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| 1 | Expression of SoxC Transcription Factors during Zebrafish Retinal and Optic Nerve Regeneration显示文摘The SoxC transcription factors(Sox4,Sox11,and Sox12) play important roles in the development of the vertebrate eye and retina. However,their expression and function during retinal and optic nerve regeneration remain elusive. In this study,we investigated the expression and possible functions of the SoxC genes after retinal and optic nerve injury in adult zebrafish. We found that among the five SoxC members,Sox11b was strongly induced in BrdU-positive cells in the inner nuclear layer(INL) after retinal injury,and morpholino-mediated Sox11b-knockdown significantly reduced the number of proliferating cells in the INL at 4 days post-injury. After optic nerve lesion,both Sox11a and Sox11b were strongly expressed in retinal ganglion cells(RGCs),and knockdown of both Sox11a and Sox11b inhibited RGC axon regrowth in retinal explants. Our study thus uncovered a novel expression pattern of SoxC family genes after retinal and optic nerve injury,and suggests that they have important functions during retinal and optic nerve regeneration. | Zhaoxia Mu Shuqiang Zhang Chunjiao He Haitao Hou Dong Liu Nan Hu Hui Xu | 2017 | Neuroscience Bulletin2017,33,1: | 9 |
| 2 | Dynamic blood single-cell immune responses in patients with COVID-19显示文摘The 2019 coronavirus disease(COVID-19)outbreak caused by the SARS-CoV-2 virus is an ongoing global health emergency.However,the virus'pathogenesis remains unclear,and there is no cure for the disease.We investigated the dynamic changes of blood immune response in patients with COVID-19 at different stages by using 5'gene expression,T cell receptor(TCR),and B cell receptors(BCR)V(D)J transcriptome analysis at a single-cell resolution.We obtained single-cell mRNA sequencing(scRNA-seq)data of 341,420 peripheral blood mononuclear cells(PBMCs)and 185,430 donotypic T cells and 28,802 donotypic B cells from 25 samples of 16 patients with COVID-19 for dynamic studies.In addition,we used three control samples.We found expansion of dendritic cells(DCs),CD14+monocytes,and megakaryocytes progenitor cells(MP)/platelets and a reduction of naive CD4+T lymphocytes in patients with COVID-19,along with a significant decrease of CD8+T lymphocytes,and natural killer cells(NKs)in patients in critical condition.The type I interferon(IFN-I),mitogen-activated protein kinase(MAPK),and ferroptosis pathways were activated while the disease was active,and recovered gradually after patient conditions improved.Consistent with this finding,the mRNA level of IFN-I signal-induced gene IFI27 was significantly increased in patients with COVID-19 compared with that of the controls in a validation cohort that included 38 patients and 35 controls.The concentration of interferon-a(IFN-a)in the serum of patients with COVID-19 increased significantly compared with that of the controls in an additional cohort of 215 patients with COVID-19 and 106 controls,further suggesting the important role of the IFN-I pathway in the immune response of COVID-19.TCR and BCR sequences analyses indicated that patients with COVID-19 developed specific immune responses against SARS-CoV-2 antigens.Our study reveals a dynamic landscape of human blood immune responses to SARS-CoV-2 infection,providing clues for therapeutic potentials in treating COVID-19. | Lulin Huang Yi Shi Bo Gong Li Jiang Zhixin Zhang Xiaoqi Liu Jialiang Yang Yongquan He Zhilin Jiang Ling Zhong Juan Tang Chunfang You Qi Jiang Bo Long Tao Zeng Mei Luo Fanwei Zeng Fanxin Zeng Shuqiang Wang Xingxiang Yang Zhenglin Yang | 2021 | Signal Transduction and Targeted Therapy2021,6,4: | 4 |
| 3 | A new fragment re-allocation strategy for NoSQL database systems显示文摘 | Zhikun CHEN Shuqiang YANG Shuang TAN Li HE Hong YIN Ge ZHANG | 2015 | Frontiers of Computer Science2015,9,1: | 3 |
| 4 | Changes in Nutritive Materials in Off-season Mango in Flower Bud Differentiation Stage显示文摘Under off-season production mode,change laws of nutritive materials in leaves of fruiting mother branches of mango in flowering process induced by different agents were investigated. The results showed that the flowering time of mango trees in the potassium nitrate treatment was earlier than the ethephon treatment by 7 d,and changes trends of materials in leaves of the potassium nitrate and ethephon treatments were substantially the same. The nutritive materials in leaves showed trends of increasing at first and decreasing then. In early flower bud differentiation stage,soluble sugar and starch in leaves increased rapidly,and content of soluble protein also increased rapidly and showed its their peak values,thereby providing energy substances and structural substances demanded by flower bud formation. With flower bud differentiation going on,soluble sugar,starch and soluble protein decreased gradually. It was indicated that the accumulation of soluble sugar,starch and soluble protein is beneficial to flower bud differentiation. | Huarui CHEN Junhu HE Shuqiang HE Yeyuan CHEN | 2016 | Agricultural Biotechnology2016,5,6: | 3 |
| 5 | Effects of Two Signals on Flowering and FT Gene Expression in Off-season Longan显示文摘Objective This study aimed to investigate the effects of two signals,H2O2 and NO,on flowering and FT gene expression in off-season longan.Method Nine-year-old off-season longan‘Shixia'was used as the experimental material and sprayed with signal promoting agent and blocking agent to analyze the dynamic changes of flowering and FT gene expression level. Result The expression level of FT gene in off-season longan increased during the flowering process,and the expression level of FT gene in leaves reached the peak earlier than that in terminal buds. SNP and MV treatments improved FT gene expression in varying degrees. DMTU and L-NNA treatments effectively inhibited FT gene expression in terminal buds,but the inhibitory effects on FT gene expression in leaves were not significant at late stage of flower bud differentiation. Conclusion According to the flowering performance of longan,H2O2 and NO play an important role in promoting and accelerating longan flowering. | Lei ZHANG Zekang XU Shuqiang HE Ruixiong LUO | 2016 | Agricultural Biotechnology2016,5,1: | 0 |
