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| 1 | Intriguing anti-superbug Cu2O@ZrP hybrid nanosheet with enhanced antibacterial performance and weak cytotoxicity显示文摘In view of it's strong antibacterial function and minor toxicity,cuprous oxide (Cu2O) is frequently used in various broad-spectrum antibacterial reagents.Nonetheless the undesirable effects of superbugs still remain challenging.In this research,a chemical deposition approach is used to prepare a Cu2O@ZrP composite with nanosheet configuration demonstrating excellent dispersibility and antibacterial traits.From systematic analysis,it was inffered that the content of copper in the nanosheet was about 57-188 mg/g while the average thickness of the nanosheets Cu2O formed on ZrP is approximately 0.8 nm.The results of the minimal inhibitory concentration (MIC) revealed that an extremely low loading of Cu2O in Cu2O@ZrP nanosheet can lead to exceptional antibacterial activity.Examined on two various superbugs;i.e.methicillin-resistant staphylococcus aureus (MRSA) and vancomycin-resistant enterococcus (VRE),the composite nanosheet reagent performed over 99% microbial reduction.More intesetingly,the cell growth rate of the Cu2O@ZrP nanosheet was determined to be 20% lower than that of the neat Cu2O,manifesting a weaker cytotoxicity.This unique hybrid nanosheet with intriguing anti-superbug performance promises highly efficient protection for the fabrics,battledress,and medical textiles. | Jialiang Zhou Hengxue Xiang Fatemeh Zabihi Senlong Yu Bin Sun Meifang Zhu | 2019 | Nano Research2019,12,6: | 7 |
| 2 | Flame retardancy of polyamide 6 hybrid fibers:Combined effects of α-zirconium phosphate and ammonium sulfamate显示文摘Synergistic effect between α-zirconium phosphate(α-ZrP) and ammonium sulfamate(AS) for enhanced flame retardant properties of Polyamide 6(PA6) was investigated by using oxygen index instrument,cone calorimeter,thermogravimetric analyzer(TGA),Instron universal test machine and scanning electron microscopy(SEM).PA6/AS/α-ZrP ternary hybrid materials with various contents of α-ZrP and AS were fabricated by melt-mixing method.The result from flammabihty indicated that the Limiting oxygen index(LOI) and Underwriters Laboratories-94(UL-94) rating of PA6/AS/α-ZrP were significantly accelerated under the coordinating function of α-ZrP and AS.Moreover,the thermal stability for PA6/AS/α-ZrP studied by TGA also demonstrated this synergistic effect between α-ZrP and AS on the heat resistance.The effects of the usage amount of α-ZrP and AS on mechanical properties were analyzed by using uniaxial tensile test.It was found that the addition of AS provided negative effects on the tensile strength of PA6/AS/α-ZrP,however,the adverse trends that mentioned above could be overcome by using the well dispersed α-ZrP. | Hengxue Xiang Lili Li Wei Chen Senlong Yu Bin Sun Meifang Zhu | 2017 | Progress in Natural Science:Materials International2017,27,3: | 7 |
| 3 | Magnetic resonance study of the structure and function of the hippocampus and amygdala in patients with depression显示文摘 | Li Yuefeng Yan Jinchuan Wang Dongqing Sun Meifang Zhu Yan Zhu Xiaolan Jiang Ping Yin Ruigen Zhao Liang | 2014 | Chinese Medical Journal2014,,20: | 6 |
| 4 | Effect of TiO_2@SiO_2 nanoparticles on the mechanical and UV-resistance properties of polyphenylene sulfide fibers显示文摘In order to avoid the inherent photo-catalysis and aggregation of TiO2 in PPS, TiO2 nanoparticles were coated with SiO2 layers, which were chosen as the UV absorbent to improve the UV stability of polyphenylene sul fi de(PPS) fi ber. The PPS–TiO2@SiO2 nanocomposites fi bers were prepared via melt spinning, and the nanocomposites fi bers displayed different crystallization behaviors on variation of the diameters of TiO2@SiO2 nanoparticles, as con fi rmed by Differential Scanning Calorimetry(DSC). The spinnability, breaking strength and UV-resistance properties of PPS nanocomposites fi bers, as measured by homemade melt spinning machine, Xenon-lamp Weather Resistance Test Chamber and Yarn Tensile Tester, manifested the dependence on the diameters. The addition of nanoparticles with the diameter of 25 nm improved the spinnability and the mechanical performance of PPS most, which is attributed to the heterogeneous nucleation effect of nanoparticles. The UVresistance properties of the PPS nanocomposites were improved by the addition of TiO2@SiO2 nanoparticles. After aging for 180 h, PPS nanocomposites fi ber still maintained a high strength. | Zexu Hu Lili Li Bin Sun Si Meng Long Chen Meifang Zhu | 2015 | Progress in Natural Science:Materials International2015,25,4: | 5 |
