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11篇 您的检索式:作者名="Xinyong Lin"
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1Medicinal chemistry strategies towards the development of effective SARS-CoV-2 inhibitors显示文摘Novel therapies are urgently needed to improve global treatment of SARS-CoV-2 infection.Herein,we briefly provide a concise report on the medicinal chemistry strategies towards the development of effective SARS-CoV-2 inhibitors with representative examples in different strategies from the medicinal chemistry perspective.Shenghua Gao Tianguang Huang Letian Song Shujing Xu Yusen Cheng Srinivasulu Cherukupalli Dongwei Kang Tong Zhao Lin Sun Jian Zhang Peng Zhan Xinyong Liu 2022Acta Pharmaceutica Sinica B2022,12,2:5
2Static Corrosion Rates of Fused-cast AZS Refractory Materials by Molten Glass显示文摘In order to investigate corrosive phenomena of fused-cast Al_2O_3-ZrO_2-SiO_2(AZS) refractory materials by molten glass,two types of fused-cast AZS refractory bricks were taken as the interests of the research to study static corrosion rates(mm/d) of the two type materials by molten soda-lime-silica glass at different temperatures(1400,1450 and 1500 *C) and for different isothermal periods(0.5,1.0 and 1.5 d).It was shown that static corrosion rate of each AZS material by molten glass at the triple point developed with raising temperature but slightly decreased with enhancing isothermal period.Based on chemical compositions,microstructures,and corrosive morphologies of AZS refractory materials,the relation between them and static corrosion rates of AZS refractory materials by molten glass was analyzed.LI Kunming SHI Xinyong XUE Fei XIE Jinli LIN Guowei PAN Chuancai LIU Yueqiang ZHANG Hang 2016Journal of the Chinese Ceramic Society2016,,4:2
3Recent developments in the medicinal chemistry of single boron atom-containing compounds显示文摘Various boron-containing drugs have been approved for clinical use over the past two decades,and more are currently in clinical trials.The increasing interest in boron-containing compounds is due to their unique binding properties to biological targets;for example,boron substitution can be used to modulate biological activity,pharmacokinetic properties,and drug resistance.In this perspective,we aim to comprehensively review the current status of boron compounds in drug discovery,focusing especially on progress from 2015 to December 2020.We classify these compounds into groups showing anticancer,antibacterial,antiviral,antiparasitic and other activities,and discuss the biological targets associated with each activity,as well as potential future developments.Shu Song Ping Gao Lin Sun Dongwei Kang Jacob Kongsted Vasanthanathan Poongavanam Peng Zhan Xinyong Liu 2021Acta Pharmaceutica Sinica B2021,11,10:1
4Solid polymer electrolytes in all-solid-state lithium metal batteries:From microstructures to properties显示文摘All-solid-state lithium(Li)metal batteries(ASSLMBs)are considered one of the most promising secondary batteries due to their high theoretical capacity and high safety performance.However,low room-temperature ionic conductivity and poor interfacial stability are two key factors affecting the practical application of ASSLMBs,and our understanding of the mechanisms behind these key problems from microscopic perspective is still limited.In this review,the mechanisms and advanced characterization techniques of ASSLMBs are summarized to correlate the microstructures and properties.Firstly,we summarize the challenges faced by solid polymer electrolytes(SPEs)in ASSLMBs,such as the low roomtemperature ionic conductivity and the poor interfacial stability.Secondly,several typical improvement methods of polymer ASSLMBs are discussed,including composite SPEs,ultra-thin SPEs,SPEs surface modification and Li anode surface modification.Finally,we conclude the characterizations for correlating the microstructures and the properties of SPEs,with emphasis on the use of emerging advanced techniques(e.g.,cryo-transmission electron microscopy)for in-depth analyzing ASSLMBs.The influence of the microstructures on the properties is very important.Until now,it has been difficult for us to understand the microstructures of batteries.However,some recent studies have demonstrated that we have a better understanding of the microstructures of batteries.Then we suggest that in situ characterization,nondestructive characterization and sub-angstrom resolution are the key technologies to help us further understand the batteries'microstructures and promote the development of batteries.And potential investigations to understand the microstructures evolution and the batteries behaviors are also prospected to expect further reasonable theoretical guidance for the design of ASSLMBs with ideal performance.Zongxi Lin Ouwei Sheng Xiaohan Cai Dan Duan Ke Yue Jianwei Nai Yao Wang Tiefeng Liu Xinyong Tao Yujing Liu 2023Journal of Energy Chemistry2023,,6:1
