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Biomedical subjects

K Akimoto

Publications and source records attributed to K Akimoto.

At least 55 records · Page 3Linked to original sources

Requirement of atypical protein kinase clambda for insulin stimulation of glucose uptake but not for Akt activation in 3T3-L1 adipocytes.

Phosphoinositide (PI) 3-kinase contributes to a wide variety of biological actions, including insulin stimulation of glucose transport in adipocytes. Both Akt (protein kinase B), a serine-threonine kinase with a pleckstrin homology domain, and atypical isoforms of protein kinase C (PKCzeta and PKClambda) have been implicated as downstream effectors of PI 3-kinase. Endogenous or transfected PKClambda in 3T3-L1 adipocytes or CHO cells has now been shown to be activated by insulin in a manner sensitive to inhibitors of PI 3-kinase (wortmannin and a dominant negative mutant of PI 3-kinase). Overexpression of kinase-deficient mutants of PKClambda (lambdaKD or lambdaDeltaNKD), achieved with the use of adenovirus-mediated gene transfer, resulted in inhibition of insulin activation of PKClambda, indicating that these mutants exert dominant negative effects. Insulin-stimulated glucose uptake and translocation of the glucose transporter GLUT4 to the plasma membrane, but not growth hormone- or hyperosmolarity-induced glucose uptake, were inhibited by lambdaKD or lambdaDeltaNKD in a dose-dependent manner. The maximal inhibition of insulin-induced glucose uptake achieved by the dominant negative mutants of PKClambda was approximately 50 to 60%. These mutants did not inhibit insulin-induced activation of Akt. A PKClambda mutant that lacks the pseudosubstrate domain (lambdaDeltaPD) exhibited markedly increased kinase activity relative to that of the wild-type enzyme, and expression of lambdaDeltaPD in quiescent 3T3-L1 adipocytes resulted in the stimulation of glucose uptake and translocation of GLUT4 but not in the activation of Akt. Furthermore, overexpression of an Akt mutant in which the phosphorylation sites targeted by growth factors are replaced by alanine resulted in inhibition of insulin-induced activation of Akt but not of PKClambda. These results suggest that insulin-elicited signals that pass through PI 3-kinase subsequently diverge into at least two independent pathways, an Akt pathway and a PKClambda pathway, and that the latter pathway contributes, at least in part, to insulin stimulation of glucose uptake in 3T3-L1 adipocytes.

3T3 Cells↗

Spring coil retraction in coil occlusion of persistent ductus arteriosus.

AIMS: To present the short and intermediate term results of coil occlusion of persistent ductus arteriosus and the results of radiographic measurements of spring coils implanted to treat patent ducts. PATIENTS: 22 children underwent coil occlusion. Their ages ranged from 2 years 9 months to 12 years 10 months (mean (SD) age, 6.5 (3.6) years). The duct diameter ranged from 1.0 to 3.5 mm at the narrowest point (mean 2.6 (0.7) mm). In 11 of the children regular coils were implanted using the non-attached system, while in the other 11 the detachable coil embolisation system was used. RESULTS: 12 children (55%) had no significant residual leaks immediately after procedures involving a single coil delivery. The remaining 10 (45%) had residual leaks immediately after the procedure, although no patient with a large duct showed residual leakage 18 months after the procedure. Radiographic measurement of the coils showed that all implanted coils retracted to 65-85% of their original size immediately after occlusion. This retraction was more evident in patients showing spontaneous closure of the residual shunt or having a coil 8 mm in diameter. CONCLUSIONS: Coil embolisation is an acceptable method for occluding persistent ductus arteriosus. Retraction of implanted coils is common in the follow up period. Such retraction may be related to spontaneous closure of residual shunt after embolisation.

Child↗

Antihypertensive effect of sesamin. III. Protection against development and maintenance of hypertension in stroke-prone spontaneously hypertensive rats.

