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| 1 | The willow genome and divergent evolution from poplar after the common genome duplication显示文摘 | Xiaogang Dai Quanjun Hu Qingle Cai Kai Feng Ning Ye Gerald A Tuskan Richard Milne Yingnan Chen Zhibing Wan Zefu Wang Wenchun Luo Kun Wang Dongshi Wan Mingxiu Wang Jun Wang Jianquan Liu Tongming Yin | 2014 | Cell Research2014,24,10: | 28 |
| 2 | Facile Synthesis of Porous Carbon Nitride Spheres with Hierarchical Three-Dimensional Mesostructures for CO_(2) Capture显示文摘Porous carbon nitride(CN)spheres with partially crystalline frameworks have been successfully synthesized via a nanocasting approach by using spherical mesoporous cellular silica foams(MCFs)as a hard template,and ethylenediamine and carbon tetrachloride as precursors.The resulting spherical CN materials have uniform diameters of ca.4μm,hierarchical three-dimensional(3-D)mesostructures with small and large mesopores with pore diameters centered at ca.4.0 and 43 nm,respectively,a relatively high BET surface area of~550 m^(2)/g,and a pore volume of 0.90 cm^(3)/g.High-resolution transmission electron microscope(HRTEM)images,wide-angle X-ray diffraction(XRD)patterns,and Raman spectra demonstrate that the porous CN material has a partly graphitized structure.In addition,elemental analyses,X-ray photoelectron spectra(XPS),Fourier transform infrared spectra(FT-IR),and CO_(2) temperature-programmed desorption(CO_(2)-TPD)show that the material has a high nitrogen content(17.8 wt%)with nitrogen-containing groups and abundant basic sites.The hierarchical porous CN spheres have excellent CO_(2) capture properties with a capacity of 2.90 mmol/g at 25℃and 0.97 mmol/g at 75℃,superior to those of the pure carbon materials with analogous mesostructures.This can be mainly attributed to the abundant nitrogen-containing basic groups,hierarchical mesostructure,relatively high BET surface area and stable framework.Furthermore,the presence of a large number of micropores and small mesopores also enhance the CO_(2) capture performance,owing to the capillary condensation effect. | Qiang Li Jianping Yang Dan Feng Zhangxiong Wu Qingling Wu Sung Soo Park Chang-Sik Ha Dongyuan Zhao | 2010 | Nano Research2010,3,9: | 24 |
| 3 | In situ preparation of g-C3N4/Bi4O5I2 complex and its elevated photoactivity in Methyl Orange degradation under visible light显示文摘A graphite carbon nitride(g-C3N4)modified Bi4O5I2 composite was successfully prepared insitu via the thermal treatment of a g-C3N4/Bi OI precursor at 400°C for 3 hr.The as-prepared g-C3N4/Bi4O5I2 showed high photocatalytic performance in Methyl Orange(MO)degradation under visible light.The best sample presented a degradation rate of 0.164 min^-1,which is 3.2 and 82 times as high as that of Bi4O5I2 and g-C3N4,respectively.The g-C3N4/Bi4O5I2 was characterized by X-ray powder diffractometer(XRD),scanning electron microscopy(SEM),transmission electron microscopy(TEM),Raman,X-ray photoelectron spectroscopy(XPS),ultraviolet-visible diffuse reflectance spectra(DRS),electrochemical impedance spectroscopy(EIS)and transient photocurrent response in order to explain the enhanced photoactivity.Results indicated that the decoration with a small amount of g-C3N4 influenced the specific surface area only slightly.Nevertheless,the capability for absorbing visible light was improved measurably,which was beneficial to the MO degradation.On top of that,a strong interaction between g-C3N4 and Bi4O5I2 was detected.This interplay promoted the formation of a favorable heterojunction structure and thereby enhanced the charge separation.Thus,the g-C3N4/Bi4O5I2 composite presented greater charge separation efficiency and much better photocatalytic performance than Bi4O5I2.Additionally,g-C3N4/Bi4O5I2 also presented high stability.·O2^- and holes were verified to be the main reactive species. | Zhe Feng Lin Zeng Qingle Zhang Shifeng Ge Xinyue Zhao Hongjun Lin Yiming He | 2020 | Journal of Environmental Sciences2020,32,1: | 12 |