5Distributed implantation of a flexible microelectrode array for neural recording显示文摘Flexible multichannel electrode arrays(fMEAs)with multiple flaments can be flexibly implanted in various patterns.It is necessary to develop a method for implanting the fMEA in different locations and at various depths based on the recording demands.This study proposed a strategy for reducing the microelectrode volume with integrated packaging.An implantation system was developed specifically for semiautomatic distributed implantation.The feasibility and convenience of the fMEA and implantation platform were verified in rodents.The acute and chronic recording results provied the effectiveness of the packaging and implantation methods.These methods could provide a novel strategy for developing fMEAs with more flaments and recording sites to measure functional interactions across multiple brain regions.Chunrong Wei Yang Wang Weihua Pei Xinyong Han Longnian Lin Zhiduo Liu Gege Ming Ruru Chen Pingping Wu Xiaowei Yang Li Zheng Yijun Wang 2022Microsystems & Nanoengineering2022,8,3:1
6Efficient Photocatalytic Reduction of Aqueous Cr (VI) over Flower-Like SnIn4S8 Microspheres under Vis- ible Light Illumination显示文摘Wang Lin Li Xinyong Teng Wei 2013J Hazard Mater2013,,:1
7The effect of concentrations and properties of phenanthrene, pyrene, and benzo( a )pyrene on desorption in contaminated soil aged for 1 year显示文摘Xiaojun Li Shengqing Shuang Xinyong Li Lingxue Kong Ling Xu Peidong Tai Xin Lin Chunyun Jia Zongqiang Gong 2013Journal of Soils and Sediments2013,,2:1
8Boronic acid-containing diarylpyrimidine derivatives as novel HIV-1NNRTIs: Design, synthesis and biological evaluation显示文摘Drug resistance remains to be a serious problem with type Ⅰ human immunodeficiency virus(HIV-1) nonnucleoside reverse transcriptase inhibitors(NNRTIs). A series of novel boronic acid-containing diarylpyrimidine(DAPY) derivatives were designed via bioisosterism and scaffold-hopping strategies,taking advantage of the ability of a boronic acid group to form multiple hydrogen bonds. The target compounds were synthesized and evaluated for their anti-HIV activities and cytotoxicity in MT-4 cells.Compound 10 j yielded the most potent activity and turned out to be a single-digit nanomolar inhibitor towards the HIV-1 ⅢB [wild-type(WT) strain], L100 I and K103 N strains, with 50% effective concentration(EC_(50)) values of 7.19–9.85 nmol/L. Moreover, 10 j inhibited the double-mutant strain RES056 with an EC_(50) value of 77.9 nmol/L, which was 3.3-more potent than that of EFV(EC_(50)= 260 nmol/L) and comparable to that of ETR(EC_(50)= 32.2 nmol/L). 10j acted like classical NNRTIs with high affinity for WT HIV-1 reverse transcriptase(RT) with 50% inhibition concentration(IC_(50)) value of 0.1837 μmol/L. Furthermore,molecular dynamics simulation indicated that 10 j was proposed as a promising molecule for fighting against HIV-1 infection through inhibiting RT activity. Overall, the results demonstrated that 10 j could serve as a lead molecule for further modification to address virus-drug resistance.Da Feng Fenju Wei Yanying Sun Prem Prakash Sharma Tao Zhang Hao Lin Brijesh Rathi Erik De Clercq Christophe Pannecouque Dongwei Kang Peng Zhan Xinyong Liu 2021Chinese Chemical Letters2021,32,12:1
