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| 1 | Determining "abnormal" levator hiatus distensibility using three-dimensional transperineal ultrasound in Chinese women显示文摘The dimension of the levator hiatus is a possible predictor of pelvic organ prolapse (POP). Thisretrospective study investigated 360 women who went to urogynecological clinic for pelvic floor discomfort.Levator hiatus dimensions were obtained by three-dimensional transperineal ultrasound and results werecompared between women with and without significantly objective prolapse (International Continence SocietyPOP quantification, grade 2 or higher). Receiver operating characteristic (ROC) curve analyses were performed todetermine valid screening index for detecting abnormal levator hiatus distensibility. Women with significantlyobjective prolapse had significantly higher levator hiatus dimensions than those without (all P 〈 0.001). ROCcurve analyses confirmed that hiatal area (HA) of 19.5 cm2 during Valsalva maneuver can be used as single-screening index for abnormal levator hiatus distensibility with sensitivity of 0.80 and specificity of 0.70. In thisstudy, we used a two-step method and achieved higher sensibility (0.80 vs. 0.87) without reducing specificity (0.70vs. 0.71) compared with a single-screening index method. As a result, we suggest that HA ≥ 19.5 cm2 duringValsalva maneuver is an indicator of abnormal levator hiatus distensibility in Chinese women and that the two-step method has higher sensitivity in detecting abnormal distensibility. | Chaoran Dou Qin Li Tao Ying Yulin Yan Xia Wang Bing Hu | 2018 | Frontiers of Medicine2018,12,5: | 21 |
| 2 | Effect of wheat bran insoluble dietary fiber with different particle size on the texture properties, protein secondary structure, and microstructure of noodles显示文摘This study was conducted to explore how the insoluble dietary fiber(IDF)of wheat bran with different particle size affects the texture properties,water distribution,protein secondary structure and microstructure of noodles.The results suggested that IDF addition increased the cooking loss and decreased the sensory evaluation because of the damage on dough structure,while as the IDF particle size decreased,the sensory score increased from 78.8 to 82.3 and cooking loss decreased from 8.65%to 7.65%,which could be attributed to that small particle-sized IDF limited the damage on protein network structure,decreased the T22 and t-structure,and increased the β1-structure.Moreover,IDF particle size had a significant correlation with protein secondary structures,texture properties and evaluation score of noodles.In conclusion,adding appropriate particle sizewould be an effectiveway of enhancing the nutritional and textural properties of noodles. | Jian Zhang Mengqin Li Chaoran Li Yanqi Liu | 2019 | Grain & Oil Science and Technology2019,2,4: | 20 |
| 3 | Degradation of Nitrobenzene-Containing Wastewater with O_3 and H_2O_2 by High Gravity Technology显示文摘Nitrobenzene-containing industrial wastewater was degraded in the presence of ozonecoupled with H2O2 by high gravity technology. The effect of high gravity factor, H2O2 concentration, pH value, liquid flow-rate, and reaction time on the efficiency for removal of nitrobenzene was investigated. The experimental results show that the high gravity technology enhances the ozone utilization efficiency with O3 /H2O2 showing synergistic effect. The degradation efficiency in terms of the COD removal rate and nitrobenzene removal rate reached 45.8% and 50.4%, respectively, under the following reaction conditions, viz.: a high gravity factor of 66.54, a pH value of 9, a H2O2 /O3 molar ratio of 1:1, a liquid flow rate of 140L/h, an ozone concentration of 40mg/L, a H2O2 multiple dosing mode of 6mL/h, and a reaction time of 4h. Compared with the performance of conventional stirred aeration mixers, the high gravity technology could increase the COD and nitrobenzene removal rate related with the nitrobenzene-containing wastewater by 22.9% and 23.3%, respectively. | Jiao Weizhou Liu Youzhi Liu Wenli Li Jing Shao Fan Wang Chaoran | 2013 | China Petroleum Processing & Petrochemical Technology2013,15,1: | 16 |
