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Biomedical subjects

H Yazawa

Publications and source records attributed to H Yazawa.

At least 19 recordsLinked to original sources

Dissociative ionization of ethanol by 400 nm femtosecond laser pulses.

The dissociative ionization of ethanol in short-pulsed laser fields at approximately 400 nm is investigated. The yield ratio of the C-O bond breaking with respect to the C-C bond breaking increases sharply as the temporal width increases from 60 to 400 fs, and the yield ratio is two to three times as large as that at 800 nm in the entire pulse-width range of 60-580 fs. The enhancement of the C-O bond breaking of singly charged ethanol at 400 nm and the bond elongation prior to the Coulomb explosion of doubly charged ethanol occurring in the relatively weak light field intensity of 10(12)-10(13) W cm(2) is interpreted by the efficient light-induced coupling among the electronic states at the shorter wavelength of 400 nm. From the double pulse experiment, in which ethanol is irradiated with a pair of short pulses (<80 fs), the most efficient coupling occurs at Deltat=160 fs that is much earlier than Deltat=250 at 800 nm, where Deltat denotes the temporal separation of the two pulses, indicating that the nonadiabatic field-induced potential crossings of singly charged ethanol occurs much earlier at 400 nm than at 800 nm.

Journal Article↗

Hydrodynamics-based gene delivery of naked DNA encoding fetal liver kinase-1 gene effectively suppresses the growth of pre-existing tumors.

Antiangiogenic gene therapy is a promising strategy for cancer treatment, which generally requires highly efficient delivery systems. To date, success of this strategy has depended almost exclusively on the delivery of high titers of viral vectors, which can result in effective transgene expression. However, their cytotoxicity and immunogenicity are a major concern for clinical applications. Recent advances in delivery efficiency of naked DNA could potentially meet the requirement for both high transgene expression and minimal side effects. To investigate whether naked DNA can be used for antiangiogenic cancer therapy, an expression plasmid was generated that encodes a soluble form of fetal liver kinase-1 (Flk-1) gene, a receptor for vascular endothelial growth factor (VEGF). Hydrodynamic injection of this plasmid resulted in close to 0.1 mg/ml of soluble Flk-1 protein in mouse serum and blocked VEGF-driven angiogenesis in matrigel in vivo. The same delivery significantly suppressed the growth of two different pre-existing subcutaneous tumors, Renca renal cell carcinoma and 3LL lung carcinoma. CD31 immunohistochemistry revealed that the tumor-associated angiogenesis was also highly attenuated in soluble Flk-1-treated mice. Thus, expression of genes by hydrodynamics-based gene delivery of naked DNA appears to be a promising approach for antiangiogenic cancer gene therapy.

Animals↗

Absence of microdeletions in the Y chromosome in patients with Prader-Willi syndrome with cryptorchidism.

Unilateral or bilateral cryptorchidism is found in 80-100% of male patients with Prader-Willi syndrome (PWS). Recently, the relationship between Yq deletions and cryptorchidism has been assessed. However, the relationship between Yq deletions and PWS patients with cryptorchidism remains unclear. Polymerase chain reaction (PCR) amplification of 51 DNA loci encompassing all of the regions for azoospermia factor (AZF) of the Y chromosome, including the deleted in azoospermia (DAZ) and ribonucleic acid-binding motif (RBM) genes, were examined for microdeletions in 10 PWS males with cryptorchidism and 20 healthy control male subjects. No microdeletions of 51 loci were found in any of the PWS males. The present study therefore suggests that microdeletions in the AZF regions of the Y chromosome do not relate to the occurrence of cryptorchidism in PWS patients.

Adolescent↗

The neurotoxic prion peptide fragment PrP(106-126) is a chemotactic agonist for the G protein-coupled receptor formyl peptide receptor-like 1.