The antihypertensive effect of sesamin, a lignan from sesame oil, was examined using salt-loaded and unloaded stroke-prone spontaneously hypertensive rats (SHRSP). The animals at 6 weeks of age were separated into a salt-loaded group and an unloaded group. Salt-loaded animals were maintained on 1% NaCl drinking water. Each group was further divided into two groups: normal-diet group and sesamin-diet group. Systolic blood pressure of all animals was monitored once weekly. At the end of the feeding periods, cardiovascular hypertrophy and renal damage were evaluated. In the salt-loaded group, sesamin feeding significantly suppressed the development of hypertension, and efficient suppression was maintained from 9 to 26 weeks (e.g., 215+/-4 vs. 180+/-4 mmHg, at 17 weeks old). The left ventricle plus septum weight-to-body weight ratio was slightly but significantly lowered by sesamin feeding. When the degree of vascular hypertrophy of the aorta and superior mesenteric artery was histochemically evaluated, wall thickness and wall area of these vessels were significantly decreased by the sesamin feeding. Histological renal damage such as thickening of the tunica intima and fibrinoid degeneration of the arterial wall were often observed in the normal-diet group, but this damage was efficiently reduced in the sesamin-fed animals. On the other hand, in the salt-unloaded group, only a slight and nonsignificant suppressive effect of sesamin on the development of hypertension was observed. Although the wall area of the aorta was significantly decreased by the sesamin feeding, other vascular parameters were not ameliorated. The incidence of histological renal damage tended to decrease in sesamin-fed animals, but these alterations were not statistically significant. Thus, sesamin feeding was much more effective as an antihypertensive regimen in salt-loaded SHRSP than in unloaded SHRSP, thereby suggesting that sesamin is more useful as a prophylactic treatment in the malignant status of hypertension and/or hypertension followed by water and salt retention.

Animals↗

Molecular characterization of a dual endothelin-1/Angiotensin II receptor.

BACKGROUND: The molecular recognition theory (MRT) provides a conceptual framework that could explain the evolution of intermolecular and intramolecular interaction of peptides and proteins. As such, it predicts that binding sites of peptide hormones, and its receptor binding sites were originally encoded by and evolved from complementary strands of genomic DNA. MATERIALS AND METHODS: On the basis of principles underlying the MRT, we screened a rat brain complementary DNA library using an AngII followed by an endothelin-1 (ET-1) antisense oligonucleotide probe, expecting to isolate potential cognate receptors. RESULTS: An identical cDNA clone was isolated independently from both the AngII and ET-1 oligonucleotide screenings. Structural analysis revealed a receptor polypeptide containing a single predicted transmembrane region with distinct ET-1 and AngII putative binding domains. Functional analysis demonstrated ET-1- and AngII-specific binding as well as ET-1- and AngII-induced coupling to a Ca2+ mobilizing transduction system. Amino acid substitutions within the predicted ET-1 binding domain obliterate ET-1 binding while preserving AngII binding, thus defining the structural determinants of ET-1 binding within the dual ET-1/AngII receptor, as well as corroborating the dual nature of the receptor. CONCLUSIONS: Elucidation of the dual ET-1/AngII receptor provides further molecular genetic evidence in support of the molecular recognition theory and identifies for the first time a molecular link between the ET-1 and AngII hormonal systems that could underlie observed similar physiological responses elicited by ET-1 and AngII in different organ systems. The prominent expression of the ET-1/AngII receptor mRNA in brain and heart tissues suggests an important role in cardiovascular function in normal and pathophysiological states.

Amino Acid Sequence↗

The membrane-type-matrix metalloproteinase/matrix metalloproteinase-2/tissue inhibitor of metalloproteinase-2 system in periprosthetic connective-tissue remodeling in loose total-hip prostheses.

