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Biomedical subjects

Qiang Wu

Publications and source records attributed to Qiang Wu.

At least 37 records · Page 2Linked to original sources

[Effects of drought stress on cyanide-resistant respiration and metabolism of reactive oxygen in wheat seedling].

The changes in cyanide-resistant respiration and metabolism of active oxygen species in drought-sensitive and drought-resistant wheat seedlings under water stress were studied. In general, drought stress decreased the level of cyanide-resistant respiration and AOX1 mRNA content in wheat seedling leaves. But the drought-resistant cultivars, which had much higher level of cyanide-resistant respiration and AOX1 mRNA content than the drought-sensitive ones, presented an ability to adapt to mild drought stress. Under drought stress, the drought-sensitive wheat seedling leaves had higher O(-.)(2) and H(2)O(2) contents, but lower SOD, POX and CAT activities than drought-resistant cultivars. We guessed that severe drought stress could break down the balance between active oxygen species and cyanide-resistant respiration. However, cyanide-resistant respiration still could participate in the drought-resistance by lowering the level of active oxygen species besides by other mechanism.

Blotting, Northern↗

Level of asymmetric dimethylarginine and carotid atherosclerosis in patients with chronic kidney disease.

OBJECTIVE: To determine the association between asymmetric dimethylarginine (ADMA), an endogenous inhibitor of nitric oxide (NO) synthase, with atherosclerosis in patients with chronic kidney disease (CKD). METHODS: One hundred thirty-eight CKD patients were enrolled in this study. Serum levels of L-arginine, ADMA, and SDMA were measured by high-performance liquid chromatography (HPLC). Common carotid arteries intimae-medial thickness (CCA-IMT), cross-sectional calculated intimae-medial thickness (cIM area) and atherosclerotic plaque were detected by noninvasive high-resolution B-mode ultrasonography. RESULTS: Serum levels of ADMA and SDMA were significantly increased in CKD patients (n=138) compared with age matched healthy subjects (n=42, P<0.01). ADMA and SDMA levels increased with the progression of renal dysfunction and were negatively related to creatinine clearance (Ccr) in pre-dialysis patients (r=-0.315, P<0.05; r=-0.426, P<0.01). Serum levels of ADMA and SDMA in dialysis patients (n=74) were significantly higher than those in pre-dialysis patients (P<0.05). Patients with carotid artery plaques showed significantly higher levels of ADMA compared with those without plaques. Serum levels of ADMA closely correlated with the mean IMT (r=0.471, P<0.01) and cIM area value (r=0.430, P<0.01). These correlations remained significant even after adjusting GFR, age, gender ,and other risk factors for atherosclerosis in the multiple regression analysis. CONCLUSION: Serum levels of ADMA increased with the progression of CKD and may play a role in the pathogenesis of accelerated atherosclerosis in CKD patients.

Adult↗

p53 functions as a negative regulator of osteoblastogenesis, osteoblast-dependent osteoclastogenesis, and bone remodeling.

p53 is a well known tumor suppressor. We show that p53 also regulates osteoblast differentiation, bone formation, and osteoblast-dependent osteoclast differentiation. Indeed, p53(-/-) mice display a high bone mass phenotype, and p53(-/-) osteoblasts show accelerated differentiation, secondary to an increase in expression of the osteoblast differentiation factor osterix, as a result. Reporter assays indicate that p53 represses osterix transcription by the minimal promoter in a DNA-binding-independent manner. In addition, p53(-/-) osteoblasts have an enhanced ability to favor osteoclast differentiation, in association with an increase in expression of macrophage-colony stimulating factor, which is under the control of osterix. Furthermore, inactivating p53 is sufficient to rescue the osteoblast differentiation defects observed in mice lacking c-Abl, a p53-interacting protein. Thus, these results identify p53 as a novel regulator of osteoblast differentiation, osteoblast-dependent osteoclastogenesis, and bone remodeling.

Animals↗

Synthesis and optical properties of gallium phosphide nanotubes.

Gallium phosphide nanotubes with zinc blende structure were synthesized for the first time. The as-prepared GaP nanotubes are polycrystalline with diameters of 30-120 nm and occasionally partially filled. The growth has been reasonably proposed to follow vapor-liquid-solid (VLS) mechanism. The integration of the nanotubular structure with the unique intrinsic semiconducting properties of GaP might bring GaP nanotubes some novel optical and electronic properties and applications.

Journal Article↗

AlN nanotube: round or faceted?

Theoretical studies on one-dimensional AlN nanostructures have been performed. A faceted instead of cylindric model is proposed to reasonably understand the synthesized hexagonal AlN nanotubes. The close correlation is established that the nanotube structure should possess similar symmetry to that of the corresponding bulk crystal. This is also suitable for the few other faceted nanotubes and could be used to predict the morphology for the increasing nanotubes from nonlayered materials.