| 4 | Cancer situation in China:what does the China cancer map indicate fromthe first national death survey to the latest cancer registration?显示文摘Background:Over the past four decades,the Chinese government has conducted three surveys on the distribution of causes of death and built cancer registration.In order to shine a new light on better cancer prevention strategies in China,we evaluated the profile of cancer mortality over the forty years and analyzed the policies that have been implemented.Methods:We described spatial and temporal changes in both cancer mortality and the ranking of major cancer types in China based on the data collected from three national surveys during 1973-1975,1990-1992,2004-2005,and the latest cancer registration data published by National Central Cancer Registry of China.The mortality data were compared after conversion to age-standardized mortality rates based on the world standard population(Segi’s population).The geographical distribution characteristics were explored by marking hot spots of different cancers on the map of China.Results:From 1973 to 2016,China witnessed an evident decrease in mortality rate of stomach,esophageal,and cervical cancer,while a gradual increase was recorded in lung,colorectal,and female breast cancer.A slight decrease of mortality rate has been observed in liver cancer since 2004.Lung and liver cancer,however,have become the top two leading causes of cancer death for the last twenty years.From the three national surveys,similar profiles of leading causes of cancer death were observed among both urban and rural areas.Lowermortality rates from esophageal and stomach cancer,however,have been demonstrated in urban than in rural areas.Rural areas had similar mortality rates of the five leading causes of cancer death with the small urban areas in 1973-1975.Additionally,rural areas in 2016 also had approximate mortality rates of the five leading causes with urban areas in 2004-2005.Moreover,stomach,esophageal,and liver cancer showed specific geographical distributions.Althoughmortality rates have decreased atmost of the hotspots of these cancers,they were still higher than the national average levels during the same time periods.Conclusions:Building up a strong primary public health system especially among rural areas may be one critical step to reduce cancer burden in China. | Ruimei Feng Qingling Su Xiaoyin Huang Til Basnet Xin Xu Weimin Ye | 2023 | Cancer Communications2023,43,1: | 10 |
| 5 | Comparing the regeneration potential between PLLA/Aragonite and PLLA/ Vaterite pearl composite scaffolds in rabbit radius segmental bone defects显示文摘Mussel-derived nacre and pearl,which are natural composites composed CaCO3 platelets and interplatelet organic matrix,have recently gained interest due to their osteogenic potential.The crystal form of CaCO3 could be either aragonite or vaterite depending on the characteristics of mineralization template within pearls.So far,little attention has been paid on the different osteogenic capacities between aragonite and vaterite pearl.In the current work,aragonite or vaterite pearl powders were incorporated into poly-L-lactic acid(PLLA)scaffold as bio-functional fillers for enhanced osteogenesis.In intro results revealed that PLLA/aragonite scaffold possessed stronger stimulatory effect on SaOS-2 cell proliferation and differentiation,evidenced by the enhanced cell viability,alkaline phosphatase activity,collagen synthesis and gene expressions of osteogenic markers including osteocalcin,osteopotin and bone sialoprotein.The bone regeneration potential of various scaffolds was evaluated in vivo employing a rabbit critical-sized radial bone defect model.The X-ray and micro-CT results showed that significant bone regeneration and bridging were achieved in