Prion diseases are transmissible and fatal neurodegenerative disorders which involve infiltration and activation of mononuclear phagocytes at the brain lesions. A 20-aa acid fragment of the human cellular prion protein, PrP(106-126), was reported to mimic the biological activity of the pathologic isoform of prion and activates mononuclear phagocytes. The cell surface receptor(s) mediating the activity of PrP(106-126) is unknown. In this study, we show that PrP(106-126) is chemotactic for human monocytes through the use of a G protein-coupled receptor formyl peptide receptor-like 1 (FPRL1), which has been reported to interact with a diverse array of exogenous or endogenous ligands. Upon stimulation by PrP(106-126), FPRL1 underwent a rapid internalization and, furthermore, PrP(106-126) enhanced monocyte production of proinflammatory cytokines, which was inhibited by pertussis toxin. Thus, FPRL1 may act as a "pattern recognition" receptor that interacts with multiple pathologic agents and may be involved in the proinflammatory process of prion diseases.

Animals↗

Glucocorticoid hormone can suppress apoptosis of rat testicular germ cells induced by testicular ischemia.

OBJECTIVE: To evaluate the effect of dexamethasone, a potent synthetic glucocorticoid hormone, on apoptosis of testicular germ cells and vascular neutrophil adhesion after repair of testicular torsion in rats. DESIGN: Controlled laboratory study. SETTING: Department of Urology, Yamagata University School of Medicine, Yamagata, Japan. ANIMAL(S): Fifty-one male Sprague-Dawley rats. INTERVENTION(S): Dexamethasone, 10 mg/kg of body weight. MAIN OUTCOME MEASURE(S): Testicular germ-cell apoptosis (percentages of apoptotic tubules and apoptotic cells) and vascular neutrophil adhesion were assessed by using DNA nick-end labeling and the endothelial-neutrophil adhesion score, respectively. RESULT(S): Intravenous administration of dexamethasone at repair of 90-minute testicular torsion significantly inhibited testicular germ-cell apoptosis and vascular neutrophil adhesion. This inhibition was suppressed by intravenous injection of mifepristone, a glucocorticoid-receptor antagonist. CONCLUSION(S): Glucocorticoids can be administered for torsion in addition to conventional torsion repair.

Animals↗

Influence of sperm immobilization on onset of Ca(2+) oscillations after ICSI.

Sperm immobilization prior to intracytoplasmic sperm injection (ICSI) is thought to be necessary for efficient fertilization. A variety of methods of sperm immobilization (pipetting, squeezing and piezo application) are currently employed in ICSI. The effect of differences in immobilization method on the timing of initial Ca(2+) oscillations of oocytes in ICSI was investigated. Motile spermatozoa were immobilized in eosin Y solution using pipetting, squeezing and piezo application. Complete staining of the sperm head was achieved after 220.7, 42.2 and 5.0 s respectively. Oscillations after ICSI were measured fluorometrically for each method. The onset of Ca(2+) oscillations was observed at 4.8 to 80.4 min after ICSI. Ca(2+) oscillations developed earlier with the piezo method (14.4 +/- 6.4 min) than other methods (pipetting, 43.1 +/- 20.2 min, P < 0.01; squeezing, 18.4 +/- 3.8 min, P = NS). The piezo method produced the earliest staining of the sperm head and may have caused the most damage to the sperm membrane. A more rapid onset of Ca(2+) oscillations was also observed with the piezo method. The method of sperm immobilization may be important for the rapid release of sperm factors that initiate oocyte activation. This study also showed that Ca(2+) oscillations develop earlier in human oocytes treated by ICSI than indicated in previous reports.

Calcium Signaling↗

Oocyte activation and Ca(2+) oscillation-inducing abilities of mouse round/elongated spermatids and the developmental capacities of embryos from spermatid injection.