| 4 | Degradation of Wastewater Containing Nitrobenzene by High Gravity-Ultrasonic/Ozonation/Electrolysis Technology显示文摘The integrated high gravity-ultrasonic/ozonation/electrolysis technology was applied in the pretreatment of wastewater containing nitrobenzene.The effect of pH value,high gravity factor,liquid flow-rate and electric current density on removal of COD and nitrobenzene compounds was investigated.Experimental results have determined the optimal process regime involving a high gravity factor of 100,an electric current density of 20mA/cm2,a liquid flow-rate of 100L/h,and an initial liquid pH value of 11.After the wastewater had been treated for 180 min,the degradation of nitrobenzene and COD reached 99% and 80%,respectively,with the biochemical coefficient(BOD/COD) equating to 0.64,and the subsequent treatment of wastewater could be carried out by conventional biochemical means.Compared with traditional aerationozone contactors,a rotating packed bed with high mass transfer characteristics could be used to increase the ozonation treatment efficiency. | Jiao Weizhou Liu Youzhi Shao Fan Liu Wenli Li Jing Wang Chaoran | 2012 | China Petroleum Processing & Petrochemical Technology2012,14,3: | 11 |
| 5 | Pharmacological Activation of RXR-a Promotes Hematoma Absorption via a PPAR-y-dependent Pathway After Intracerebral Hemorrhage显示文摘Endogenously eliminating the hematoma is a favorable strategy in addressing intracerebral hemorrhage(ICH).This study sought to determine the role of retinoid X receptor-ot(RXR-a)in the context of hematoma absorption after ICH.Our results showed that pharmacologically activating RXR-a with bexarotene significantly accelerated hematoma clearance and alleviated neurological dysfunction after ICH.RXR-ot was expressed in microglia/macro-phages,neurons,and astrocytes.Mechanistically,bexarotene promoted the nuclear translocation of RXR-a and PPAR-y,as well as reducing neuroinflammation by modulating microglia/macrophage reprograming from the Ml into the M2 phenotype.Furthermore,all the beneficial effects of RXR-a in ICH were reversed by the PPAR-y inhibitor GW9662.In conclusion,the pharmacological activation of RXR-a confers robust neuroprotection against ICH by accelerating hematoma clearance and repolarizing microglia/macrophages towards the M2 phenotype through PPAR-y-related mechanisms.Our data support the notion that RXR-ot might be a promising therapeutic target for ICH. | Chaoran Xu Huaijun Chen Shengjun Zhou Chenjun Sun Xiaolong Xia Yucong Peng Jianfeng Zhuang Xiongjie Fu Hanhai Zeng Hang Zhou Yang Cao Qian Yu Yin Li Libin Hu Guoyang Zhou Feng Yan Gao Chen Jianru Li | 2021 | Neuroscience Bulletin2021,37,10: | 4 |
| 6 | A novel miRNA negatively regulates resistance to Glomerella leaf spot by suppressing expression of an NBS gene in apple显示文摘Glomerella leaf spot(GLS)of apple(Malus×domestica Borkh.),caused by Glomerella cingulata,is an emerging fungal epidemic threatening the apple industry.Little is known about the molecular mechanism underlying resistance to this devastating fungus.In this study,high-throughput sequencing technology was used to identify microRNAs(miRNAs)involved in GLS resistance in apple.We focused on miRNAs that target genes related to disease and found that expression of a novel miRNA,Md-miRln20,was higher in susceptible apple varieties than in resistant ones.Furthermore,its target gene Md-TN1-GLS exhibited the opposite expression pattern,which suggested that the expression levels of Md-miRln20 and its target gene are closely related to apple resistance to GLS.Furthermore,downregulation of MdmiRln20 in susceptible apple leaves resulted in upregulation of Md-TN1-GLS and reduced the disease incidence.Conversely,overexpression of Md-miRln20 in resistant apple leaves suppressed Md-TN1-GLS expression,with increased disease incidence.We demonstrated that Md-miRln20 negatively regulates resistance to GLS by suppressing Md-TN1-GLS expression and showed,for the first time,a crucial role for miRNA in response to GLS in apple. | Yi Zhang Qiulei Zhang Li Hao Shengnan Wang Shengyuan Wang Wenna Zhang Chaoran Xu Yunfei Yu Tianzhong Li | 2019 | Horticulture Research2019,6,1: | 4 |