| 5 | Novel Ag nanocrystals based dental resin composites with enhanced mechanical and antibacterial properties显示文摘The aim of this work was to investigate the effect of trace addition of oleic acid coated Ag nanocrystals(Ag NCs) on mechanical and antibacterial properties of dental resin composites.Composites(70 wt%of silica loading) with 25 ppm,50 ppm,75 ppm and 100 ppm(wt) Ag NCs were prepared and the composite without Ag NCs served as a control.The experimental results showed that the addition of Ag NCs significantly improved the strength and modulus of the resin composite without compromising the shade.For the composite with 50 ppm Ag NCs,fiexural strength(140.3 MPa),modulus(13.2 GPa)and compressive strength(347.2 MPa) were increased by 4.1%,22.2%,13.3%,respectively,compared with the control.The antibacterial test demonstrated that trace Ag NCs provided the resin composites with an antibacterial effect.Such strong and antibacterial dental resin composites might be advantageous to prevent secondary caries and be potential for future clinical applications. | Fengwei Liu Ruili Wang Yuyuan Shi Xiaoze Jiang Bin Sun Meifang Zhu | 2013 | Progress in Natural Science:Materials International2013,23,6: | 5 |
| 6 | Effective and biocompatible antibacterial surfaces via facile synthesis and surface modification of peptide polymers显示文摘It is an urgent need to tackle drug-resistance microbial infections that are associated with implantable biomedical devices.Host defense peptide-mimicking polymers have been actively explored in recent years to fight against drug-resistant microbes.Our recent report on lithium hexamethyldisilazide-initiated superfast polymerization on amino acid N-carboxyanhydrides enables the quick synthesis of host defense peptide-mimicking peptide polymers.Here we reported a facile and cost-effective thermoplastic polyurethane(TPU)surface modification of peptide polymer(DLL:BLG=90:10)using plasma surface activation and substitution reaction between thiol and bromide groups.The peptide polymer-modified TPU surfaces exhibited board-spectrum antibacterial property as well as effective contact-killing ability in vitro.Furthermore,the peptide polymer-modified TPU surfaces showed excellent biocompatibility,displaying no hemolysis and cytotoxicity.In vivo study using methicillin-resistant Staphylococcus aureus(MRSA)for subcutaneous implantation infectious model showed that peptide polymer-modified TPU surfaces revealed obvious suppression of infection and great histocompatibility,compared to bare TPU surfaces.We further explored the antimicrobial mechanism of the peptide polymer-modified TPU surfaces,which revealed a surface contact-killing mechanism by disrupting the bacterial membrane.These results demonstrated great potential of the peptide-modified TPU surfaces for practical application to combat bacterial infections that are associated with implantable materials and devices. | Ziyi Lu Yueming Wu Zihao Cong Yuxin Qian Xue Wu Ning Shao Zhongqian Qiao Haodong Zhang Yunrui She Kang Chen Hengxue Xiang Bin Sun Qian Yu Yuan Yuan Haodong Lin Meifang Zhu Runhui Liu | 2021 | Bioactive Materials2021,6,12: | 5 |
| 7 | The relationships among aerosol optical depth, ice, phytoplankton and dimethylsulfide and the implication for future climate in the Greenland Sea显示文摘The sea-to-air flux of dimethylsulphide(DMS) is one of the major sources of marine biogenic aerosol, and can have an important radiative impact on climate, especially in the Arctic Ocean. Satellite-derived aerosol optical depth(AOD) is used as a proxy for aerosol burden which is dominated by biogenic aerosol during summer and autumn. The spring sea ice melt period is a strong source of aerosol precursors in the Arctic. However, high aerosol levels in early spring are likely related to advection of continental pollution from the south(Arctic haze).Higher AOD was generally registered in the southern part of the study region. Sea ice concentration(SIC) and