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| 1 | Design and baseline data of a populationbased metabonomics study of eye diseases in eastern China: the Yueqing Ocular Diseases Investigation显示文摘Background:China is undergoing a massive transition toward an urban and industrial economy.These changes will restructure the demographics and economy which will eventually influence the future patterns of disease.The risk factors of vision-impairing eye diseases remain ambiguous and poorly understood.Metabolomics is an ideal tool to understand and shed light on the ocular disease mechanisms for earlier treatment.This article aims to describe the design,methodology and baseline data of the Yueqing Ocular Diseases Investigation(YODI),a developed county population-based study to determine the prevalence and primary causes of visual impairment;also with metabonomics analysis we aimed to identify,predict and suggest some preventive biomarkers that cause blindness.Methods:A population-based,cross-sectional study.Randomized clustering sampling was used to identify adults aged 50 years and older in Xiangyang Town,Yueqing county-level City.The interviews covered demographic,behavioral,ocular risk factors and mental health state.The ocular examination included visual acuity,autorefraction,intraocular pressure,anterior and posterior segment examinations,fundus photography,retinal tomography and angiography,and visual field testing.Anthropometric measurements included height and weight,waist and hip circumference,blood pressure,pulse rate,electrocardiogram,and abdominal ultrasound scan.A venous blood sample was collected for laboratory tests and metabonomics studies.Results:Of the 5319 individuals recruited for the YODI,4769(89.7%)subjects were enrolled for analyses.The median age was 62.0 years,and 45.6%were male.The educational level of illiteracy or semi-illiteracy,primary,middle and high school or above was 29.8%,45.5%,20.1%,and 3.3%,respectively.Majority of the participants were female,younger,and less educated when compared with nonparticipants.The average body mass index and waist-hip ratios were 24.4±3.4 kg/m^(2) and 0.9±0.1 respectively.Blood sample collection reached a sample size of 1909(479 from subjects with selfreported diabetes and 1430 from one-third of the 4290 subjects without self-reported diabetes).Conclusions:The YODI provides population-based data with a high response rate(89.7%)on the prevalence and primary causes of major vision-impairing eye diseases in developed county areas in eastern China.Metabonomics analysis from YODI will provide further association of metabolic characteristics with the visual impairment eye diseases.The risk prediction model could be created and has the potential to be generalized to developed eastern areas in China for prevention. | Yuxuan Deng Yuanbo Liang Sigeng Lin Liang Wen Jin Li Yue Zhou Meixiao Shen Jingwei Zheng Kemi Feng Yanting Sun Kwapong Willaim Robert Jia Qu Fan Lu | 2020 | Eye and Vision2020,7,1: | 4 |
| 2 | Synthesis, characteristics of hierarchical EU-1 zeolite for xylene isomerization probe reaction显示文摘Introduced a method of synthesizing hierarchical EU-1 zeolite with organosilanes as additive, and studied the influences of following different kinds of organosilanes on the synthesis of hierarchical EU-1 zeolite: γ-glycidoxy propyl trimethoxy silane(GPTMS), N-β-(aminoethyl)-γ-aminopropyl methyl dimethoxyl silane(APAEDMS),and N-(β-aminoethyl)-γ-aminopropyl dimethoxyl(ethyoxyl) silane(TMPED). The hierarchical EU-1 samples were characterized by XRD, SEM, N_2 adsorption, FT-IR and NH_3-TPD to analyze the crystallinity, morphology, surface area, pore size distribution and acidity. The results showed that hierarchical EU-1 zeolites were successfully synthesized; organosilanes have great influence on crystal morphology of EU-1 zeolites; the exterior surface area of hierarchical EU-1 zeolite, which synthesized with organosilanes(APAEDMS) adding into synthesis system, increased by 62.1% and mesopore volume increased by 129.1% compared with conventional EU-1 zeolites, thus can reduce the diffusional restriction markedly in catalytic reaction. The catalytic performance of hierarchical EU-1zeolites were evaluated in m-xylene isomerization on fixed bed reactor. The catalytic data showed that the isomerization activity PX/X of the hierarchical EU-1 zeolites reached around 24.09% in theoretical thermodynamic equilibrium from 23.83%, and the selectivity of C_8 aromatic hydrocarbon increased from 75.16% to 84.87%. The conversion of p-xylene increased from 16.30% to 18.41%. | Xiaofeng Li Pengchao Ren Yanting Zhang Xiaozhen Liu Xiaotao Sun Meng Gao Miaojuan Jia Zhiping Lü Tao Dou | 2016 | Chinese Journal of Chemical Engineering2016,24,11: | 4 |