defects implanted with composite scaffolds,while less bone formation and non-bridging were found for pure PLLA group.Histological evaluation using Masson's trichrome and hematoxylin/eosin(H&E)staining indicated a typical endochondral bone formation process conducted at defect sites treated with composite scaffolds.Through three-point bending test,the limbs implanted with PLLA/aragonite scaffold were found to bear significantly higher bending load compared to other two groups.Together,it is suggested that aragonite pearl has superior osteogenic capacity over vaterite pearl and PLLA/aragonite scaffold can be employed as a potential bone graft for bone regeneration. | Qianli Huang Yuansheng Liu Zhengxiao Ouyang Qingling Feng | 2020 | Bioactive Materials2020,5,4: | 7 |
| 6 | Specific heat treatment of selective laser melted Ti-6AI-4V for biomedical applications显示文摘 | Qianli HUANG Xujie LIU Xing YANG Ranran ZHANG Zhijian SHEN Qingling FENG | 2015 | Frontiers of Materials Science2015,9,4: | 5 |
| 7 | Incorporation of silica nanoparticles to PLGA electrospun fibers for osteogenic differentiation of human osteoblast-like cells显示文摘The development of bone tissue engineering scaffolds still remains a challenging field,although various biomaterials have been developed for this purpose.Electrospinning is a promising approach to fabricate nanofibers with an interconnected porous structure,which can support cell adhesion,guide cell proliferation and regulate cell differentiation.The aim of this study is to fabricate composite fibers composed of poly(lactic-co-glycolic acid)(PLGA)and silica nanoparticles(NPs)via electrospinning and investigate the effect of PLGA/SiO_(2)composite fibers on the cellular response of osteoblast-like cells(SaOS-2 cells).SEM and EDX analysis showed that silica NPs were homogenously dispersed in the composite fibers.The mechanical behavior of the fibers showed that silica NPs acted as reinforcements at concentrations of 2.5 and 5 mg/ml.The incorporation of silica NPs led to enhancement of cell attachment and spreading on PLGA/SiO_(2)composite fibers.SaOS-2 cells cultured on PLGA/SiO_(2)composite fibers exhibited increased alkaline phosphatase activity,collagen secretion and bone nodules formation.The bone nodules formation of SaOS-2 cells increased along with the amount of incorporated silica NPs.The present findings indicate that PLGA/SiO_(2)composite fibers can stimulate osteogenic differentiation of SaOS-2 cells and may be a promising candidate scaffold for bone tissue engineering. | Xing Yang Yuanyuan Li Xujie Liu Qianli Huang Ranran Zhang Qingling Feng | 2018 | Regenerative Biomaterials2018,5,4: | 4 |
| 8 | On the Properties of Cheng Projection显示文摘This paper mainly investigates some properties of Cheng projection,which was proposed recently by Prof.Cheng to reduce the dimension of vector.As a linear transformation from the original vector space to the target vector space,the matrix representation of Cheng projection is given.Then,the structure matrix of Cheng projection,called the Cheng projection matrix,is obtained.Algebraic properties of Cheng projection are derived via its projection matrix.Furthermore,the product and norm of Cheng projection matrices are concerned. | FENG Jun-e ZHANG Qingle LI Yiliang | 2021 | Journal of Systems Science & Complexity2021,34,4: | 3 |
