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Biomedical subjects

K Fukuda

Publications and source records attributed to K Fukuda.

At least 415 records · Page 23Linked to original sources

Cyclic AMP-dependent modulation of N- and Q-type Ca2+ channels expressed in Xenopus oocytes.

Xenopus oocytes were used for investigating the cAMP-dependent modulation of N- and Q-type Ca2+ channels. Treatments to increase intracellular cAMP concentration with forskolin (FK) and 3-isobutyl-1-methylxanthine (IBMX) markedly potentiated Q-type Ca2+ channel current in oocytes coexpressing alpha 1A and beta subunits, and the enhancement was reversed by protein kinase A inhibitors. Moderate enhancement was observed by FK+IBMX in N-type channel current, of which potentiation was equivalent to that of endogenous Ca2+ channel current being activated by exogenously-expressed beta subunits. No potentiation was observed in the oocyte-native Ca2+ channel current. These results suggest that Q-type Ca2+ channels are more susceptible to the protein kinase A-mediated facilitation than N-type channels. A significant role of Ca2+ channel beta subunits for the cAMP-dependent positive modulation was also suggested.

1-Methyl-3-isobutylxanthine↗

Cellular response in the cerebellum after midline traumatic brain injury in the rat.

We evaluated the response of microglia and Purkinje cells in the cerebellum at 1, 2, 3, 7 and 10 days after a midline fluid percussion brain injury. There was marked activation of microglia and a significant loss of Purkinje cells in the vermis by 7 days postinjury. These findings emphasize the vulnerability of the cerebellum to midline traumatic brain injury.

Amino Acids↗

Swimming training improves brown-adipose-tissue activity in young and old mice.

The impairment of brown adipose tissue (BAT) thermogenic activity with aging has been well documented. The current study investigated the effect of swimming training on BAT activity in 2-month-old (young) and 26-month-old (old) male mice. The trained mice underwent a 6-week swimming program (1 h/day, 5 days/week) in water at 35-36 degrees C. Compared with young sedentary mice, the BAT-to-body mass ratio was markedly smaller in old sedentary mice, accompanied by the decreased amount of protein, whereas there was no significant difference in uncoupling protein (UCP) content, UCP mRNA expression, or guanosine 5'-diphosphate (GDP) binding (an index of UCP activity) between young and old mice. Meanwhile, the swimming training definitely increased BAT mass and its protein content in both the young and old mice, suggesting hypertrophy and hyperplasia. In addition, after the swimming training, the amounts of protein, UCP antigen, and GDP binding in the mitochondria recovered from BAT of both mice increased significantly as compared with the respective sedentary groups, while the expression of UCP mRNA did not vary substantially. These findings suggest that, irrespective of age, swimming training enhances the thermogenic activity and capacity in BAT of mice.

Adipose Tissue, Brown↗

Possible mechanisms of mitral regurgitation in dilated hearts: a study using transesophageal echocardiography.

HYPOTHESIS: This study was undertaken to clarify the mechanisms of mitral regurgitation (MR) in dilated hearts. METHODS: In all, 68 patients with dilated heart and MR, including 26 patients with dilated cardiomyopathy (DCM), 24 with prior anterior myocardial infarction (A-MI), and 18 with prior posteroinferior myocardial infarction (I-MI), as well as 25 normal subjects were examined by transesophageal two-dimensional and color Doppler echocardiography. RESULTS: The maximum area of the MR signal in the DCM group correlated positively with the anteroposterior diameter of the mitral annulus at late systole. Although the coaptation edge length of the anterior and posterior mitral leaflets appeared shorter in dilated hearts than in the hearts of controls, a significant difference did not exist. The length of the coaptation edge correlated negatively with the maximum area of the MR signal in all dilated hearts, and characteristic systolic displacement of the coaptation point of both mitral leaflets occurred. The MI groups demonstrated anterior and posterior displacement in the direction of the short axis of the left ventricle in the A-MI and I-MI groups, respectively. However, the DCM group demonstrated inferior displacement toward the long axis of the left ventricle; its magnitude correlated positively with the maximum area of the MR signal. CONCLUSION: A major cause of MR in dilated hearts is mitral malcoaptation due to displacement of the coaptation point of the mitral leaflets along the long or short axis of the left ventricle. This is caused by left ventricular enlargement and/or asynergy of the left ventricular wall, rather than by a decrease in mitral coaptation edge length due to mitral annular dilation.

