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Biomedical subjects

Yu Chang

Publications and source records attributed to Yu Chang.

At least 19 recordsLinked to original sources

Dengue Virus Replicative-Form dsRNA Is Recognized by Both RIG-I and MDA5 to Activate Innate Immunity.

RIG-I like receptors (RLRs) are a family of cytosolic RNA sensors that sense RNA virus infection to activate innate immune response. It is generally believed that different RNA viruses are recognized by either RIG-I or MDA5, two important RLR members, depending on the nature of pathogen-associated molecular patterns (PAMPs) that are generated by RNA virus replication. Dengue virus (DENV) is an important RNA virus causing serious human diseases. Despite extensive investigations, the molecular basis of the DENV PAMP recognized by the host RLR has been poorly defined. Here, we demonstrated that the DENV infection-induced interferon response is dependent upon both RIG-I and MDA5, with RIG-I playing a predominant role. Next we purified the DENV PAMP RNA from the DENV-infected cells, and demonstrated that the purified DENV PAMP is viral full-length double-stranded RNA bearing 5'ppp modifications, likely representing the viral replicative-form RNA. Finally, we confirmed the nature of the DENV PAMP by reconstituting the viral replicative-form RNA from in vitro synthesized DENV genomic RNA. In conclusion, our work not only defined the molecular basis of the RLR-PAMP interaction during DENV infection, but also revealed the previously underappreciated recognition of a distinct moiety of the same PAMP by different RLRs in innate immunity against RNA viruses.

Interferon-Induced Helicase, IFIH1↗

Leptin suppresses human chorionic gonadotropin-induced cyclooxygenase-2 expression and prostaglandin production in cultured human granulose luteal cells.

OBJECTIVE: In a previous study, we demonstrated that high leptin levels at the time of human chorionic gonadotropin (hCG) injection impaired the pregnancy rate for women undergoing in vitro fertilization. In this study we examine leptin's effect on prostaglandin formation and cyclooxygenase (COX) expression induced by hCG in human granulose luteal (GL) cells. METHODS: Human GL cells were obtained from women undergoing ovarian hyperstimulation. COX expression and microsomal prostaglandin E synthase (mPGES) expression, as well as prostaglandin E(2) (PGE(2)) and prostaglandin F(2alpha) (PGF(2alpha)) production were studied. This was done in both the presence and absence of leptin following hCG stimulation. PGE(2) and PGF(2alpha) were determined by enzyme-linked immunosorbent assay (ELISA). The expressions of COX and mPGES were investigated by using immunocytochemical techniques in addition to Western blotting and reverse transcriptase-polymerase chain reaction (RT-PCR) analysis. RESULTS: HCG and leptin do not affect COX-1 expression. However, leptin blocked COX-2 and mPGES expression induced by hCG. Moreover, while leptin, in various concentrations, did not affect PGE(2) and PGF(2alpha) levels, it inhibited the elevation of PGE(2) and PGF(2alpha) concentrations in response to hCG. CONCLUSIONS: The study confirms that the expression of COX-2 is up-regulated by hCG in human GL cells. Leptin suppresses hCG-induced PGE(2) formation through the inhibition of COX-2 and mPGES expression. The preliminary results suggest a potential inhibiting effect of leptin on human GL cells induced by hCG.

Adult↗

Fabrications of hollow nanocubes of Cu(2)O and Cu via reductive self-assembly of CuO nanocrystals.

In this work, a template-free synthetic approach for generating single-crystalline hollow nanostructures has been described. Using the small optical band-gap cuprous oxide Cu(2)O as a model case, we demonstrate that, instead of normally known spherical aggregates, primary nanocrystalline particles can first self-aggregate into porous organized solids with a well-defined polyhedral shape according to the oriented attachment mechanism, during which chemical conversion can also be introduced. In contrast to the spherical aggregates, where the nanocrystallites are randomly joined together, the Cu(2)O nanocrystallites in the present case are well organized, maintaining a definite geometric shape and a global crystal symmetry. Due to the presence of intercrystallite space, hollowing and chemical conversion can also be carried out in order to create central space and change the chemical phase of nanostructured polyhedrons. It has been revealed that Ostwald ripening plays a key role in the solid evacuation process. Using this synthetic strategy, we have successfully prepared single-crystal-like Cu(2)O nanocubes and polycrystalline Cu nanocubes with hollow interiors. For the first time, we demonstrate that nanostructured polyhedrons of functional materials with desired interiors can be synthesized in solution via a combination of oriented attachment and Ostwald ripening processes.

