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| 1 | Composites of small Ag clusters confined in the channels of well-ordered mesoporous anatase TiO2 and their excellent solar-light-driven photocatalytic performance显示文摘 | Wei Zhou Ting Li Jianqiang Wang Yang Qu Kai Pan Ying Xie Guohui Tian Lei Wang Zhiyu Ren Baojiang Jiang Honggang Fu | 2014 | Nano Research2014,7,5: | 17 |
| 2 | Observation of efficient population of the red-emitting state from the green state by non-multiphonon relaxation in the Er31–Yb31 system显示文摘The rare earth Er^(3+) and Yb^(3+) codoped system is the most attractive for showcasing energy transfer upconversion.This system can generate green and red emissions from Er^(3+) under infrared excitation of the sensitizer Yb^(3+).It is well known that the red-emitting state can be populated from the upper green-emitting state.The contribution of multiphonon relaxation to this population is generally considered important at low excitation densities.Here,we demonstrate for the first time the importance of a previously proposed but neglected mechanism described as a cross relaxation energy transfer from Er^(3+) to Yb^(3+),followed by an energy back transfer within the same Er^(3+)–Yb^(3+) pair.A luminescence spectroscopy study of cubic Y_(2)O_(3):Er^(3+),Yb^(3+) indicates that this mechanism can be more efficient than multiphonon relaxation,and it can even make a major contribution to the red upconversion.The study also revealed that the energy transfers involved in this mechanism take place only in the nearest Er^(3+)–Yb^(3+) pairs,and thus,it is fast and efficient at low excitation densities.Our results enable a better understanding of upconversion processes and properties in the Er^(3+)–Yb^(3+) system. | Jiahua Zhang Zhendong Hao Jing Li Xia Zhang Yongshi Luo Guohui Pan | 2015 | Light(Science & Applications)2015,4,1: | 8 |
| 3 | Levels of Metabolic Enzymes and Nitrogenous Compounds in the Swimming Crab Portunus trituberculatus Exposed to Elevated Ambient Ammonia-N显示文摘This study investigated the effects of ammonia-N(control and 1 and 5 mg L^(-1)) on the changes of metabolic enzymes activities and nitrogenous compounds levels in the gills, hepatopancreas, muscles, and hemolymph of the swimming crab Portunus trituberculatus. Results showed that the levels of hemolymph ammonia increased significantly at 6 h and then decreased to control level at 12 h. The activities of key enzymes involved in biosynthesis pathways of glutamine(Gln) and urea, such as glutamate dehydrogenase(GDH), glutamine synthetase(GS), and arginase(ARG), increased remarkably in different tissues of P. trituberculatus. Gln level was the highest in muscles, while urea content was the largest in hepatopancreas. The m RNA expression level of xanthine dehydrogenase(XDH) was downregulated sharply in gills but upregulated in the hepatopancreas and muscles. A small amount of uric acid was detected in the hemolymph. This result suggests that Gln in muscles may be used as an intermediary nitrogen repository, while urea may be primarily synthesized in the hepatopancreas and then transferred to other tissues via the hemolymph. Uric acid could be synthesized by the anabolism of purine nucleotides, in additon to the inhibitory activities of gills. In addition, the levels of Gln, urea and uric acid exhibited dose-and time-dependent effects with ammonia content. Therefore, P. trituberculatus could possibly convert ammonia into Gln, urea, or uric acid to detoxify ammonia during high ambient ammonia-N stress. | PAN Luqing SI Lingjun LIU Shengnan LIU Maoqi WANG Guohui | 2018 | Journal of Ocean University of China2018,17,4: | 5 |