Adult↗

Growth suppression of a cervical cancer cell line (TMCC-1) by the human wild-type p53 gene.

To investigate the effects of human wild-type p53 expression on the proliferation of cervical carcinoma cells, a plasmid, pMO7-hp53, which contains a full-length cDNA of the human wild-type p53 (wt-p53) gene, was transfected into a cell line (TMCC-1) derived from an endocervical type, human papilloma virus-positive adenocarcinoma of the uterine cervix. The exogenous wt-p53 expression induced growth suppression, morphological changes, and loss of anchorage-independent growth of the tumor cells. As the wt-p53 gene apparently plays a negative role in growth regulation of cervical carcinoma cells, this gene may possibly be of some use for treating subjects with a cervical carcinoma.

Adenocarcinoma↗

New method for evaluation of perigastric invasion of gastric cancer by right lateral position CT.

The purpose of this study was to evaluate usefulness of right lateral position CT in determining invasion of gastric cancer into adjacent organs. We assessed whether position shift, a change in the relative location of a gastric tumor and adjacent organs between the supine position and right lateral position CT, was a useful sign for absence of invasion into perigastric organs. In 37 patients with advanced gastric cancer with doubtful invasion into adjacent organs by conventional CT after 500 ml water oral intake, additive right lateral CT was performed. Of 24 cases of lesions in the gastric body, 16 had a position shift and no invasion into adjacent organs at surgery (T3), and 8 had no position shift and invasion (T4). The accuracy was 100%. Six gastric cardial and 7 pyloric tumors showed no position shift, and 3 cardial and 2 pyloric tumors were proved to be noninvasive (T3). The accuracy of cardial and pyloric tumor was 50 and 71%. We concluded that position shift may be useful in the diagnosis of invasion of adjacent organs by gastric cancer, limited to in cases with gastric body cancer.

Adult↗

Primary structure of mannuronate lyases SP1 and SP2 from Turbo cornutus and involvement of the hydrophobic C-terminal residues in the protein stability.

The complete amino acid sequences of two isoforms, SP1 and SP2, of mannuronate lyase from a wreath shell, Turbo cornutus, were determined to elucidate amino acid residues responsible for causing the more stable protein conformation of SP2. The sequences of the two isoforms were identical except for two hydrophobic C-terminal amino acid residues of SP2, Ile and Leu, which were additionally attached to Thr of the C-terminal residue of SP1 (253 residues in total). The molecular weight of SP2 was calculated to be 28,912 from the amino acid sequence data. Two disulfide bond cross-linkages were found to be between 106 and 115 and between 145 and 150, and a partially buried single SH group was located at 236. A carbohydrate chain that consisted of 3 GlcNAc, 3 Fuc, and 1 Man was anchored on Asn-105 in a typical carbohydrate-binding motif of Asn-X-Ser. This is the first evidence of the primary structure of mannuronate lyase, and no significant homology of the amino acid sequence among other proteins was found. The C-terminal truncated SP2, which was produced by digestion with carboxypeptidase Y and corresponded structurally to SP1, showed a thermal stability identical to that of SP1. These results indicate that the higher stability of SP2 than SP1 arises from the presence of the C-terminal two hydrophobic amino acid residues.

Amino Acid Sequence↗

Effects of aging and/or training on antioxidant enzyme system in diaphragm of mice.