9Dhx33 promotes B-cell growth and proliferation by controlling activation-induced rRNA upregulation显示文摘Upon recognition of foreign antigens,naïve B cells undergo rapid activation,growth,and proliferation.How B-cell growth and proliferation are coupled with activation remains poorly understood.Combining CRISPR/Cas9-mediated functional analysis and mouse genetics approaches,we found that Dhx33,an activation-induced RNA helicase,plays a critical role in coupling B-cell activation with growth and proliferation.Mutant mice with B-cell-specific deletion of Dhx33 exhibited impaired B-cell development,germinal center reactions,plasma cell differentiation,and antibody production.Dhx33-deficient B cells appeared normal in the steady state and early stage of activation but were retarded in growth and proliferation.Mechanistically,Dhx33 played an indispensable role in activation-induced upregulation of ribosomal DNA(rDNA)transcription.In the absence of Dhx33,activated B cells were compromised in their ability to ramp up 47S ribosomal RNA(rRNA)production and ribosome biogenesis,resulting in nucleolar stress,p53 accumulation,and cellular death.Our findings demonstrate an essential role for Dhx33 in coupling B-cell activation with growth and proliferation and suggest that Dhx33 inhibition is a potential therapy for lymphoma and antibody-mediated autoimmune diseases.Xiaoyu He Jiayi Zhao Abidan Adilijiang Peicheng Hong Pengda Chen Xinyong Lin Jun Xie Ying Du Yun Liu Lianghua Lin Hyun Yong Jin Yazhen Hong Wen-Hsien Liu Changchun Xiao 2023Cellular & Molecular Immunology2023,20,3:0
10From design to biological mechanism evaluation of phenylalanine-bearing HIV-1 capsid inhibitors targeting a vital assembly interface显示文摘HIV-1 capsid protein(CA) has emerged as a promising target for antiviral treatment considering its structural and regulatory roles in HIV-1 replication. Here, we disclose the design, synthesis, biological assessment, and mechanism investigation of a novel series of phenylalanine derivatives gained by further structural modification of PF74. The newly synthesized compounds demonstrated potent anti-HIV activity, represented by 7n displayed anti-HIV-1 activity 6.25-fold better than PF74, and 7h showed anti-HIV-2activity with nearly 139 times improved efficacy over PF74. Surface plasmon resonance(SPR) studies of representative compounds proved that HIV-1 CA was the binding target. Competitive SPR studies using CPSF6 and NUP153 peptides identified that 7n binds to a vital CA assembly interface between the Nterminal and C-terminal domain(NTD-CTD interface). Action stage determination assay revealed that the newly synthesized compounds were antiviral with a dual-stage inhibitory profile. Molecular dynamics(MD) simulations offered the crucial foundation for the hopeful antiviral potency of 7n. Besides, 7m and7n modestly increased metabolic stabilities in human liver microsome(HLM) and human plasma compared to PF74. Overall, these studies offer valuable insights and can regard as the beginning for succedent medicinal chemistry endeavors to discover promising HIV capsid inhibitors with improved efficacy and better drug-like characteristics.Shujing Xu Lin Sun Waleed A.Zalloum Xujie Zhang Tianguang Huang Dang Ding Yucen Tao Fabao Zhao Shenghua Gao Dongwei Kang Erik De Clercq Christophe Pannecouque Alexej Dick Simon Cocklin Xinyong Liu Peng Zhan 2023Chinese Chemical Letters2023,34,3:0
11Amorphous carbon-based materials as platform for advanced highperformance anodes in lithium secondary batteries显示文摘The growing concern for the exhaustion of fossil energy and the rapid revolution of electronics have created a rising demand for electrical energy storage devices with high energy density,for example,lithium secondary batteries(LSBs).With high surface area,low cost,excellent mechanical strength,and electrochemical stability,amorphous carbon-based materials(ACMs)have been widely investigated as promising platform for anode materials in the LSBs.In this review,we firstly summarize recent advances in the synthesis of the ACMs with various morphologies,ranging from zero-to three-dimensional structures.Then,the use of ACMs in Li-ion batteries and Li metal batteries is discussed respectively with the focus on the relationship between the structural features of the as-prepared ACMs and their roles in promoting electrochemical performances.Finally,the remaining challenges and the possible prospects for the use of ACMs in the LSBs are proposed to provide some useful clews for the future developments of this attractive area.Jianwei Nai Xinyue Zhao Huadong Yuan Xinyong Tao Lin Guo 2021Nano Research2021,14,7:0
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