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| 1 | Multi-functional vesicles improve Helicobacter pylori eradication by a comprehensive strategy based on complex pathological microenvironment显示文摘Helicobacter pylori(H.pylori),creating a global infection rate over 50%,presents great challenges in clinical therapies due to its complex pathological microenvironment in vivo.To improve the eradication efficacy,herein we fabricated a pharmaceutical vesicle RHL/Cl-Ch-cal where cholesterol-PEG,calcitriol and first-line antibiotic clarithromycin were co-loaded in the rhamnolipid-composed outer lipid layer.RHL/Cl-Ch-cal could quickly penetrate through gastric mucus layer to reach H.pylori infection sites,and then effectively destroyed the architecture of H.pylori biofilms,killed dispersed H.pylori and inhibited the re-adhesion of residual bacteria(called biofilms eradication tetralogy).Moreover,RHL/Cl-Ch-cal activated the host immune response to H.pylori by replenishing cholesterol to repair lipid raft on the cell membrane of host epithelial cells.Finally,RHL/Cl-Ch-cal killed the intracellular H.pylori through recovering the lysosomal acidification and assisting degradation.In experiments,RHL/Cl-Ch-cal demonstrated prominent anti-H.pylori efficacy in the classical H.pylori-infected mice model.Therefore,the study provides a“comprehensive attack”strategy for anti-H.pylori therapies including biofilms eradication tetralogy,immune activation and intracellular bacteria killing. | Xiaonan Chen Yiqing Zou Shuqi Zhang Pengchao Fang Shuxuan Li Pengyu Li Yingying Sun Gang Yuan Haiyan Hu | 2022 | Acta Pharmaceutica Sinica B2022,12,9: | 2 |
| 2 | Synthesis of calcium hexaboride powder via the reaction of calcium carbonate with boron carbide and carbon显示文摘 | ZHENG Shuqi MIN Guanghui ZOU Zengda | 2001 | J Am Ceram Soc2001,84,11: | 1 |
| 3 | A new laboratory method for evaluating formation damage in fractured carbonate reservoirs显示文摘有人工的破裂的自然碳酸盐核心样品经常被用来在实验室评估折断的碳酸盐形成的损坏。为评估的最经常的错误直接源于人工的破裂描绘的随机的宽度,这被显示出。解决这个问题,用有骨折的给定的宽度的不锈钢做的一系列模仿的折断的核心样品被准备。为人工的骨折的宽度的相对错误减少了到 1% 。在碳酸盐水库的自然、人工的破裂的宽度能被图象日志数据估计。为形成损坏的一系列测试被使用模仿的核心样品与不同钻的液体冲洗了的不锈钢进行,例如 sulfonate/polymer 钻在里面液体和没有固体的钻在里面液体与或没有衔接材料的理想的收拾行李。用这种模仿的核心基于试验性的结果,折断的碳酸盐水库的损坏控制的一条新奇途径被介绍。模仿的核心样品的结束脸上的有效暂时的插戒指能清楚地被观察。试验性的结果也证明不锈钢模仿了核心使设想固体并且过滤可能侵略。 | Ye Yan Yan Jienian Zou Shengl Wang Shuqi Lu Rende | 2008 | Petroleum Science2008,5,1: | 1 |
| 4 | Structural basis of nucleosome deacetylation and DNA linker tightening by Rpd3S histone deacetylase complex显示文摘In Saccharomyces cerevisiae,cryptic transcription at the coding region is prevented by the activity of Sin3 histone deacetylase(HDAC)complex Rpd3S,which is carried by the transcribing RNA polymerase Ⅱ(RNAPⅡ)to deacetylate and stabilize chromatin.Despite its fundamental importance,the mechanisms by which Rpd3S deacetylates nucleosomes and regulates chromatin dynamics remain elusive.Here,we determined several cryo-EM structures of Rpd3S in complex with nucleosome core particles(NCPs),including the H3/H4 deacetylation states,the alternative deacetylation state,the linker tightening state,and a state in which Rpd3S co-exists with the Hho1 linker histone on NCP.These structures suggest that Rpd3S utilizes a conserved Sin3 basic surface to navigate through the nucleosomal DNA,guided by its interactions with H3K36 methylation and the extra-nucleosomal DNA linkers,to target acetylated H3K9 and sample other histone tails.Furthermore,our structures illustrate that Rpd3S reconfigures the DNA linkers and acts in concert with Hho1 to engage the NCP,potentially unraveling how Rpd3S and Hho1 work in tandem for gene silencing. | Shuqi Dong Huadong Li Meilin Wang Nadia Rasheed Binqian Zou Xijie Gao Jiali Guan Weijie Li Jiale Zhang Chi Wang Ningkun Zhou Xue Shi Mei Li Min Zhou Junfeng Huang He Li Ying Zhang Koon Ho Wong Xiaofei Zhang William Chong Hang Chao Jun He | 2023 | Cell Research2023,33,10: | 1 |
