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| 1 | Phosphate recovery with granular acid-activated neutralized red mud:Fixed-bed column performance and breakthrough curve modelling显示文摘Granular acid-activated neutralized red mud(AaN-RM)has been successfully prepared with good chemical stability and physical strength.However,its potential for industrial application remains unknown.Therefore,the performance of granular AaN-RM for phosphate recovery in a fixed-bed column was investigated.The results demonstrated that the phosphate adsorption performance of granular AaN-RM in a fixed-bed column was affected by various operational parameters,such as the bed depth,flow rate,initial solution pH and initial phosphate concentration.With the optimal empty-bed contact time(EBCT)of 24.27 min,the number of processed bed volumes and the phosphate adsorption capacity reached 496.95 and 84.80 mg/g,respectively.Then,the saturated fixed-bed column could be effectively regenerated with a0.5 mol/L HCl solution.The desorption efficiency remained as high as 83.45%with a low weight loss of 3.57%in the fifth regeneration cycle.In addition,breakthrough curve modelling showed that a 5-9-1 feed-forward artificial neural network(ANN)could be effectively applied for the optimization of the fixed-bed adsorption system;the coefficient of determination(R^2)and the root mean square error(RMSE)evaluated on the validation-testing data were 0.9987 and 0.0183,respectively.Therefore,granular AaN-RM fixed-bed adsorption exhibits promising potential for phosphate removal and recovery from polluted water. | Andong Hu Guoping Ren Jiangang Che Yulin Guo Jie Ye Shungui Zhou | 2020 | Journal of Environmental Sciences2020,32,4: | 4 |
| 2 | The interaction between polyphyllin I and SQLE protein induces hepatotoxicity through SREBP-2/HMGCR/SQLE/LSS pathway显示文摘Polyphyllin I(PPI)and polyphyllin II(PII)are the main active substances in the Paris polyphylla.However,liver toxicity of these compounds has impeded their clinical application and the potential hepatotoxicity mechanisms remain to be elucidated.In this work,we found that PPI and PII exposure could induce significant hepatotoxicity in human liver cell line L-02 and zebrafish in a dose-dependent manner.The results of the proteomic analysis in L-02 cells and transcriptome in zebrafish indicated that the hepatotoxicity of PPI and PII was associated with the cholesterol biosynthetic pathway disorders,which were alleviated by the cholesterol biosynthesis inhibitor lovastatin.Additionally,3-hydroxy-3-methy-lglutaryl CoA reductase(HMGCR)and squalene epoxidase(SQLE),the two rate-limiting enzymes in the cholesterol synthesis,selected as the potential targets,were confirmed by the molecular docking,the overexpression,and knockdown of HMGCR or SQLE with siRNA.Finally,the pull-down and surface plasmon resonance technology revealed that PPI could directly bind with SQLE but not with HMGCR.Collectively,these data demonstrated that PPI-induced hepatotoxicity resulted from the direct binding with SQLE protein and impaired the sterol-regulatory element binding protein 2/HMGCR/SQLE/lanosterol synthase pathways,thus disturbing the cholesterol biosynthesis pathway.The findings of this research can contribute to a better understanding of the key role of SQLE as a potential target in drug-induced hepatotoxicity and provide a therapeutic strategy for the prevention of drug toxic effects with similar structures in the future. | Zhiqi Li Qiqi Fan Meilin Chen Ying Dong Farong Li Mingshuang Wang Yulin Gu Simin Guo Xianwen Ye Jiarui Wu Shengyun Dai Ruichao Lin Chongjun Zhao | 2023 | Journal of Pharmaceutical Analysis2023,13,1: | 2 |
| 3 | Oxygen vacancies enriched nickel cobalt based nanoflower cathodes: Mechanism and application of the enhanced energy storage显示文摘The rational design of oxygen vacancies and electronic microstructures of electrode materials for energy storage devices still remains a challenge. Herein, we synthesize nickel cobalt-based oxides nanoflower arrays assembled with nanowires grown on Ni foam via the hydrothermal process followed annealing process in air and argon atmospheres respectively. It is found that the annealing atmosphere has a vital influence on the oxygen vacancies and electronic microstructures of resulting NiCo_(2)O_(4) (NCO-Air) and CoNiO_(2) (NCO-Ar) products, which NCO-Ar has more oxygen vacancies and larger specific surface area of 163.48 m^(2)/g. The density functional theory calculation reveals that more oxygen vacancies can provide more electrons to adsorb –OH free anions resulting in superior electrochemical energy storage performance. Therefore, the assembled asymmetric