To investigate differences in fertilization mechanisms and the potential clinical use of round/elongated spermatid, we conducted detailed studies of oocyte activation and Ca(2+) oscillation-inducing abilities in these immature sperm cells and compared these abilities against those of mature spermatozoa. When round spermatids from B(6)D(2)F(1) mice were injected, none of the oocytes was activated and no intracellular Ca(2+) ([Ca(2+)](i)) increases were observed. Elongated spermatids could induce activation normally in 87% of injected oocytes, but Ca(2+) oscillation could not be induced at all and most of the oocytes (94%) exhibited only several transient [Ca(2+)](i) rises (transient patterns). Because normal offspring could be obtained when embryos through elongated spermatid injection were transferred to foster mothers, it seems that a normal oscillation pattern of [Ca(2+)](i) is not essential for normal fertilization and embryo development. [Ca(2+)](i) patterns of injected oocytes changed from transient patterns to oscillation patterns while the injected immature sperm cells were maturing to spermatozoa. Dissociations were seen between the timing of appearance of oocyte activation and that of Ca(2+) oscillation-inducing abilities in maturing sperm cells. These dissociations may be due to differences in the thresholds to oocyte activation and Ca(2+) oscillation-inducing factor for inducing oocyte activation and Ca(2+) oscillation.

Animals↗

Beta amyloid peptide (Abeta42) is internalized via the G-protein-coupled receptor FPRL1 and forms fibrillar aggregates in macrophages.

The 42 amino acid form of beta amyloid (Abeta42) plays a pivotal role in neurotoxicity and the activation of mononuclear phagocytes in Alzheimer's disease (AD). Our recent study revealed that FPRL1, a G-protein-coupled receptor, mediates the chemotactic and activating effect of Abeta42 on mononuclear phagocytes (monocytes and microglia), suggesting that FPRL1 may be involved in the proinflammatory responses in AD. We investigated the role of FPRL1 in cellular uptake and the subsequent fibrillar formation of Abeta42 by using fluorescence confocal microscopy. We found that upon incubation with macrophages or HEK293 cells genetically engineered to express FPRL1, Abeta42 associated with FPRL1 and the Abeta42/FPRL1 complexes were rapidly internalized into the cytoplasmic compartment. The maximal internalization of Abeta42/FPRL1 complexes occurred by 30 min after incubation. Removal of free Abeta42 from culture supernatants at 30 min resulted in a progressive recycling of FPRL1 to the cell surface and degradation of the internalized Abeta42. However, persistent exposure of the cells to Abeta42 over 24 h resulted in retention of Abeta42/FPRL1 complexes in the cytoplasmic compartment and the formation of Congo red positive fibrils in macrophages but not in HEK 293 cell transfected with FPRL1. These results suggest that besides mediating the proinflammatory activity of Abeta42, FPRL1 is also involved in the internalization of Abeta42, which culminates in the formation of fibrils only in macrophages.

Amyloid beta-Peptides↗

Reduction of serum interleukin-5 levels reflect clinical improvement in patients with atopic dermatitis.

Cytokines, in particular IL-4 and IL-5, regulate IgE synthesis and eosinophil activation in atopic dermatitis (AD). To elucidate whether the serum levels of IL-4 and IL-5 are related to the serum IgE level, eosinophilia, or clinical severity of the disease, 25 cases with AD were studied. Blood samples were isolated from two groups of donors: 1) patients with AD (n = 25); 2) non-allergic individuals (NA, n = 20) with serum IgE levels below 100 IU/ml and with blood eosinophil counts below 250/microliter. Each parameter was evaluated at least twice in AD patients at the beginning of the study and after 4, 8 or 12 weeks of treatment. IL-4 was hardly detected in AD and NA, but IL-5 was increased (> 10 pg/ml) in most cases (22/25) of AD group with 513.6 pg/ml as the mean. AD with normal serum IgE levels exhibited increased levels of IL-5, whereas AD with high serum IgE levels did not necessarily have elevated IL-5 levels. The IL-5 level tended to change in parallel with the clinical severity in each AD case, although the level itself was not correlated with the clinical severity per se. A significant decrease of IL-5 was observed in AD when the clinical severity decreased. Eosinophils also decreased along with the improvement of AD, whereas the serum level of IgE did not change during the observation period. Our results suggest that IL-5 is involved in the regulation of clinical courses of AD and that its kinetics at the serum level reflects the clinical activity of AD.

