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Rick Jorgensen Rajsri Raghunath Haoran Gao Eric Olson Perry K. W. Ng Venu Gangur 《International journal of molecular sciences》2022,23(12)
Wheat allergies are potentially life-threatening because of the high risk of anaphylaxis. Wheats belong to four genotypes represented in thousands of lines and varieties. Monitoring changes to wheat allergens is critical to prevent inadvertent ntroduction of hyper-allergenic varieties via breeding. However, validated methods for this purpose are unavailable at present. As a proof-of-concept study, we tested the hypothesis that salt-soluble wheat allergens in our mouse model will be identical to those reported for humans. Groups of Balb/cJ mice were rendered allergic to durum wheat salt-soluble protein extract (SSPE). Using blood from allergic mice, a mini hyper-IgE plasma bank was created and used in optimizing an IgE Western blotting (IEWB) to identify IgE binding allergens. The LC-MS/MS was used to sequence the allergenic bands. An ancient Aegilops tauschii wheat was grown in our greenhouse and extracted SSPE. Using the optimized IEWB method followed by sequencing, the cross-reacting allergens in A. tauschii wheat were identified. Database analysis showed all but 2 of the durum wheat allergens and all A. tauschii wheat allergens identified in this model had been reported as human allergens. Thus, this model may be used to identify and monitor potential changes to salt-soluble wheat allergens caused by breeding. 相似文献
24.
Sisi Zhang Rachel W.S. Chan Ernest H.Y. Ng William S.B. Yeung 《International journal of molecular sciences》2022,23(9)
Human endometrium is an incredibly dynamic tissue undergoing cyclic regeneration and shedding during a woman’s reproductive life. Endometrial mesenchymal stromal/stem-like cells (eMSC) contribute to this process. A hypoxic niche with low oxygen levels has been reported in multiple somatic stem cell types. However, the knowledge of hypoxia on eMSC remains limited. In mice, stromal stem/progenitor cells can be identified by the label-retaining technique. We examined the relationship between the label-retaining stromal cells (LRSC) and hypoxia during tissue breakdown in a mouse model of simulated menses. Our results demonstrated that LRSC resided in a hypoxic microenvironment during endometrial breakdown and early repair. Immunofluorescence staining revealed that the hypoxic-located LRSC underwent proliferation and was highly colocalized with Notch1. In vitro studies illustrated that hypoxia activated Notch signaling in eMSC, leading to enhanced self-renewal, clonogenicity and proliferation of cells. More importantly, HIF-1α played an essential role in the hypoxia-mediated maintenance of eMSC through the activation of Notch signaling. In conclusion, our findings show that some endometrial stem/progenitor cells reside in a hypoxic niche during menstruation, and hypoxia can regulate the self-renewal activity of eMSC via Notch signaling. 相似文献
25.
Environmental factors affecting plasmin activity in milk 总被引:2,自引:0,他引:2
A total of 367 milk samples were collected from 43 individual Holstein cows during 1 yr. Samples were analyzed for plasmin activity, total casein, alpha s-casein (alpha s1-casein + alpha s2-casein), beta-casein, kappa-casein, and SCC. Least squares analyses showed that SCC in milk were positively related (r = .62) to plasmin activity. An increase of SCC from 100,000 to 1,300,000/ml was associated with a 2.3-fold increase in plasmin activity (100 vs. 230 x 10(-6) units/ml). Increased plasmin activity was associated with advancing stage of lactation and older cows after appropriate adjustments were made for the effects of milk yield and SCC. Milk samples obtained in fall and winter were higher, but not significantly, in plasmin activity. Plasmin activity was also associated with major casein components and milk pH. Correlations coefficients between plasmin and alpha s-casein, beta-casein, and pH were -.14, -.27, and .19. 相似文献
26.
Qing-Dan Yang Tsz-Wai Ng Ming-Fai Lo Ning-Bew Wong Chun-Sing Lee 《Organic Electronics》2012,13(12):3220-3225
Graphene and graphene oxide (GO) have been applied in flexible organic electronic devices with enhanced efficiency of polymeric photovoltaic (OPV) devices. In this work, we demonstrate that storage/operation stability of OPV can be substantially enhanced by spin-coating a GO buffer layer on ITO without any further treatment. With a 2 nm GO buffer layer, the power conversion efficiency (PCE) of a standard copper phthalocyanine (CuPc)/fullerene (C60) based OPV device shows about 30% enhancement from 1.5% to 1.9%. More importantly, while the PCE of the standard device drop to 1/1000 of its original value after 60-days of operation-storage cycles; those of GO-buffered device maintained 84% of initial PCE even after 132-days. Atomic force microscopy studies show that CuPc forms larger crystallites on the GO-buffered ITO substrate leading to better optical absorption and thus photon utilization. Stability enhancement is attributed to the diffusion barrier of the GO layer which slow down diffusion of oxygen species from ITO to the active layers. 相似文献
27.
