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22篇 您的检索式:作者名="LU Xueting"
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1Meningeal lymphatic vessels regulate brain tumor drainage and immunity显示文摘Recent studies have shown that meningeal lymphatic vessels(MLVs),which are located both dorsally and basally beneath the skull,provide a route for draining macromolecules and trafficking immune cells from the central nervous system(CNS)into cervical lymph nodes(CLNs),and thus represent a potential therapeutic target for treating neurodegenerative and neuroinflammatory diseases.However,the roles of MLVs in brain tumor drainage and immunity remain unexplored.Here we show that dorsal MLVs undergo extensive remodeling in mice with intracranial gliomas or metastatic melanomas.RNA-seq analysis of MLV endothelial cells revealed changes in the gene sets involved in lymphatic remodeling,fluid drainage,as well as inflammatory and immunological responses.Disruption of dorsal MLVs alone impaired intratumor fluid drainage and the dissemination of brain tumor cells to deep CLNs(dCLNs).Notably,the dendritic cell(DC)trafficking from intracranial tumor tissues to dCLNs decreased in mice with defective dorsal MLVs,and increased in mice with enhanced dorsal meningeal lymphangiogenesis.Strikingly,disruption of dorsal MLVs alone,without affecting basal MLVs or nasal LVs,significantly reduced the efficacy of combined anti-PD-1/CTLA-4 checkpoint therapy in striatal tumor models.Furthermore,mice bearing tumors overexpressing VEGF-C displayed a better response to anti-PD-1/CTLA-4 combination therapy,and this was abolished by CCL21/CCR7 blockade,suggesting that VEGF-C potentiates checkpoint therapy via the CCL21/CCR7 pathway.Together,the results of our study not only demonstrate the functional aspects of MLVs as classic lymphatic vasculature,but also highlight that they are essential in generating an efficient immune response against brain tumors.Xueting Hu Qiuping Deng Lu Ma Qingqing Li Yidong Chen Yuhan Liao Fan Zhou Chen Zhang Linlin Shao Jun Feng Tubao He Weihai Ning Yan Kong Yingqing Huo Aibin He Bing Liu Jingjing Zhang Ralf Adams Yulong He Fuchou Tang Xiuwu Bian Jincai Luo 2020Cell Research2020,30,3:11
2Consumer acceptability and sensory profiling of sesame oils obtained from different processes显示文摘This study aimed to investigate the effect of oil processing technologies on the sensory qualities of sesame oils and to identify drivers of liking.Using a check-all-that-apply(CATA)question and a hedonic scale,150 consumers evaluated the acceptability and sensory characteristics of 5 sesame oil samples including an aqueous extracted oil(S1),a cold-pressed oil(S2),two batches of screw-pressed oils(S3 and S5)and one crude sesame oil(S4).Solid-phase microextraction-gas chromatography-olfactometry-mass spectrometry(SPME-GC-O-MS)was used to identify odour-active compounds.The results showed that roasting,extraction techniques and filtration process influenced sensory perception and the acceptability of sesame oils.Consumers liked roasted sesame oils more than the cold-pressed sesame oil and liked the aqueous extracted sesame oil the most.Sensory attributes'sweet smell','mellow','roasted','nutty','persistent','high-intense flavour'and'cooked sesame seed flavour'were drivers of liking,while'green','raw sesame seed','rancid','woody'and'fishy'were drivers of disliking.'Burnt'flavour was liked by some while disliked by others.Pyrazines contributed to roasted flavour;2-acetylpyrrole,acetophenone and furfural contributed to nutty flavour;2-pentyl-furan,5-methyl-2-furancarboxaldehyde,and 2-phenyl-2-butenal contributed to sweet odour in the roasted sesame seeds.Nonanal,hexanal,1-hexanol and ocimene were responsible for the'green'flavour perceived in the cold-pressed oil.This study provides valuable information for sesame manufacturers on how to improve the sensory qualities of sesame oils through process manipulation to meet the needs of diverse consumers.Wenting Yin Maradza Washington Xueting Ma Xi Yang Aliu Lu Rui Shi Renyong Zhao Xuede Wang 2020Grain & Oil Science and Technology2020,3,2:5