| 4 | The mechanosensitive lncRNA Neat1 promotes osteoblast function through paraspeckle-dependent Smurf1 mRNA retention显示文摘Mechanical stimulation plays an important role in bone remodeling. Exercise-induced mechanical loading enhances bone strength,whereas mechanical unloading leads to bone loss. Increasing evidence has demonstrated that long noncoding RNAs(lnc RNAs) play key roles in diverse biological, physiological and pathological contexts. However, the roles of lnc RNAs in mechanotransduction and their relationships with bone formation remain unknown. In this study, we screened mechanosensing lnc RNAs in osteoblasts and identified Neat1, the most clearly decreased lnc RNA under simulated microgravity. Of note, not only Neat1 expression but also the specific paraspeckle structure formed by Neat1 was sensitive to different mechanical stimulations, which were closely associated with osteoblast function. Paraspeckles exhibited small punctate aggregates under simulated microgravity and elongated prolate or larger irregular structures under mechanical loading. Neat1 knockout mice displayed disrupted bone formation, impaired bone structure and strength, and reduced bone mass. Neat1 deficiency in osteoblasts reduced the response of osteoblasts to mechanical stimulation. In vivo, Neat1 knockout in mice weakened the bone phenotypes in response to mechanical loading and hindlimb unloading stimulation. Mechanistically, paraspeckles promoted nuclear retention of E3 ubiquitin ligase Smurf1 m RNA and downregulation of their translation, thus inhibiting ubiquitination-mediated degradation of the osteoblast master transcription factor Runx2, a Smurf1 target. Our study revealed that Neat1 plays an essential role in osteoblast function under mechanical stimulation, which provides a paradigm for the function of the lnc RNA-assembled structure in response to mechanical stimulation and offers a therapeutic strategy for long-term spaceflight-or bedrest-induced bone loss and age-related osteoporosis. | Caizhi Liu Xingcheng Gao Yuheng Li Weijia Sun Youjia Xu Yingjun Tan Ruikai Du Guohui Zhong Dingsheng Zhao Zizhong Liu Xiaoyan Jin Yinlong Zhao Yinbo Wang Xinxin Yuan Junjie Pan Guodong Yuan Youyou Li Wenjuan Xing Guanghan Kan Yanqing Wang Qi Li Xuan Han Jianwei Li Shukuan Ling Yingxian Li | 2022 | Bone Research2022,10,2: | 3 |
| 5 | Inducible overexpression of RUNX1b/c in human embryonic stem cells blocks early hematopoiesis from mesoderm显示文摘RUNX1 绝对为 RUNX1b/c 的权威的造血作用,而是功能被要求,人的 RUNX1 的二 isoforms,是不清楚的。我们建立了可诱导的 RUNX1b/c-overexpressing 人的胚胎的干细胞(hESC ) 线,在 RUNX1b/c, overexpression 阻止了 CD34+ 房间的出现早舞台,急速地从而减少造血的干细胞的生产。同时,造血作用相关的因素的表示是 downregulated。然而,如此的阻塞效果从在 hESC/AGM-S3 房间合作文化的白天 6 消失了,证明阻塞发生在 hemogenic endothelial 房间的产生前。这阻塞被 RepSox 部分救,转变生长因素(TGF ) 的一个禁止者 - 发信号的小径,显示在 RUNX1b/c 和 TGF- 小径之间的一种靠近的关系。我们的结果在早造血作用的开发建议 RUNX1b/c 的一个唯一的禁止的函数并且可以在正常和 diseased 模型帮助它的生物函数的进一步的理解。 | Bo Chen Jiawen Teng Hongwei Liu Xu Pan Ya Zhou Shu Huang Mowen Lai Guohui Bian Bin Mao Wencui Sun Qiongxiu Zhou Shengyong Yang Tatsutoshi Nakahata Feng Ma | 2017 | Journal of Molecular Cell Biology2017,9,4: | 3 |
| 6 | Electrospinning Preparation, Structure, and Photoluminescence Properties of YBO3: Eu^3+ Nanotubes and Nanowires 显示文摘 | Song Hongwei Yu Hongquan Pan Guohui | 2008 | Chemistry of Materials2008,20,14: | 1 |
| 7 | Novel Energy- Transfer Route and Enhanced Luminescent Properties in YVO4: Eu^3+/YBO3: Eu^3+ Composite显示文摘 | Pan Guohui Song Hongwei Bai Xue | 2006 | Chemistry of Materials2006,18,18: | 1 |
| 8 | Preparation and luminescent properties of europium-doped yttria fibers by electrospinning显示文摘 | YU Hongquan SONG Hongwei PAN Guohui | 2007 | Journal of Luminescence2007,124,1: | 1 |
| 9 | Enhanced photocatalytic activity of S-doped TiOz ZrO2 nanoparticles under vis ible-light irradiation显示文摘 | Tian Guohui Pan Kai Fu Honggang | 2009 | Journal of Hazardous Materials2009,166,23: | 1 |
| 10 | Dye- sensitized solar cells based on TiO2-B nanobelt/ TiO2 nanoparticle sandwich-type photoelectrodes with controllable nanobelt length显示文摘 | Youzhen Dong Kai Pan Guohui Tian | 2011 | Dalton Trans2011,40,: | 1 |
| 11 | Determination of quinolones residues in prawn using high-performance liquid chromatography with Ce (Ⅳ)-Ru ( bpy ) 3 2 + -HNO3 chemiluminescence detection 显示文摘 | WAN Guohui CUI Hua PAN Yilan | 2006 | J Chromatogr B2006,,: | 1 |
| 12 | Hydrothermal synthesis and photoluminescent properties of ZnO nanorods显示文摘 | Libo Fan Hongwei Song Te Li Lixin Yu Zhongxin Liu Guohui Pan Yanqiang Lei Xue Bai Tie Wang Zhuhong Zheng Xianggui Kong | 2006 | Journal of Luminescence2006,,: | 1 |