supercapacitor of NCO-Ar//active carbon delivers an excellent energy density of 112.52 Wh/kg at a power density of 558.73 W/kg and the fabricated NCO-Ar//Zn battery presents the specific capacity of 180.20 mAh/g and energy density of 308.14 Wh/kg. The experimental measurement and theoretical calculation not only provide a facile strategy to construct flower-like mesoporous architectures with massive oxygen vacancies, but also demonstrate that NCO-Ar is an ideal electrode material for the next generation of energy storage devices. | Jiahui Ye Xingwu Zhai Long Chen Wen Guo Tiantian Gu Yulin Shi Juan Hou Fei Han Yi Liu Changchun Fan Gang Wang Shanglong Peng Xuhong Guo | 2021 | Journal of Energy Chemistry2021,30,11: | 2 |
| 4 | Phase diagram calculation of high chromium cast irons and influence of its chemical composition显示文摘 | Da Li Ligang Liu Yunkun Zhang Chunlei Ye Xuejun Ren Yulin Yang Qingxiang Yang | 2008 | Materials and Design2008,,2: | 1 |
| 5 | Exogenous Spermidine Promotes Somatic Embryogenesis of Cunninghamia lanceolata by Altering the Endogenous Phytohormone Content显示文摘In order to study how exogenous hormones in C.lanceolata(gymnosperm)regulate somatic embryogenesis,we measured the endogenous phytohormones of two genotypes with different somatic embryogenesis efficiency and found that an increase in endogenous concentrations of IAA and ABA may be correlated to more efficient somatic embryogenesis.By applying exogenous spermidine,we found that exogenous hormones may affect somatic embryogenesis efficiency through affecting the endogenous phytohormone content.Based on these results,further studies can be conducted whereby the concentration of exogenous hormones or the levels of endogenous phytohormones by molecular methods are regulated to promote somatic embryogenesis.Our research may benefit the long-term economic output of the forestry industry and lays the foundation to studying the molecular mechanism that controls somatic embryogenesis efficiency. | Dandan Wang Yulin Guo Xiaofei Long Yan Pan Dingjie Yang Rui Li Ye Lu Ying Chen Jisen Shi Jinhui Chen | 2020 | Phyton-International Journal of Experimental Botany2020,89,1: | 1 |
| 6 | Multiple positive solutions of a singular semipositione integral boundary value problem for fractional q-derivatives equation显示文摘 | Zhao Yulin Ye Guobing Chen Haibo | 2013 | Abstract and Applied Analysis2013,2013,: | 1 |
| 7 | Global classical solution of the Cauchy problem to 1Dcompressible Navier-Stokes equations with large initial data显示文摘 | Jiu Quansen Li Mingjie Ye Yulin | 2014 | Differential Equations2014,257,: | 1 |
| 8 | Metformin escape in prostate cancer by activating the PTGR1 transcriptional program through a novel super-enhancer显示文摘The therapeutic efficacy of metformin in prostate cancer(PCa)appears uncertain based on various clinical trials.Metformin treatment failure may be attributed to the high frequency of transcriptional dysregulation,which leads to drug resistance.However,the underlying mechanism is still unclear.In this study,we found evidences that metformin resistance in PCa cells may be linked to cell cycle reactivation.Super-enhancers(SEs),crucial regulatory elements,have been shown to be associated with drug resistance in various cancers.Our analysis of SEs in metformin-resistant(MetR)PCa cells revealed a correlation with Prostaglandin Reductase 1(PTGR1)expression,which was identified as significantly increased in a cluster of cells with metformin resistance through single-cell transcriptome sequencing.Our functional experiments showed that PTGR1 overexpression accelerated cell cycle progression by promoting progression from the G0/G1 to the S and G2/M phases,resulting in reduced sensitivity to metformin.Additionally,we identified key transcription factors that significantly increase PTGR1 expression,such as SRF and RUNX3,providing potential new targets to address metformin resistance in PCa.In conclusion,our study sheds new light on the cellular mechanism underlying metformin resistance and the regulation of the SE-TFs-PTGR1 axis,offering potential avenues to enhance metformin’s therapeutic efficacy in PCa. | Jianheng Ye Shanghua Cai Yuanfa Feng Jinchuang Li Zhiduan Cai Yulin Deng Ren Liu Xuejin Zhu Jianming Lu Yangjia Zhuo Yingke Liang Jianjiang Xie Yanqiong Zhang Huichan He Zhaodong Han Zhenyu Jia Weide Zhong | 2023 | Signal Transduction and Targeted Therapy2023,8,9: | 0 |