| 7 | Two pathogenesis-related proteins interact with leucine-rich repeat proteins to promote Alternaria leaf spot resistance in apple显示文摘Alternaria leaf spot in apple(Malus x domestica),caused by the fungal pathogen Alternaria alternata f.sp.mali(also called A.mali),is a devastating disease resulting in substantial economic losses.We previously established that the resistance(R)protein MdRNL2,containing a coiled-coil,nucleotide-binding,and leucine-rich repeat(CC R-NB-LRR)domain,interacts with another CC R-NB-LRR protein,MdRNL6,to form a MdRNL2–MdRNL6 complex that confers resistance to A.mali.Here,to investigate the function of the MdRNL2–MdRNL6 complex,we identified two novel pathogenesis-related(PR)proteins,MdPR10-1 and MdPR10-2,that interact with MdRNL2.Yeast two-hybrid(Y2H)assays and bimolecular fluorescence complementation(BiFC)assays confirmed that MdPR10-1 and MdPR10-2 interact with MdRNL2 and MdRNL6 at the leucine-rich repeat domain.Transient expression assays demonstrated that accumulation of MdPR10-1 and MdPR10-2 enhanced the resistance of apple to four strains of A.mali that we tested:ALT1,GBYB2,BXSB5,and BXSB7.In vitro antifungal activity assays demonstrated that both the proteins contribute to Alternaria leaf spot resistance by inhibiting fungal growth.Our data provide evidence for a novel regulatory mechanism in which MdRNL2 and MdRNL6 interact with MdPR10-1 and MdPR10-2 to inhibit fungal growth,thereby contributing to Alternaria leaf spot resistance in apple.The identification of these two novel PR proteins will facilitate breeding for fungal disease resistance in apple. | Qiulei Zhang Chaoran Xu Haiyang Wei Wenqi Fan Tianzhong Li | 2021 | Horticulture Research2021,8,1: | 2 |
| 8 | Puerarin blocks the signaling transmission mediated by P2X 3 in SG and DRG to relieve myocardial ischemic damage显示文摘 | Shuangmei Liu Chunping Zhang Qingming Shi Guilin Li Miaomiao Song Yun Gao Changshui Xu Hong Xu Bo Fan Shicheng Yu Chaoran Zheng Qicheng Zhu Bing Wu Lichao Peng Huangui Xiong Qin Wu Shangdong Liang | 2014 | Brain Research Bulletin2014,,: | 1 |
| 9 | Correction to:Efficient derivation of extended pluripotent stem cells from NOD-scid II2rg^-/-mice显示文摘Figure 1.Generation of NOD-scid II2rg^-1-extended pluripotent stem cells.(A)Schematic of two approaches used for generating NOD-scid II2rg^-1-extended pluripotent stem cells:de novo derivation from blastocysts(upper panels)and chemical reprogramming from embryonic fibroblasts(lower panels).(B)Phase-contrast images of de novo derived outgrowth and EPS colonies for 17 passages in LCDM medium.Scale bars,100 pm.(C)qRT-PCR analysis of XEN marker genes expression during the chemical induction process(day 16).Error bars indicate SEM(n=2).(D)Co-immunostaining of XEN marker genes during the chemical induction process(day 16).Upper panels:GATA6 and SALL4;lower panels:SOX17 and SALL4.Scale bars,100 pm. | Yaqin Du Ting Wang Jun Xu Chaoran Zhao Haibo Li Yao Fu Yaxing Xu Liangfu Xie Jingru Zhao Weifeng Yang Ming Yin Jinhua Wen Hongkui Deng | 2019 | Protein & Cell2019,10,2: | 1 |
| 10 | Rapid generation of gene-targeted EPS-derived mouse models through tetraploid complementation显示文摘One major strategy to generate genetically modified mouse models is gene targeting in mouse embryonic stem(ES)cells,which is used to produce gene-targeted mice for wide applications in biomedicine.However,a major bottleneck in this approach is that the robustness of germiine transmission of gene-targeted ES cells can be significantly reduced by their genetic and epigenetic instability after long-term culturing,which impairs the efficiency and robustness of mouse model generation.Recently,we have established a new type of pluripotent cells termed extended pluripotent stem(EPS)cells,which have superior developmental potency and robust germline competence compared to conventional mouse ES cells.In this study,we demonstrate that mouse EPS cells well maintain developmental potency and genetic stability after long-term passage.Based on gene targeting in mouse EPS cells,we established a new approach to directly and rapidly generate gene-targeted mouse models through tetraploid complementation,Haibo Li and Chaoran Zhao contributed equally to this work.Electronic supplementary material The online version of this article(https://doi.org/10.1007/s13238-018-0556-1)contains supplementary material,which is available to authorized users.which could be accomplished in approximately 2 months.Importantly,using this approach,we successfully constructed mouse models in which the human interleukin 3(IL3)or interleukin 6(IL6)gene was knocked into its corresponding locus in the mouse genome.Our study demonstrates the feasibility of using mouse EPS cells to rapidly generate mouse models by gene targeting,which have great application potential in biomedical research. | Haibo Li Chaoran Zhao Jun Xu Yaxing Xu Chunmei Cheng Yinan Liu Ting Wang Yaqin Du Liangfu Xie Jingru Zhao Yanchuang Han Xiaobao Wang Yun Bai Hongkui Deng | 2019 | Protein & Cell2019,10,1: | 1 |