| 6 | Rapid assembly of 1,3-indanedione-based spirocyclic tetrahydroquinolines for inducing human lung cancer cell apoptosis显示文摘The rapid collection of a library of biologically relevant molecules is essential in new drug discovery.Here we show a variety of bioactive 1,3-indanedione-based spirocyclic tetrahydroquinolines that have been concisely and efficiently constructed under the guidance of biology-oriented synthesis(BIOS).Using Pd(PPh_(3))_(4) as a catalyst,various 2-arylidene-1,3-indanediones can react with vinyl benzoxazinanones under the mild condition to afford a new class of spirocyclic tetrahydroquinolines in moderate to excellent yields(45%-99%)with high stereocontrol(>95:5 diastereoselectivity).Their structures were unambiguously confirmed by X-ray single crystal analysis.The biological evaluation revealed that two of the 1,3-indanedione-based spirocyclic tetrahydroquinolines show remarkable apoptosis-inducing activities over A549 human lung cancer cells,exceeding that of cisplatin.The antitur activities were triggered by reactive oxygen species,commonly overproduced in cancer cells.The clinical demand for antitumor chemotherapy for lung cancer has encouraged an all-out search for analogues with lower toxcity,improved therapeutic index and increased activity. | Fen Tan Luojia Chen Yuncong Yuan Xiaoyu He Yiwen Su Shuqiang Cao Conghua Xie Meijia Gu Youquan Zou | 2022 | Green Synthesis and Catalysis2022,3,4: | 0 |
| 7 | Advances in Molten Salt Synthesis of Non-oxide Materials显示文摘The properties of non-oxide materials are continuously revealed,and their applications in the fields of ceramics,energy,and catalysis are increasingly extensive.Regardless of the traditional binary materials or the MAX phases,the preparation methods,which are environmentally friendly,efficient,economical,and easy to scale-up,have always been the focus of attention.Molten salt synthesis has demonstrated unparalleled advantages in achieving non-oxide materials.In addition,with the development of the process in molten salt synthesis,it also shows great potential in scale-up production.In this review,the recent progress of molten salt synthesis in the preparation of binary non-oxide and MAX phase is reviewed,as well as some novel processes.The reaction mechanisms and the influence of synthetic conditions for certain materials are discussed in detail.The paper is finalized with the discussion of the application prospect and future research trends of molten salt synthesis in non-oxide materials. | Shaolong Li Jianxun Song Yusi Che Shuqiang Jiao Jilin He Bin Yang | 2023 | Energy & Environmental Materials2023,6,2: | 0 |
| 8 | Uneven deposition on the Al electrode under tension strain显示文摘Structural deformation and dendrite formation, which would impact the electrochemical processes of rechargeable metal batteries, are usually observed in the high-energy density metal electrodes. Herein,we design an in-situ optical mechano-electrochemical system to study Al deposition on the Al electrode in non-aqueous Al batteries under non-uniform strain. Inhomogeneous distribution of applied strain is realized by creating an oval hole in the Al electrode. The results of the in-situ experiments suggest that the dense Al deposition, which is related to the evolution of surface morphology and increasing reactive sites, is achieved in the regions of stress concentration. The evolution of surface morphology is monitored by the in-situ tension experiments using scanning electron microscope and atomic force microscope.Besides, a qualitative mathematical model is employed to analyze the changes of the local reaction rate owing to the changed surface morphology and the cracks of oxide film under tensile stress. The results are useful to understand the Al deposition when the mechanical force is applied to the metal electrode. | Jie He Le Yang Na Li Wei-Li Song Shuqiang Jiao Hao-Sen Chen Daining Fang | 2022 | Journal of Energy Chemistry2022,31,8: | 0 |
| 9 | Roles and Molecular Mechanisms of Biomarkers in Hepatocellular Carcinoma with Microvascular Invasion: A Review显示文摘Hepatocellular carcinoma(HCC)being a leading cause of cancer-related death,has high associated mortality and recurrence rates.It has been of great necessity and urgency to find effective HCC diagnosis and treatment measures.Studies have shown that microvascular invasion(MVI)is an independent risk factor for poor prognosis after hepatectomy.The abnormal expression of biomacromolecules such as circ-RNAs,lncRNAs,STIP1,and PD-L1 in HCC patients is strongly correlated with MVI.Deregulation of several markers mentioned in this review affects the proliferation,invasion,metastasis,EMT,and anti-apoptotic processes of HCC cells through multiple complex mechanisms.Therefore,these biomarkers may have an important clinical role and serve as promising interventional targets for HCC.In this review,we provide a comprehensive overview on the functions and regulatory mechanisms of MVI-related biomarkers in HCC. | Xudong Zhao Yudan Wang Haoming Xia Shuqiang Liu Ziyue Huang Risheng He Liang Yu Nanfeng Meng Hang Wang Junqi You Jinglin Li Judy Wai Ping Yam Yi Xu Yunfu Cui | 2023 | Journal of Clinical and Translational Hepatology2023,11,5: | 0 |