Journal Article↗

Analysis of pyramidal neuron morphology in an inducible knockout of brain-derived neurotrophic factor.

BACKGROUND: The messenger ribonucleic acid (mRNA) for brain-derived neurotrophic factor (BDNF), a regulator of pyramidal neuron dendritic spine density during development, is decreased in the prefrontal cortex of subjects with schizophrenia, and the level of BDNF mRNA expression is positively correlated with dendritic spine density in the same subjects. METHODS: To determine whether reduced BDNF mRNA expression might account for decreased spine density in schizophrenia, a knockout of the BDNF gene was induced in mice during embryogenesis or at 12 weeks of age. Quantitative assessments were made of the dendritic arbor of Golgi-impregnated pyramidal neurons in the prelimbic and anterior cingulate cortices in adulthood. RESULTS: Despite an 80% reduction in BDNF mRNA levels in both knockouts, neither spine density nor other dendritic or somal measures were decreased compared with wild-type animals. CONCLUSIONS: A reduction in BDNF expression alone does not seem to be sufficient to alter pyramidal neuron morphology in mice. This finding suggests that other molecular abnormalities are also required to produce the pyramidal neuron dendritic spine abnormalities observed in schizophrenia.

Animals↗

Comparative genomics and diversifying selection of the clustered vertebrate protocadherin genes.

To explain the mechanism for specifying diverse neuronal connections in the brain, Sperry proposed that individual cells carry chemoaffinity tags on their surfaces. The enormous complexity of these connections requires a tremendous diversity of cell-surface proteins. A large number of neural transmembrane protocadherin (Pcdh) proteins is encoded by three closely linked human and mouse gene clusters (alpha, beta, and gamma). To gain insight into Pcdh evolution, I performed comprehensive comparative cDNA and genomic DNA analyses for the three clusters in the chimpanzee, rat, and zebrafish genomes. I found that there are species-specific duplications in vertebrate Pcdh genes and that additional diversity is generated through alternative splicing within the zebrafish "variable" and "constant" regions. Moreover, different codons (sites) in the mammalian Pcdh ectodomains (ECs) are under diversifying selection, with some under diversity-enhancing positive Darwinian selection and others, including calcium-binding sites, under strong purifying selection. Interestingly, almost all positively selected codon positions are located on the surface of ECs 2 and 3. These diversified residues likely play an important role in combinatorial interactions of Pcdh proteins, which could provide the staggering diversity required for neuronal connections in the brain. These results also suggest that adaptive selection is an additional evolutionary factor for increasing Pcdh diversity.

Alternative Splicing↗

[Therapeutic effects of RNA interference targeting HIF-1 alpha gene on human osteosarcoma].

OBJECTIVE: To investigate the inhibition effect of the small hairpin RNA (shRNA) targeting HIF-1alpha gene on the growth of osteosarcoma in vitro and in vivo. METHODS: The small hairpin RNA (shRNA) eukaryotic expression vector targeting HIF-1alpha gene, named pSilencer-HIF, was constructed and transfected into cultured human osteosarcoma cell of line SaOS-2 via liposome reagent. Then the osteosarcoma cells were cultured under chemical hypoxia conditions. The inhibition effects on HIF-1alpha gene were determined by semi-quantitative reverse transcription PCR and Western blot analysis. The in vitro cellular growth activities were assayed by MTT colorimetry. The cell apoptosis was studied by electron microscopy, TUNEL assay, and annexin V/PI double staining. Eighteen Balb/C mice were randomly divided into 3 equal groups to be inoculated with SaOS-2/shRNA, SaOS-2/neo (blank vector), or SaOS-2 subcutaneously respectively and then the appearance and size of tumors were observed. Four weeks later the mice were killed and the volumes of tumor were calculated so as to evaluate the therapeutic effects of shRNA. RESULTS: The successful construction of pSilencer-HIF plasmid was identified with sequencing. After the shRNA expression vector was transfected into the SaOS-2 cells, the expression of HIF-1alpha gene was inhibited significantly (by 90%). The cellular growth activities in the SaOS-2 cells transfected with pSilencer-HIF plasmid decreased obviously in hypoxia culture. After 72 hours of exposure to hypoxia, electron microscopy and TUNEL assay showed classic apoptosis characters in the SaOS-2 cells transfected with pSilencer-HIF plasmid with an apoptosis rate of 18.71% +/- 0.98%, significantly higher than those in the negative control group transfected with pSilencer-neo and in the nontransfected group (both P < 0.01). The growth speed and formation rate of xenograft tumor in pSilencer-HIF transfected mice slowed down significantly. A lot of necrotic tissues could be observed in the pSilencer-HIF transfected group by HE staining, however, there was no similar inhibitive effect in the control groups. CONCLUSION: shRNA targeting HIF-1alpha gene blocks the hypoxia transduction pathway efficiently and inhibits the growth of osteosarcoma cells.