| 11 | Arabidopsis F-BOX STRESS INDUCED 4 is required to repress excessive divisions in stomatal development显示文摘During the terminal stage of stomatal development,the R2 R3-MYB transcription factors FOUR LIPS(FLP/MYB124) and MYB88 limit guard mother cell division by repressing the transcript levels of multiple cell-cycle genes. In Arabidopsis thaliana possessing the weak allele flp-1, an extra guard mother cell division results in two stomata having direct contact.Here, we identified an ethylmethane sulfonatemutagenized mutant, flp-1 xs01 c, which exhibited more severe defects than flp-1 alone, producing gianttumor-like cell clusters. XS01 C, encoding F-BOX STRESS-INDUCED 4(FBS4), is preferentially expressed in epidermal stomatal precursor cells.Overexpressing FBS4 rescued the defective stomatal phenotypes of flp-1 xs01 c and flp-1 mutants. The deletion or substitution of a conserved residue(Proline166) within the F-box domain of FBS4 abolished or reduced, respectively, its interaction with Arabidopsis Skp1-Like1(ASK1), the core subunit of the Skp1/Cullin/F-box E3 ubiquitin ligase complex. Furthermore, the FBS4 protein physically interacted with CYCA2;3 and induced its degradation through the ubiquitin-26 S proteasome pathway. Thus, in addition to the known transcriptional pathway, the terminal symmetric division in stomatal development is ensured at the post-translational level, such as through the ubiquitination of target proteins recognized by the stomatal lineage F-box protein FBS4. | Yi Li Shan Xue Qixiumei He Junxue Wang Lingling Zhu Junjie Zou Jie Zhang Chaoran Zuo Zhibin Fan Junling Yue Chunxia Zhang Kezhen Yang Jie Le | 2022 | Journal of Integrative Plant Biology2022,64,1: | 0 |
| 12 | The precursor compound of two types of ZnSe magic-sized clusters显示文摘Precursor compounds(PCs)link quantum dots(QDs)and magic-sized clusters(MSCs),which is pivotal in the conversion between QDs and MSCs.Here,for the first time,we report the transformation,synthesis,and composition of a type of ZnSe PCs.ZnSe PCs can be directly transformed to two different MSCs with the assistance of octylamine and acetic acid at room temperature.The two types of MSCs exhibit sharp absorption peaks at 299 and 328 nm which are denoted as MSC-299 and MSC-328.In the preparation of ZnSe PCs,diphenylphosphine(DPP)as an additive plays a key role which not only inhibits the thermal decomposition of Zn precursor,but also acts as a reducing agent to reduce the by-products produced in the reaction.The composition was explored by X-ray photoelectron spectroscopy,energy dispersive spectrometer,matrix-assisted laser desorption/ionization time-of-flight mass spectra with ZnSe PC powder appeared as white powder after purifying by toluene(Tol)and methanol(MeOH).The results indicate that the molar ratio of Zn/Se is 2:1 with a molecular of〜3,350 Da.Therefore,we propose that the molecular formula of ZnSe PCs is Zn_(32)Se_(16).In addition,at the molecular level,the covalent bond of Zn-Se is formed in ZnSe PCs.This study offers a deeper understanding of the transformation from PCs to MSCs and for the first time proposes the composition of PCs.Meanwhile,this research provides us with a new understanding of the role of DPP in the synthesis of colloidal semiconductor nanoparticles. | Xingxia Yang Meng Zhang Qiu Shen Yang Li Chaoran Luan Kui Yu | 2022 | Nano Research2022,15,1: | 0 |