3Identification of an endogenous glutamatergic transmitter system controlling excitability and conductivity of atrial cardiomyocytes显示文摘As an excitatory transmitter system,the glutamatergic transmitter system controls excitability and conductivity of neurons.Since both cardiomyocytes and neurons are excitable cells,we hypothesized that cardiomyocytes may also be regulated by a similar system.Duanyang Xie Ke Xiong Xuling Su Guanghua Wang Qiang Ji Qicheng Zou Lingling Wang Yi Liu Dandan Liang Jinfeng Xue Luxin Wang Xueting Gao Xingdong Gu Hongyu Liu r Xiaoyu He Li Li Jian Yang Youming Lu Luying Peng Yi-Han Chen 2021Cell Research2021,31,9:5
4Endothelin-1-induced mini-stroke in the dorsal hippocampus or lateral amygdala results in deficits in learning and memory显示文摘Functional and structural alterations in brain connectivity associated with brain ischemia have been extensively studied.However,the mechanism whereby local ischemia in deep brain region affect brain functions is still unknown.Here,we first established a mini-stroke model by infusion of endothelin-1(ET-1) into the dorsal hippocampus or the lateral amygdala,and then investigated how these mini-infarcts affected brain functions associated with these regions.We found that rats with ET-1 infusion showed deficit in recall of contextual fear memory,but not in learning process and recall of tone fear memory.In novel object task,ET-1 in the hippocampus also eliminated object identity memory.ET-1 in the lateral amygdale affected acquisition of fear conditioning and disrupted retention of tone-conditioned fear,but did not impair retention of contextual fear.These findings suggest that ET-1-induced mini-infarct in deep brain area leads to functional deficits in learning and memory associated with these regions.Tao Sheng Xueting Zhang Shaoli Wang Jingyun Zhang Wei Lu Yifan Dai 2015The Journal of Biomedical Research2015,29,5:3
5PVA/PEG Hybrid Hydrogels Prepared by Freeze-thawing and High Energy Electron Beam Irradiation显示文摘ZHAO Chunming LU Xueting HU Qianqian LIU Shuai GUAN Shuang 2017Chemical Research in Chinese Universities2017,33,6:2
6Mailuoning prevents high-glucose-mediated human umbilical vein endothelial cells apoptosis显示文摘OBJECTIVE: To investigated the role of Mailuoning in the prevention of high-glucose-mediated ce apoptosis in human umbilical vein endothelial cell (HUVEC) and the mechanisms involved. METHODS: MTT assay was used to investigate ce viability, western blot was used to investigate pro tein expression, and flow cytometric detection technology was used to detect cell apoptosis. RESULTS: Exposure of HUVEC to high glucose (50 mM) significantly suppressed cell viability and increased cell apoptosis compared with normal glu cose (11 mM) (all P<0.05). However, Mailuoning pre vented high-glucose-induced HUVEC apoptosis in dose-dependent manner. Further studies indicatedthat Mailuoning suppressed high-glucose-induced p38 mitogen-activated protein kinase phosphorylation, but had no effect on extracellular signal-regulated kinase 1/2 and Akt phosphorylation. CONCLUSION: Mailuoning can prevent high-glucose-induced HUVEC apoptosis by suppressing p38 activation.Wei Wang Chao Liu Jie Yang Xueting Cai Wuguang Lu Zhenhua Gu Peng Cao 2013Journal of Traditional Chinese Medicine2013,33,1:2
7Pressure of Newtonian Fluid Flow through Curved Pipes and Elbows显示文摘Under conditions of high temperature and high pressure, the non-uniformity of pressure loads has intensified the stress concentration which impacts the safety of curved pipes and elbows. This paper focuses on the pressure distribution and flow characteristic in a curved 90 o bend pipe with circular cross-sections, which are widely used in industrial applications. These flow and pressure characteristics in curved bend pipes have been researched by employing numerical simulation and theoretical analysis. Based on the dimensionless analysis method a formula for the pressure of Newtonian fluid flow through the elbow pipes is deduced. Also the pressure distributions of several elbows with different curvature ratio R/D are obtained by numerical methods. The influence of these non-dimensional parameters such as non-dimensional curvature ratio, Reynolds number and non-dimensional axial angle α and circumferential angle β on the pressure distribution in elbow pipes is discussed in detail. A number of important results have been achieved. This paper provides theoretical and numerical methods to understand the mechanical property of fluid flow in elbow pipes, to analyze the stress and to design the wall thickness of elbow pipes.Hao Zhang Xinxin Zhang Haosen Sun Mingjiu Chen Xiaoyang Lu Yuancheng Wang Xueting Liu 2013Journal of Thermal Science2013,22,4:2