The aim of the present study was to investigate the proteolytic potential and localization of matrix metalloproteinase (MMP)-2 in relation to its regulatory protein, membrane-type-MMP (MT1-MMP), and tissue inhibitor of metalloproteinase-2 (TIMP-2), as well as to clarify an important step in the cascade of periprosthetic connective-tissue remodeling in loose total-hip prostheses. Immunohistochemical analysis revealed increased expression of MT1-MMP, MMP-2, and TIMP-2 in fibroblasts, synovial lining-like cells, and endothelial cells, as well as, to some extent, in monocyte/macrophage-like cells in both tissues from the bone-implant interface and reactive cellular tissues from regenerating capsules in loose hip joints, when compared with control fibrous tissues between bone and implants retrieved from unloosened hip joints. In loose hip joints, reverse transcription-PCR analysis showed the presence of MT1-MMP, MMP-2, and TIMP-2 mRNA in both the bone-implant interface and regenerating capsular tissues. Increased protein levels of MMP-2 and TIMP-2 were also demonstrated by an ELISA, and those of MT1-MMP were shown by immunoblot analysis. Gelatin-zymographic analysis confirmed the presence of both pro- and active forms of MMP-2, which suggested the in situ activation of MMP-2 by MT1-MMP in the loose hip joints. Collectively, these data suggest that the MT1-MMP/MMP-2/TIMP-2 system participates in the extracellular matrix degradation and periprosthetic connective-tissue remodeling in loose hip joints, and may thus contribute to the periprosthetic weakening, loosening, and osteolysis that can occur around implants.

Aged↗

Involvement of protein kinase C in the activation of extracellular signal-regulated kinase 1/2 by UVC irradiation.

UVC irradiation activates mitogen-activated protein kinases (MAPKs), including ERK, JNK, and P38. This study examined the role of protein kinase C (PKC) in the regulation of UVC-stimulated MAPKs activation. Either the depletion of PKC by prolonged treatment of cells with 12-O-tetradecanoylphorbol-13-acetate (TPA) or the inhibition of PKC by a selective PKC inhibitor, UCN-01-ME, attenuated UVC-activation of ERK1/2, keeping the activation of JNK1/2 intact. However, K252a, a non-selective PKC inhibitor, inhibited the activation of both ERK1/2 and JNK1/2 by UVC. In three isoforms of PKC (alpha, delta, epsilon) examined, PKC epsilon shows the most evident translocation, a temporal association with cell membrane, upon the UVC irradiation of NIH 3T3 cells. These results suggest that PKC is acting in the UVC-dependent activation of ERK1/2, and PKC epsilon is one of the PKC isozymes playing such a role.

3T3 Cells↗

Glucocorticoid regulation of nitric oxide and tetrahydrobiopterin in a rat model of endotoxic shock.

Wistar rats injected intravenously with bacterial lipopolysaccharide (LPS) developed endotoxic shock with severe hypotension, significantly elevated concentrations of NOx (nitrate and nitrite) and biopterin in the plasma, and lung expression of high levels of the mRNAs for inducible NO synthase (iNOS) and GTP cyclohydrolase I (GTPCH). Pretreatment of the rats with dexamethasone (DEX) prevented the hypotension, attenuated the increase in plasma NOx and biopterin concentrations, and significantly inhibited the increase in lung biopterin content caused by LPS treatment. DEX also inhibited the induction of iNOS mRNA but not GTPCH mRNA. Adrenalectomized (ADX) rats developed a more severe form of circulatory shock in response to low-dose LPS accompanied by a substantial increase in circulating NOx as well as biopterin, which was prevented by pretreatment with DEX. Thus, glucocorticoids may protect against endotoxic shock by inhibiting the induction of NO synthesis, not only by attenuating iNOS protein induction but also by limiting biopterin availability. Although endogenous glucocorticoids may inhibit the production of NO as well as biopterin after LPS in rats, the mechanisms for these effects appear to be different.

Adrenalectomy↗

Induction of NO synthesis by lipoteichoic acid from Staphylococcus aureus in J774 macrophages: involvement of a CD14-dependent pathway.