Adolescent↗

Successful treatment of a patient with lymphomatoid papulosis by methotrexate.

We report a case of lymphomatoid papulosis (LyP) that occurred in a 44-year-old Japanese male patient. Reddish papules with a small number of pustules and nodules were observed on the extremities, chest and upper back. Most lesions were also associated with central necrosis, ulceration and crusting, and regressed spontaneously within 4 to 6 weeks. Histopathological examination revealed wedge-shaped dense cellular infiltrate in the dermis, which was mixed with large atypical lymphoid cells, small lymphocytes, eosinophils and neutrophils. These large atypical cells expressed CD30 on their cell membrane and cytoplasm. Rearrangement of the T-cell receptor (TcR) beta-chain gene was detected in the skin lesion. Lymphadenopathy with histopathologic change similar to the skin lesions, but without TcR gene rearrangement, was found at the left inguinal area. Systemic administration of methotrexate (7.5-15.0 mg/week) was found to be dramatically effective in resolution of skin lesions and prevention of their recurrence.

Adult↗

Downregulation of CXCR-2 but not CXCR-1 expression by human keratinocytes by UVB.

Interleukin-8 (IL-8) belongs to the CXC chemokine family. IL-8 exerts its biological activities by binding to specific cell surface receptors, CXCR-1 and CXCR-2. Both receptors bind IL-8 with high affinity but they have different affinities for MGSA/Groalpha and NAP-2. It has been shown that the expression of epidermal CXCR-2 is increased in psoriasis, suggesting that activation of KC mediated by CXCR-2 contributes to the characteristic epidermal changes observed in psoriasis. In order to examine the mechanism(s) by which UVB therapy is effective for several dermatoses including psoriasis, we sought to examine if UVB would modulate the expression of CXCR-1 and CXCR-2 in human keratinocytes (KC). Constitutive expression of CXCR-1 and CXCR-2 mRNA was detected by RT-PCR in normal cultured human KC. After 100 or 300 J/m(2) irradiation, a decrease in CXCR-2 mRNA was detectable from 12 h after irradiation; this downregulation was observed until 48 h after irradiation. In contrast, the CXCR-1 mRNA level was unchanged. Immunohistochemical studies and flow cytometry analysis confirmed the suppressive effect of UVB on the expression of CXCR-2 protein in cultured human keratinocytes. Immunohistochemical studies on two minimal erythema doses (2MED)-exposed and 2MED-unexposed skin from healthy volunteers revealed that CXCR-2 staining occurred over the whole layer of the epidermis but at 24 h after 2MED irradiation, the positive staining of CXCR-2 was decreased. A faint CXCR-1 staining was observed in the lower part of the epidermis both in unexposed and exposed skins. Our results indicate that UVB-induced growth inhibition of KC in hyperproliferative skin disorders may, in part, be related to downregulation of CXCR-2.

Antigens, CD↗

Oocyte activation induced by spermatids and the spermatozoa.

It has been reported that a sperm factor (SF) found in spermatozoa plays a critical role in fertilization. However, particulars of the oocyte-activating and Ca2+ oscillation (Ca-Os)-inducing abilities of this SF remain unknown. We examined these abilities of spermatids in mouse, hamster and human by a mouse test (injection of spermatids into mouse oocytes). In mice, the round spermatids (ROS), elongated spermatids (ELS) and spermatozoa activated 0%, 93% and 92% of the oocytes, respectively. ROS injection resulted in no Ca-Os (type C). ELS induced a normal oscillation (type A) at 0% and an abnormal oscillation (type B) at 94%. Mouse spermatozoa induced type A Ca-Os at 90%. For mice, oocyte-activating and Ca2+ oscillation-inducing ability arose in different phases of spermiogenesis. We also observed this differential timing for hamster spermatids. Hamster ROS activated 74% of oocyte (ELS: 90%, sperm: 86%). Human ROS activated 64% of oocytes (sperm: 100%), but only 35% of the oocytes showed type A Ca-Os. These results indicate that oocyte activation generally occurs between the ROS and ELS phases, although these phases differ among species. They also indicate that oocyte activation is not necessarily accompanied by Ca-Os. These findings suggest the existence of different thresholds at which the SF induces oocyte activation and Ca2+ oscillation, or of different factors that induce oocyte activation and Ca-Os. We found SF to be clinically impaired in 0.9% of ICSI patients. A combination of artificial oocyte activation and ICSI proved effective with such patients.