Animals↗

Vapor-solid growth and characterization of aluminum nitride nanocones.

Aluminum nitride nanostructures are attractive for many promising applications in semiconductor nanotechnology. Herein we report on vapor-solid growth of quasi-aligned aluminum nitride nanocones on catalyst-coated wafers via the reactions between AlCl3 vapor and NH3 gas under moderate temperatures around 700 degrees C, and the growth mechanism is briefly discussed. The as-prepared wurtzite aluminum nitride nanocones grow preferentially along the c-axis with adjustable dimensions of the sharp tips in the range of 20-60 nm. The photoluminescence spectrum reveals a broad blue emission band with a fine photon structure while the field emission study shows a notable emission current with a moderate turn-on field as expected, suggesting their potential applications in light and electron emission nanodevices.

Journal Article↗

Wavelet-based compression of M-FISH images.

Multiplex fluorescence in situ hybridization (M-FISH) is a recently developed technology that enables multi-color chromosome karyotyping for molecular cytogenetic analysis. Each M-FISH image set consists of a number of aligned images of the same chromosome specimen captured at different optical wavelength. This paper presents embedded M-FISH image coding (EMIC), where the foreground objects/chromosomes and the background objects/images are coded separately. We first apply critically sampled integer wavelet transforms to both the foreground and the background. We then use object-based bit-plane coding to compress each object and generate separate embedded bitstreams that allow continuous lossy-to-lossless compression of the foreground and the background. For efficient arithmetic coding of bit planes, we propose a method of designing an optimal context model that specifically exploits the statistical characteristics of M-FISH images in the wavelet domain. Our experiments show that EMIC achieves nearly twice as much compression as Lempel-Ziv-Welch coding. EMIC also performs much better than JPEG-LS and JPEG-2000 for lossless coding. The lossy performance of EMIC is significantly better than that of coding each M-FISH image with JPEG-2000.

Algorithms↗

Subspace-based prototyping and classification of chromosome images.

Chromosomes are essential genomic information carriers. Chromosome classification constitutes an important part of routine clinical and cancer cytogenetics analysis. Cytogeneticists perform visual interpretation of banded chromosome images according to the diagrammatic models of various chromosome types known as the ideograms, which mimic artists' depiction of the chromosomes. In this paper, we present a subspace-based approach for automated prototyping and classification of chromosome images. We show that 1) prototype chromosome images can be quantitatively synthesized from a subspace to objectively represent the chromosome images of a given type or population, and 2) the transformation coefficients (or projected coordinate values of sample chromosomes) in the subspace can be utilized as the extracted feature measurements for classification purposes. We examine in particular the formation of three well-known subspaces, namely the ones derived from principal component analysis (PCA), Fisher's linear discriminant analysis, and the discrete cosine transform (DCT). These subspaces are implemented and evaluated for prototyping two-dimensional (2-D) images and for classification of both 2-D images and one-dimensional profiles of chromosomes. Experimental results show that previously unseen prototype chromosome images of high visual quality can be synthesized using the proposed subspace-based method, and that PCA and the DCT significantly outperform the well-known benchmark technique of weighted density distribution functions in classifying 2-D chromosome images.

Algorithms↗

The male seahorse synthesizes and secretes a novel C-type lectin into the brood pouch during early pregnancy.

The male seahorse incubates its young in a manner resembling that of a mammalian pregnancy. After the female deposits her eggs into the male's brood pouch they are fertilized and the embryos develop and grow for several weeks until they are able to withstand the external environmental conditions independently, at which point they are irreversibly released. Although the precise function of the brood pouch is not clear, it is probably related to providing a suitable protective and osmotic environment for the young. The aim of this project was to construct and characterize a cDNA library made from the tissue lining the pouch, in order to help understand the molecular mechanisms regulating its development and function. The library profile indicates expression of genes encoding proteins involved in metabolism and transport, as well as structural proteins, gene regulatory proteins, and other proteins whose function is unknown. However, a large portion of the library contained genes encoding C-type lectins (CTLs), of which three full-length proteins were identified and found to contain a signal peptide and a single C-lectin domain, possessing all the conserved structural elements. We have produced recombinant protein for one of these and raised antisera; we have shown, using Western analysis and 2D electrophoresis, that this protein is secreted in significant quantities into the pouch fluid specifically during early pregnancy. Preliminary functional studies indicate that this CTL causes erythrocyte agglutination and may help to repress bacterial growth.

Allosteric Site↗

Fusobacterium nucleatum increases collagenase 3 production and migration of epithelial cells.