| 13 | Functional evaluation of iodoacetic acid induced photoreceptor degeneration in the cat显示文摘Iodoacetic acid(IAA) has been applied to different species to acutely induce photoreceptor degeneration.The purpose of the present study was to use this toxin to thoroughly eliminate photoreceptors and induce complete blindness in the cat.IAA was delivered by single ear vein injection(20 mgkg-1).Six months after the IAA treatment,functional evaluations including pupillary light reflex(PLR),electroretinogram(ERG),visual behavior tests were performed.Morphological examinations were carried out after the functional evaluation.The present result shows that,six months after the IAA application,animals lost visual functions and became completely blind.High dose IAA application via ear vein delivery created an acute and reliable complete photoreceptor degeneration model in the cat.This model can be applied to genetic and cellular therapies for visual function restoration. | NAN Yan ZHANG Qin REN ChaoRan HUANG Xin GAO Jie LI XiaoXin PU MingLiang | 2013 | Science China(Life Sciences)2013,56,6: | 0 |
| 14 | Integrated Photothermal Nanoreactors for Effi cient Hydrogenation of CO_(2)显示文摘To alleviate the energy crisis and global warming,photothermal catalysis is an attractive way to effi ciently convert CO_(2)and renewable H_(2) into value-added fuels and chemicals.However,the catalytic performance is usually restricted by the trade-off between the dispersity and light absorption property of metal catalysts.Here we demonstrate a simple SiO 2-protected metal-organic framework pyrolysis strategy to fabricate a new type of integrated photothermal nanoreactor with a comparatively high metal loading,dispersity,and stability.The core-satellite structured Co@SiO_(2)exhibits strong sunlight-absorptive abil-ity and excellent catalytic activity in CO_(2)hydrogenation,which is ascribed to the functional separation of diff erent sizes of Co nanoparticles.Large-sized plasmonic Co nanoparticles are mainly responsible for the light absorption and conversion to heat(nanoheaters),whereas small-sized Co nanoparticles with high intrinsic activities are responsible for the catalysis(nanoreactors).This study provides a new concept for designing effi cient photothermal catalytic materials. | Jiahui Shen Rui Tang Zhiyi Wu Xiao Wang Mingyu Chu Mujin Cai Chengcheng Zhang Liang Zhang Kui Yin Le He Chaoran Li | 2022 | Transactions of Tianjin University2022,28,4: | 0 |
| 15 | Integrated'omics analysis for the gut microbiota response to moxibustion in a rat model of chronic fatigue syndrome显示文摘OBJECTIVE:To observe the efficacy of moxibustion in the treatment of chronic fatigue syndrome(CFS)and explore the effects on gut microbiota and metabolic profiles.METHODS:Forty-eight male Sprague-Dawley rats were randomly assigned to control group(Con),CFS model group(Mod,established by multiple chronic stress for 35 d),MoxA group(CFS model with moxibustion Shenque(CV8)and Guanyuan(CV4),10 min/d,28 d)and MoxB group(CFS model with moxibustion Zusanli(ST36),10 min/d,28 d).Open-field test(OFT)and Morris-water-maze test(MWMT)were determined for assessment the CFS model and the therapeutic effects of moxibustion.16S rRNA gene sequencing analysis based gut microbiota integrated untargeted liquid chromatograph-mass spectrometer(LC-MS)based fecal metabolomics were executed,as well as Spearman correlation analysis,was utilized to uncover the functional relevance between the potential metabolites and gut microbiota.RESULTS:The results of our behavioral tests showed that moxibustion improved the performance of CFS rats in the OFT and the MWMT.Microbiome profiling analysis revealed that the gut microbiomes of CFS rats were less diverse with altered composition,including increases in pro-inflammatory species(such as Proteobacteria)and decreases in anti-inflammatory species(such as Bacteroides,Lactobacillus,Ruminococcus,and Prevotella).Moxibustion partially normalized these changes in the gut microbiota.Furthermore,CFS was associated with metabolic disorders,which were effectively ameliorated by moxibustion.This was demonstrated by the normalization of 33 microbiota-related metabolites,including mannose(P=0.001),aspartic acid(P=0.009),alanine(P=0.007),serine(P=0.000),threonine(P=0.027),methionine(P=0.023),5-hydroxytryptamine(P=0.008),alpha-linolenic acid(P=0.003),eicosapentaenoic acid(P=0.006),hypoxanthine(P=0.000),vitamin B6(P=0.000),cholic acid(P=0.013),and taurocholate(P=0.002).Correlation analysis showed a significant association between the perturbed fecal microbiota and metabolite levels,with a notable negative relationship between LCA and Bacteroides.CONCLUSIONS:In this study,we demonstrated that moxibustion has an antifatigue-like effect.The results from the 16S rRNA gene sequencing and metabolomics analysis suggest that the therapeutic effects of moxibustion on CFS are related to the regulation of gut microorganisms and their metabolites.The increase in Bacteroides and decrease in LCA may be key targets for the moxibustion treatment of CFS. | LI Chaoran YANG Yan FENG Chuwen LI Heng QU Yuanyuan WANG Yulin WANG Delong WANG Qingyong GUO Jing SHI Tianyu SUN Xiaowei WANG Xue HOU Yunlong SUN Zhongren YANG Tiansong | 2023 | Journal of Traditional Chinese Medicine2023,43,6: | 0 |
