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| 1 | Isolation and Identification of Cancer Stem-Like Cells from Murine Melanoma Cell Lines显示文摘In current study,cancer stem-like cells in the murine melanoma B16F10 cells were investigated.CD phenotypes of the B16F10 cells were analyzed by flow cytometry,and the specific CD phenotype cells from the B16F10 cells were isolated by MACS.Then we used colony formation assay in soft agar media,the cell growth assay in serum-free culture media as well as the tumorigenicity investigation of the specific CD phenotype cells in C57BL/6 mice, respectively,to identify cancer stem-like cells in the B16F10 cells.The results showed that the B16F10 cells could form spherical clones in serum-free culture media,and the rate of clonegenesis of CD133 + ,CD44 + and CD44 + CD133 + cells was higher than that of CD133 - ,CD44 - and CD44 + CD133 - cells in soft agar media,respectively. The tumorigenic potential of CD133 + ,CD44 + ,CD44 + CD133 + cells and CD44 + CD133 + CD24 + cells was stronger than that of CD133 - ,CD44 - ,CD44 + CD133 - cells and CD44 + CD133 + CD24 - cells in mice,respectively.In conclusion,the CD44 + CD133 + CD24 + cells have some biological properties of cancer stem-like cells or are highly similar to the characteristics of cancer stem cells(CSC).These results provide an important method for identifying cancer stem-like cells in B16F10 cells and for further cancer target therapy. | Jun Dou Meng Pan Ping Wen Yating Li Quan Tang Lili Chu Fengshu Zhao Chuilian Jiang Weihua Hu Kai Hu Ning Gu | 2007 | Cellular & Molecular Immunology2007,4,6: | 25 |
| 2 | Immunomodulatory effect of human amniotic epithelial cells on restoration of ovarian function in mice with autoimmune ovarian disease显示文摘Autoimmune ovarian disease(AOD)is considered to be a major cause of premature ovarian failure(POF).The immunomodulatory properties of human amniotic epithelial cells(hAECs)have been studied in many disease models.We previously reported that hAECs restored ovarian function in chemotherapy-induced POF mice,but the immunomodulatory mechanism of hAECs is still unclear.To investigate the effect of hAECs on recipient mice,especially on regulatory Treg cells,hAECs and hAEC-conditioned medium(hAEC-CM)were intravenously injected into AOD mice immunized with zona pellucida protein 3 peptides(pZP3).Ovarian function was evaluated through estrous cycle,hormone secretion,follicle development,and cell apoptosis analysis.Immune cells including CD3,CD4,CD8 and Treg cells in the spleens were tested by flow cytometry.To elucidate the effect of hAEC-CM on macrophage function,inflammation model in vitrowas established in RAW264.7 cells induced by lipopolysaccharide(LPS).hAECs and hAEC-CM regulated estrous cycles,promoted follicle development,ameliorated cell apoptosis and fibrosis in ovaries of AOD mice.In addition,hAECs significantly reversed the decrease of pZP3-induced Treg cells in the spleens.In vitro,hAEC-CM significantly inhibited the inflammatory reaction induced by LPS in RAW264.7 cells via up-regulating the expression of M2 macrophage genes.Further study demonstrated that hAECsecreted transforming growth factor-beta and macrophage inhibitory factor played important roles in the macrophage polarization and migration under inflammatory stimulation.Taken together,hAECs restored ovarian function by up-regulating Treg cells in the spleens and reduced the inflammatory reaction via modulating the activated macrophage function in a paracrine manner in the ovaries of AOD mice. | Qiuwan Zhang Yating Huang Junyan Sun Tingting Gu Xiaoyan Shao Dongmei Lai | 2019 | Acta Biochimica et Biophysica Sinica2019,51,8: | 14 |
| 3 | Identifying tumor stem-like cells in mouse melanoma cell lines by analyzing the characteristics of side population cells显示文摘 | Jun Dou Ping Wen Weihua Hu Yating Li Yun Wu Chunsheng Liu Fengshu Zhao Kai Hu Jing Wang Chuilian Jiang Xiangfeng He Ning Gu | 2009 | Cell Biology International2009,,8: | 1 |
| 4 | Systemic inflammation-associated glucocorticoid resistanee and outcome of ARDS 显示文摘 | Meduri GU Yates CR | 2004 | Ann NY Acad Sci2004,1024,6: | 1 |