AOD were positively correlated, while cloud cover(CLD) and AOD were negative correlation. The seasonal peaks of SIC and CLD were both one month ahead of the peak in AOD. There is a strong positive correlation between AOD and SIC. Melting ice is positively correlated with chlorophyll a(CHL) almost through March to September,but negatively correlated with AOD in spring and early summer. Elevated spring and early summer AOD most likely were influenced by combination of melting ice and higher spring wind in the region. The peak of DMS flux occurred in spring due to the elevated spring wind and more melting ice. DMS concentration and AOD were positively correlated with melting ice from March to May. Elevated AOD in early autumn was likely related to the emission of biogenic aerosols associated with phytoplankton synthesis of DMS. The DMS flux would increase more than triple by 2100 in the Greenland Sea. The significant increase of biogenic aerosols could offset the warming in the Greenland Sea. | QU Bo GABRIC Albert J. ZHAO Li SUN Wenjing LI Hehe GU Peijuan JIANG Limei ZENG Meifang | 2018 | Acta Oceanologica Sinica2018,37,5: | 4 |
| 8 | Preparation and performance of lipophilic α-zirconium phosphate with high thermal stability and its application in thermal-plastic polymers显示文摘To prepare lipophilic α-zirconium phosphate with high grafting ratio and thermal stability(OZrP-HT) and explore its potential application in thermal-plastic polymers,a novel method was developed by surface lipophilicity enhancement strategy.The commercial a-zirconium phosphate(a-ZrP) was pre-intercalated by n-propylamine(PA) and grafted by silane coupling agents.Then the pre-intercalated PA was removed by heattreatment,and the obtained OZrP-HT was utilized to fabricate the phosphorous-containing polyester(P-co-PET)/OZrP-HT nanocomposites by melt-blending method.The prepared OZrP-HT and P-co-PET/OZrP-HT nanocomposites were characterized by Wide Angle X-ray Diffraction(WAXD),Fourier Transform Infrared Spectroscopy(FTIR),Thermogravimetric Analysis(TGA),Transmission Electron Microscope(TEM),etc.The results show that OZrP-HT with high grafting ratio(13.78 wt%) and thermal stability(T_(onset)= 368℃) was successfully prepared via this novel method and was uniformly intercalated by P-co-PET molecular chains.OZrP-HT had no significant effect on the fiber processability of P-co-PET polymer,and flame retardant properties of(P-co-PET)/OZrP-HT nanocomposites were improved.This method may be suitable for organic modification of general inorganic layered compounds and could extend the potential applications in thermo-plastic polymers. | Ya Du Feng Deng Xiaoze Jiang Huquan Ji Dan Yu Wei Wang Bin Sun Meifang Zhu | 2015 | Progress in Natural Science:Materials International2015,25,5: | 3 |
| 9 | In-cell infection: a novel pathway for Epstein-Barr virus infection mediated by cell-in-cell structures显示文摘 | Chao Ni Yuhui Chen Musheng Zeng Rongjuan Pei Yong Du Linquan Tang Mengyi Wang Yazhuo Hu Hanyu Zhu Meifang He Xiawei Wei Shan Wang Xiangkai Ning Manna Wang Jufang Wang Li Ma Xinwen Chen Qiang Sun Hong Tang Ying Wang Xiaoning Wang | 2015 | Cell Research2015,25,7: | 3 |
| 10 | Functionalization-Directed Stabilization of Hydrogen-Bonded Polymer Complex Fibers:Elasticity and Conductivity显示文摘Elastic,repairable and conductive fibers are desirable in the newly emerging field of soft electronic and wearable devices.Here,we design a multifunctional fiber by incorporation of different components to optimize its performance.The combination of the poly(acrylic acid)(PAA)and poly(ethylene oxide)(PEO)through hydrogen bonding endows the fiber with high elasticity and repairability.Polydopamine(PDA)significantly increases the stability of the fiber,thus the fiber will not dissolve in alkaline solutions and still keep the repairable ability.The fiber shows a reversible swelling-shrinking property as pH values go up and down.Further,the conductive component,carbon nanotube,is adsorbed at the swelling state and then is fastened with fiber shrinking. | Jiefu Li Jiaxing Sun Di Wu Wentao Huang Meifang Zhu Elsa Reichmanis Shuguang Yang | 2019 | Advanced Fiber Materials2019,1,1: | 2 |