Animals↗

Comparison of oocyte activation and Ca2+ oscillation-inducing abilities of round/elongated spermatids of mouse, hamster, rat, rabbit and human assessed by mouse oocyte activation assay.

Oocyte activation and Ca2+ oscillation-inducing abilities of round spermatid (ROS) and elongated spermatid (ELS) of some rodents and human were assessed by their injection into mouse (B6D2F1) oocytes (mouse test). With mice (B6D2F1, ICR) and rat, ROS displayed no oocyte activation or Ca2+ oscillation-inducing abilities. Although ELS could induce activation at 87, 86 and 31% of injected oocytes respectively, most of the intracellular calcium concentration ([Ca2+]i) responses of ELS-injected oocytes did not show oscillation patterns; only several transient [Ca2+]i rises (transient pattern) were seen. Similarly, with hamster, rabbit and human, while ROS could induce oocyte activation efficiently (70, 71 and 52% respectively), most of the [Ca2+]i patterns of injected oocytes were transient patterns, and not oscillation patterns. When ROS nuclei only from these latter species were injected into mouse oocytes, most of the oocytes could not be activated. [Ca2+]i patterns of oocytes injected with immature sperm cells changed from transient pattern to oscillation pattern while the cells were maturing into spermatozoa. With hamster ROS, oocyte-activating factor was found to be distributed mainly in the cytoplasm. It was interesting that there is a dissociation between the timings of appearance of oocyte activation and that of Ca2+ oscillation of oocytes injected with developing immature sperm cells.

Animals↗

Apoptosis of testicular germ cells induced by exogenous glucocorticoid in rats.

The influence of exogenous glucocorticoid, dexamethasone (Dex), on testicular germ cell apoptosis was investigated in rats. The percentages of apoptotic tubules and apoptotic germ cells in the Dex-treated group of rats were about seven-fold and 10-fold higher respectively than in either the control group, or in rats treated with glucocorticoid receptor agonist (GR-A), or in rats treated with both Dex and GR-A. These results suggest that, in rats, apoptosis of testicular germ cells is mediated by glucocorticoid receptors.

Animals↗

Area density of smooth muscle cells and response to endothelin 1 in human hyperplastic prostate.

BACKGROUND: alpha-Agonists and endothelins (ETs) are the only agents that have been proved to induce significant contraction of the prostate. Although the response to phenylephrine (PE) is dependent on the quality of smooth muscle (SM) within the prostate, it is not clear whether the response to ET-1 is also influenced by SM density. We evaluate the relationship between contractile responsiveness to ET-1 and the area density of SM of the human prostate. MATERIALS AND METHODS: Specimens were obtained from 17 patients with prostatic hyperplasia that underwent transurethral resection of the prostate. Specimens were used for isometric tension study (PE, KCl and ET) and also for quantitative morphometric analysis. RESULTS: PE and ET-1 induced dose-dependent contractile responses. There were no significant differences in the average maximum response (E(max)) to these two agents. E(max) to KCl and PE showed direct positive correlations with the area density of SM. E(max) to ET-1 also showed a positive correlation with the SM density, although this relationship was weaker than those for the other two agents. Moreover, there was a strong positive relationship between E(max) to PE, KCl and that to ET-1. CONCLUSIONS: The area density of SM appeared to significantly influence the contractile response to ET-1 as well as the response to PE and KCl.