Journal Article↗

[Land use and land cover changes and driving forces in the upper reach of Minjiang River].

The upper reach of Minjiang River is the representative of mountainous area in Southwest China in the aspects of natural environment, ecosystem structure, economic development, and social culture. The characteristics of the dynamic changes of its land use and land cover stood for the common questions occurred in the land resources and usage of this area. Woodland and grassland are the main types of land use and land cover, and many changes in land use/cover types happened from 1974 to 2000. Among forestland, shrub land, economic forestland, grassland, cropland and resident land,changes mainly happened between woodland and grassland, and all occurred bilaterally. The area of forestland changed mostly and kept decreasing from 1974 to 2000, while that of other land types increased. The changes of land use and land cover happened between 1974 and 1986 were larger than those happened between 1986 and 2000. Population and economy were the main driving factors for the changes of land use and land cover in the upper reach of Minjiang River. Since the programs of Natural Forest Protection and Withdrawing Cropland to Woodland and Grassland carried into execution, the land use and land cover have changed rationally.

China↗

Practical synthesis of potential endothelin receptor antagonists of 1,4-benzodiazepine-2,5-dione derivatives bearing substituents at the C3-, N1- and N4-positions.

The expedient synthesis of various 1,4-benzodiazepine-2,5-dione compounds, particularly those having substituents at the C3-, N1- and N4-positions is achieved. The important features in these synthetic strategies include: (i) using the coupling reaction of isatoic anhydride with alpha-amino ester for direct construction of the core structure of 1,4-benzodiazepine-2,5-dione; (ii) using potassium carbonate as the base of choice for selective alkylation at the N1-site, while using lithiated 2-ethylacetanilide as the required base to furnish the N4-alkylation; and (iii) using 2-nitrobenzoyl chloride as a synthetic equivalent of anthranilic acid to facilitate the polyethylene resin-bound liquid-phase combinatorial synthesis. The prepared 1,4-benzodiazepine-2,5-dione compounds are evaluated for endothelin receptor antagonism by a functional assay that measures the inhibitory activity against the change of intramolecular calcium ion concentration induced by endothelin-1. The preliminary results indicate that 1,4-benzodiazepine-2,5-diones bearing two flanked aryl substituents at the N1- and N4-sites show better inhibitory activity than the corresponding unalkylated and N-monoalkylated compounds. A promising candidate, 1-benzyl-7-chloro-3-isopropyl-4-(3-methoxybenzyl)-1,4-benzodiazepine-2,5-dione (17b), exhibits an IC50 value in low nM range.

Animals↗

Large-scale synthesis of high-quality ultralong copper nanowires.

The present difficulties in synthesis of one-dimensional copper are short length, nonlinear morphology, polydispersivity, poor crystallinity, low yield, and process complexity. In this work, we demonstrate that high-quality ultralong copper nanowires (90-120 nm in diameter, 40-50 microm in length; aspect ratio >350-450) can be synthesized in large scale with a facile aqueous reduction route at low cost. The prepared copper nanowires can also be used as starting solid precursor for fabrication of polycrystalline oxide nanotubes via direct oxidation in air.

Letter↗

Atrial natriuretic peptide inhibits ovarian functions in female mice.

OBJECTIVE: To investigate the effects of atrial natriuretic peptide (ANP) on ovarian regulation in mice through intraperitoneal administration. STUDY DESIGN: Forty-two ICR strain female mice were divided into seven groups, including one control. Each mouse received ovarian hyperstimulation. ANP was prepared with saline at concentrations of 0 (as control), 2, 4, 8, 10, 20, and 30 ng/g of body weight. The solution was intraperitoneally applied to each referred group (n = 6) 1 h before the hMG and hCG injections. The mice were sacrificed next morning and blood samples were collected for analysis. RESULTS: A significant reduction in both ovarian weight and the number of oocytes was found as the ANP dosage increased. ANP treatment decreased both serum estradiol and progesterone levels. The pituitary FSH and LH contents elevated significantly by ANP at a dosage larger than 4 ng/g of body weight; however, both serum FSH and LH levels remained unchanged. Histologically, there were remarkable ovarian inhibitory features, i.e. reduction in size and number of follicles, arrest of follicular growth and diminution of ovulation. CONCLUSION: Intraperitoneal administration of ANP inhibits the follicular growth, ovulation and steroidogenesis in female mice. These effects are attributed to the direct action of ANP on ovaries.