| 11 | Identification and validation of heterotypic cell-in-cell structure as an adverse prognostic predictor for young patients of resectable pancreatic ductal adenocarcinoma显示文摘Dear Editor,Pancreatic ductal adenocarcinoma(PDAC)has a poor prognosis,with an overall 5-year survival rate of less than 10%.Between 20 and 30%of PDAC cases are resectable at diagnosis;however,patients’post-operative survival periods vary widely,irrespective of active therapeutic interventions.1 Therefore,extensive efforts have been made to identify biomarkers that may identify patients with an improved prognosis.Although profound local immune suppression had been implicated in PDAC progression and poor patient survival,a prognostic marker that can directly and functionally read immune evasion in situ is not yet available. | Hongyan Huang Meifang He Yanbin Zhang Bo Zhang Zubiao Niu You Zheng Wen Li Peilin Cui Xiaoning Wang Qiang Sun | 2020 | Signal Transduction and Targeted Therapy2020,5,1: | 2 |
| 12 | A new nano-structured flame-retardant poly(ethylene terephthalate)显示文摘 | Wang Ming Zhu Meifang Sun Bin | 2006 | J Macromol Sci Part A:Pure and Appl Chem2006,43,11: | 1 |
| 13 | Crosslinking and functionalization of acellular patches via the self-assembly of copper@tea polyphenol nanoparticles显示文摘Decellularization is a promising technique to produce natural scaffolds for tissue engineering applications.However,non-crosslinked natural scaffolds disfavor application in cardiovascular surgery due to poor biomechanics and rapid degradation.Herein,we proposed a green strategy to crosslink and functionalize acellular scaffolds via the self-assembly of copper@tea polyphenol nanoparticles(Cu@TP NPs),and the resultant nanocomposite acellular scaffolds were named as Cu@TP-dBPs.The crosslinking degree,biomechanics,denaturation temperature and resistance to enzymatic degradation of Cu@TP-dBPs were comparable to those of glutaraldehyde crosslinked decellularized bovine pericardias(Glut-dBPs).Furthermore,Cu@TP-dBPs were biocompatible and had abilities to inhibit bacterial growth and promote the formation of capillary-like networks.Subcutaneous implantation models demonstrated that Cu@TP-dBPs were free of calcification and allowed for host cell infiltration at Day 21.Cardiac patch graft models confirmed that Cu@TP-dBP patches showed improved ingrowth of functional blood vessels and remodeling of extracellular matrix at Day 60.These results suggested that Cu@TP-dBPs not only had comparable biomechanics and biostability to Glut-dBPs,but also had several advantages over Glut-dBPs in terms of anticalcification,remodeling and integration capabilities.Particularly,they were functional patches possessing antibacterial and proangiogenic activities.Thesematerial properties and biological functionsmade Cu@TP-dBPs a promising functional acellular patch for cardiovascular applications. | Qin Li Yuan Gao Jiajun Zhang Yangfeng Tang Yangyong Sun Lujia Wu Hao Wu Meifang Shen Xiaohong Liu Lin Han Zhiyun Xu | 2022 | Regenerative Biomaterials2022,9,1: | 1 |
| 14 | Full-scale chemical and field-effect passivation:21.52% efficiency of stable MAPbI_(3) solar cells via benzenamine modification显示文摘Organic-inorganic metal halide perovskite solar cells have achieved high efficiency of 25.5%.Finding an effective means to suppress the formation of traps and correlate stability losses are thought to be a promising route for further increasing the photovoltaic performance and commercialization potential of perovskite photovoltaic devices.Herein,we report a facile passivation model,which uses a multi-functional organic molecule to simultaneously realize the chemical passivation and field-effect passivation for the perovskite film by an upgraded anti-solvent coating method,which reduces the trap states density of the perovskite,improves interface charge transfer,and thus promotes device performance.In addition,the hydrophobic groups of the molecules can form a moisture-repelling barrier on the perovskite grains,which apparently promotes the humidity stability of the solar cells.Therefore,the optimal power conversion efficiency(PCE)of perovskite solar cells after synergistic passivation reaches 21.52%,and it can still retain 95%of the original PCE when stored in-40%humidity for 30 days.Our findings extend the scope for traps passivation to further promote both the photovoltaic performance and the stability of the perovskite solar cells. | Fengyou Wang Meifang Yang Yuhong Zhang Jinyue Du Shuo Yang Lili Yang Lin Fan Yingrui Sui Yunfei Sun Jinghai Yang | 2021 | Nano Research2021,14,8: | 1 |