Lipoteichoic acid (LTA), a wall fragment of gram-positive bacteria, induces an isoform of NO synthase (iNOS) in vascular smooth muscle cells and macrophages which produces large quantities of NO and profound vasodilation in rats; this process may be involved in the cause of gram-positive septic shock. This study investigates the effect of LTA from Staphylococcus aureus on NO synthesis and iNOS mRNA induction in a mouse macrophage cell line (J774). LTA caused a time- and dose-dependent increase in NO production and a marked induction of iNOS mRNA. The induction of NO synthesis and iNOS gene expression in response to LTA was significantly inhibited by an anti-mouse CD14 monoclonal antibody. Studies utilizing a mutant cell line (J7.DEF3), which is defective in the expression of a CD14 antigen, showed that the increase in NO and iNOS mRNA caused by LTA is profoundly depressed in J7.DEF3 cells compared to that in parent J774 cells. In contrast, interferon-gamma produced a similar concentration-dependent increase in NO formation in both cell types. Thus, CD14 is involved in the signal transduction events leading to the enhanced expression of iNOS mRNA and activity elicited by LTA in murine macrophages. We propose that agents which block CD14-dependent events may be useful therapeutics in gram-positive shock.

Animals↗

Apoptosis as a possible cause of wall thinning in end-stage hypertrophic cardiomyopathy.

A 15-year-old boy with hypertrophic cardiomyopathy died of congestive heart failure with progressive left ventricular wall thinning with poor systolic function. Microscopic examination revealed patchy fibrosis in the ventricular myocardium with wall thinning, and immunohistochemical evaluation of apoptosis showed apoptotic cells and bodies in the destroyed myocytes along the border between the fibrotic area and myofibril.

Adolescent↗

Late persistent expressions of ICAM-1 and VCAM-1 on myocardial tissue in children with lymphocytic myocarditis.

BACKGROUND: Both intercellular adhesion molecule-1 (ICAM-1) and vascular cell adhesion molecule-1 (VCAM-1) have been implicated in cardiac allograft rejection. However, there is little information about the relationship between the expression of these adhesion molecules and myocarditis in children. METHODS AND RESULTS: Immunoreactivities of ICAM-1 and VCAM-1 were examined by enzyme immunoassay in 31 biopsy specimens obtained from 11 pediatric patients with biopsy-proven myocarditis or cardiomyopathy. Five of the 11 patients had clear evidence of acute myocarditis. The other 6 had ECG abnormalities identified by mass screening for heart disease, and subsequently had been histologically diagnosed as having non-specific cardiomyopathy. The period between onset of myocarditis or identification of ECG abnormality and immunohistochemical studies was 23 to 60 days and 8 months to 3 years, respectively. Expression of ICAM-1 and VCAM-1 was assessed by counting ICAM-1 and VCAM-1 positive vessels and dividing by the total number of vessels. ICAM-1 was significantly present on 81% (P < 0.01) of myocardial tissue samples in the 5 patients with healing-stage acute myocarditis, and on 45% (P < 0.05) in the remaining 6 patients with non-specific cardiomyopathy, compared with 24% in control specimens obtained from right ventricular muscle resected at surgery for tetralogy of Fallot. VCAM-1 was also present on 50% (P < 0.05) of the samples from the 5 patients with acute myocarditis, but was not present in those with non-specific cardiomyopathy. CONCLUSION: This persistent expression of ICAM-1 suggests that myocardial cell damage may persist immunologically for a long period in myocarditis. In addition, immunostaining for these adhesion molecules may be diagnostic value in clinically silent lymphocytic myocarditis and chronic cardiomyopathy.

Adolescent↗

Pyrrolidine dithiocarbamate inhibits cytokine-induced VCAM-1 gene expression in rat cardiac myocytes.

We investigated whether interleukin-1alpha (IL-1) would induce gene expression of vascular cell adhesion molecule-1 (VCAM-1) in cardiac myocytes and, if so, whether nuclear factor kappaB (NF-kappaB) was involved. We evaluated the VCAM-1 gene expression in cultured neonatal rat cardiac myocytes by the reverse transcription-polymerase chain reaction. IL-1 alone or together with interferon-gamma (IFN) induced VCAM-1 gene expression in the cells. Induction of VCAM-1 gene expression in response to IL-1 and IFN was antagonized in a concentration-dependent manner by pyrrolidine dithiocarbamate, an inhibitor of NF-kappa b activation (25-100 microM). Tosyl-lysine-chloromethyl ketone, another inhibitor of NF-kappa b activation, also inhibited the expression of the VCAM-1 gene in response to IL-1 and IFN. Thus, VCAM-1 gene expression appeared to be mediated by NF-kappa b in cardiac myocytes, and this cardiac myocyte VCAM-1 may be involved in cardiac inflammatory disorders. Disruption of expression of VCAM-1 by inhibition of NF-kappa b activation may indicate a target for pharmacologic intervention intended to limit cardiac inflammation.