| 3 | Fabrication of gelatin methacryloyl hydrogel microneedles for transdermal delivery of metformin in diabetic rats显示文摘Injection therapy for diabetes has poor patient compliance,and the pain occurring at the site of subcutaneous injections causes significant inconvenience to diabetic patients.In this work,to demonstrate the benefits of an alternative drug delivery technique that overcomes these issues,methacrylated gelatin hydrogel-forming microneedles integrated with metformin were developed to adjust blood glucose levels in diabetic rats.Gelatin methacryloyl microneedles(GelMA-MNs)with different degrees of substitution were successfully prepared by a micro-molding method.The resultant GelMA-MNs exhibited excellent mechanical properties and moisture resistance.Metformin,an anti-diabetic drug,was further encapsulated into the GelMA-MNs,and its release rate could be controlled by the three-dimensional cross-linked network of microneedles,thereby exhibiting sustained drug release behaviors in vitro and implying a better therapeutic effect compared with that of subcutaneous injection in diabetic rats.The drug release period could be significantly prolonged by improving the cross-link density of GelMA-MNs.The results of hypoglycemic effect evaluation show that the application of GelMA-MNs for transdermal delivery in diabetic rats has promising benefits for diabetes treatment. | Zhiyong Zeng Guohua Jiang Tianqi Liu Gao Song Yanfang Sun Xueya Zhang Yanting Jing Mingjia Feng Yufei Shi | 2021 | Bio-Design and Manufacturing2021,4,4: | 4 |
| 4 | A278C mutation of dihydropteridine reductase decreases autophagy via mTOR signaling显示文摘 | Qin Si Sifan Sun Yanting Gu | 2017 | Acta Biochimica et Biophysica Sinica2017,49,8: | 3 |
| 5 | Mitochondrial fusion protein 2 regulates endoplasmic reticulum stress in preeclampsia显示文摘Preeclampsia(PE)refers to a group of dysfunction syndromes associated with elevated blood pressure and proteinuria in women with previously normal blood pressure after 20 weeks of pregnancy,and it may be accompanied by symptoms including headache。 | Dandan SUN Hui ZHU Ling AI Hanbing WU Yanting WU Jihua JIN | 2021 | Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)2021,22,2: | 2 |
| 6 | All-trans retinoic acid inhibits the malignant behaviors of hepatocarcinoma cells by regulating ferroptosis显示文摘All-trans retinoic acid(ATRA)can reverse the malignant behaviors of hepatocellular carcinoma(HCC)cells,thereby exerting anti-HCC effect;however,the underlying mechanism is yet to be understood.This study aimed to demonstrate that ATRA is vital to ferroptosis in HCC.Ferroptosis-related genes exhibit different expression in patients with HCC compared to that in healthy individuals.A total of 20 amino acid products were detected in HepG2 cells,the expression level of 5 was decreased after ATRA treatment.ATRA improved the levels of lipid ROS,MDA,and NAPDt/NADPH,and reduced the mt-DNA copy number and changed the structure of mitochondria,in HepG2 and Hep3B cells.We found the expression of genes positively correlated with ferroptosis to increase and those negatively correlated to decrease with ATRA treatment.Inhibition of ferroptosis by Ferrostatin-1 reversed ATRA-inhibited proliferation of HCC cells,along with cell migration and invasion.GSH synthesis was blocked by ATRA,accompanied by decreased cystine content and increased glutamate content,and downregulation of the expression of GSH synthesis-related genes.Our findings suggested that ATRA inhibited the malignancy of HCC cells by improving ferroptosis,and that inhibition of GSH synthesis contributed to ATRA-induced ferroptosis. | Yanting Sun Yun He Jishuang Tong Daijiang Liu Haodong Zhang Tongchuan He Yang Bi | 2022 | Genes & Diseases2022,9,6: | 2 |
| 7 | Complex coacervation of soybean protein isolate and chitosan显示文摘 | HUANG Guoqing SUN Yanting XIAO Junxia | 2012 | Food Chem2012,135,2: | 1 |