| 9 | Correction: Characterization of a small-molecule inhibitor targeting NEMO/IKKβ to suppress colorectal lcancergrowth显示文摘In the process of collating the raw data,the authors noticed an inadvertent mistake occurred in Fig.3b that needs to be corrected after online publication of the article.In Fig.3b,as a result of an error in the graphics panel arrangement process,the band of NEMO was repeatedly inserted asβ-actin by mistake.The correct band is shown as below and in the updated Fig.3b.The correction did not affect any of our results or discussion as present in the original publication.We regret any inconvenience this has caused. | Zhenlong Yu Jian Gao Xiaolei Zhang Yulin Peng Wenlong Wei Jianrong Xu Zhenwei Li Chao Wang Meirong Zhou Xiangge Tian Lei Feng Xiaokui Huo Min Liu Mingliang Ye De-an Guo Xiaochi Ma | 2023 | Signal Transduction and Targeted Therapy2023,8,10: | 0 |
| 10 | Establishment of a humanized mouse model using steady-state peripheral blood-derived hematopoietic stem and progenitor cells facilitates screening of cancer-targeted T-cell repertoires显示文摘Background:Cancer-targeted T-cell receptor T(TCR-T)cells hold promise in treating cancers such as hematological malignancies and breast cancers.However,approaches to obtain cancer-reactive TCR-T cells have been unsuccessful.Methods:Here,we developed a novel strategy to screen for cancer-targeted TCR-T cells using a special humanized mouse model with person-specific immune fingerprints.Rare steady-state circulating hematopoietic stem and progenitor cells were expanded via three-dimensional culture of steady-state peripheral blood mononuclear cells,and then the expanded cells were applied to establish humanized mice.The human immune system was evaluated according to the kinetics of dendritic cells,monocytes,T-cell subsets,and cytokines.To fully stimulate the immune response and to obtain B-cell precursor NAML-6-and triple-negative breast cancer MDA-MB-231-targeted TCR-T cells,we used the inactivated cells above to treat humanized mice twice a day every 7 days.Then,human T cells were processed for TCRβ-chain(TRB)sequencing analysis.After the repertoires had been constructed,features such as the fraction,diversity,and immune signature were investigated.Results:The results demonstrated an increase in diversity and clonality of T cells after treatment.The preferential usage and features of TRBV,TRBJ,and the V–J combination were also changed.The stress also induced highly clonal Science and Technology,Grant/Award Number:2021C03010;Zhejiang Provincial Natural Science Foundation of China,Grant/Award Numbers:LTGY24H080003,LY21H080004 expansion.Tumor burden and survival analysis demonstrated that stress induction could significantly inhibit the growth of subsequently transfused live tumor cells and prolong the survival of the humanized mice.Conclusions:We constructed a personalized humanized mouse model to screen cancer-targeted TCR-T pools.Our platform provides an effective source of cancer-targeted TCR-T cells and allows for the design of patient-specific engineered T cells.It therefore has the potential to greatly benefit cancer treatment. | Yulin Xu Wei Shan Qian Luo Meng Zhang Dawei Huo Yijin Chen Honghu Li Yishan Ye Xiaohong Yu Yi Luo He Huang | 2024 | Cancer Innovation2024,3,3: | 0 |
| 11 | Characterization of a small-molecule inhibitor targeting NEMO/IKKβto suppress colorectal cancer growth显示文摘NEMO/IKKβcomplex is a central regulator of NF-κB signaling pathway,its dissociation has been considered to be an attractive therapeutic target.Herein,using a combined strategy of molecular pharmacological phenotyping,proteomics and bioinformatics analysis,Shikonin(SHK)is identified as a potential inhibitor of the IKKβ/NEMO complex.It destabilizes IKKβ/NEMO complex with IC_(50) of 174 nM,thereby significantly impairing the proliferation of colorectal cancer cells by suppressing the NF-κB pathway in vitro and in vivo.In addition,we also elucidated the potential target sites of SHK in the NEMO/IKKβcomplex.Our study provides some new insights for the development of potent small-molecule PPI inhibitors. | Zhenlong Yu Jian Gao Xiaolei Zhang Yulin Peng Wenlong Wei Jianrong Xu Zhenwei Li Chao Wang Meirong Zhou Xiangge Tian Lei Feng Xiaokui Huo Min Liu Mingliang Ye De-an Guo Xiaochi Ma | 2022 | Signal Transduction and Targeted Therapy2022,7,4: | 0 |