| 16 | Analysis on the Expression of TaMOR Gene in Two Different Spring Wheat Varieties at Different Years显示文摘[Objectives]The TaMOR gene is a gene that affects the initiation and growth of the secondary roots of wheat,but the expression patterns in different parts of the wheat root system and the differences in expression in different varieties are not clear.This study aimed to investigate the expression of the TaMOR gene in the seminal roots,secondary roots and root base.[Methods]Real-time fluorescence quantitative PCR technology was used to analyze the relative expression levels of the TaMOR gene in seminal roots,secondary roots and root base of seedlings of ancient variety Monkhead and modern variety Longchun 35.[Results]There was no significant difference in the number of seminal roots between Longchun 35 and Monkhead,and the numbers of seminal roots of the two varieties did not change significantly during the three sampling periods.The number of secondary roots and shoot dry weight of Longchun 35 were significantly higher than those of Monkhead,and the number of secondary roots and shoot dry weight of both varieties increased with the sampling time point.The root dry weight of Monkhead increased with the sampling time,while Longchun 35 showed the largest value at the second time.The fluorescence quantitative PCR results showed that for 13-day seedlings,the relative expression of the TaMOR gene in root base was significantly higher than that in the seminal roots and secondary roots.There was no significant difference in the relative expression of gene TaMOR in the root system of Monkhead and Longchun 35.[Conclusions]The root allocation of gramineous crops decreases with the breeding years,and the difference in gene TaMOR expression level needs further study. | Xia LI Qianglin WANG Chaoran LI Huafang ZHU Beixi ZHU Xin LIU Meifeng FU Lijun ZHU Li ZHU | 2020 | Agricultural Biotechnology2020,9,4: | 0 |
| 17 | Size matters:Steric hindrance of precursor molecules controlling the evolution of CdSe magic-size clusters and quantum dots显示文摘Little is known about how to precisely promote the selective production of either colloidal semiconductor metal chalcogenide(ME),magic-size clusters(MSCs),or quantum dots(QDs).Recently,a two-pathway model has been proposed to comprehend their evolution;here,we reveal for the first time that the size of precursors plays a decisive role in the selected evolution pathway of MSCs and QDs.With the reaction of cadmium myristate(Cd(MA)2)and tri-n-octylphosphine selenide(SeTOP)in 1-octadecene(ODE)as a model system,the size of Cd precursors was manipulated by the steric hindrance of carboxylic acid(RCOOH)additive.Without RCOOH,the reaction produced both CdSe MSCs and QDs(from 100 to 240℃).With RCOOH,the reaction produced MSCs or QDs when R was small(such as CH3−)or large(such as C6H5−),respectively.According to the twopathway model,the selective evolution is attributed to the promotion and suppression of the self-assembly of Cd and Se precursors,respectively.We propose that the addition of carboxylic acid may occur ligand exchange with Cd(MA)2,causing the different sizes of Cd precursor.The results suggest that the size of Cd precursors regulates the self-assemble behavior of the precursors,which dictates the directed evolution of either MSCs or QDs.The present findings bring insights into the two-pathway model,as the size of M and E precursors determine the evolution pathways of MSCs or QDs,the understanding of which is of great fundamental significance toward mechanism-enabled design and predictive synthesis of functional nanomaterials. | Juan Shen Chaoran Luan Nelson Rowell Yang Li Meng Zhang Xiaoqin Chen Kui Yu | 2022 | Nano Research2022,15,9: | 0 |