Animals↗

Formation of colloidal CuO nanocrystallites and their spherical aggregation and reductive transformation to hollow Cu2O nanospheres.

In this work, we demonstrate that cuprous oxide Cu(2)O nanospheres with hollow interiors can be fabricated from a reductive conversion of aggregated CuO nanocrystallites without using templates. A detailed process mechanism has been revealed: (i) formation of CuO nanocrystallites; (ii) spherical aggregation of primary CuO crystallites; (iii) reductive conversion of CuO to Cu(2)O; and (iv) crystal aging and hollowing of Cu(2)O nanospheres. In this template-free process, Ostwald ripening is operative in (iv) for controlling crystallite size in shell structures and thus for precisely tuning the optical band gap energy (E(g)) of resultant semiconductor nanostructures. For the first time, a wealth of colorful Cu(2)O hollow nanospheres (outer diameters in 100-200 nm), with variable E(g) in the range of 2.405-2.170 eV, has been fabricated via this novel chemical route. Considering their unique hollow structure and facile tuning in band gap energy, the prepared Cu(2)O hollow spheres can be potentially useful for harvesting solar energy in the visible range. Possibility of fabrication of Cu-Cu(2)O nanocomposites has also been discussed.

Journal Article↗

[Landscape change in Kangbao County of Hebei {rovince].

Based on RS image TM5 of 1999 and SPOT5 of 2003, this paper studied the landscape change from 1999 to 2003 of Kangbao County, Hebei Province. Logistic regression was adopted to analyze the driving factors, and Kappa index was used to evaluate the accuracy of the landscape classification result, which was 86.72% for 1999, and 89.76% for 2003. The area of cropland in Kangbao County reduced largely, while that of vegetable field, forestland and artificial grassland increased sharply, among which, vegetable field and artificial grassland had the greatest increasing rate. The landscape fragmentation aggravated in the region. The landscape change was mainly caused by the policy of reducing cultivated land, with the main driving factor slope, and the direct driving factor water-heat condition and soil fertility determined by slope aspect.

China↗

The clinical and urodynamic effects of the tension free bladder neck sling procedure.

This study evaluated the clinical and urodynamic findings before and after tension-free bladder neck sling (TBS) procedure with Prolene tape. We enrolled 32 women who underwent TBS for genuine stress incontinence without intrinsic sphincter deficiency or severe uterovaginal prolapse. All subjects received 1-h pad test, Q-tip test, multichannel urodynamic testing, introital ultrasonography, and the Bristol Female Lower Urinary Tract Symptoms Questionnaires before and 1 year after surgery. Of the 32 subjects 27 were cured of stress incontinence, two improved, and three failed. The incidence of irritative symptoms and incomplete bladder emptying were significantly lower after surgery. The mean urethral straining angle showed a significant decrease from 73.8 degrees preoperatively to 30.1 degrees postoperatively. At rest the postsurgical position of the bladder neck (BN) was localized more cranially. During straining both ventral and caudal mobility of the BN decreased significantly following TBS, causing a more cranial and dorsal position of the BN. Urodynamic parameters including functional urethral length, maximal urethral closure pressure, and pressure transmission ratio showed significant increases after surgery. TBS could decrease the hypermobility of the BN and restore the BN support to prevent urinary leakage during straining, instead of urethral obstruction. The subjective and objective cure rate of stress incontinence is 84%, similar to those results reported after retropubic urethropexy and tension-free vaginal tape procedure. It is also worth emphasizing that no postoperative urinary retention occurred, although the limited number of cases makes it hard to confirm the significance of findings over the retention rate of tension-free vaginal tape.

Adult↗

Lateral excision of tension-free vaginal tape for the treatment of iatrogenic urethral obstruction.