| 9 | Calcium carbonate nanoparticles promote osteogenesis compared to adipogenesis in human bone-marrow mesenchymal stem cells显示文摘Rhombohedron-like and fusiform calcium carbonate nanoparticles were fabricated using a new method. Their geometry was controlled by varying the mixing speed and ratio of ethanol versus water in reaction system. The calcium carbonate nanoparticles(CCNPs) have slight effect on viability of human bone-marrow mesenchymal stem cells(hBMSCs) with dose-dependent and shape-dependent, but they can significantly promote osteogenic differentiation of hBMSCs in vitro by 10–37% increase of alkaline phosphatase(ALP) activity, 9–36% growth of collagen secretion and 1.13–1.83 folds upregulation of osteogenesis-related genes, even at lower dose ranges(5–20 μg/ml). The efficacity of promoting osteogenesis depends on the shape and dose of CCNPs. Furthermore,adipogenesis was inhibited by less accumulation of lipid droplets, lower triglyceride(TG) secretion and downregulation of adipogenesis-related genes. These findings improve the understanding of effects CCNPs on hBMSCs fate towards osteoblasts or adipocytes and have meaningful impact for combining use of CCNPs and hBMSCs in tissue engineering and regenerative medicine fields. | Xiaoning Li Xing Yang Xujie Liu Wei He Qianli Huang Shengrong Li Qingling Feng | 2018 | Progress in Natural Science:Materials International2018,28,5: | 3 |
| 10 | Hyperthermia based individual in situ recombinant vaccine enhances lymph nodes drainage for de novo antitumor immunity显示文摘The continuing challenges that limit effectiveness of tumor therapeutic vaccines were high heterogeneity of tumor immunogenicity, low bioactivity of antigens, as well as insufficient lymph nodes(LNs) drainage of antigens and adjuvants. Transportation of in situ neoantigens and adjuvants to LNs may be an effective approach to solve the abovementioned problems. Therefore, an FA-TSL/AuNCs/SV nanoplatform was constructed by integrating simvastatin(SV) adjuvant loaded Au nanocages(AuNCs)as cores(AuNCs/SV) and folic acid modified thermal-sensitive liposomes(FA-TSL) as shells to enhance de novo antitumor immunity. After accumulation in tumor guided by FA, AuNCs mediated photothermal therapy(PTT) induced the release of tumor-derived protein antigens(TDPAs) and the shedding of FATSL. Exposed AuNCs/SV soon captured TDPAs to form in situ recombinant vaccine(AuNCs/SV/TDPAs). Subsequently, AuNCs/SV/TDPAs could efficiently transport to draining LNs owing to the hyperthermia induced vasodilation effect and small particle size, achieving co-delivery of antigens and adjuvant for initiation of specific T cell response. In melanoma bearing mice, FA-TSL/AuNCs/SV and laser irradiation effectively ablated primary tumor, against metastatic tumors and induced immunological memory. This approach served a hyperthermia enhanced platform drainage to enable robust personalized cancer vaccination. | Cuixia Zheng Xinxin Liu Yueyue Kong Lei Zhang Qingling Song Hongjuan Zhao Lu Han Jiannan Jiao Qianhua Feng Lei Wang | 2022 | Acta Pharmaceutica Sinica B2022,12,8: | 2 |
| 11 | Biomimetic research Based on the study of the nacre structure 显示文摘 | Li Hengde Feng Qingling Cui Fuzai | 2001 | J Tsinghua University (Science and Technology)2001,41,4: | 1 |
| 12 | 显示文摘 | Feng Qingling Kim T N | 1998 | Thin Solid Films1998,335,: | 1 |
| 13 | 显示文摘 | Zhao Kai Feng Qingling Chen Guoqiang | 1999 | Tsinghua Science and Technology1999,4,3: | 1 |
| 14 | Orchestrating antigen delivery and presentation efficiency in lymph node by nanoparticle shape for immune response显示文摘Activating humoral and cellular immunity in lymph nodes(LNs)of nanoparticle-based vaccines is critical to controlling tumors.However,how the physical properties of nanovaccine carriers orchestrate antigen capture,lymphatic delivery,antigen presentation and immune response in LNs is largely unclear.Here,we manufactured gold nanoparticles(AuNPs)with the same size but different shapes(cages,rods,and stars),and loaded tumor antigen as nanovaccines to explore their disparate characters on above four areas.Results revealed that star-shaped AuNPs captured and retained more repetitive antigen epitopes.On lymphatic delivery,both rods and star-shaped nanovaccines mainly drain into the LN follicles region while cage-shaped showed stronger paracortex retention.A surprising finding is that the star-shaped nanovaccines elicited potent humoral immunity,which is mediated