| 5 | The relationships between maize(Zea mays L.)lodging resistance and yield formation depend on dry matter allocation to ear and stem显示文摘Lodging is a critical constraint to yield increase.There appear to be tradeoffs between yield formation and lodging resistance in maize.Hypothetically,it is feasible to reduce lodging risk as well as increase grain yield by optimizing dry-matter allocation to different organs under different environments.A three-year field experiment was conducted using four maize cultivars with differing lodging resistances and five growing environments in 2018–2020.Lodging-susceptible(LS)cultivars on average yielded more than lodging-resistant(LR)cultivars when lodging was not present.The yield components kernel number per ear(KN)and thousand-kernel weight(TKW)were both negatively correlated with lodging resistance traits(stalk bending strength,rind penetration strength,and dry matter weight per internode length).Before silking,the LR cultivar Lishou 1(LS1)transported more assimilates to the basal stem,resulting in a thicker basal stem,which reduced dry matter allocation to the ear and in turn KN.The lower KN of LS1 was also due partly to the lower plant height(PH),which increased lodging resistance but limited plant dry matter production.In contrast,the LS cultivars Xianyu 335(XY335)and Xundan 20(XD20)produced and allocated more photoassimilates to ears,but limited dry matter allocation to stems.After silking,LS cultivars showed higher TKW than LR cultivars as a function of high photoassimilate productivity and high assimilate allocation to the ear.The higher lodging resistance of LS1 was due mainly to the greater assimilate allocation to stem after silking and lower PH and ear height(EH).High-yielding and high-LR traits of Fumin(FM985)were related to optimized EH and stem anatomical structure,higher leaf productivity,low assimilate demand for kernel formation,and assimilate partitioning to ear.A high presilking temperature accelerated stem extension but reduced stem dry matter accumulation and basal stem strength.Post-silking temperature influences lodging resistance and yield more than other environmental factors.These results will be useful in understanding the tradeoffs between KN,KW,and LR in maize and environmental influences on these tradeoffs. | Ping Zhang Shuangcheng Gu Yuanyuan Wang Chenchen Xu Yating Zhao Xiaoli Liu Pu Wang Shoubing Huang | 2023 | The Crop Journal2023,11,1: | 0 |
| 6 | Selectivity regulation of CO_(2)electroreduction on asymmetric AuAgCu tandem heterostructures显示文摘Rational design and synthesis of multimetallic nanostructures(NSs)are fundamentally important for electrochemical CO_(2)reduction reaction(CO_(2)RR).Herein,a multi-step seed-mediated growth method is applied to synthesize asymmetric AuAgCu heterostructures using Au nanobipyramids as nucleation seeds,in which their composition and structures are well controlled.We find that the selectivity of C_(2)products for CO_(2)RR could be effectively regulated by tandem catalysis and electronic effect over trimetallic AuAgCu heterostructures.Particularly,the Faraday efficiency toward ethanol could reach up to 37.5%at a potential of−0.8 V versus reversible hydrogen electrode over asymmetric Au1Ag1Cu5 heterostructures with segregated domains of three constituent metals.This work provides an efficient strategy for the synthesis of multicomponent architectures to boost their promising application in CO_(2)RR. | Yating Zhu Zengqiang Gao Zhicheng Zhang Ting Lin Qinghua Zhang Huiling Liu Lin Gu Wenping Hu | 2022 | Nano Research2022,15,9: | 0 |
| 7 | Ultra reliability and massive connectivity provision in integrated internet of military things(IoMT)based on tactical datalink显示文摘One of the major challenges arising in internet of military things(IoMT)is accommodating massive connectivity while providing guaranteed quality of service(QoS)in terms of ultra-high reliability.In this regard,this paper presents a class of code-domain nonorthogonal multiple accesses(NOMAs)for uplink ultra reliable networking of massive IoMT based on tactical datalink such as Link-16 and joint tactical information distribution system(JTIDS).In the considered scenario,a satellite equipped with Nr antennas servers K devices including vehicles,drones,ships,sensors,handset radios,etc.Nonorthogonal coded modulation,a special form of multiple input multiple output(MIMO)-NOMA is proposed.The discussion starts with evaluating the output signal to interference-plus-noise(SINR)of receiver filter,leading to the unveiling of a closed-form expression for overloading systems as the number of users is significantly larger than the number of devices admitted such that massive connectivity is rendered.The expression allows for the development of simple yet successful interference suppression based on power allocation and phase shaping techniques that maximizes the sum rate since it is equivalent to fixed-point programming as can be proved.The proposed design is exemplified by nonlinear modulation schemes such as minimum shift keying(MSK)and Gaussian MSK(GMSK),two pivotal modulation formats in IoMT standards such as Link-16 and JITDS.Numerical results show that near capacity performance is offered.Fortunately,the performance is obtained using simple forward error corrections(FECs)of higher coding rate than existing schemes do,while the transmit power is reduced by 6 dB.The proposed design finds wide applications not only in IoMT but also in deep space communications,where ultra reliability and massive connectivity is a keen concern. | Li Bing Yating Gu Lanke Hu Li Bowen Yang Lihua Jue Wang Yue Yin | 2024 | Defence Technology(防务技术)2024,33,3: | 0 |