OBJECTIVE: To report our experience on lateral excision of tape in women with iatrogenic urethral obstruction after the tension-free vaginal tape (TVT) procedure. METHODS: Seven women had iatrogenic urethral obstruction based on their clinical and urodynamic findings. All underwent lateral excision of the tape using the vaginal approach. Lower urinary tract symptoms, postvoid residual volume and urodynamic data were evaluated before and after excision. RESULTS: Before excision, all subjects had either irritative symptoms or increased postvoid residual volume (more than 100 mL), and 6 (85.7%) voided with strain. The mean time from initial surgery to tape excision was 28 days (range 4 to 108), with an average follow-up of 32 months (range 24-39). After the excision, voiding dysfunction was resolved in 6 of 7 patients. The remaining patient had significant improvement with only occasional symptoms of irritation. Two (28.6%) women reported recurrent stress incontinence and 1 (14.3%) required surgical treatment. The intervals for the 2 recurrent patients from TVT to excision were 4 days. The intervals for the 5 continent women were 15 to 108 days. CONCLUSION: Urethral obstruction after TVT is a relatively uncommon condition. It can be effectively treated with transvaginal lateral excision of the tape. Recurrent stress incontinence seems to be less likely to occur when the takedown procedure occurs beyond 14 days after the initial TVT operation.

Female↗

[Dynamics of forest landscape boundary at Changbai Mountain].

By using Geographic Information System (GIS) and Remote Sensing (RS) technology combined with field investigation and correlation analysis, this study was aimed to explore the dynamics of forest landscape boundary at Changbai Mountain, and to reveal the relationships among landscape fragmentation and changes of landscape boundary indices. The results showed that in the last 20 years or so, tundra decreased by 3694.8 hm2, spruce and fir forest reduced by 130482.03 hm2, and Korean pine-hardwood and mountain birch forest increased by 41610.4 hm2 and 669.78 hm2, respectively. The forest landscapes at Changbai Mountain tended to be more fragmented, and the shape of the landscape boundary became more complicated due to timber harvesting, forest cutting for cropping, and other human activities such as tourism. The changes of landscape shape index (LSI), contrast weighted edge density (CWED), total weighted edge length (TE-WGT) and weighted landscape shape index (LSI-WGT) could be used as good indicators for the degrees of forest landscape fragmentations, which was approved by correlation analysis among landscape fragmentation and changes of landscape boundary indices. The degree of human activities on landscape could be reflected by landscape shape index.

China↗

[Spatially explicit landscape model-LANDIS I. Mechanism].

Spatially explicit landscape models are the models that spatially explicitly simulate the ecological processes at landscape scale on heterogeneous landscape. LANDIS is a spatially explicit landscape model of forest landscape disturbance, succession and management. By recording the absence/presence of species in terms of 10-yr age cohorts at site level, the semi-quantitative description of fire and windthrow disturbances, and the representation of age-cohorts by bit-wise array, it is possible for LANDIS to simulate the ecological processes at species, site and landscape level. We addressed in detail the approaches used in simulating seed dispersal, disturbances of fire and windthrow, and harvesting. The deficiencies of the model were also discussed to provide feedback for model development.

Biodiversity↗

[Sensitivity analysis in ecological modeling].

Sensitivity analysis is used to qualitatively or quantitatively apportion the variation of model output to different source of variation. It is a very useful tool in model parameterization and calibration, and has important ecological significance by identifying the governing factors for a certain ecological process simulated. There are two schools of sensitivity analysis, local sensitivity analysis and global sensitivity analysis. The former examines the local response of the output(s) by varying input parameters one at a time, holding other parameters to a central value; and the latter examines the global response (averaged over the variation of all the parameters) of model output(s) by exploring a finite (or even an infinite) region. Since it is very easy to conduct local sensitivity analysis, it is very popular in ecological models. However, local sensitivity analysis is not computationally effective, because it can only get the sensitivity of a single parameter at a time. It can not take into consideration the effect of interaction of different parameters. Additionally, the value of other parameters will affect the sensitivity of the parameter specified. In view of this, global sensitivity analysis is increasingly preferred to local sensitivity in recent years. However, for most of the ecological modeling study published in Chinese, only local sensitivity analysis is conducted. To provide a toolbox of alternative sensitivity analysis algorithms for ecological model development in future study, we reviewed the main methods of both local sensitivity analysis and global sensitivity analysis, including one at a time method, multivariate regression, Morris' method, Sobol's method, Fourier Amplitude Sensitivity Analysis, and Extended Fourier Amplitude Sensitivity Analysis. Based on the state-of-the-art research on sensitivity analysis, the sensitivity of the interaction between two or more than two model parameters, the sensitivity of common model parameters in a set of models, and the sensitivity analysis in spatially explicit landscape model simulation were identified as the key areas and difficulties of future study on sensitivity analysis in ecological modeling.