| 5 | Stochasticity dominates assembly processes of soil nematode metacommunities on three Asian mountains显示文摘Nematodes play an important role in ecosystems;however,very little is known about their assembly processes and the factors influencing them.We studied nematode communities in bulk soils from three Asian mountain ecosystems to determine the assembly processes of free-living nematode metacommunities and their driving factors.On each mountain,elevations span a range of climatic conditions with the potential to reveal assembly processes that predominate across multiple biomes.A phylogenetic null modeling framework was used to analyze 18S rRNA gene amplicons to quantify various assembly processes.We found that phylogenetic turnover between nematode communities on all mountains was dominated by stochastic processes,with“undominated processes”being the most predominant stochastic factor.Elevation has a significant impact on the relative importance of deterministic and stochastic processes.A variety of climatic and edaphic variables significantly influenced the variations in community assembly processes with elevation,even though their impacts were not consistent between the mountains.Overall,our results indicate that free-living nematode metacommunities in a wide range of environments are largely structured by stochastic processes rather than by niche-based deterministic processes,suggesting that metacommunities of soil free-living nematodes may respond to climate change in a largely unpredictable way. | Shuqi ZOU Jonathan ADAMS Zhi YU Nan LI Dorsaf KERFAHI Binu TRIPATHI Changbae LEE Teng YANG Itumeleng MOROENYANE Xing CHEN Jinsoo KIM Hyun Jeong KWAK Matthew Chidozie OGWU Sang-Seob LEE Ke DONG | 2023 | Pedosphere2023,33,2: | 0 |
| 6 | Oxidation process of lanthanum hexaboride ceramics显示文摘Oxidation process of lanthanum hexaboride (LaB6) ceramic powder was investigated . The LaB6 powder samples were heated continually from room temperature to 1 473 K at a heating rate of 10 K/min by differential scanning calorimetry. The oxidation tests were conducted at different exposure temperatures. The phases and morphologies of the samples before and after exposure were analyzed by XRD and SEM. It was pointed out that before 1 273 K, LaB6 has high oxidation resistant ability, which was due to that the oxide layer hinders the oxygen diffusion from outer to the surface of LaB6 grains. The oxide layer was composed of the transition phases, which were composed of La2O3 and B2O3 formed from the initial oxidation; when the oxidation temperature exceeded 1 273 K, protective layer was destroyed due to the vaporization of liquid B2O3. Based on the results of X-ray diffraction analysis, oxidation process of LaB6 ceramic powder can be described as follows: Before 1 273 K, lanthanum borate,La(BO2)3 was formed on the surface of samples, then lanthanum oxide (La2O3) and boron oxide (B2O3) were present on the surface of samples oxidized when the temperature reached to 1 473 K. | ZHENG Shuqi, MIN Guanghui, ZOU Zengda , YU Huashun, HAN Jiande , and WANG Weiti School of Materials Science and Engineering, Shandong University, Jinan 250061, China | 2002 | Rare Metals2002,21,2: | 0 |
| 7 | A visibly transparent radiative cooling film with self-cleaning function produced by solution processing显示文摘Daylighting structures,including solar cells and building windows,utilize sunlight whilst suffering from undesired solar heat and outdoor dust contamination.A radiative cooling system that is transparent to sunlight and has a superhydrophobic surface would cool and clean the daylighting structures in a sustainable manner.However,the majority of the current daytime radiative cooling systems were designed to fully reflect the incident sunlight to maximize the cooling power.In this work,we optimized both the sunlight transmission and infrared thermal irradiation by modeling the size-dependent scattering and absorption of light by SiO_(2)spheres embedded in a polymer matrix,we found that the use of nanospheres(20 nm)enabled both high sunlight transmittance(>90%)and infrared emissivity(-0.85).This theoretical prediction was confirmed by experimental measurements of a solution-processed nanocomposite film.When coated on a solar cell,the as-prepared film not only preserved the power conversion efficiency of the cell(14.71%,uncoated cell has an efficiency of 14.79%)but also radiatively cooled the cell by up to 5℃under direct sunlight.This reduction of the operating temperature of the solar cell further enhanced its electrical power output,evidenced by an increase in the equilibrium temperature of the LED load by about 14℃.The nanoscale textured surface formed by the nanospheres further led to superhydrophobicity and thus excellent self-cleaning performance(efficient removal of dust by wind and/or water droplets). | Guoliang Chen Yaming Wang Jun Qiu Jianyun Cao Yongchun Zou Shuqi Wang Jiahu Ouyang Dechang Jia Yu Zhou | 2021 | Journal of Materials Science & Technology2021,,31: | 0 |
