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| 1 | A sensitive and selective method for the determination of flumorph residues in vegetables and fruits by HPLC–ESI-MS/MS显示文摘 | Yansong Wang Shihua Fan Xiangyong Cui Mingrui He Fengqing Zhang Chunhui Yang Chunye Zhang Ji Ma | 2011 | Talanta2011,,: | 1 |
| 2 | Gold-vapor-assisted chemical vapor deposition of aligned monolayer WSe2 with large domain size and fast growth rate显示文摘Orientation-controlled growth of two-dimensional(2D)transition metal dichalcogenides(TMDCs)may enable many new electronic and optical applications.However,previous studies reporting aligned growth of WSe2 usually yielded very small domain sizes.Herein,we introduced gold vapor into the chemical vapor deposition(CVD)process as a catalyst to assist the growth of WSe2 and successfully achieved highly aligned monolayer WSe2 triangular flakes grown on c-plane sapphire with large domain sizes(130μm)and fast growth rate(4.3μm·s^−1).When the aligned WSe2 domains merged together,a continuous monolayer WSe2 was formed with good uniformity.After transferring to Si/SiO2 substrates,field effect transistors were fabricated on the continuous monolayer WSe2,and an average mobility of 12 cm^2·V^−1·s−1 was achieved,demonstrating the good quality of the material.This report paves the way to study the effect of catalytic metal vapor in the CVD process of TMDCs and contributes a novel approach to realize the growth of aligned TMDC flakes. | Mingrui Chen Anyi Zhang Yihang Liu Dingzhou Cui Zhen Li Yu-Han Chung Sai Praneetha Mutyala Matthew Mecklenburg Xiao Nie Chi Xu Fanqi Wu Qingzhou Liu Chongwu Zhou Mork | 2020 | Nano Research2020,13,10: | 1 |
| 3 | Highly sensitive,scalable,and rapid SARS-CoV-2 biosensor based on In_(2)O_(3)nanoribbon transistors and phosphatase显示文摘Developing convenient and accurate SARS-CoV-2 antigen test and serology test is crucial in curbing the global COVID-19 pandemic.In this work,we report an improved indium oxide(In2O3)nanoribbon field-effect transistor(FET)biosensor platform detecting both SARS-CoV-2 antigen and antibody.Our FET biosensors,which were fabricated using a scalable and cost-efficient lithography-free process utilizing shadow masks,consist of an In_(2)O_(3)channel and a newly developed stable enzyme reporter.During the biosensing process,the phosphatase enzymatic reaction generated pH change of the solution,which was then detected and converted to electrical signal by our In_(2)O_(3)FETs.The biosensors applied phosphatase as enzyme reporter,which has a much better stability than the widely used urease in FET based biosensors.As proof-of-principle studies,we demonstrate the detection of SARS-CoV-2 spike protein in both phosphate-buffered saline(PBS)buffer and universal transport medium(UTM)(limit of detection[LoD]:100 fg/mL).Following the SARS-CoV-2 antigen tests,we developed and characterized additional sensors aimed at SARS-CoV-2 IgG antibodies,which is important to trace past infection and vaccination.Our spike protein IgG antibody tests exhibit excellent detection limits in both PBS and human whole blood((LoD):1 pg/mL).Our biosensors display similar detection performance in different mediums,demonstrating that our biosensor approach is not limited by Debye screening from salts and can selectively detect biomarkers in physiological fluids.The newly selected enzyme for our platform performs much better performance and longer shelf life which will lead our biosensor platform to be capable for real clinical diagnosis usage. | Mingrui Chen Dingzhou Cui Zhiyuan Zhao Di Kang Zhen Li Shahad Albawardi Shahla Alsageer Faisal Alamri Abrar Alhazmi Moh.R.Amer Chongwu Zhou | 2022 | Nano Research2022,15,6: | 0 |
