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Biomedical subjects

H Ye

Publications and source records attributed to H Ye.

At least 55 records · Page 3Linked to original sources

[A study of metallic mercury polluting a room after being spilled from a sphygmomanometer].

Mercury spilled from a mercurial sphygmomanometer on a hot carpet can vaporize and pollute the environment. We observed the vaporization of mercury in model experiments. Mercury (0.15g) was heated on a hot carpet and the near-by air was sampled with a midget impinger. The evaporated mercury levels were 5.0, 6.3, 8.1 and 10.0mg/m(3) at 20, 40, 60 and 80 minutes, respectively at a height of 30cm from carpet. The result indicated that even if a small quantity of mercury remained on the hot carpet, it could evaporate and pollute the indoor air. Little is known about the influence on human health of low mercury exposure, especially on children. In order not to pollute the air, we need to pay attention to mercury.

Accidents, Home↗

[Effects of extremely low frequency weak magnetic fields on the intracellular free calcium concentration in PC-12 tumor cells].

In this study the effects of the extremely low frequency (ELF) magnetic fields on intracellular Ca2+ concentration ([Ca2+]i) of rat chromaffinoma PC-12 cells were examined by using a digital fluorescence image microscopy system. A 50 Hz, 100 microT sinusoidal ELF magnetic field increased [Ca2+]i to a marked level, whereas a static field or a field of higher frequency (2000 Hz) did not cause a [Ca2+]i increase. The magnetic field-induced [Ca2+]i rise was partly due to an influx of extracellular Ca2+ and partly due to the release of intracellular Ca2+ pool. It seemed likely that the Ca2+ transport ability of the cell membranes was increased by the 50 Hz magnetic field.

Animals↗

[Effect of Tripterygium polyglycoside on interleukin-6 in patients with Guillain-Barre syndrome].

OBJECTIVE: To study the action of interleukin-6(IL-6) in pathogenesis and effect of patients with Guillain-Barre syndrome (GBS). METHODS: Forty-three patients of GBS were selected according to Asbury's standard and divided into two groups on layer randomize principle, they were treated with adrenal corticosteroid and Tripterygium polyglycoside (TP) respectively. Serum and cerebrospinal fluid (CSF) content of IL-6 were measured by double antibody sandwich ELISA method. RESULTS: (1) The serum and CSF content of IL-6 in GBS group was higher than those in the normal control group significantly; (2) There was positive correlation between CSF IL-6 and clinical severity (P < 0.01) before treatment; (3) After treatment the clinical symptoms were improved in both groups, but the TP treated group showed better effect than the control group in improving symptoms and lowering serum IL-6 level (P < 0.05). CONCLUSION: CSF level of IL-6 could be taken as one of the criteria for severity evaluation of patient's condition. TP is superior in suppressing abnormal immune reaction to adrenal corticosteroid in GBS patients.

Adolescent↗

[Influence of androgen on Bcl-2 mRNA expression in BPH tissue].

OBJECTIVE: To study the expression of Bcl-2 mRNA in BPH tissue and the influence of androgen. METHODS: The circulating testosterone level of BPH patients and rats was decreased by administration of medroxyprogesterone and stilbestrol as well as castration. Using RNA dot blot hybridization technic, we detected the Bcl-2mRNA expression in human BPH tissue and rat prostate under different level of androgen. RESULTS: The average dot IOD (integrated optical density, IOD) value ratio of the untreated patient group to the treated group was 1.71 (P < 0.01). There was an decrease of intensity of Bcl-2 mRNA expression in the latter group compared with the former group. The ratio of the normal rat prostates to the castrated rat prostates was 1.28 (P < 0.05). The Bcl-2 mRNA expression was decreased after castration. CONCLUSIONS: The expression of Bcl-2 plays a role in the development of BPH. The decrease of prostatic cell death is important in the BPH pathogenesis. Apart from promoting the proliferation of prostatic epithelia and stroma cells, androgen might prohibit apoptosis by increasing the expression of Bcl-2 in BPH development.

Androgens↗

[Effect of erythropoietin 3-enhancer on proliferation of pulmonary artery smooth muscle cells induced by hypoxia].