We investigated the effects of aging and/or swimming training on the antioxidant enzyme system in diaphragm of mice. Young (2 months old) and old (26 months old) male mice were swimming-trained for 6 weeks (1 h/day, 5 days/week). Cu,Zn-Superoxide dismutase (Cu,Zn-SOD) activity was significantly upregulated with aging, and swimming training definitely enhanced the activity only in young mice. Neither aging nor swimming training had overt effect on Mn-SOD activity. Glutathione peroxidase activity in young mice was significantly increased after training, but not in old mice. Both of immunoreactive Cu,Zn-SOD and Mn-SOD were significantly increased with aging but were unaffected by swimming training. Consequently, physical training significantly enhanced the specific activity of Cu,Zn-SOD in young mice, but not in old mice. Meanwhile, swimming training significantly increased xanthine oxidase activity in both age groups, the extent of the increase being greater in old mice than in young mice. We concluded that the antioxidant enzyme system in mouse diaphragm trends to be upregulated with aging, but that swimming training improved the system only in young mouse diaphragm.

Aging↗

Two types of parenchymal cells in the lung fluke Paragonimus ohirai (Digenea: Troglotrematidae) characterized by the cytochemistry of their mitochondria.

Morphology and respiratory function were studied in situ and in the isolated mitochondria of Paragonimus ohirai. Two types of parenchymal cells (i.e., Pc1 and Pc2 cells), whose mitochondria differ in terms of morphology and staining for cytochrome c oxidase activity, were found in fluke tissues. Enzymatic and spectrophotometric analyses of the isolated mitochondria showed that fluke mitochondria possess both aerobic and anaerobic respiratory chains. These results suggest that there are two mitochondrial populations in fluke parenchymal cells, one possessing an aerobic respiratory chain and the other an anaerobic respiratory chain.

Animals↗

Inositol trisphosphate/Ca2+ as messengers of bradykinin B2 and muscarinic acetylcholine m1-m4 receptors in neuroblastoma-derived hybrid cells.

Neuroblastoma x glioma hybrid NG 108-15 and neuroblastoma x fibroblast hybrid NL308 cells possess endogenous bradykinin B2 receptors and m4 muscarinic acetylcholine receptors (mAChRs), which couple to phospholipase C and adenylate cyclase, respectively. Four genetic subtypes of mAChRs differed in their effects when stimulated in NG108-15 and NL308 cells overexpressing mAChRs. Broadly speaking, the principal effects fell into two categories: the odd-numbered receptors (m1 and m3) activated phospholipase C and increased inositol trisphosphate/Ca2+, as bradykinin did, whereas the even-numbered receptors (m2 and m4) inhibited adenylate cyclase via a pertussis toxin (PTx)-sensitive G-protein in NG108-15 cells. But all four types of NL308 cells overexpressing each m1, m2, m3 and m4 receptor activated phospholipase C, while keeping the PTx-sensitivity in m2/m4, but not in m1/m3 receptors. Coupling to ion channel effectors showed a comparable dichotomy in NG108-15 cells, while cross-activation occurred in NL308 cells.

Animals↗

Expression of Fas and anti-Fas-mediated apoptosis in human hepatocellular carcinoma cell lines.

BACKGROUND/AIMS: Fas transduces apoptotic signals upon cross-linking with the Fas ligand, which is experimentally replaced by anti-Fas antibodies. Because little is known about Fas expression and function in hepatocellular carcinoma, these issues are addressed in the current article. METHODS: We examined Fas expressions at protein and mRNA levels, and susceptibility to anti-Fas-mediated apoptosis, on six hepatocellular carcinoma cell lines. RESULTS: Two cell lines constitutively expressed high levels of Fas both on their cell surface and in their cytoplasm, whereas the other four cell lines expressed Fas mainly in their cytoplasm. Fas mRNA of normal size was detected in all cell lines in reverse transcriptase-polymerase chain reaction analyses. Although a Fas mRNA variant, suggesting a soluble Fas molecule, was detected in the two cell lines expressing high levels of Fas, its amount was very small compared to that of normal-sized Fas transcript. Anti-Fas dose-dependently induced apoptosis exclusively in the two cell lines which constitutively express high levels of cell surface Fas. However, after preincubation with interferon-gamma, one cell line with low surface Fas expression became anti-Fas sensitive equivalent to the two cell lines expressing surface Fas at high levels. Studies of two clonally related cell lines showed that dedifferentiated clones had lower Fas expression and resistance to anti-Fas, suggesting deterioration of Fas system after clonal cell dedifferentiation. CONCLUSIONS: These findings suggest sensitivity to anti-Fas is virtually relevant to cell surface Fas, but not to cytoplasmic Fas expression. However, its expression level does not correlate to sensitivity to anti-Fas.