| 8 | Distinctive electrochemical performance of novel Fe-based Li-rich cathode material prepared by molten salt method for lithium-ion batteries显示文摘For constructing next-generation lithium-ion batteries with advanced performances,pursuit of highcapacity Li-rich cathodes has caused considerable attention.So far,the low discharge specific capacity and serious capacity fading are strangling the development of Fe-based Li-rich materials.To activate the extra-capacity of Fe-based Li-rich cathode materials,a facile molten salt method is exploited using an alkaline mixture of LiOH–LiNO3–Li2O2 in this work.The prepared Li1.09(Fe0.2Ni0.3Mn0.5)0.91O2 material yields high discharge specific capacity and good cycling stability.The discharge specific capacity shows an upward tendency at 0.1 C.After 60 cycles,a high reversible specific capacity of ~250 m Ah g-1is delivered.The redox of Fe3+/Fe4+and Mn3+/Mn4+are gradually activated during cycling.Notably,the redox reaction of Fe2+/Fe3+can be observed reversibly below 2 V,which is quite different from the material prepared by a traditional co-precipitation method.The stable morphology of fine nanoparticles(100–300 nm)is considered benefiting for the distinctive electrochemical performances of Li1.09(Fe0.2Ni0.3Mn0.5)0.91O2.This study demonstrates that molten salt method is an inexpensive and effective approach to activate the extra capacity of Fe-based Li-rich cathode material for high-performance lithium-ion batteries. | Taolin Zhao Rixin Ji Hedi Yang Yuxia Zhang Xiuguo Sun Yanting Li Li Li Renjie Chen | 2019 | Journal of Energy Chemistry2019,28,6: | 1 |
| 9 | Attenuation of diabetic nephropathy by Chaihuang-Yishen granule through anti-inflammatory mechanism in streptozotocin-induced rat model of diabetics显示文摘 | Haojun Zhang Tingting Zhao Yuewen Gong Xi Dong Weiku Zhang Sifan Sun Hua Wang Yanting Gu Xiaoguang Lu Meihua Yan Ping Li | 2014 | Journal of Ethnopharmacology2014,,: | 1 |
| 10 | Preparation of Ag doped Bi 2 O 3 nanosheets with highly enhanced visible light photocatalytic performances显示文摘 | Yanting Li Zhifeng Zhang Yangyang Zhang Xiuguo Sun Jianmin Zhang Caihui Wang Zheng Peng Huayan Si | 2014 | Ceramics International2014,,: | 1 |
| 11 | Synergistic effects of AAGL and anti-PD-1 on hepatocellular carcinoma through lymphocyte recruitment to the liver显示文摘Objective:Therapy for hepatocellular carcinoma(HCC)is a major challenge,and targeted therapies provide only a modest benefit in terms of overall survival.Treatment with antibodies to programmed cell death protein 1(PD-1)/PD-L1 can restore the functions of tumor-infiltrating T cells in HCC and has shown clinical efficacy in 20%of patients with advanced HCC.Novel approaches are urgently needed to treat HCC and to augment the efficacy of immunotherapy.Methods:Tumor-bearing mice were treated with Agrocybe aegerita galectin(AAGL)alone or in combination with anti-PD-1,and the tumor sizes and lifespans of mice were determined.Transcriptome analysis,cytokine analysis,flow cytometry analysis of the number and proportion of immune cell subsets in the liver and spleen,and molecular and cellular analyses of tumors were used to define the underlying mechanisms.Results:AAGL significantly inhibited the growth of liver tumors in a dose-dependent manner.Furthermore,AAGL increased the expression of multiple cytokines and chemokines in tumor-bearing mouse livers;this effect was associated with the activation and migration of T cells and macrophages,in agreement with the in vitro results.Importantly,the aggregation of T cells and macrophages induced by AAGL in tumor-bearing mouse livers clearly enhanced the response to PD-1 blockade immunotherapy.Conclusions:The results showed that AAGL induced the activation and migration of lymphocytes to the liver,and that the combination of AAGL and anti-PD-1 may be a promising strategy for HCC treatment. | Xiangdong Ye Xueqing Wang Wenhui Yu Qing Yang Yan Li Yanxia Jin Yanting Su Jiaqi Song Bo Xu Hui Sun | 2021 | Cancer Biology & Medicine2021,18,4: | 0 |
| 12 | Simultaneously Effi cient Solar Light Harvesting and Charge Transfer of Hollow Octahedral Cu_(2)S/CdS p-n Heterostructures for Remarkable Photocatalytic Hydrogen Generation显示文摘Solar-driven water splitting is a promising alternative to industrial hydrogen production.This study reports an elaborate design and synthesis of the integration of cadmium sulfi de(CdS)quantum dots and cuprous sulfi de(Cu_(2)S)nanosheets as three-dimensional(3D)hollow octahedral Cu_(2)S/CdS p-n heterostructured architectures by a versatile template and one-pot sulfi dation strategy.3D hierarchical hollow nanostructures can strengthen multiple refl ections of solar light and provide a large specifi c surface area and abundant reaction sites for photocatalytic water splitting.Owing