/l, p < 0.001). There was a reduction in adrenomedullin concentrations between the pulmonary artery and the left atrium (3.8 (0.2) v 3.2 (0.4) pmol/l, p < 0.001). The venous concentrations of adrenomedullin correlated with mean pulmonary artery pressure (r = 0.65, p < 0.001), total pulmonary vascular resistance (r = 0.83, p < 0.0001), and pulmonary vascular resistance (r = 0.65, p < 0.001). Plasma concentrations of adrenomedullin did not change immediately after percutaneous mitral commissurotomy; however, they decreased significantly one week later. CONCLUSIONS: Plasma concentrations of adrenomedullin are increased in patients with mitral stenosis. This may help to attenuate the increased pulmonary arterial resistance in secondary pulmonary hypertension due to mitral stenosis.

Adrenomedullin↗

Membrane currents evoked by histamine in rabbit basilar artery.

The membrane current evoked by histamine in isolated smooth muscle cells from rabbit basilar artery was investigated using the perforated-patch technique. When 10 microM histamine was applied in the bath at a holding potential of -60 mV, an inward current (79.2 +/- 55.8 pA) was transiently activated. An outward current was additionally evoked by 10 microM histamine when the membrane was held at -40 mV or less negative potentials. The outward but not the inward current was completely blocked by 100 nM charybdotoxin. A higher concentration of histamine (30 microM) failed to produce the inward current (3.4 +/- 4.8 pA) when Cl- concentration in the pipette was reduced. The apparent reversal potential of the inward current induced by histamine in physiological salt solution, in high-tetraethylammonium (TEA+) solution (bath), or in low-Cl- solution (pipette) was -6.3 +/- 4.4, -7.5 +/- 4.9, or -45.8 +/- 8.5 mV, respectively. Niflumic acid (100 microM) reversibly blocked the inward current, which was also blocked by 10 microM pyrilamine but not by 10 microM cimetidine. When histamine was continuously applied in the bath, spontaneous transient inward currents were generated. Removal of external Ca2+ or addition of 1 microM nicardipine or 2 mM caffeine reduced the amplitude of the histamine-induced inward current. These results suggest that histamine induces an inward current via H1 receptors at the resting membrane potential, possibly due to activation of Cl- currents. The Cl- inward current might be generated by elevation of intracellular Ca2+ via histamine receptors. The inward current may also contribute to control of the Ca2+ influx via a change in the membrane potential.

Animals↗

Audiologic findings in patients with a point mutation at nucleotide 3,243 of mitochondrial DNA.

A mitochondrial tRNALeu(UUR) mutation at nucleotide 3,243 is known to be found in most patients with MELAS (mitochondrial myopathy, encephalopathy, lactic acidosis, and strokelike episodes) and has also been identified in several families with maternally inherited diabetes mellitus and hearing loss. We report here audiologic features in patients with hearing loss associated with the mutation. Four patients without and five with MELAS were studied. Most of the patients had bilateral progressive sensorineural hearing loss. The most common shape of the audiogram was sloping, while cases in the advanced stages had flat audiograms. Speech discrimination scores were generally poor and did not parallel the degree of hearing loss. The present study suggests that the lesion for hearing loss could include both cochlear and retrocochlear involvement, but does not demonstrate a significant difference in the audiologic findings between patients with and without MELAS.

Adolescent↗

Audiologic features of hearing loss due to the 1,555 mutation of mitochondrial DNA.

We proved a 1,555 mutation of mitochondrial DNA in one member of each of three families with familial streptomycin hearing loss, and report the pedigrees and audiologic features. DNA was extracted by the standard method. The 1,555 A to G mutation was identified in all three patients and confirmed by direct sequencing of the polymerase chain reaction products by a cycle sequencing method. On audiograms, the hearing loss was sensorineural, bilateral, and symmetric, showing a high-tone loss or a profound loss particularly in the high-tone range, and the "symmetry law" of Langenbeck was applicable. The superimposed audiograms of members of one family did not cross themselves, proving the applicability of the "never-cross principle of audiograms."

Adult↗

Eugenol activates Ca(2+)-permeable currents in rat dorsal root ganglion cells.

Although little is known about the mechanism of action of eugenol, some related compounds have been compared with capsaicin derivatives in terms of the relationship between their chemical structure and activity. To elucidate whether eugenol and capsaicin act via a common mechanism at the neuronal membrane, we investigated the effects of eugenol on rat DRG neurons using the whole-cell patch-clamp technique. Eugenol (0.125-1 mmol/L) produced an inward current in a concentration-dependent manner. The reversal potential for this inward current was around 0 mV in PSS. In Na(+)-deficient solutions, the amplitude of the inward current was slightly reduced at negative holding potentials, whereas in Ca(2+)-free solution, it was markedly reduced at all holding potentials tested. The reversal potential was not changed by superfusion with either solution. Niflumic acid (100 mumol/L) produced a significant inhibition of the current without a change in the reversal potential. These results suggest that eugenol activates a Ca(2+)-permeable channel as well as a Cl- channel. The latter channel may have been activated by the increase in intracellular Ca2+ concentration caused by the activation of the Ca(2+)-permeable channel. Capsazepine (10 mumol/L) partially inhibited the eugenol-induced current and completely inhibited the capsaicin-induced current. Eugenol (1 mmol/L) produced an inward current even after occurrence of desensitization of the capsaicin-induced current had occurred. Our results suggest that eugenol activates a Ca(2+)-permeable ion channel in rat DRG neurons through two different mechanisms: a capsaicin receptor-mediated pathway and a pathway independent of the capsaicin-receptor.

Animals↗