Antineoplastic Agents↗

Role of endothelin as a mitogen in experimental glomerulonephritis in rats.

Recent studies have revealed that endothelin-1 (ET-1) is a potent mitogen for mesangial cells in vitro. To determine whether ET-1 exerts the mitogenic action on mesangial cells in vivo, we examined the glomerular expression of ET-1 and its receptors in a rat model of mesangial proliferative glomerulonephritis and assessed the effect of a specific endothelin A (ET(A)) receptor antagonist, FR139317, on mesangial cell proliferation in this model. The levels of preproET-1 mRNA expression and ET-1 protein production in glomeruli increased markedly on days 4 and 7 after disease induction, and the levels changed in concordance with the glomerular cell proliferation. In contrast, the level of ET(A) receptor mRNA initially decreased on day 1, and thereafter increased on days 4 and 7. Administration of FR139317 to rats with experimental glomerulonephritis induced a significant reduction in mesangial cell proliferation. In addition, in situ hybridization of preproET-1 mRNA and double-immunolabeling of ED-1 and OX-7 in a mirror image section revealed that the principal cell expressing ET-1 in glomeruli were infiltrating macrophages on day 1, and they were replaced by mesangial cells on day 4. These findings indicate that ET-1 functions as a potent mitogen for mesangial cells in vivo in an autocrine or paracrine fashion.

Animals↗

Functional coupling of the delta-, mu-, and kappa-opioid receptors to mitogen-activated protein kinase and arachidonate release in Chinese hamster ovary cells.

To examine whether the mitogen-activated protein kinase (MAPK) cascade and phospholipase A2 (PLA2) are involved in the signal transduction mechanism of the opioid receptor, the delta-, mu-, and kappa-opioid receptors were stably expressed from cDNA in Chinese hamster ovary cells. Activation of the delta-, mu-, and kappa-receptors by agonists induced a rapid and transient increase in MAPK activity accompanied by reduced electrophoretic mobility of the 42-kDa isoform of MAPK (p42), probably owing to phosphorylation. The opioid receptor-mediated increase in MAPK activity was suppressed not only by pretreatment with genistein, a tyrosine protein kinase inhibitor, but also by prolonged exposure to phorbol 12-myristate 13-acetate and pretreatment with GF 109203X, a selective protein kinase C (PKC) inhibitor, suggesting the involvement of PKC as well as tyrosine protein kinase. Furthermore, stimulation of the delta-, mu-, and kappa-receptors with opioid agonists in the presence of A23187, a calcium ionophore, resulted in an increase in arachidonate release, suggesting that PLA2 is activated by the opioid receptors when the intracellular Ca2+ concentration is elevated. Both MAPK activation and increase in arachidonate release mediated by the opioid receptors were abolished by pretreatment with pertussis toxin, suggesting that these responses are mediated by Gi or Go types of GTP-binding regulatory proteins.

Animals↗

The expulsion of Echinostoma trivolvis: suppressive effects of dexamethasone on goblet cell hyperplasia and worm rejection in C3H/HeN mice.