| 13 | Characteristics,Types,and Prospects of Geological Sweet Sections in Giant Continental Shale Oil Provinces in China显示文摘“Sweet sections”in giant shale oil provinces are preferential fields that primarily support China to increase the reserves and production of continental shale oil.Based on the study of the geological conditions of shale oil in the continental basins in China,it was found that the shale stratum in major oil generation windows generally has higher degrees of oil and gas accumulation,and mostly contains oil.Hydrocarbon generation and reservoir capacities are the two key parameters for evaluating and optimizing favorable shale oil provinces.The evaluation index(volume of shale stratum multiplied by total organic carbon(TOC)multiplied by total porosity)for the giant continental shale oil provinces is also proposed.It is optimized that the Upper Triassic Chang 7 Member in the southcentral Ordos Basin,Lower Cretaceous Qing 1 Member in the Gulong-Changling Sag in the Songliao Basin,Middle-Lower Permian in the Junggar Basin,Da’anzhai Member of the Ziliujing Formation of Lower Jurassic in the central and northern Sichuan Basin,and Paleogene oil-rich sag in the Bohai Bay Basin are the five giant continental shale oil provinces.The word“geological sweet sections”in continental shale oil provinces of China refers to favorable shale intervals which are relatively rich in oil,with superior physical properties,and more easily modified and developed commercially under applicable economic and technological conditions.After evaluation,there are mainly two types of“geological sweet sections”of giant continental shale oil developed onshore in China.One type of“geological sweet sections”is generally mudstone with optimal physical properties or a thin tight reservoir,to which the shale oil migrates a short distance.They are medium-to-high-mature zones with a thin sandy shale stratum in the Chang 7 Member in the Ordos Basin,mixed shale stratum in the mediummature Lucaogou Formation in the Jimsar Sag,and multi-layered mixed Paleogene shale stratum in the Bohai Bay Basin.The other type of“geological sweet sections”is generally shale oil residing in various shale reservoir spaces.This type was developed in the Qing 1 Member in the Gulong Sag and Da’anzhai Member in the north-central Sichuan Basin.Free shale oil mainly occurs in shale,sandycarbonate lamina,micro-lamella structure,and micro-fractures.Layers with lamina,lamination,and micro-fractures are generally shale oil“geological sweet sections.”Starting from field tests and the construction of the“geological sweet sections”in giant continental shale oil provinces,the shale oil industry has been rapidly developing and will become an important supplement to domestic oil production in China. | Zhi Yang Caineng Zou Songtao Wu Songqi Pan Xiaoni Wang Haitao Liu Wenqi Jiang Jiarui Li Qiyan Li Xiaobing Niu Guohui Li Zhenxing Tang Xuguang Guo Dong Huang Qizhao Wei | 2022 | Journal of Earth Science2022,33,5: | 1 |
| 14 | The problems and countermeasures of the rural widowed elderly old-age security exists显示文摘 | PAN Weimin WANG Guohui LIN Yuanyuan | 2012 | Journal of Liaoning Technical University(Social Science Edition)2012,14,1: | 1 |
| 15 | HOXC4 up-regulates NF-κB signaling and promotes the cell proliferation to drive development of human hematopoiesis, especially CD43+ cells显示文摘The hematopoietic function of HOXC4 has not been extensively investigated.Our research indicated that induction of HOXC4 in co-culture system from D10 significantly promoted productions of most hematopoietic progenitor cells.CD34−CD43+cells could be clearly classified into CD34−CD43^(low) and CD34−CD43^(high) sub-populations at D14.The former cells had greater myelogenic potential,and their production was not significantly influenced by induction of HOXC4.By contrast,the latter cells had greater potential to differentiate into megakaryocytes and erythroid cells,and thus had properties of erythroid–megakaryocyte common progenitors,which abundance was increased by∼2-fold