8Light-induced phosphine-catalyzed asymmetric functionalization of benzylic C–H bonds显示文摘Despite rapid development in the past two decades,there are still some unsolved synthetic challenges in the field of phosphine catalysis.In this report,through photo-induced activation of ortho-alkyl aromatic ketones,we achieved highly enantioselective functionalization of substrates bearing a benzylic C–H bond.In the presence of amino acid-derived bifunctional phosphine catalysts,a range of benzylic allylation products were obtained in good yields and with excellent enantioselectivities.The strategy disclosed herein offers new insight into the activation and functionalization of pronucleophiles containing less acidic C–H bonds in the domain of phosphine catalysis and beyond.Jiami Guo Zi-An Shen Xueting Zhou Lei Dai Yixin Lu 2023Science China Chemistry2023,66,1:1
9A reusable SMA actuated non-explosive lockrelease mechanism for space application显示文摘After the satellite is launched with the carrier rocket,it is necessary to separate the satellite from the rocket at an appropriate time to ensure that the satellite enters the intended orbit.In this process,it is vital to ensure a reliable connection and accurate separation.With the increasing use of microsatellite in orbit,the contradiction between the shock of separation and the requirement of the platform’s dynamic environment is becoming increasingly prominent.Therefore,the traditional pyrotechnic separation device can no longer meet the requirements.This paper presents a reusable non-explosive release actuator using shape memory alloy(SMA)wire for high load and low shock.The system is based on the Fast Acting Shock-less Separation Nut(FASSN)technology.Using the shape memory effect of SMA,a biased SMA wire trigger has been developed,which is used as the driver source of the actuator.At the moment of receiving the electrical signal,the SMA wire generates stress and deformation.The trigger set free the constraints on the mechanical components,and the target is released.Experimental results indicate that the trigger device can unlock successfully and well meet the technical objectives.Xueting Pan Yuliang Zhang Yifan Lu Fei Yang Honghao Yue 2020International Journal of Smart and Nano Materials2020,11,1:1
10Cold water stress attenuates dopaminergic neurotoxicity induced by 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine in mice显示文摘在现在的学习,我们在导致的 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP ) 在 dopaminergic 神经原上测试了冷水应力(CWS ) 的效果 Parkinson 是疾病(PD ) 老鼠模型,并且发现那个 CWS 预告的处理得到了更少的 MPTP neurotoxicity。理解位于这现象下面的分子的机制,我们在试验性的鼠标的 striatum 检测了热吃惊蛋白质 70 的表达式(Hsp70 ) ,并且发现那个 CWS 预告的处理能显著地在对待 MPTP 的鼠标增加 striatal Hsp70。与 Hsp70 的正式就职同时,而且, striatal -synuclein 的导致 MPTP 的增加在 CWS +对待 MPTP 的老鼠被禁止。CWS 预告的处理显著地也在 striatum 禁止了 anti-apoptotic 分子 Bcl-2 表示的减小并且在对待 MPTP 的老鼠的 substantia nigra 提高了 Bcl-2 抄写。一起拿,这些数据显示 Hsp70 可能是为对导致 MPTP 的 dopaminergic 毒性的 CWS 的 neuroprotective 效果的重要中介。Mingfeng Xia Minjuan Bian Qian Yu Jie Liu Yufang Huang Xueting Jin Shiduo Lu Mei Yu Fang Huang 2011Acta Biochimica et Biophysica Sinica2011,43,6:1
11Bentonite Reinforced Tough Composite Hydrogels as Potential Artificial Articular Cartilage显示文摘LU Xueting FENG Wei WANG Honglei HU Qianqian GUAN Shuang GUO Peipei 2018Chemical Research in Chinese Universities2018,34,6:1
12Heparin mimetics as potential intervention for COVID-19 and their bio-manufacturing显示文摘The COVID-19 pandemic has caused severe health problems worldwide and unprecedented decimation of the global economy.Moreover,after more than 2 years,many populations are still under pressure of infection.Thus,a broader perspective in developing antiviral strategies is still of great importance.Inspired by the observed multiple benefits of heparin in the treatment of thrombosis,the potential of low molecular weight heparin(LMWH)for the treatment of COVID-19 have been explored.Clinical applications found that LMWH decreased the level of inflammatory cytokines in COVID-19 patients,accordingly reducing lethality.Furthermore,several in vitro studies have demonstrated the important roles of heparan sulfate in SARS-CoV-2 infection and the inhibitory effects of heparin and heparin mimetics in viral infection.These