| 4 | Deregulation of tumor suppressive ASXL1−PTEN/AKT axis in myeloid malignancies显示文摘Mutations of epigenetic regulators are pervasive in human tumors.ASXL1 is frequently mutated in myeloid malignancies.We previously found that ASXL1 forms together with BAP1 a complex that can deubiquitinylate mono-ubiquitinylated lysine 119 on histone H2A(H2AK119ub1),a Polycomb repressive mark.However,a complete mechanistic understanding of ASXL1 in transcriptional regulation and tumor suppression remains to be defined.Here,we find that depletion of Asxl1 confers murine 32D cells to IL3-independent growth at least partly due to sustained activation of PI3K/AKT signaling.Consistently,Asxl1 is critical for the transcriptional activation of Pten,a key negative regulator of AKT activity.Then we confirm that Asxl1 is specifically enriched and required for H2AK119 deubiquitylation at the Pten promoter.Interestingly,ASXL1 and PTEN expression levels are positively correlated in human blood cells and ASXL1 mutations are associated with lower expression levels of PTEN in human myeloid malignancies.Furthermore,malignant cells with ASXL1 downregulation or mutations exhibit higher sensitivity to the AKT inhibitor MK2206.Collectively,this study has linked the PTEN/AKT signaling axis to deregulated epigenetic changes in myeloid malignancies.It also provides a rationale for mechanism-based therapy for patients with ASXL1 mutations. | Lei Cao Xianyou Xia Yu Kong Fengqin Jia Bo Yuan Rui Li Qian Li YuxinWang Mingrui Cui Zhongye Dai Huimin Zheng Jesper Christensen Yuan Zhou Xudong Wu | 2020 | Journal of Molecular Cell Biology2020,12,9: | 0 |
| 5 | SARS-CoV-2 spike host cell surface exposure promoted by a COPI sorting inhibitor显示文摘Via an insufficient coat protein complex I(COPI)retrieval signal,the majority of SARSCo V-2 spike(S)is resident in host early secretory organelles and a tiny amount is leaked out in cell surface.Only surface-exposed S can be recognized by B cell receptor(BCR)or anti-S therapeutic monoclonal antibodies(m Abs)that is the trigger step for B cell activation after S m RNA vaccination or infected cell clearance by S m Abs.Now,a drug strategy to promote S host surface exposure is absent.Here,we first combined structural and biochemical analysis to characterize S COPI sorting signals.A potent S COPI sorting inhibitor was then invented,evidently capable of promoting S surface exposure and facilitating infected cell clearance by S antibody-dependent cellular cytotoxicity(ADCC).Importantly,with the inhibitor as a probe,we revealed Omicron BA.1 S is less cell surface exposed than prototypes because of a constellation of S folding mutations,possibly corresponding to its ER chaperone association.Our findings not only suggest COPI is a druggable target against COVID-19,but also highlight SARS-Co V-2 evolution mechanism driven by S folding and trafficking mutations. | Yiqun Li Mingrui Yang Yanan Nan Jiaming Wang Sanjiao Wang Dongxiao Cui Jiajian Guo Pengfei He Wenxin Dai Shuqi Zhou Yue Zhang Wenfu Ma | 2023 | Acta Pharmaceutica Sinica B2023,13,7: | 0 |
| 6 | Shikonin from Chinese herbal medicine induces GSDME-controlled pyroptosis in tumor cells显示文摘Objective:To investigate the potential anti-tumor mechanisms of naphthoquinone compound shikonin(SKN)extracted from the root of Chinese herbal medicine plant lithospermum(Lithospermum erythrorhizon Sieb.&Zucc.).Methods:We first observed that SKN treatment led to swelling and bubbles in HeLa cells that were similar to the phenotype of cell pyroptosis.Subsequently,the HeLa cells experienced a pyroptotic process with SKN,and this was then assessed using lactate dehydrogenase(LDH)release and propidium iodide(PI)/Hoechst double staining experiments.Pyroptosis is defined as gasdermin-mediated programmed necroptosis.To identify the potential pyroptosis machinery,two strategies were utilized that included a genome-wide clustered regularly interspaced short palindromic repeats(CRISPR)-associated protein 9 screening experiment and a pyroptosis reconstitution assay executed by each of the five known gasdermins(GSDMA-E).Moreover,endogenous cleavage was also detected in a panel of tumor cell lines.Results:Compared with the control,both the LDH release and PI/Hoechst double-staining