The effects of erythropoietin (EPO)3 -enhancer on endothelium-dependent and endothelium-independent proliferation caused by hypoxia in cultured porcine pulmonary artery smooth muscle cells (PASMCs) were investigated with MTT test, H(3)-TdR incorporation and flow-cytometry. The results showed that (1) PASMCs exposed to hypoxia for 24 h proliferated significantly, which was suppressed by pretransfecting wild type EPO3 -enhancer fragments into PASMCs, but not by protransfecting mutant fragments; and (2) the conditioned medium of pulmonary artery endothelial cells (PAECs) exposed to hypoxia for 24 h promoted the proliferation of PASMCs. This effect was abolished when wild type EPO3 -enhancer fragments were transfected, but it persisted when mutant fragments were transfected. The results suggest that (1) the conditioned medium of hypoxic PAECs induces proliferation of PASMCs. This may be because that not only PAECs are sensitive to hypoxia, but also PASMCs respond to hypoxia directly; and the hypoxic responses of both endothelial cells (ECs) and smooth muscle cells (SMCs) can be inhibited by exogenous EPO3 -enhancer fragments. (2) Since there is a HIF-1 binding site in EPO3 -enhancer, there may be a common pathway for HIF-1 hypoxia signal transduction in hypoxic responses of ECs and SMCs.

Animals↗

Genesis, a Winged Helix transcriptional repressor, has embryonic expression limited to the neural crest, and stimulates proliferation in vitro in a neural development model.

A novel repressor of the Winged Helix (formerly HNF-3/Forkhead) transcriptional regulatory family, termed Genesis (also called HFH2), was previously found to be exclusively expressed in primitive embryonic cell lines. In this study in situ cRNA hybridization experiments revealed that Genesis was expressed during embryogenesis only in developing neural crest cells. Its expression diminished upon their terminal differentiation into sympathetic and parasympathetic neurons. Based on that finding, Genesis was retrovirally transduced into pluripotent N-Tera-2 clone D1 (NT2/D1) teratocarcinoma cells, which are a well-described in vitro model of neural development. Retinoic acid (RA) treatment will drive these cells to differentiation toward the neuronal lineage and cause an increase in expression of the cyclin-dependent kinase inhibitor p21 protein, which leads to an inhibition in cellular proliferation. Although RA-induced expression of neuronal differentiation markers was not influenced by forced overexpression of Genesis in NT2-D1 cells, proliferation of Genesis-transduced cells continued following RA treatment. RA was unable to induce the expression of the cyclin-dependent kinase inhibitor p21 in the Genesis-transduced cells, but Go/G1 tumor suppressor p53 expression was induced normally. Therefore, Genesis may play a role in the regulation of primitive neural crest development by preventing terminal quiescence through inhibition of p21 protein expression. These data also lend evidence for the hypothesis that proliferation and differentiation pathways are not irrevocably linked, but can function independently.

Animals↗

The structural basis for the recognition of diverse receptor sequences by TRAF2.

Many members of the tumor necrosis factor receptor (TNFR) superfamily initiate intracellular signaling by recruiting TNFR-associated factors (TRAFs) through their cytoplasmic tails. TRAFs apparently recognize highly diverse receptor sequences. Crystal structures of the TRAF domain of human TRAF2 in complex with peptides from the TNFR family members CD40, CD30, Ox40, 4-1BB, and the EBV oncoprotein LMP1 revealed a conserved binding mode. A major TRAF2-binding consensus sequence, (P/S/A/T)x(Q/E)E, and a minor consensus motif, PxQxxD, can be defined from the structural analysis, which encompass all known TRAF2-binding sequences. The structural information provides a template for the further dissection of receptor binding specificity of TRAF2 and for the understanding of the complexity of TRAF-mediated signal transduction.

Amino Acid Sequence↗

Heterogeneous responses of cell Ca2+ in human airway epithelium.