Animals↗

Activation of macrophages by lactoferrin: secretion of TNF-alpha, IL-8 and NO.

When macrophages were cultured with lactoferrin, cytokines such as tumor necrosis factor (TNF-alpha), interleukin 8 (IL-8) and nitric oxide (NO) were secreted. Secretion of TNF-alpha peaked at 6 h of incubation in the presence of lactoferrin and then declined. About 80% of the maximum secretion of IL-8 was observed at 6 h of incubation. The concentration of IL-8 in the culture medium remained almost constant between 24-72 h. In contrast, no significant effect on NO secretion was observed at 6 h, but a significant effect was observed at 24 h and secretion gradually increased between 24-72 h. The effects of lactoferrin on the secretion of TNF-alpha, IL-8 and NO were dose-dependent and lactoferrin had a significant effect on secretion of at concentrations greater than 10 mg/ml. The use of reverse transcription-polymerase chain reaction (RT-PCR) showed that the results obtained were consistent with the cytokine secretion results. It is concluded that lactoferrin activates macrophages which result in the secretion of TNF-alpha, IL-8 and NO.

Animals↗

Production of 5,8,11-Eicosatrienoic Acid (Mead Acid) by a (Delta)6 Desaturation Activity-Enhanced Mutant Derived from a (Delta)12 Desaturase-Defective Mutant of an Arachidonic Acid-Producing Fungus, Mortierella alpina 1S-4.

Enhanced production of 5,8,11-eicosatrienoic acid (Mead acid, 20:3(omega)9) was attained by a mutant fungus, Mortierella alpina M209-7, derived from (Delta)12 desaturase-defective M. alpina Mut48. The 20:3(omega)9 production by M209-7 was 1.3 times greater than that by its parent strain, Mut48. This is thought to be due to its enhanced (Delta)6 desaturation activity, which was 1.4 times higher than that of Mut48. In both strains, 87 to 88% of the total lipids comprised triacylglycerol (TG) and 85% of 20:3(omega)9 was contained in TG. On optimization of the culture conditions for M209-7, earlier glucose feeding and shifting of the growth temperature from 28 to 19(deg)C on the second day were shown to be effective. Under the optimal conditions with a 10-liter jar fermentor, 20:3(omega)9 production reached 1.65 g/liter of culture medium (corresponding to 118 mg/g of dry mycelia and 28.9% of total fatty acids), which is about twice that reported previously (0.8 g/liter).

Journal Article↗

Antenatal detection of Meckel-Grüber syndrome in only one dizygotic twin following in vitro fertilization and embryo transfer.

The first case of Meckel-Grüber syndrome in a dizygotic twin pregnancy following in vitro fertilization and embryo transfer is reported. An ultrasound examination at 26 weeks of gestation revealed multiple malformations of the presenting twin: the combination of an occipital encephalomeningocele, bilateral polycystic kidneys and postaxial polydactyly was suggestive of Meckel-Grüber syndrome. Diagnosis was confirmed after birth. The importance of this case is stressed since particular care must be taken to avoid multiple pregnancies in couples at risk undergoing assisted reproduction.

Diseases in Twins↗

Inhibitory effect of heparin on collagen fiber formation in hepatic cells in culture.