clinical observations and designed studies argue for the potential to develop heparin mimetics as anti-SARS-CoV-2 drug candidates.In this review,we summarize the properties of heparin as an anticoagulant and the pharmaceutical possibilities for the treatment of virus infection,focusing on the perspectives of developing heparin mimetics via chemical synthesis,chemoenzymatic synthesis,and bioengineered production by microbial cell factories.The ultimate goal is to pave the eminent need for exploring novel compounds to treat coronavirus infection-caused diseases.Lan Jiang Tianji Zhang Hongzhong Lu Saijuan Li Kangjie Lv Alex Tuffour Lixin Zhang Kan Ding Jin-Ping Li Hongmei Li Xueting Liu 2023Synthetic and Systems Biotechnology2023,8,1:1
13NRF1-mediated microglial activation triggers high-altitude cerebral edema显示文摘High-altitude cerebral edema(HACE)is a potentially fatal encephalopathy associated with a time-dependent exposure to the hypobaric hypoxia of altitude.The formation of HACE is affected by both vasogenic and cytotoxic edema.The over-activated microglia potentiate the damage of blood-brain barrier(BBB)and exacerbate cytotoxic edema.In light with the activation of microglia in HACE,we aimed to investigate whether the over-activated microglia were the key turning point of acute mountain sickness to HACE.In in vivo experiments,by exposing mice to hypobaric hypoxia(7000 m above sea level)to induce HACE model,we found that microglia were activated and migrated to blood vessels.Microglia depletion by PLX5622 obviously relieved brain edema.In in vitro experiments,we found that hypoxia induced cultured microglial activation,leading to the destruction of endothelial tight junction and astrocyte swelling.Up-regulated nuclear respiratory factor 1(NRF1)accelerated pro-inflammatory factors through transcriptional regulation on nuclearfactorkappa B p65(NF-kB p65)and mitochondrial transcription factorA(TFAM)in activated microglia under hypoxia.NRF1 also up-regulated phagocytosis by transcriptional regulation on caveolin-1(CAV-1)and adaptorrelated protein complex 2 subunit beta(AP2B1).The present study reveals a new mechanism in HACE:hypoxia over-activates microglia through up-regulation of NRF1,which both induces inflammatory response through transcriptionally activating NF-kB p65 and TFAM,and enhances phagocytic function through up-regulation of CAV-1 and AP2B1;hypoxia-activatedmicroglia destroy the integrity of BBB and release pro-inflammatory factors that eventually induce HACE.Xueting Wang Guijuan Chen Baolan Wan Zhangji Dong Yan Xue Qianqian Luo Dan Wang Yapeng Lu Li Zhu 2022Journal of Molecular Cell Biology2022,14,5:1
14Tumor-penetrating peptide fused EGFR single-domain antibody enhances cancer drug penetration into 3D multicellular spheroids and facilitates effective gastric cancer therapy显示文摘Huizi Sha Zhengyun Zou Kai Xin Xinyu Bian Xueting Cai Wuguang Lu Jiao Chen Gang Chen Leaf Huang Andrew M. Blair Peng Cao Baorui Liu 2015Journal of Controlled Release2015,,:1
15Selective substitution induced anomalous phonon stiffening within quasi-one-dimensional P–P chains in SiP2显示文摘Light-matter interactions in low-dimensional quantum-confined structures can dominate the optical properties of the materials and lead to optoelectronic applications.In anisotropic layered silicon diphosphide(SiP2)crystal,the embedded quasi-onedimensional(1D)phosphorus–phosphorus(P–P)chains directly result in an unconventional quasi-1D excitonic state,and a special phonon mode vibrating along the P–P chains,establishing a unique 1D quantum-confined system.Alloying SiP2 with the homologous element serves as an effective way to study the properties of these excitons and phonons associated with the quasi-1D P–P chains,as well as the strong interaction between these quasiparticles.However,the experimental observation and the related optical spectral understanding of SiP2 with isoelectronic dopants remain elusive.Herein,with the photoluminescence and Raman spectroscopy measurements,we demonstrate the redshift of the confined excitonic peak and the stiffening of the phonon vibration mode■of a series of Si(P1−xAsx)2 alloys with increasing arsenic(As)compositions.This anomalous stiffening of■is attributed to the selective substitution of As atoms for P atoms within the P–P chains,which is confirmed via our scanning transmission electron microscopy investigation.Such optical spectra evolutions with selective substitution pave a new way to understand the 1D quantum confinement in semiconductors,offering opportunities to explore quasi-1D characteristics in SiP2 and the resulting photonic device application.Xueting Dai Feng Qin Caiyu Qiu Ling Zhou Junwei Huang Fanghua Cheng Xiangyu Bi Caorong Zhang Zeya Li Ming Tang Shengqiang Wu Xiaoxu Zhao Yangfan Lu Huiyang Gou Hongtao Yuan 2023Nano Research2023,16,1:0