to the construction of the p-n heterostructure as an ideal catalytic model with highly matched band alignment at Cu_(2)S/CdS interfaces,the emerging internal electric fi eld can facilitate the space separation and transfer of photoexcited charges between CdS and Cu_(2)S and also enhance charge dynamics and prolong charge lifetimes.Notably,the unique hollow Cu_(2)S/CdS architectures deliver a largely enhanced visible-light-driven hydrogen generation rate of 4.76 mmol/(g·h),which is nearly 8.5 and 476 times larger than that of pristine CdS and Cu_(2)S catalysts,respectively.This work not only paves the way for the rational design and fabrication of hollow photocatalysts but also clarifi es the crucial role of unique heterostructure in photocatalysis for solar energy conversion. | Yanting Zhang Lei Ran Zhuwei Li Panlong Zhai Bo Zhang Zhaozhong Fan Chen Wang Xiaomeng Zhang Jungang Hou Licheng Sun | 2021 | Transactions of Tianjin University2021,27,4: | 0 |
| 13 | Multivariety and multimanufacturer drug identification based on near-infrared spectroscopy and recurrent neural network显示文摘Near-infrared(NIR)spectral analysis,which has the advantages of rapidness,nondestruction and high-efficiency,is widely used in the detection of feed,food and mineral.In terms of qualitative identification,it can also be used for the discriminant analysis of medicines.Long short-term memory(LSTM)neural network,bidirectional long short-term memory(BiLSTM)neural network and gated recurrent unit(GRU)network are variants of the recurrent neural network(RNN).The potential relationship between nonlinear features learned from the sequence by these variants is used to complete the missions infields such as natural language processing,signal classification and video analysis.Since the effect of these variants in drug identification is still to be studied,this paper constructs a multiclassifier of these three variants,using compoundα-keto acid tablets produced by four manufacturers and repaglinide tablets produced by five manufacturers as the research object.Then,the paper analyzes the impacts of seven different preprocessed methods on the drug NIR data by constructing different layers of LSTM,BiLSTM and GRU networks and compares different classification model indicators and training time of each model.When the spectrum data are pre-processed by z-score normalization,the GRU-3 model has the best accuracy in all models.The BiLSTM models are better for analyzing high coincidence data.The method proposed in this paper can be further extended to other NIR spectroscopy data sets. | Wenjie Zeng Yunqi Qiu Yanting Huang Qingping Sun Zhuoya Luo | 2022 | Journal of Innovative Optical Health Sciences2022,15,4: | 0 |
| 14 | A systematic survey of LU domain-containing proteins reveals a novel human gene,LY6A,which encodes the candidate ortholog of mouse Ly-6A/Sca-1 and is aberrantly expressed in pituitary tumors显示文摘The Ly-6 and uPAR(LU)domain-containing proteins represent a large family of cell-surface markers.In particular,mouse Ly-6A/Sca-1 is a widely used marker for various stem cells;however,its human ortholog is missing.In this study,based on a systematic survey and comparative genomic study of mouse and human LU domain-containing proteins,we identified a previously unannotated human gene encoding the candidate ortholog of mouse Ly-6A/Sca-1.This gene,hereby named LY6A,reversely overlaps with a lncRNA gene in the majority of exonic sequences.We found that LY6A is aberrantly expressed in pituitary tumors,but not in normal pituitary tissues,and may contribute to tumorigenesis.Similar to mouse Ly-6A/Sca-1,human LY6A is also upregulated by interferon,suggesting a conserved transcriptional regulatory mechanism between humans and mice.We cloned the full-length LY6A cDNA,whose encoded protein sequence,domain architecture,and exon‒intron structures are all well conserved with mouse Ly-6A/Sca-1.Ectopic expression of the LY6A protein in cells demonstrates that it acts the same as mouse Ly-6A/Sca-1 in their processing and glycosylphosphatidylinositol anchoring to the cell membrane.Collectively,these studies unveil a novel human gene encoding a candidate biomarker and provide an interesting model gene for studying gene regulatory and evolutionary mechanisms. | Dan Liu Chunhui Xu Yanting Liu Wen Ouyang Shaojian Lin Aining Xu Yuanliang Zhang Yinyin Xie Qiuhua Huang Weili Zhao Zhu Chen Lan Wang Saijuan Chen Jinyan Huang Zhe Bao Wu Xiaojian Sun | 2023 | Frontiers of Medicine2023,17,3: | 0 |