| 12 | Ce doped polyaniline nanoparticles for absorption and photoacoustic imaging response to GSH in vitro and in vivo显示文摘Glutathione(GSH)is an important biological thiol in cells,which is involved in many physiological processes in the organism and regulates pathological processes of cells.Rapid and accurate monitoring of GSH in vitro and in vivo is quite needed in investigating important biochemical events.In this contribution,innovative cerium(Ce)doped polyaniline(Ce–Fe@PANI NPs)were prepared via Fe(III)induced oxidization polymerization method.Upon addition of GSH,the absorption of Ce–Fe@PANI NPs red shifted from the visible to the NIR region,con-firming the excellent absorption response to GSH.Moreover,Ce–Fe@PANI NPs exhibited excellent photoacoustic(PA)imaging enhancement in tube and shifted the PA intensity peak from 680 nm to 820 nm upon addition of GSH.In vitro and in vivo experiment verified that Ce–Fe@PANI NPs can monitor GSH in deep tissues via PA imaging technology.Collectively,this research provides Ce–Fe@PANI NPs would serve as a powerful nano-platform to realize PA imaging detection of GSH in vitro and in vivo. | Yulin Kuang Nanbo Liu Sheng Ye Xiang Li Xuyuan Chen Li Qi Ping Zhu Ruiyuan Liu Xu Wu | 2022 | Bioactive Materials2022,7,11: | 0 |
| 13 | Haplotype-resolved and chromosome-level genome assembly of Colorado potato beetle显示文摘As the most important non-cereal food crop,potatoes are a staple food for 1.3 billion people(Stokstad,2019).However,these cultivated potatoes are challenged with multiple biotic stresses(i.e.,pathogens and pests),some of which can evade host resistance,leading to a serious dampening of potato yield.One of these pests is the Colorado potato beetle(hereafter referred to as CPB,Leptinotarsa decemlineata Say).CPB is a member of the order Coleoptera,and originated in the southwestern United States and Mexico(Alyokhin et al.,2008). | Ziqi Ye Ruirui Lu Chao Li Doudou Yang Zhuozhen Zeng Weichao Lin Jie Cheng Zhongmin Yang Li Wang Yulin Gao Sanwen Huang Xingtan Zhang Suhua Li | 2023 | Journal of Genetics and Genomics2023,50,7: | 0 |
| 14 | Surgical Correction of Coronary Artery Ectasia Combining Congenital Coronary Artery Fistula显示文摘Background:Coronary artery ectasia(CAE)complicated with concomitant congenital coronary artery fistula(CCAF)is rare.This study characterizes the clinical characteristics of CAE combining CCAF,and reports a single-institution experience with surgical correction of CAE combining CCAF.Methods:A total of 24 symptomatic patients(8 males,median 52.5 years old)who underwent surgical correction of CAE combining CCAF in this center were reviewed.Based on the size of ectatic segment,the CAE were classified as a giant CAE(>20 mm,n=14)and a non-giant CAE(≤20 mm,n=10).Individualized surgical approaches were chosen.The patients were followed up for a median of 3.8 years.Results:The overwhelming majority of CAEs were solitary,and only 4.2%of CAEs were associated with multiple lesions.CAEs were predominantly located in the right coronary artery with predilection to women more than to men(2:1).95.8%of patients with the CCAF had single fistula defect.The right atrium was the most frequent drainage site(33.3%)followed by the left ventricle(25.0%).Surgical mortality was 4.2%.All 22 follow-up patients survived with recovery from symptoms and New York Heart Association(NYHA)functional class I-II.In 10 patients with non-giant CAEs undergoing closure of fistula alone,favorable in-hospital outcomes were recorded,but residual fistula(one patient)and acute inferior wall myocardial infarction related to intracoronary thrombosis(one patient)were observed at follow-up.In 11 patients with giant CAEs undergoing aneurysm resection plus distal bypass grafting at the time of closure of fistula,favorable in-hospital outcomes and encouraging midterm results were recorded.Additionally,in 3 patients with giant CAEs undergoing closure of fistula plus aneurysmal plication,adverse events occurred,including surgical death related to rupture of the ectatic segment(one patient),perioperative myocardial infarction caused by acute thromboembolism(one patient),nonfatal inferior wall myocardial infarction related to intracoronary thrombosis(one patient)at follow-up.Conclusion:Individualized surgical approaches based on the size and the location of ectatic coronary artery as well as fistula should be offered to symptomatic patients with CAE combining CCAF. | Yulin Wang Ye Yang Limin Xia Wenjun Ding Qiang Ji Chunsheng Wang | 2021 | Congenital Heart Disease2021,16,1: | 0 |
| 15 | Space: Science & Technology-Promoting Academic Exchange and Exploring the Frontiers of Space显示文摘People on Earth,the cradle and common home of humankind,pursue a shared dream to explore the vast universe and understand the relationship between humankind and Earth.From ancient times to the present,human beings have always taken great interest in exploring and understanding Earth itself and its position in the universe.Basic sciences like astronomy,cosmology,space science,and planetary science,as well as material science,fluid science,and life science,were all born in response to this“call from the universe.” | Peijian Ye Yulin Deng Michel Blanc | 2021 | Space(Science & Technology)2021,,1: | 0 |