when HOXC4 was induced from D10.For CD34−CD43^(low),CD34+CD43+,and CD34−CD43^(high) sub-populations,CD43 level served as a natural index for the tendency to undergo hematopoiesis.Induction of HOXC4 from D10 caused more CD43+cells sustain in S-phase with up-regulation of NF-κB signaling,which could be counteracted by inhibition of NF-κB signaling.These observations suggested that promotion of hematopoiesis by HOXC4 is closely related to NF-κB signaling and a change in cell-cycle status,which containing potential of clinical applications. | Jiahui Zeng Wencui Sun Jing Chang Danying Yia Lijiao Zhu Yonggang Zhang Xu Pan Ya Zhou Mowen Lai Guohui Bian Qiongxiu Zhou Jiaxin Liu Bo Chen FengMa | 2020 | Blood Science2020,2,4: | 1 |
| 16 | HuR-mediated nucleocytoplasmic translocation of HOTAIR relieves its inhibition of osteogenic differentiation and promotes bone formation显示文摘Bone marrow mesenchymal stem cell(BMSC)osteogenic differentiation and osteoblast function play critical roles in bone formation,which is a highly regulated process.Long noncoding RNAs(lncRNAs)perform diverse functions in a variety of biological processes,including BMSC osteogenic differentiation.Although several studies have reported that HOX transcript antisense RNA(HOTAIR)is involved in BMSC osteogenic differentiation,its effect on bone formation in vivo remains unclear.Here,by constructing transgenic mice with BMSC(Prx1-HOTAIR)-and osteoblast(Bglap-HOTAIR)-specific overexpression of HOTAIR,we found that Prx1-HOTAIR and Bglap-HOTAIR transgenic mice show different bone phenotypes in vivo.Specifically,Prx1-HOTAIR mice showed delayed bone formation,while Bglap-HOTAIR mice showed increased bone formation.HOTAIR inhibits BMSC osteogenic differentiation but promotes osteoblast function in vitro.Furthermore,we identified that HOTAIR is mainly located in the nucleus of BMSCs and in the cytoplasm of osteoblasts.HOTAIR displays a nucleocytoplasmic translocation pattern during BMSC osteogenic differentiation.We first identified that the RNA-binding protein human antigen R(HuR)is responsible for HOTAIR nucleocytoplasmic translocation.HOTAIR is essential for osteoblast function,and cytoplasmic HOTAIR binds to miR-214 and acts as a ceRNA to increase Atf4 protein levels and osteoblast function.BglapHOTAIR mice,but not Prx1-HOTAIR mice,showed alleviation of bone loss induced by unloading.This study reveals the importance of temporal and spatial regulation of HOTAIR in BMSC osteogenic differentiation and bone formation,which provides new insights into precise regulation as a target for bone loss. | Yuheng Li Weijia Sun Jianwei Li Ruikai Du Wenjuan Xing Xinxin Yuan Guohui Zhong Dingsheng Zhao Zizhong Liu Xiaoyan Jin Junjie Pan Youyou Li Qi Li Guanghan Kan Xuan Han Shukuan Ling Xiqing Sun Yingxian Li | 2023 | Bone Research2023,11,4: | 0 |
| 17 | Overexpression of HOXA9 upregulates NF-κB signaling to promote human hematopoiesis and alter the hematopoietic differentiation potentials显示文摘Background: The HOX genes are master regulators of embryogenesis that are also involved inhematopoiesis. HOXA9 belongs to a cluster of HOX genes that play extensively studied roles inhematopoiesis and leukemogenesis.Methods: We established HOXA9-inducible human embryonic stem cells (HOXA9/hESCs) with normalpluripotency and potential for hematopoiesis, which could be used to analyze gene function with highaccuracy. HOXA9/hESCs co-cultured with aorta–gonad–mesonephros-derived stromal cells (AGM-S3) wereinduced to overexpress HOXA9 with doxycycline (DOX) at various times after hematopoiesis started andthen subjected to flow cytometry.Results: Induction of HOXA9 from Day 4 (D4) or later notably promoted hematopoiesis and also increasedthe production of CD34+ cells and derived populations. The potential for myelogenesis was significantlyelevated while the potential for erythrogenesis was significantly reduced. At D14, a significant promotion ofS phase was observed in green fluorescent protein positive (GFP+) cells overexpressing HOXA9. NF-κBsignaling was also up-regulated at D14 following induction of HOXA9 on D4. All of