The Ca(2+)-mobilizing actions of adenosine 5'-triphosphate (ATP), bradykinin, and histamine were compared in phenotypically distinct human nasal epithelial (HNE) cell types and as a function of time in cell culture. Single-cell measurements of intracellular free Ca2+ (Ca2+i, Fura-2 fluorescence) were recorded in ciliated cells 1-2 days in primary culture, and in nonciliated cells 1-2 days (keratin 14-positive) or 4-5 days (keratin 18-positive) after seeding. No difference in basal Ca2+i was noted between ciliated and nonciliated cell preparations. For ciliated and nonciliated cells studied 1-2 days in culture, ATP, bradykinin, and histamine elicited a cytosolic Ca2+ response in 100% of the cells examined. For nonciliated HNE cells maintained 4-5 days in culture, ATP (10(-4) M) increased cytosolic Ca2+ in all cells tested, but only 85% of the cells responded to bradykinin (10(-5) M) addition, and 65% to histamine (10(-4) M) stimulation. In terms of the absolute change of Ca2+i (delta Ca2+i, peak-basal value), the efficacy was ATP > bradykinin > histamine for the 3 HNE cell preparations. However, the delta Ca2+i in response to agonists was smaller in nonciliated HNE cells studied 1-2 days or 4-5 days in culture as compared to the ciliated cell preparation. Thapsigargin (300 nM), an agent that mobilizes Ca2+i, was equally effective in raising cytosolic Ca2+ in nonciliated (1-2 days and 4-5 days in culture) and ciliated HNE cells. These data show that ciliated cells consistently respond to all agonists, whereas the cytosolic Ca2+ response to ATP, bradykinin, and histamine in nonciliated cells was quantitatively reduced at a comparable time period (1-2 days) and became smaller and less frequent in nonciliated cell preparations maintained 4-5 days in culture. These results demonstrate time-dependent differences in the magnitude and frequency of cytosolic Ca2+ responses to certain agonists, strongly indicating that measurements of Ca2+i in HNE cells must account for the heterogeneity of the cell types and the time cells are maintained in primary culture.

Adenosine Triphosphate↗

Premature expression of the winged helix transcription factor HFH-11B in regenerating mouse liver accelerates hepatocyte entry into S phase.

Two-thirds partial hepatectomy (PH) induces differentiated cells in the liver remnant to proliferate and regenerate to its original size. The proliferation-specific HNF-3/fork head homolog-11B protein (HFH-11B; also known as Trident and Win) is a family member of the winged helix/fork head transcription factors and in regenerating liver its expression is reactivated prior to hepatocyte entry into DNA replication (S phase). To examine whether HFH-11B regulates hepatocyte proliferation during liver regeneration, we used the -3-kb transthyretin (TTR) promoter to create transgenic mice that displayed ectopic hepatocyte expression of HFH-11B. Liver regeneration studies with the TTR-HFH-11B mice demonstrate that its premature expression resulted in an 8-h acceleration in the onset of hepatocyte DNA replication and mitosis. This liver regeneration phenotype is associated with protracted expression of cyclin D1 and C/EBPbeta, which are involved in stimulating DNA replication and premature expression of M phase promoting cyclin B1 and cdc2. Consistent with the early hepatocyte entry into S phase, regenerating transgenic livers exhibited earlier expression of DNA repair genes (XRCC1, mHR21spA, and mHR23B). Furthermore, in nonregenerating transgenic livers, ectopic HFH-11B expression did not elicit abnormal hepatocyte proliferation, a finding consistent with the retention of the HFH-11B transgene protein in the cytoplasm. We found that nuclear translocation of the HFH-11B transgene protein requires mitogenic signalling induced by PH and that its premature availability in regenerating transgenic liver allowed nuclear translocation to occur 8 h earlier than in wild type.

Animals↗

Extraneural organ involvement in human rabies.

Human rabies is a fatal encephalomyelitis. After the development of the central nervous system infection, there is centrifugal spread of the rabies virus to extraneural (systemic) organs. With histochemical staining and localization of rabies virus antigen (RVA) with immunoperoxidase staining, we have examined tissue sections of organs from 14 postmortem pediatric and adult cases of human rabies acquired in Mexico and the People's Republic of China. RVA was found in nerve plexuses in multiple organs, including the gastrointestinal tract. RVA was observed in muscle fibers of the heart, tongue, and larynx. RVA frequently was observed in the adrenal medulla with an associated inflammatory reaction. Minor salivary glands of the tongue contained RVA and major salivary glands showed RVA in plexuses, but not in either acini or ducts. Epithelial cells of the tongue and taste buds were occasionally infected. RVA was observed in hair follicles of the skin and rarely in pancreatic islets. The infection of extraneural organs was sometimes, but not always, associated with an inflammatory reaction. These findings indicate that centrifugal spread of rabies virus to extraneural organs occurs frequently in human rabies.