by CD4^(+)T helper cell and follicle B cell cooperation significantly preventing tumor growth in the prophylactic study.Interestingly,cage-shaped nanovaccines preferentially presented peptide-MHC I complexes to evoke robust CD8^(+)T cell immunity and showed the strongest therapeutic efficacy when combined with the PD-1 checkpoint inhibitor in established tumor study.These results highlight the importance of nanoparticle shape on antigen delivery and presentation for immune response in LNs,and our findings support the notion that different design strategies are required for prophylactic and therapeutic vaccines. | Hongjuan Zhao Yatong Li Beibei Zhao Cuixia Zheng Mengya Niu Qingling Song Xinxin Liu Qianhua Feng Zhenzhong Zhang Lei Wang | 2023 | Acta Pharmaceutica Sinica B2023,13,9: | 1 |
| 15 | A spheres-in-sphere structure for improving protein-loading poly- (lactide-co-glycolide) microspheres 显示文摘 | Wang Mingbo Feng Qingling Niu Xufeng | 2010 | Polymer Degradation and Stability2010,95,1: | 1 |
| 16 | Nanoparticles and their effects on differentiation of mesenchymal stem cells显示文摘Over the past decades,advancements in nanoscience and nanotechnology have resulted in numerous nanomedicine platforms.Various nanoparticles,which exhibit many unique properties,play increasingly important roles in the field of biomedicine to realize the potential of nanomedicine.Due to the capacity of self-renewal and multilineage mesenchymal differentiation,mesenchymal stem cells(MSCs)have been widely used in the area of regenerative medicine and in clinical applications due to their potential to differentiate into various lineages.There are several factors that impact the differentiation of MSCs into different lineages.Many types of biomaterials such as polymers,ceramics,and metals are commonly applied in tissue engineering and regenerative therapies,and they are continuously refined over time.In recent years,along with the rapid development of nanotechnology and nanomedicine,nanoparticles have been playing more and more important roles in the fields of biomedicine and bioengineering.The combined use of nanoparticles and MSCs in biomedicine requires greater knowledge of the effects of nanoparticles on MSCs.This review focuses on the effects of four inorganic or metallic nanoparticles(hydroxyapatite,silica,silver,and calcium carbonate),which are widely used as biomaterials,on the osteogenic and adipogenic differentiation of MSCs.In this review,the cytotoxicity of these four nanoparticles,their effects on osteogenic/adipogenic differentiation of MSCs and the signalling pathways or transcription factors involved are summarized.In addition,the chemical composition,size,shape,surface area,surface charge and surface chemistry of nanoparticles,have been reported to impact cellular behaviours.In this review,we particularly emphasize the influence of their size on cellular responses.We envision our review will provide a theoretical basis for the combined application of MSCs and nanoparticles in biomedicine. | Xing Yang Yuanyuan Li Xujie Liu Wei He Qianli Huang Qingling Feng | 2020 | Biomaterials Translational2020,1,1: | 1 |
| 17 | Biomimeticpropertiesofaninjectablechitosan/nano-hydroxyapatite/collagencomposite显示文摘 | ZhiHuang Feng Qingling Bo Yu etal | 2011 | MaterialsScienceandEngineeringC2011,31,1: | 1 |
| 18 | Effects of pH and temperature on CaCO3 crystallization in aqueous so-lution with water soluble matrix of pearls显示文摘 | Ma Yufei Gao Yonghua Feng Qingling | | 0,,21: | 1 |
| 19 | Characteriza-tion of organic matrix extracted from fresh water pearls显示文摘 | Ma Yufei Gao Yonghua Feng Qingling | | 0,,07: | 1 |
| 20 | In vitro degradation and release behavior of porous poly (lactic acid) scaffolds containing chitosan microspheres as a carrier for BMP-2-derived synthetic peptide显示文摘 | Niu Xufeng Feng Qingling Wang Mingbo | 2009 | Polym Degrad Stabil2009,94,: | 1 |