| 15 | Expression of Clock genes in the pineal glands of newborn rats with hypoxic-ischemic encephalopathy显示文摘Clock genes are involved in circadian rhythm regulation, and surviving newborns with hypoxic-ischemic encephalopathy may present with sleep-wake cycle reversal. This study aimed to determine the expression of the clock genes Clock and Bmal1, in the pineal gland of rats with hypoxic-ischemic brain damage. Results showed that levels of Clock mRNA were not significantly changed within 48 hours after cerebral hypoxia and ischemia. Expression levels of CLOCK and BMAL1 protein were significantly higher after 48 hours. The levels of Bmal1 mRNA reached a peak at 36 hours, but were significantly reduced at 48 hours. Experimental findings indicate that Clock and Bmal1 genes were indeed expressed in the pineal glands of neonatal rats. At the initial stage (within 36 hours) of hypoxic-ischemic brain damage, only slight changes in the expression levels of these two genes were detected, followed by significant changes at 36-48 hours. These changes may be associated with circadian rhythm disorder induced by hypoxic-ischemic brain damage. | Bin Sun Xing Feng Xin Ding Li Bao Yongfu Li Jun He Meifang Jin | 2012 | Neural Regeneration Research2012,7,28: | 1 |
| 16 | Molecular mechanisms underlying cell-in-cell formation:core machineries and beyond显示文摘Although cell-in-cell structures(CICs),with one or more cells present inside another cell,had been identified for a century,it was not until recent years that scientists started to uncover their pivotal roles in multiple biological processes,primarily via mediating the death of internalized cells.Meanwhile,considerable progresses were made on deciphering the mechanisms underlying their formation based on different models.Entosis was one of the best investigated CIC models,where cell internalization was coordinately driven by adherens junction and contractile ac-tomyosin,the two spatially polarized and complementary core elements that were coupled by mechanical ring,a recently identified core element.Meanwhile,an expanding group of factors were found capable of regulating CIC formation by targeting these core elements.The elucidation of the molecular machinery controlling CIC formation enables synthetic engineering of cells used for clinical and research purposes。 | Zubiao Niu Meifang He Qiang Sun | 2021 | Journal of Molecular Cell Biology2021,13,5: | 1 |
| 17 | A chromosome-level genome assembly for Dracaena cochinchinensis reveals the molecular basis of its longevity and formation of dragon’s blood显示文摘Dracaena,a remarkably long-lived and slowly maturing species of plant,is world famous for its ability to produce dragon’s blood,a precious traditional medicine used by different cultures since ancient times.However,there is no detailed and high-quality genome available for this species at present;thus,the molecular mechanisms that underlie its important traits are largely unknown.These factors seriously limit the protection and regeneration of this rare and endangered plant resource.Here,we sequenced and assembled the genome of Dracaena cochinchinensis at the chromosome level.The D.cochinchinensis genome covers 1.21 Gb with a scaffold N50 of 50.06 Mb and encodes 31619 predicted protein-coding genes.Analysis showed that D.cochinchinensis has undergone two whole-genome duplications and two bursts of long terminal repeat insertions.The expansion of two gene classes,cis-zeatin O-glucosyltransferase and small auxin upregulated RNA,were found to account for its longevity and slow growth.Two transcription factors(bHLH and MYB)were found to be core regulators of the flavonoid biosynthesis pathway,and reactive oxygen species were identified as the specific signaling molecules responsible for the injuryinduced formation of dragon’s blood.Our study provides high-quality genomic information relating to D.cochinchinensis and significant insight into the molecular mechanisms responsible for its longevity and formation of dragon’s blood.These findings will facilitate resource protection and sustainable utilization of Dracaena. | Yanhong Xu Kaijian Zhang Zhonglian Zhang Yang Liu Feifei Lv Peiwen Sun Shixi Gao Qiuling Wang Cuicui Yu Jiemei Jiang Chuangjun Li Meifang Song Zhihui Gao Chun Sui Haitao Li Yue Jin Xinwei Guo Jianhe Wei | 2022 | Plant Communications2022,3,6: | 0 |