Adolescent↗

Antimycoplasmal activities of (S)-(-)-9-fluoro-2,3-dihydro-3-methyl-10 -[4-(2-pyridyl)-1-piperazinyl]-7-oxo-7H-pyrido[1,2,3-de][1,4]benzoxazine -6-carboxylic acid (YH-6) in comparison with other antibiotics in vitro.

AIM: To determine the susceptibilities of Mycoplasma and Ureaplasma to (S)-(-)-9-fluoro-2,3-dihydro-3-methyl-10 -[4-(2-pyridyl)-1-piperazinyl]-7-oxo-7H-pyrido[1,2,3-de][1,4]benzoxazine -6-carboxylic acid (YH-6) and to compare it with those referential quinolones, macrolides, and tetracyclines. METHODS: The minimum inhibitory concentration (MIC) were determined by microdilution method in vitro. RESULTS: The MIC of YH-6 for Ureaplasma urealyticum (Uu: 250 micrograms.L-1), Mycoplasma hominis (Mh: 500 micrograms.L-1), M orale (Mo: 125 micrograms.L-1) and M salivarium (Ms: 125 micrograms.L-1) were closely similar to those of macrolides (erythromycin and leucomycin) and were 2-8 folds greater than those of ofloxacin (Ofl). Uu and Mh easily induced resistance to erythromycin and tetracycline. They did not easily form resistance to quinolone (YH-6, Ofl), josamycin and tylosin. Tetracycline-resistance (Tcr) or erythromycin-resistance (EMr) strains of Uu (or Mh) had cross-resistance to erythromycin or tetracycline. However, they had no cross-resistance to quinolone, josamycin and tylosin. CONCLUSION: YH-6 was a highly active quinolone against Mycoplasma, but could hardly induce resistance to Uu. EMr- or Tcr- strains of Uu (or Mh) had no cross-resistance to YH-6.

Anti-Bacterial Agents↗

Immunolocalization and gene expression of matrilysin during corneal wound healing.

PURPOSE: To investigate the protein level of matrilysin and stromelysin-1 and the gene expression of matrilysin in rat corneas after excimer keratectomy using immunofluorescence staining, reverse transcriptase-polymerase Chain Reaction (RT-PCR), and in situ hybridization. METHODS: Rat corneas were treated with 3-mm excimer laser keratectomy (193-nm ArF). Unwounded corneas served as controls. Confocal microscopy was used to immunolocalize matrilysin protein at 6 hours, 1 day, 3 days, 1 week, 4 weeks, and 8 weeks after surgery. RT-PCR was performed to analyze matrilysin mRNA in unwounded controls and in 3-day wounded corneas. In situ hybridization was performed to localize matrilysin mRNA. RESULTS: Matrilysin was immunolocalized to the epithelial layers of unwounded and wounded corneas, predominantly to the leading edge at 6 hours and 1 day after wounding and to the epithelial layer at 3 to 7 days after surgery. Stromelysin-1 was expressed in the deep stromal layer in the first 3 days after wounding and in the area of newly synthesized stromal matrix 1 week after surgery. Upregulation of matrilysin expression 3 days after wounding was confirmed by RT-PCR. In situ hybridization revealed that the gene expression of matrilysin in rat corneas was upregulated during the migration phase (6 hours, 1 day) and that matrilysin mRNA was predominantly localized to the basal cell layers during the subsequent cell proliferation phase (7 and 14 days). CONCLUSIONS: Basal epithelial cells express matrilysin during the migration proliferation phase of corneal wound healing after excimer keratectomy.

Animals↗

Essential role of the fosB gene in molecular, cellular, and behavioral actions of chronic electroconvulsive seizures.