| 8 | Study on the catalytic degradation of sodium lignosulfonate to aromatic aldehydes over nano-CuO:Process optimization and reaction kinetics显示文摘As one of the few renewable aromatic resources,the research of depolymerization of lignin into highvalue chemicals has attracted extensive attention in recent years.Catalytic wet aerobic oxidation(CWAO)is an effective technology to convert lignin like sodium lignosulfonate(SL),a lignin derivative,into aromatic aldehydes such as vanillin and syringaldehyde.However,how to improve the yield of aromatic aldehyde and conversion efficiency is still a challenge,and many operating conditions that significantly affect the yield of these aromatic compounds have rarely been investigated systematically.In this work,we adopted the stirred tank reactor(STR)for the CWAO process with nano-CuO as catalyst to achieve the conversion of SL into vanillin and syringaldehyde.The effect of operating conditions including reaction time,oxygen partial pressure,reaction temperature,SL concentration,rotational speed,catalyst amount,and NaOH concentration on the yield of single phenolic compound was systematically investigated.The results revealed that all these operating conditions exhibit a significant effect on the aromatic aldehyde yield.Therefore,they should be regulated in an optimal value to obtain high yield of these aldehydes.More importantly,the reaction kinetics of the lignin oxidation was explored.This work could provide basic data for the optimization and design of industrial operation of lignin oxidation. | Yingjie Song Shuqi Zhong Yingjiao Li Kun Dong Yong Luo Guangwen Chu Haikui Zou Baochang Sun | 2023 | Chinese Journal of Chemical Engineering2023,53,1: | 0 |
| 9 | Simple and scalable synthesis of super-repellent multilayer nanocomposite coating on Mg alloy with mechanochemical robustness,high-temperature endurance and electric protection显示文摘Multi-functionalization is the future development direction for protective coatings on metal surface,but has not yet been explored a lot.The effective integration of multiple functions into one material remains a huge challenge.Herein,a superhydrophobic multilayer coating integrated with multidimensional organic-inorganic components is designed on magnesium alloy via one-step plasma-induced thermal field assisted crosslinking deposition(PTCD)processing followed by after-thermal modification.Hard porous MgO ceramic layer and polytetrafluoroethylene(PTFE)nano-particles work as the bottom layer skeleton and filler components separately,forming an organic-inorganic multilayer structure,in which organic nano-particles can be crosslinked and cured to form a compact polymer-like outer layer with hierarchical surface textures.Remarkably,the chemical robustness after prolonged exposure to aqua regia,strong base and simulated seawater solution profits from polymer-like nanocomposite layer uniformly and compactly across the film bulk.Moreover,the self-similar multilayer structure coating endows it attractive functions of strong mechanical robustness(>100th cyclic rotary abrasion),stable and ultra-low friction coefficient(about 0.084),high-temperature endurance,and robust self-cleaning.The organic-inorganic multilayer coating also exhibits high insulating property with breakdown voltage of 1351.8±42.4 V,dielectric strength of 21.4±0.7 V/μm and resistivity of 3.2×10^(10)Ω·cm.The excellent multifunction benefits from ceramic bottom skeleton,the assembly and deposition of multidimensional nano-particles,and the synergistic effect of organic inorganic components.This study paves the way for designing next generation protective coating on magnesium alloy with great potential for multifunctional applications. | Shuqi Wang Yaming Wang Junchen Chen Yongchun Zou Jiahu Ouyang Dechang Jia Yu Zhou | 2022 | Journal of Magnesium and Alloys2022,10,9: | 0 |