| 18 | Efficient derivation of extended pluripotent stem cells from NOD-scid II2rg-/-mice显示文摘Recently we have established a new culture condition enabling the derivation of extended pluripotent stem(EPS)cells,which,compared to conventional pluripotent stem cells,possess superior developmental potential and germline competence.However,it remains unclear whether this condition permits derivation of EPS cells from mouse strains that are refractory or non-permissive to pluripotent cell establishment.Here,we show that EPS cells can be robustly generated from non-permissive NOD-sc/d Il2rg 1 mice through de novo derivation from blastocysts.Furthermore,these cells can also be efficiently generated by chemical reprogramming from embryonic NOD-sc/d II2rg-/-fibroblasts.NOD-sc/d II2rg-/-EPS cells can be expanded for more than 20 passages with genomic stability and can be genetically modified through gene targeting.Notably,these cells contribute to both embryonic and extraembryonic lineages in vivo.More importantly,they can produce chimeras and integrate into the E13.5 genital ridge.Our study demonstrates the feasibility of generating EPS cells from refractory mouse strains,which could potentially be a general strategy for deriving mouse pluripotent cells.The generation of NOD-sc/d II2rg-/-Yaqin Du and Ting Wang contributed equally to this work.Electronic supplementary material The online version of this article(https://doi.org/10.1007/s13238-018-0558-z)contains supplementary material,which is available to authorized users.EPS cell lines permits sophisticated genetic modification in NOD-scid II2rg-/-mice,which may greatly advance the optimization of humanized mouse models for biomedical applications. | Yaqin Du Ting Wang Jun Xu Chaoran Zhao Haibo Li Yao Fu Yaxing Xu Liangfu Xie Jingru Zhao Weifeng Yang Ming Yin Jinhua Wen Hongkui Deng | 2019 | Protein & Cell2019,10,1: | 0 |
| 19 | 建立具有体内胚内和胚外发育潜能的多能干细胞显示文摘文章简介在已知的体外培养的干细胞类型当中,多能干细胞具有最高的发育潜能,能够形成构成成年个体的所有细胞类型。但是,多能干细胞很难在体内发育过程中形成胚外的胎盘组织。 | Yang Yang Bei Liu Jun Xu Jinlin Wang Jun Wu Cheng Shi Yaxing Xu Jiebin Dong Chengyan Wang Weifeng Lai Jialiang Zhu Liang Xiong Dicong Zhu Xiang Li Weifeng Yang Takayoshi Yamauchi Atsushi Sugawara Zhongwei Li Fangyuan Sun Xiangyun Li Chen Li Aibin He Yaqin Du Ting Wang Chaoran Zhao Haibo Li Xiaochun Chi Hongquan Zhang Yifang Liu Cheng Li Shuguang Duo Ming Yin 沈浣 Juan Carlos Izpisua Belmonte 邓宏魁 | 2018 | 科学新闻2018,0,4: | 0 |
| 20 | Time-lapse changes of in vivo injured neuronal substructures in the central nervous system after low energy two-photon nanosurgery显示文摘There is currently very little research regarding the dynamics of the subcellular degenerative events that occur in the central nervous system in response to injury. To date, multi-photon excitation has been primarily used for imaging applications; however, it has been recently used to selectively disrupt neural structures in living animals. However, understanding the complicated processes and the essential underlying molecular pathways involved in these dynamic events is necessary for studying the underlying process that promotes neuronal regeneration. In this study, we introduced a novel method allowing in vivo use of low energy(less than 30 m W) two-photon nanosurgery to selectively disrupt individual dendrites, axons, and dendritic spines in the murine brain and spinal cord to accurately monitor the time-lapse changes in the injured neuronal structures. Individual axons, dendrites, and dendritic spines in the brain and spinal cord were successfully ablated and in vivo imaging revealed the time-lapse alterations in these structures in response to the two-photon nanosurgery induced lesion. The energy(less than 30 m W) used in this study was very low and caused no observable additional damage in the neuronal sub-structures that occur frequently, especially in dendritic spines, with current commonly used methods using high energy levels. In addition, our approach includes the option of monitoring the time-varying dynamics to control the degree of lesion. The method presented here may be used to provide new insight into the growth of axons and dendrites in response to acute injury. | Zhikai Zhao Shuangxi Chen Yunhao Luo Jing Li Smaranda Badea Chaoran Ren Wutian Wu | 2017 | Neural Regeneration Research2017,12,5: | 0 |