Nam Quoc Ngo Rui Tao Zheng Ng J.H. Tjin S.C. Binh L.N. 《Lightwave Technology, Journal of》2007,25(3):799-802
A new hybrid optimization algorithm is proposed for the design of a fiber Bragg grating (FBG) with complex characteristics. The hybrid algorithm is a two-tier search that employs a global optimization algorithm (i.e., the staged continuous tabu search (SCTS) algorithm) and a local optimization method (i.e., the quasi-Newton method). First, the SCTS global optimization algorithm is used to find a "promising" FBG structure that has a spectral response as close as possible to the targeted spectral response. Then, a local optimization method, namely, the quasi- Newton method, is applied to further optimize the promising FBG structure obtained from the SCTS algorithm to arrive at a targeted spectral response. To demonstrate the effectiveness of the method, the design and fabrication of an optical bandpass filter are presented. 相似文献
28.
S. C. Chan Z. Y. Zhu K. T. Ng C. Wang S. Zhang Z. G. Zhang Zhongfu Ye H. Y. Shum 《Journal of Signal Processing Systems》2012,67(3):305-316
Image-based rendering (IBR) is an promising technology for rendering photo-realistic views of scenes from a collection of
densely sampled images or videos. It provides a framework for developing revolutionary virtual reality and immersive viewing
systems. While there has been considerable progress recently in the capturing, storage and transmission of image-based representations,
most multiple camera systems are designed to be stationary and hence their ability to cope with moving objects and dynamic
environment is somewhat limited. This paper studies the design and construction of a movable image-based rendering system
based on a class of dynamic representations called plenoptic videos, its associated video processing algorithms and an application
to multiview audio-visual conferencing. It is constructed by mounting a linear array of 8 video cameras on an electrically
controllable wheel chair and its motion is controllable manually or remotely through wireless LAN by means of additional hardware
circuitry. We also developed a real-time object tracking algorithm and utilize the motion information computed to adjust continuously
the azimuth or rotation angle of the movable IBR system in order to cope with a given moving object in a large environment.
Due to imperfection in tracking and mechanical vibration encountered in movable systems, the videos may appear very shaky
and a new video stabilization technique is proposed to overcome this problem. The usefulness of the system is illustrated
by means of a multiview conferencing application using a multiview TV display. Through this pilot study, we hope to disseminate
useful experience for the design and construction of movable IBR systems with improved viewing freedom and ability to cope
with moving object in a large environment. 相似文献
29.
Serene Wen Ling Ng Minmin Gao Wanheng Lu Minghui Hong Ghim Wei Ho 《Advanced functional materials》2021,31(38):2104750
Conventional views of constructing simply broadband catalysts for photothermal-enhanced catalysis do not realize that without designating photochemical and photothermal conversion to their optimal working spectra can lead to a performance trade-off. Here, spectrally selective designed photoredox and photothermal heating functions of a classical oxide supported metal catalyst are demonstrated, which exhibits markedly improved hydrogen reactivity. While photothermal hydrogen producing catalysis is previously demonstrated, distinctive wavelength dominant redox and thermal phenomena are not studied due to the complex interdependent behavior they exhibit. The exceptionally high H2 evolution rate of 30.2 mmol g−1 h−1 (≈74 times that of the control sample) is attributed to the nonoverlapped light absorption and undisrupted charge transfer rationales. This study presents a proof-by-existence that spectrally tailored solar utilization strategy is broadly impactful for the hybrid photothermal–photochemical catalysis. Moreover, the spatially decoupled structural configuration may open up discrete parametric control over photoredox and photoheating functionalities. 相似文献
30.
Leung Lai Kan L.. Lau D.M.C. Lou S.. Ng A.W.L. Wang R.D. Wong G.W.-K. Wu P.Y. Hui Zheng Cheung V.S.-L. Luong H.C. 《Solid-State Circuits, IEEE Journal of》2007,42(9):1986-1998
A 1-V WLAN IEEE 802.11a CMOS transceiver integrates all building blocks on a single chip including a transformer-feedback VCO and a stacked divider for the frequency synthesizer and 8-bit IQ ADCs and 8-bit IQ DACs. Fabricated in a 0.18-mum CMOS process and operated at a single 1-V supply, the receiver and the transmitter consume 85.7 mW and 53.2 mW, including the frequency synthesizer, respectively. The total chip area with pads is 12.5 mm2. 相似文献