these effects could becounteracted by addition of an NF-κB inhibitor or siRNA against NFKB1 along with DOX.Conclusions: Overexpression of HOXA9 starting at D4 or later during hematopoiesis significantly promotedhematopoiesis and the production of myeloid progenitors while reduced the production of erythroidprogenitors, indicating that HOXA9 plays a key role in hematopoiesis and differentiation of hematopoieticlineages. | Jiahui Zeng Danying Yi Wencui Sun Yuanlin Liu Jing Chang Lijiao Zhu Yonggang Zhang Xu Pan Yong Dong Ya Zhou Mowen Lai Guohui Bian Qiongxiu Zhou Jiaxin Liu Bo Chen Feng Ma | 2021 | Cell Regeneration2021,10,1: | 0 |
| 18 | Interactions of Insect Infochemicals at Community Level显示文摘Traditional community ecology focuses on the nutruitional relations at the levels of food chain or food web,while chemical ecology focuses on the communication among organisms based on chemical information.The full integration between these two fields will improve our understanding of insect behaviors.This paper reviews infochemicals from different sources and their interactions that affect insect behaviors in natural ecosystems. | Sheng Ziyao Zhao Qi Cui Pan Zhang Shaohua Ma Yifei Li Weizheng Yuan Guohui | 2019 | Plant Diseases and Pests2019,10,5: | 0 |
| 19 | Tetracycline natural products:discovery,biosynthesis and engineering显示文摘Tetracycline(TC)natural products possess a variety of remarkable bioactivities and diverse structures.They are an important and fertile source for developing novel drugs.As one of the most successful drug families,TC antibiotics have been in clinical use for over seven decades,and continue to make an important contribution to human health nowadays.To date,studies on TC natural products and their biosynthesis have revealed numerous novel biochemical mechanisms and regulatory elements,which facilitates the rational metabolic engineering studies for generating novel bioactive TC analogs and inspires the development of new synthetic biology tools.In this review,we provide a comprehensive overview on the discovery,biosynthesis,and engineering of the existing TC natural products.These analyses will be of great value for the discovery,design and development of novel TC drugs in the future. | WANG Haiyan WANG Ljun FAN Keqiang PAN Guohui | 2022 | Chinese Journal of Natural Medicines2022,20,10: | 0 |
| 20 | Early development and functional properties of tryptase/chymase double-positive mast cells from human pluripotent stem cells显示文摘Mast cells (MCs) play a pivotal role in the hypersensitivity reaction by regulating the innate and adaptive immune responses. Humans have two types of MCs. The first type, termed MCTC, is found in the skin and other connective tissues and expresses both tryptase and chymase, while the second, termed MCT, which only expresses tryptase, is found primarily in the mucosa. MCs induced from human adult-type CD34+ cells are reported to be of the MCT type, but the development of MCs during embryonic/fetal stages is largely unknown. Using an efficient coculture system, we identified that a CD34+c-kit+ cell population, which appeared prior to the emergence of CD34+CD45+ hematopoietic stem and progenitor cells (HSPCs), stimulated robust production of pure Tryptase+Chymase+ MCs (MCTCs). Single-cell analysis revealed dual development directions of CD34+c-kit+ progenitors, with one lineage developing into erythro-myeloid progenitors (EMP) and the other lineage developing into HSPC. Interestingly, MCTCs derived from early CD34+c-kit+ cells exhibited strong histamine release and immune response functions. Particularly, robust release of IL-17 suggested that these early developing tissue-type MCTCs could play a central role in tumor immunity. These findings could help elucidate the mechanisms controlling early development of MCTCs and have significant therapeutic implications. | Guohui Bian Yanzheng Gu Changlu Xu Wenyu Yang Xu Pan Yijin Chen Mowen Lai Ya Zhou Yong Dong Bin Mao Qiongxiu Zhou Bo Chen Tatsutoshi Nakathata Lihong Shi Min Wu Yonggang Zhang Feng Ma | 2021 | Journal of Molecular Cell Biology2021,13,2: | 0 |