Aged↗

Development of a homogeneous time-resolved fluorescence assay for high throughput screening to identify Lck inhibitors: comparison with scintillation proximity assay and streptavidin-coated plate assay.

This study details the development of a homogeneous time-resolved fluorescence (HTRF) high throughput screening assay to identify inhibitors of Lck. HTRF was compared with scintillation proximity and streptavidin-coated plate assays. Because of the differences in the sensitivity of detection of phosphotyrosine among the three assays, different amounts of enzyme were used. However, the concentrations of the other assay components were standardized. When using similar assay conditions, the calculated IC(50) values of inhibitory compounds were independent of assay format. Furthermore, filtration experiments revealed that phosphorylation of a biotinyl poly-Glu,Ala, Tyr peptide substrate was less than autophosphorylation of the Lck enzyme; this was due to the low K(m) value for biotinyl poly-Glu,Ala,Tyr. In the HTRF assay, small amounts of enzyme and high concentrations of ATP could be used, thereby minimizing the effects of autophosphorylation. Higher ATP concentration would also minimize the effect of ATP competitors. Using this technology, it may be possible to find novel kinase inhibitors that do not act at the ATP binding site of protein tyrosine kinases.

Biotin↗

Time-related changes of developing enamel crystals after exposure to the tissue fluid in vivo: analysis of a subcutaneously implanted rat incisor.

To investigate the effects of tissue fluid on the growth of enamel crystals, upper and lower incisors extracted from 3-week-old Wistar rats were removed of the enamel organ, implanted subcutaneously in the dorsal portion of animals from the same litter, and harvested at 72 h or 1 week after implantation. The grafts were chemically fixed with surrounding tissues and prepared for light and electron microscopy, X-ray microanalysis, or for the immunohistochemistry of amelogenin. Mineralization of implanted enamel layers was examined by contact X-ray microradiography. The immunoreactivities for 25 kD amelogenin in immature enamel decreased sequentially, starting from the surface to the deeper layers; by 1 week after implantation, no positive reactivities remained in the entire enamel layers at the stages of matrix formation and early maturation. In accordance with the loss of enamel proteins, immature enamel gained mineral density until it attained higher radio opacity than that of the adjacent dentin by 1 week. In contrast, the radio opacity of the full thickness of the enamel at early maturation remained low except for a superficial thin layer. Electron microscopy revealed no sign of growth of original enamel crystals, but showed heavy precipitation of electron-dense fine granules of calcium phosphate in all layers of the secretory enamel and the superficial layer of enamel at early maturation, which showed high radio opacity. The Ca/P ratio and electron diffraction patterns of the granular materials precipitated between intrinsic enamel crystals indicated the property of hydroxy apatite or octacalcium phosphate though a characteristic ribbon-like profile of enamel crystals was lacking. These data indicate that the enamel organ blocks exogenous mineral precipitates in growing enamel during the stage of matrix formation and plays an essential regulatory role for fine enamel crystallites to grow into large hexagonal crystals.

Amelogenin↗

Glucocorticoid hormone suppression of human neutrophil-mediated tumor cell cytostasis.

In the present study, we have investigated the effect of glucocorticoid hormones on neutrophil-mediated tumor cell cytostasis and found that hydrocortisone and a synthetic hormone, dexamethasone (Dex), inhibited cytostasis in the presence or absence of tumor necrosis factor-alpha. The effect of Dex was completely reversed by a glucocorticoid receptor antagonist, RU38486. To clarify the underlying mechanisms, we examined effects of Dex on the binding avidity of beta2 integrin on the neutrophil surface and how these might in turn affect neutrophil-to-tumor cell binding. Dex was found to inhibit these neutrophil properties, and RU38486 completely suppressed both forms of Dex inhibition. Taken together, our findings suggest that glucocorticoid hormone inhibition of neutrophil-mediated tumor cell cytostasis is at least partially due to a lowering of the ligand binding avidity of beta2 integrin on the neutrophil surface.

Animals↗