The role of Fos-like transcription factors in neuronal and behavioral plasticity has remained elusive. Here we demonstrate that a Fos family member protein plays physiological roles in the neuronal, electrophysiological, and behavioral plasticity associated with repeated seizures. Repeated electroconvulsive seizures (ECS) induced isoforms of DeltaFosB in frontal cortex, an effect that was associated with increased levels of the NMDA receptor 1 (NMDAR1) glutamate receptor subunit. Induction of DeltaFosB and the upregulation of NMDAR1 occurred within the same neurons in superficial layers of neocortex. Activator protein-1 (AP-1) complexes composed of DeltaFosB were bound to a consensus AP-1 site in the 5'-promoter region of the NMDAR1 gene. The upregulation of NMDAR1 was absent in mice with a targeted disruption of the fosB gene. In addition, repeated ECS treatment caused progressively shorter motor seizures (tolerance) in both rats and wild-type mice, as well as reduced NMDA-induced inward currents in pyramidal neurons from superficial layers of the neocortex of wild-type mice. These behavioral and electrophysiological effects were also significantly attenuated in fosB mutant mice. These findings identify fosB gene products as transcription factors critical for molecular, electrophysiological, and behavioral adaptations to motor seizures.

Adaptation, Psychological↗

Stimulation of adipose differentiation related protein (ADRP) expression by ibuprofen and indomethacin in adipocyte precursors and in adipocytes.

Adipose differentiation related protein (ADRP) is a 50 kDa protein expressed at high level in differentiated adipocytes. ADRP expression is very low in undifferentiated adipocytes and increases rapidly and dramatically as the cells undergo adipose differentiation. In the present study, we demonstrate that ADRP expression at the mRNA and protein level is stimulated in adipocyte precursor cells in a time- and dose-dependent fashion by treatment with cyclooxygenase inhibitors, particularly indomethacin and ibuprofen. Lipoxygenase inhibitors such as AA861 and nordihydroguaiaretic acid were ineffective. Stimulation of ADRP expression was observed with 10(-5) M ibuprofen but maximal stimulation required a concentration of 3 x 10(-4) M. Nuclear run-on experiments indicated that indomethacin or ibuprofen stimulated the transcription of the ADRP gene in undifferentiated adipocytes. In addition to stimulating the induction of ADRP in undifferentiated cells, ibuprofen and indomethacin also stimulated the level of ADRP mRNA and protein in differentiated adipocytes. These experiments provide new information on the regulation of ADRP, an early inducible gene in the adipocyte differentiation programme in adipocyte precursors and in adipocytes and identify a new target for cyclooxygenase inhibitor action during adipocyte differentiation.

Adipocytes↗

In situ hybridization with 33P-labeled RNA probes for determination of cellular expression patterns of liver transcription factors in mouse embryos.

Murine hepatocyte nuclear factor-3beta (HNF-3beta) protein is a member of a large family of developmentally regulated transcription factors that share homology in the winged helix/fork head DNA binding domain and that participate in embryonic pattern formation. HNF-3beta also mediates cell-specific transcription of genes important for the function of hepatocytes, intestinal and bronchiolar epithelium, and pancreatic acinar cells. We have previously identified a hepatocyte and pancreatic cut-homeodomain transcription factor, HNF-6, which is required for HNF-3beta promoter activity. In this study, we used in situ hybridization studies of stage-specific embryos to demonstrate that HNF-6 and its target gene, HNF-3beta, are coexpressed in the foregut endoderm and in the pancreatic and hepatic diverticulum. More detailed analysis of HNF-6 and HNF-3beta's developmental expression patterns provides evidence of colocalization in hepatocytes, intestinal epithelium, and pancreatic ductal epithelium and exocrine acinar cells. In support of the role of HNF-6 in regulating HNF-3beta expression in developing hepatocytes, their liver expression levels are both transiently reduced between 14 and 15 days of gestation. At day 18 of gestation and in adult pancreas, HNF-6 and HNF-3beta transcripts remain colocalized in the exocrine acinar cells, but their expression patterns diverge in endocrine cells. HNF-3beta expression is restricted to the endocrine cells of the islets of Langerhans, whereas the ductal epithelium expresses HNF-6. We discuss these expression patterns with respect to specification of hepatocytes and differentiation of the endocrine and exocrine pancreas.

Animals↗