Ecology↗

[Landscape pattern change at the upper reaches of Minjiang River and its driving force].

The upper reaches of Minjiang River is an ecological sensitive and vulnerable area in southwest of China. It is of great significance to the ecological pattern safety in China. In this study, we analyzed the landscape pattern change through the interpretation of TM imageries in 1986, 1995 and 2000. The results showed that the matrix landscape in this area was grass landscape. Forest landscape patches were embedded in the grass landscape. The forest landscape area increased from 1986 to 1995 and decreased from 1995 to 2000. However, the number of patches of forest landscape was increasing during all the time. This suggested that the intensity of anthropogenic disturbances including harvesting, forest landscape reclaiming and excessive grazing were persistently increasing from 1986 to 2000. The ecological driving forces of the landscape change in this area were the intensified anthropogenic disturbances as a result of the population boom including the predacious harvesting of forest and excessive grazing. The natural disturbances such as the global climatic change also partly influenced the landscape change in this area.

China↗

[Depth of edge influence on agriculture-forestry boundary in arid valley of upper reaches of Minjiang River, China].

By using moving split-window techniques (MSWT), this study estimated how far the edge effects penetrated the forest and agricultural fields in the arid valley of upper reaches of Minjiang River, southwestern China. Its aim was to provide general information on vegetation along edge to interior gradients in order to assist in interpretation and prediction of biological phenomena associated with agriculture-forestry boundary, and to improve current management practices in such areas. Three types of boundaries (10 transects) were investigated and sampled. The results showed that when the window width reached 6-10, the change of the SED curve on the graph tended to become stable, and one or two peaks occurred. The depth of edge influence was clearly different for different types of boundaries, and could be estimated within 50 m from the edge to interior. The depth of edge influence (DEI) on vegetation diversity almost varied between 12-30 m, mainly depending on the patch type, topography and microclimate, but seldom on slope orientation. Of the 6 forest transects in the three types of boundaries, the DEI was detected only in the forest part transects M2 and M6, but almost detectable in the agricultural part of all transects. MSWT was considered to be a useful tool for characterizing edge dynamics if enough data was available, and became a simple and powerful technique for analyzing the boundary. The results will provide further knowledge for understanding the interaction between forestry and agriculture in the arid valley.

China↗

[Application of spatially explicit landscape model in soil loss study in Huzhong area].

Universal Soil Loss Equation (USLE) has been widely used to estimate the average annual soil loss. In most of the previous work on soil loss evaluation on forestland, cover management factor was calculated from the static forest landscape. The advent of spatially explicit forest landscape model in the last decade, which explicitly simulates the forest succession dynamics under natural and anthropogenic disturbances (fire, wind, harvest and so on) on heterogeneous landscape, makes it possible to take into consideration the change of forest cover, and to dynamically simulate the soil loss in different year (e.g. 10 years and 20 years after current year). In this study, we linked a spatially explicit landscape model (LANDIS) with USLE to simulate the soil loss dynamics under two scenarios: fire and no harvest, fire and harvest. We also simulated the soil loss with no fire and no harvest as a control. The results showed that soil loss varied periodically with simulation year, and the amplitude of change was the lowest under the control scenario and the highest under the fire and no harvest scenario. The effect of harvest on soil loss could not be easily identified on the map; however, the cumulative effect of harvest on soil loss was larger than that of fire. Decreasing the harvest area and the percent of bare soil increased by harvest could significantly reduce soil loss, but had no significant effects on the dynamic of soil loss. Although harvest increased the annual soil loss, it tended to decrease the variability of soil loss between different simulation years.

China↗

Reversible switching of high-speed air-liquid two-phase flows using electrowetting-assisted flow-pattern change.

This work is the first demonstration of electrical modulation of surface energy to reversibly switch dynamic high-speed gas-liquid two-phase microfluidic flow patterns. Manipulation of dynamic two-phase systems with continuous high-speed flows is complex and interesting due to the multiple types of forces that need to be considered. Here, distinct stable flow patterns are formed through a multipronged approach: both surface tension forces generated by surface chemistry modulation as well as viscous and inertial forces produced by fluid flows are employed. The novel fluidic actuation mechanism provides insights into better understanding microscale two-phase flow dynamics and offers new opportunities for the development of two-phase biochemical microsystems that are mechanically simple and operational at high speeds.

Air↗