When M cells derived from rat liver and then transformed by treatment with 4-dimethylaminoazobenzene were cultured in vitro, the culture became covered with a collagen fiber network. When the M cells were cultured in the presence of more than 10 micrograms/ml heparin, no collagen fiber formation was observed. The inhibitory effect was evident at 5 micrograms/ml but was not significant at 1 microgram/ml. High performance liquid chromatography (HPLC) showed that about 50% decrease in hydroxyproline content occurred in the presence of 10 micrograms/ml heparin. The inhibition by heparin reached a plateau at 10 micrograms/ml. Other glycosaminoglycans such as heparan sulfate, keratan sulfate, chondroitin sulfate B and chondroitin sulfate C did not show a significant effect on hydroxyproline content. Modified heparins slightly decreased hydroxyproline content, but the collagen fibers were still observed. These results indicate that the native structure of heparin is important to attain the complete inhibition of collagen fiber formation; the basic structure, (-GlcUA or IdUA beta 1-4 GlcNSO3-)n, is important. HPLC, Northern blot analysis and Western blot analysis for rat type I collagen revealed that collagen synthesis is independent of heparin, but that collagen fiber formation is prevented by heparin.

Animals↗

[Development of KRN7000, derived from agelasphin produced by Okinawan sponge].

New glycosphingolipids, named agelasphins, have been isolated as antitumoral compounds from an extract of a marine sponge, Agelas mauritianus. The absolute configurations of agelasphins were elucidated by the total synthesis. Various analogues of agelasphins were also synthesized and the relationship between their structures and biological activities was examined using an MLR assay. From the results, KRN7000, (2S,3S,4R)-1-O-(alpha-D- galactopyranosyl)-2-(N-hexacosanoylamino)-1,3,4-octadecanetriol , was selected as a candidate for clinical application. KRN7000 markedly stimulated lymphocytic proliferation in allogeneic MLR, and showed potent tumor growth inhibitory activities in B16-bearing mice and strongly inhibited tumor metastasis, suggesting that KRN7000 is a potent biological response modifier. These biological effects were exerted by the activation of dendritic cells by KRN7000.

Animals↗

Delayed cytocidal effect of lignin derivatives on virally transformed rat fibroblasts.

When rat fibroblasts (Ad12-3Y1-Z19) transformed with adenovirus type 12 were cultured with lignin derivative (acetyl or sulfonyl), the cells grew for 2 to 3 days at the same rate as the control cells cultured without lignin derivative, then rapidly died. This cytocidal effect was independent of the cell population density. The lag time was longer than the doubling time (-24 h) of Ad12-3Y1-Z19 cells. Other polyanions such as dextran sulfate and glycosaminoglycans did not show significant inhibitory effect on Ad12-3Y1-Z19 cell growth. In order to determine whether or not this cytocidal effect is general for every cell line, we examined 14 cell lines derived from tumor tissues and normal tissues, and 8 cell lines transformed with viruses, chemical carcinogens, or oncogenes. Of these cell lines, many responded to lignin derivatives with inhibition of cell growth, while in some cell lines no inhibitory effect of lignin derivatives was observed. The cytocidal effect was observed in only Ad12-3Y1-Z19 cells. This may be a new type of cytocidal phenomenon.

Adenoviridae↗

[Trial of radiation and cisplatin, carboplatin combination chemotherapy for advanced cancer (W-platinum chemoradiotherapy].

Cisplatin was reported to be an effective radiation sensitizing agent. The effect was also reported to depend on dose intensity. But the incidence of complication was demonstrated in the relationship with the dose escalation curve of anti-cancer agent. The major side effect of CDDP was occasionally serious, as in renal toxicity or bone marrow suppression. W-Platinum is the trial of concurrent chemoradiotherapy. Cisplatin and its derivative, Carboplatin, were selected as effective radiation sensitizing agents and to obtain high-dose intensity and additive cytotoxicities by interaction between the two drugs. Concomitant administration of two platinum anti-cancer agents has the advantage of reduction of side effects compared with administration of single anti-cancer agents to the same degree. The first case was a recurrence of epipharyngeal cancer after 3 courses of chemotherapy, including CDDP or CBDCA. This case was suspected to be cancer-resistant to CDDP. The second case was post-operative residual lung cancer. The pre-operative diagnosis was stage III A. A poor prognosis was expected. This case was disease-free and alive for 1 year after W-Platinum administration. The most frequent complication was bone marrow suppression. Patients were rescued from bone marrow suppression with administration of G-CSF. Renal toxicity could be suppressed with sufficient hydration.

Adenocarcinoma↗