| 8 | Protein trap-engineered metal-organic frameworks for advanced enzyme encapsulation and mimicking显示文摘Immobilizing enzymes within metal-organic frameworks(MOFs)enables enzymes to against extreme environments.However,these MOF shells are just like armors,protective but heavy,which shield the enzymes from threats while locking them in the cage.The exploitation of immobilization strategy and intrinsic property of MOFs themselves is of great significance.Here,we proposed a functional protein trap strategy for efficient enzyme encapsulation.The ferrocenedicarboxylic acid(Fc)was used to induce the formation of defect-rich Co-based MOFs(CoBDC-Fc).As result,the engineered protein trap can not only improve the enzyme loading but also accelerate catalytic efficiency.Specifically,the atomically dispersed Fc sites serve as cocatalysts/cofactors and even change the conformation of enzymes in the construed microenvironment.Furthermore,the obtained CoBDC-Fc/enzyme exhibits excellent recyclability and tolerance to inhospitable conditions.Benefited by these,the CoBDC-Fc/enzyme/antigen composites were further prepared for cascade enzyme-linked immunosorbent assay of prostate-specific antigen with satisfactory sensitivity. | Weiqing Xu Yu Wu Lei Jiao Meng Sha Xiaoli Cai Yating Wen Yifeng Chen Wenling Gu Chengzhou Zhu | 2023 | Nano Research2023,16,2: | 0 |
| 9 | Light-Emitting Diodes Based on Two-Dimensional Nanoplatelets显示文摘Colloidal semiconductor nanocrystals(NCs)attract significant interest in recent years due to their narrow and tunable emission wavelength in the visible range,as well as high photoluminescence quantum yield(PLQY),which are highly desired in display technologies.The high-quality NCs have been recognized as vital luminescent materials in realizing next-generation display devices.With further development,NCs with near-unity PLQY have been successfully synthesized through engineering of the core/shell heterostructure.However,as the external quantum efficiency(EQE)of the nanocrystal light-emitting diodes(LEDs)approaches the theoretical limit of about 20%,the low out-coupling factor proposes a challenge of enhancing the performance of a device when using the spherical QDs.Hence,the anisotropic NCs like nanoplatelets(NPLs)are proposed as promising solutions to improve the performance of nanocrystal LEDs.In this review,we will summarize the synthetic strategies of twodimensional(2D)NPLs at first.Then,we will introduce fundamental concepts of LEDs,the main approaches to realize LEDs based on nanoplatelets,and the recent progress.Finally,the challenges and opportunities of LEDs based on anisotropic NCs are also presented. | Yating Guo Feng Gao Pan Huang Rong Wu Wanying Gu Jing Wei Fangze Liu Hongbo Li | 2022 | Energy Material Advances2022,,1: | 0 |
| 10 | An endophytic fungus interacts with the defensinlike protein OsCAL1 to regulate cadmium allocation in rice显示文摘Defensin-like proteins are conserved in multicellular organisms and contribute to innate immune re-sponses against fungal pathogens.In rice,defensins play a novel role in regulating cadmium(Cd)efflux from the cytosol.However,whether the antifungal activity of defensins correlates with Cd-efflux function remains unknown.In this study,we isolated an endophytic Fusarium,designed Fo1o,by a comparative mi-crobiome analysis of rice plants grown in a paddy contaminated with Cd.Fo10 is tolerant to high levels of Cd,but is sensitive to the defensin-like protein OsCAL1,which mediates Cd efflux to the apoplast.We found that Fo10 symbiosis in rice is regulated by OsCAL1 dynamics,and Fo10 coordinates multiple plant pro-cesses,including Cd uptake,vacuolar sequestration,efflux to the environment,and formation of Fe pla-ques in the rhizosphere.These processes are dependent on the salicylic acid signaling pathway to keep Cd levels low in the cytosol of rice cells and to decrease Cd levels in rice grains without any yield penalty.Fo10 also plays a role in Cd tolerance in the poaceous crop maize and wheat,but has no observed effects in the eudicot plants Arabidopsis and tomato.Taken together,these findings provide insights into the mech-anistic basis underlying how afungal endophyte and host plant interact to control Cd accumulation in host plants by adapting defense responses to promotethe establishment ofa symbiosis that permits adaptation to high-Cd environments. | Tianyu Gu Ziai Qi Yating Wang Siying Chen Jing Yan Huapeng Qiu Yanxuan Yu Zjun Fang Junmin Wang Jiming Gong | 2024 | Molecular Plant2024,17,2: | 0 |