| 15 | Modification and sequential treatment of EU-1 zeolite in mild alkali and alkaline-acid conditions显示文摘EU-1 zeolites were sequentially treated with low-concentration sodium carbonate(Na_2CO_3) and hydrochloric acid(HCl) solutions.The obtained samples were characterized by X-ray diffraction(XRD),scanning electron microscopy(SEM),N_2 adsorption/desorption,temperature programmed desorption of NH_3(NH_3-TPD),solid state^(27)A1 nuclear magnetic resonance(^(27)A1 NMR),and the catalytic performances of the treated samples were tested in the xylene isomerization reaction.The results showed that the external surface area and mesoporous volume of the sample sequentially treated with 0.05 mol·L^(-1) Na_2CO_3 and 0.1 mol·L^(-1) HCl solutions reached73.9 m^2·g^(-1) and 0.162 cm^3·g^(-1),respectively.The catalytic performances of EU-1 zeolites were significantly improved,that the activity of the probe reaction increased from 23.03%to 23.61%and the selectivity increased from85.09%to 87.14%compared with those of parent sample.Furthermore,it was found that only amorphous silica and alumina species was dissolved during the post-treatment process,but the framework structure and the acidic properties of EU-1 zeolite remained intact. | Xiaofeng Li Xiaotao Sun Yanting Zhang Junliang Zhang Pengchao Ren Xiaozhen Liu Tao Dou | 2016 | Chinese Journal of Chemical Engineering2016,24,12: | 0 |
| 16 | PTEN-induced putative kinase 1 regulates mitochondrial quality control and is essential for the maturation of human induced pluripotent stem cell-derived cardiomyocytes显示文摘Human induced pluripotent stem cell-derived cardiomyocytes(hiPSC-CMs)have attracted attention in the field of regenerative medicine due to their potential ability to repair damaged hearts.However,the immature phenotype of these cells limits their clinical application.Cardiomyocyte maturation is accompanied by changes in mitochondrial quality.PTEN-induced putative kinase 1(PINK1)has been linked to mitochondrial quality control.However,whether the changes in mitochondrial quality in hiPSC-CMs are associated with PINK1,and the impact of PINK1 on hiPSC-CMs development are not clear.In this study,we found that knockdown of PINK1 in hiPSC-CMs resulted in mitochondrial fragmentation and impaired mitochondrial functions such as mitophagy and mitochondrial biogenesis.PINK1 deletion also inhibited the maturation of hiPSC-CMs,reverting them to a naive structural and functional state.We found that restoring the mitochondrial structure did not completely rescue the mitochondrial dysfunction caused by PINK1 deletion,while activation of PINK1 kinase activity using kinetin promoted mitochondrial fusion,increased the mitochondrial membrane potential and ATP production,and maintained the development and maturation of hiPSC-CMs.In conclusion,PINK1 regulates the mitochondrial structure and function of hiPSC-CMs,and is essential for the maturation of hiPSC-CMs. | Huiwen Liu Yanting Sun Hao Xu Bin Tan Qin Yi Jie Tian Jing Zhu | 2023 | Genes & Diseases2023,10,5: | 0 |
| 17 | Recent advances in skin collagen:functionality and non-medical applications显示文摘During nature evolution process,living organisms have gradually adapted to the environment and been adept in synthesizing high performance structural materials at mild conditions by using fairly simple building elements.The skin,as the largest organ of animals,is such a representative example.Conferred by its intricate organization where collagen fibers are arranged in a randomly interwoven network,skin collagen(SC),defined as a biomass derived from skin by removing non-collagen components displays remarkable performance with combinations of mechanical properties,chemical-reactivity and biocompatibility,which far surpasses those of synthetic materials.At present,the application of SC in medical field has been largely studied,and there have been many reviews summarizing these efforts.However,the generalized view on the aspects of SC as smart materials in non-medical fields is still lacking,although SC has shown great potential in terms of its intrinsic properties and functionality.Hence,this review will provide a comprehensive summary that integrated the recent advances in SC,including its preparation method,structure,reactivity,and functionality,as well as applications,particularly in the promising area of smart materials. | Yanting Han Jinlian Hu Gang Sun | 2021 | Journal of Leather Science and Engineering2021,3,1: | 0 |