C3H/HeN mice were infected with Echinostoma trivolvis metacercariae on day 0, given intramuscular injections of dexamethasone daily for 5 or 7 days, and necropsied on days 5, 8, 12, 15, 20 and 30 p. i. Controls consisted of mice that were infected with echinostomes, but were not treated with dexamethasone. Dexamethasone treatment caused a delay in worm expulsion from the small intestine of the hosts, and the increase in goblet cell numbers that occurred in untreated mice was markedly delayed in the treated mice. Mast cell number in the small intestine increased rapidly from just after day 5 p. i. and reached a peak on day 15 p. i. in both dexamethasone-treated and control mice, although the increase in cell numbers was delayed slightly in the dexamethasone-treated mice. The eosinophil number in the small intestine of dexamethasone-treated mice was suppressed until 8 days p. i. and then increased reaching a peak on day 12 p. i., although the number was about one half that of the control. As determined on day 12 p. i., the mean body area of worms from dexamethasone-treated animals was significantly greater than that of the controls. Histological examination of the small intestine showed that the goblet and Paneth cell hyperplasia seen in mice infected with E. trivolvis was suppressed by dexamethasone treatment. Transmission electron microscopy revealed no marked ultrastructural differences in the small intestine of the dexamethasone-treated and control mice except that the former had an increased number of intracristal granules in mitochondria, an increase in vesicles in the apical epithelial cells and an increase in amorphous bodies and autophagic vacuoles in the Paneth cells. These results indicate that dexamethasone treatment delayed the expulsion of E. trivolvis from the small intestine of the host mouse in association with the suppression of goblet cell hyperplasia and increase in the number of mast cells and eosinophils.

Animals↗

The herbal medicine Inchin-ko-to inhibits liver cell apoptosis induced by transforming growth factor beta 1.

Transforming growth factor beta 1 (TGF-beta 1) is reported to play an important role in the induction of liver cell apoptosis. In this report, we demonstrate that TGF-beta 1 induces apoptosis in a rat Morris hepatoma McA-RH8994 cell line and rat primary cultured hepatocytes at similar doses and in a similar manner. Using McA-RH8994 cells, we screened a number of chemical reagents, aqueous extracts of crude drugs, and herbal medicines for their inhibitory activities on TGF-beta 1-induced apoptosis. The results indicate that Artemisiae capillaris spica (ACS) and the ACS-containing herbal medicine Inchin-ko-to, which are used for treatment of various liver disorders, exhibited the most potent anti-apoptotic activity. Various chemicals that were reported as inhibitors of apoptosis in other experimental systems showed no evident activity. By contrast, two of nine ACS ingredients we tested, capillin and capillene, showed activity at concentrations of submicrogram per milliliter. The inhibitory effects of Inchin-ko-to, capillin and capillene were also confirmed on TGF-beta 1-induced apoptosis of rat primary cultured hepatocytes. Inhibition of undesired apoptosis induced by TGF-beta 1 is expected to be beneficial for the treatment of various inflammatory liver diseases. Our findings therefore suggest the possibility that therapeutic effects of Inchin-ko-to on liver diseases might be associated with its inhibitory activity on TGF-beta 1-induced liver cell apoptosis.

Alkynes↗

Purkinje cell vulnerability to mild traumatic brain injury.

In this study we examined the cerebellar response to mild traumatic brain injury by assessing microglial activation and Purkinje cell loss. Activated microglia were identified using the antibodies OX-42 and ED-1 as well as isolectin B4. The anti-Purkinje cell antibody PEP-19 was used to evaluate Purkinje cell loss after injury. The mechanism of cell injury was examined using a monoclonal antibody to the inducible 72-kDa heat shock protein. A monoclonal antibody to the N-terminal sequence of Fos was used as a marker for neuronal activation. There was progressive activation of microglia in the cerebellar vermis within a few days after forebrain injury. In coronal sections the processes of activated microglia were oriented in "stripes" perpendicular to the cortical surface. In sagittal sections the activated microglia were in irregularly shaped clusters or in a fan-like distribution that radiated from the Purkinje cell layer toward the cortical surface. There was a significant loss of Purkinje cells 7 days postinjury as compared to the control group. There was no evidence of induction of heat shock protein in the cerebellum. In addition, there was no evidence of induction of c-Fos protein in either the cerebellar cortex or inferior olivary nuclei within the first 3 h after injury. These studies demonstrate that a fluid percussive impact to the forebrain results in cerebellar damage. The close anatomical association between activated microglia and Purkinje cells suggests that Purkinje cell injury is the cause of the microglial activation. The mechanism of Purkinje cell death, however, remains unclear.

Animals↗