Fusobacterium nucleatum is closely associated with human periodontal diseases and may also be a causative agent in other infections, such as pericarditis, septic arthritis, and abscesses of tonsils and liver. Initiation and outcome of infective diseases depend critically on the host cell signaling system altered by the microbe. Production of proteinases by infected cells is an important factor in pericellular tissue destruction and cell migration. We studied binding of F. nucleatum to human epithelial cells (HaCaT keratinocyte line) and subsequent cell signaling related to collagenase 3 expression, cell motility, and cell survival, using a scratch wound cell culture model. F. nucleatum increased levels of 12 protein kinases involved in cell migration, proliferation, and cell survival signaling, as assessed by the Kinetworks immunoblotting system. Epithelial cells of the artificial wound margins were clearly preferential targets of F. nucleatum. The bacterium colocalized with lysosomal structures and stimulated migration of these cells. Of the 13 anaerobic oral bacterial species, F. nucleatum and Fusobacterium necrophorum were among the best inducers of collagenase 3 mRNA levels, a powerful matrix metalloproteinase. Production of collagenase 3 was detected in fusobacterium-infected cells and cell culture medium by immunocytochemistry, immunoblotting, and zymography. The proteinase production involved activation of p38 mitogen-activated protein kinase in the infected cells. The study suggests that F. nucleatum may be involved in the pathogenesis of periodontal diseases (and other infections) by activating multiple cell signaling systems that lead to stimulation of collagenase 3 expression and increased migration and survival of the infected epithelial cells.

Cell Movement↗

Cross talk in hormonally regulated gene transcription through induction of estrogen receptor ubiquitylation.

Estrogen tightly regulates the levels of circulating gonadotropins, but a direct effect of estrogen receptor alpha (ERalpha) on the mammalian LHbeta gene has remained poorly defined. We demonstrate here that ERalpha can associate with the LHbeta promoter through interactions with Sf-1 and Pitx1 without requiring an estrogen response element (ERE). We show that gonadotropin-releasing hormone (GnRH) promotes ERalpha ubiquitylation and also degradation while stimulating expression of ubc4. GnRH also increases the association and lengthens the cycling time of ERalpha on the LHbeta promoter. The ERalpha association and transactivation of the LHbeta gene, as well as ERalpha degradation, are increased following ubc4 overexpression, while the effects of GnRH are abated following ubc4 knockdown. Our results indicate that ERalpha ubiquitylation and subsequent transactivation of the LHbeta gene can be induced by increasing the levels of the E2 enzyme as a result of signaling by an extracellular hormone, thus providing a new form of cross talk in hormonally stimulated regulation of gene expression.

Animals↗

[Development of a portable ECG monitor with diagnostic & therapeutic functions and its clinical applications].

A portable ECG monitor is introduced in the paper, which has a temporary intravenous and transesophageal fixable rate pacing function. During the PSVT attack, the tachyarrythmia can be stopped by the transesophageal cardiac pacing while the ECG signals are monitored. The instrument has some advantages such as small size, low price and good practicality. It is worth while introducing and popularizing it to all hospitals.

Electrocardiography, Ambulatory↗

[Effect of silencing HIF-1alpha by RNA interference on expression of vascular endothelial growth factor in osteosarcoma cell line SaOS-2 under hypoxia].

BACKGROUND & OBJECTIVE: Hypoxia-inducible factor-1 alpha (HIF-1alpha) is a key regulator for hypoxia tolerance and angiogenesis of tumor. This study was to investigate the expression of HIF-1alpha and vascular endothelial growth factor (VEGF) in human osteosarcoma cell line SaOS-2 under hypoxia, to explore the effect of HIF-1alpha on hypoxia-activated angiogenesis regulation pathway in osteosarcoma. METHODS: CoCl2 was used as chemical hypoxia-inducing reagent to mimic tumor hypoxic microenvironment. mRNA and protein levels of HIF-1alpha and VEGF at different hypoxic culture phases were detected by semi-quantitative reverse transcription-polymerase chain reaction (RT-PCR) and immunohistochemistry. Small hairpin RNAs (shRNAs) eukaryotic expression vector targeting HIF-1alpha was constructed, and transfected into SaOS-2 cells. Western blot was used to detect gene silencing effect on HIF-1alpha. RT-PCR and enzyme-linked immunosorbent assay (ELISA) were used to observe the change of VEGF gene expression after HIF-1alpha gene silence. RESULTS: Under hypoxia, mRNA level of HIF-1alpha kept stable, while its protein level increased obviouslyu both mRNA and protein levels of VEGF were up-regulated. The shRNAs plasmid targeting HIF-1alpha gene was constructed successfully, and down-regulated HIF-1alpha gene in SaOS-2 cells efficiently followed by VEGF gene down-regulation. CONCLUSIONS: Hypoxia can increase protein level of HIF-1alpha in osteosarcoma. HIF-1alpha up-regulates the gene expression of VEGF via transcription activation which promotes angiogenesis in osteosarcoma under hypoxic microenvironment.

Bone Neoplasms↗