| 18 | Cooperative Chemical Coupling and Physical Lubrication Effects Construct Highly Dynamic Ionic Covalent Adaptable Network for High-Performance Wearable Electronics显示文摘Covalent adaptable networks(CANs),which combine the benefits of traditional thermosets and thermoplastics,have attracted considerable attention.The dynamics of reversible covalent bonds and mobility of polymer chains in CANs determine the topological rearrangement of the polymeric network,which is critical to their superior features,such as self-healing and reprocessing.Herein,we introduce an ionic liquid to dimethylglyoximeurethane(DOU)-based CANs to regulate both reversible bond dynamics and polymer chain mobility by cooperative chemical coupling and physical lubrication.Small-molecule model experiments demonstrated that ionic liquids can catalyze dynamic DOU bond exchange.Ionic liquid also breaks the hydrogen bonds between polymeric chains,thereby increasing their mobility.As a combined result,the activation energy of the dissociation of the dynamic network decreased from 110 to 85 kJ mol^(−1).Furthermore,as a functional moiety,the ionic liquid imparts new properties to CANs and will greatly expand their applications.For example,the consequent conductivity of resultant ionic CAN(iCAN)has demonstrated a great power to build high-performance multifunctional wearable electronics responsive to multiple stimulations including temperature,strain,and humidity.This study provides a new design principle that simultaneously uses the chemical and physical effects of two structural components to regulate material properties enabling novel applications. | Lijie Sun Hongfei Huang Qingbao Guan Lei Yang Luzhi Zhang Benhui Hu Rasoul Esmaeely Neisiany Zhengwei You Meifang Zhu | 2023 | CCS Chemistry2023,5,5: | 0 |
| 19 | An ancient whole-genome duplication event and its contribution to flavor compounds in the tea plant (Camellia sinensis)显示文摘Tea,coffee,and cocoa are the three most popular nonalcoholic beverages in the world and have extremely high economic and cultural value.The genomes of four tea plant varieties have recently been sequenced,but there is some debate regarding the characterization of a whole-genome duplication(WGD)event in tea plants.Whether the WGD in the tea plant is shared with other plants in order Ericales and how it contributed to tea plant evolution remained unanswered.Here we re-analyzed the tea plant genome and provided evidence that tea experienced only WGD event after the core-eudicot whole-genome triplication(WGT)event.This WGD was shared by the Polemonioids-Primuloids-Core Ericales(PPC)sections,encompassing at least 17 families in the order Ericales.In addition,our study identified eight pairs of duplicated genes in the catechins biosynthesis pathway,four pairs of duplicated genes in the theanine biosynthesis pathway,and one pair of genes in the caffeine biosynthesis pathway,which were expanded and retained following this WGD.Nearly all these gene pairs were expressed in tea plants,implying the contribution of the WGD.This study shows that in addition to the role of the recent tandem gene duplication in the accumulation of tea flavor-related genes,the WGD may have been another main factor driving the evolution of tea flavor. | Ya Wang Fei Chen Yuanchun Ma Taikui Zhang Pengchuan Sun Meifang Lan Fang Li Wanping Fang | 2021 | Horticulture Research2021,8,1: | 0 |
| 20 | Antigenicity of severe fever with thrombocytopenia syndrome virus nucleocapsid protein and its potential application in the virus serodiagnosis显示文摘Dear Editor,Severe fever with thrombocytopenia syndrome virus(SFTSV)is a newly identified viral pathogen of the genus Phlebovirus in the family Bunyaviridae(Sun et al.,2012).SFTSV was first identified from patient serum samples in China(Li et al.,2013;Ning et al.,2015).SFTSV can cause a severe hemorrhagic fever-like disease with a reported case fatality rate ranging from 2.5% | Abulimiti Moming Yujiang Zhang Chenchen Chang Huan Yu Meifang Wang Zhihong Hu Fei Deng Surong Sun | 2017 | Virologica Sinica2017,32,1: | 0 |