experiments suggested that SKN induced perforation and enhancement of the permeability of the cell membranes that resulted in pyroptosis in HeLa cells(P=.028 and P=.032,respectively).In addition,the reconstitution assays in human embryonic kidney 293T(HEK-293T)cells and endogenous cleavage assays in HeLa cells indicated that the pyroptosis was controlled by GSDME.In addition,we also found SKN could trigger pyroptosis in a panel of tumor cell lines in which the cellular morphologies were proportional to the GSDME expression levels.Additionally,the cleavage of GSDME was also detected,and this was indicative of a similar GSDME-mediated mechanism.Conclusion:Our study not only explained the molecular mechanism of cytotoxicity of SKN to various tumor cells,but also provided additional information for the potential clinical application of natural naphthoquinone compounds against cancer. | Dongxiao Cui Sanjiao Wang Jiajian Guo Mingrui Yang Yunqian Li Yue Zhang Wenfu Ma | 2022 | Journal of Traditional Chinese Medical Sciences2022,9,4: | 0 |
| 7 | Synthesis and Antibacterial Properties of ZIF-8/Ag-Modified Titanium Alloy显示文摘The loosening of implant due to bacterial infection brings great difficulties to the implantation of bionic titanium devices.In this study,the Zeolitic Imidazolate Framework 8(ZIF-8)and silver ions were added to the surface of titanium alloy to obtain a uniform coating,which has nice biological activity and antibacterial property.The material structure characterizations,such as X-ray diffraction(XRD),scanning electron microscope(SEM),X-ray photoelectron spectroscopy(XPS),proved that titanium is successfully modified with ZIF-8 and silver ions.It has micro-and nano-level characteristics,rough porous morphology,and excellent apatite inducing ability.The water contact angle experiment shows that the addition of ZIF-8 greatly increases the hydrophilicity of material,which provides conditions for the attachment of osteoblasts.The polarization curve obtained from the electrochemical test proves that the addition of ZIF-8 coating improves the corrosion resistance of titanium.The release of silver ion has a strong growth inhibitory effect on E.coli,and exhibits excellent antibacterial properties.Therefore,the preparation of ZIF-8/Ag coatings on 3D printed titanium provides a new option for the development of orthopedic implants. | Mingrui Li Yongjie Wei Bowen Ma Yang Hu Dongdong Li Xiaoqiang Cui | 2022 | Journal of Bionic Engineering2022,19,2: | 0 |
| 8 | Air-stable n-type transistors based on assembled aligned carbon nanotube arrays and their application in complementary metal-oxide-semiconductor electronics显示文摘Carbon nanotubes(CNTs)are ideal candidates for beyond-silicon nano-electronics because of their high mobility and low-cost processing.Recently,assembled massively aligned CNTs have emerged as an important platform for semiconductor electronics.However,realizing sophisticated complementary nano-electronics has been challenging due to the p-type nature of carbon nanotubes in air.Fabrication of n-type behavior field effect transistors(FETs)based on assembled aligned CNT arrays is needed for advanced CNT electronics.Here in this paper,we report a scalable process to make n-type behavior FETs based on assembled aligned CNT arrays.Air-stable and high-performance n-type behavior CNT FETs are achieved with high yield by combining the atomic layer deposition dielectric and metal contact engineering.We also systematically studied the contribution of metal contacts and atomic layer deposition passivation in determining the transistor polarity.Based on these experimental results,we report the successful demonstration of complementary metal-oxide-semiconductor inverters with good performance,which paves the way for realizing the promising future of carbon nanotube nano-electronics. | Zhen Li Katherine R.Jinkins Dingzhou Cui Mingrui Chen Zhiyuan Zhao Michael S.Arnold Chongwu Zhou | 2022 | Nano Research2022,15,2: | 0 |