16Strain engineering of anisotropic light-matter interactions in onedimensional P-P chain of SiP_(2)显示文摘Strain engineering can serve as a powerful technique for modulating the exotic properties arising from the atomic structure of materials.Examples have been demonstrated that one-dimensional(1D)structure can serve as a great platform for modulating electronic band structure and phonon dispersion via strain control.Particularly,in a van der Waals material silicon diphosphide(SiP_(2)),quasi-1D zigzag phosphorus–phosphorus(P–P)chains are embedded inside the crystal structure,and can show unique phonon vibration modes and realize quasi-1D excitons.Manipulating those optical properties by the atom displacements via strain engineering is of great interest in understanding underlying mechanism of such P–P chains,however,which remains elusive.Herein,we demonstrate the strain engineering of Raman and photoluminescence(PL)spectra in quasi-1D P–P chains and resulting in anisotropic manipulation in SiP_(2).We find that the phonon frequencies of SiP_(2)in Raman spectra linearly evolve with a uniaxial strain along/perpendicular to the quasi-1D P–P chain directions.Interestingly,by applying tensile strain along the P–P chains,the band gap energy of strained SiP_(2)can significantly decrease with a tunable value of~55 meV.Based on arsenic(As)element doping into SiP_(2),the strain-induced redshifts of phonon frequencies decrease,indicating the stiffening of the phonon vibration with the increased arsenic doping level.Such results provide an opportunity for strain engineering of the light–matter interactions in the quasi-1D P–P chains of SiP_(2)crystal for potential optical applications.Fanghua Cheng Junwei Huang Feng Qin Ling Zhou Xueting Dai Xiangyu Bi Caorong Zhang Zeya Li Ming Tang Caiyu Qiu Yangfan Lu Huiyang Gou Hongtao Yuan 2022Nano Research2022,15,8:0
17Continuously Quantifying Oral Chemicals Based on Flexible Hybrid Electronics for Clinical Diagnosis and Pathogenetic Study显示文摘Simultaneous monitoring of diverse salivary parameters can reveal underlying mechanisms of intraoral biological processes and offer profound insights into the evolution of oral diseases.However,conventional analytical devices with bulky volumes,rigid formats,and discrete sensing mechanisms deviate from the requirements of continuous biophysiological quantification,resulting in huge difficulty in precise clinical diagnosis and pathogenetic study.Here,we present a flexible hybrid electronic system integrated with functional nanomaterials to continuously sense Ca^(2+),pH,and temperature for wireless real-time oral health monitoring.The miniaturized system with an island-bridge structure that is designed specifically to fit the teeth is only 0.4g in weight and 31.5×8.5×1.35 mm^(3) in dimension,allowing effective integration with customized dental braces and comfort attachment on teeth.Characterization results indicate high sensitivities of 30.3 and 60.6 mV/decade for Ca^(2+)and pH with low potential drifts.The system has been applied in clinical studies to conduct Ca^(2+)and pH mappings on carious teeth,biophysiological monitoring for up to 12 h,and outcome evaluation of dental restoration,providing quantitative data to assist in the diagnosis and understanding of oral diseases.Notably,caries risk assessment of 1o human subjects using the flexible system validates the important role of saliva buffering capacity in caries pathogenesis.The proposed flexible system may offer an open platform to carry diverse components to support both clinical diagnosis and treatment as well as fundamental researchfororaldiseases and induced systemicdiseases.Wei Lingo Yinghui Wang ingyu Lu Xue Shang Ziyue Wu Zhaorun Chen Xueting Li Chenchen Zou Jinjie Yan Yunjie Zhou Jie Liu Hongjie Li Kehua Que Xian Huan 2022Research2022,,4:0
18Function toggle of tumor microenvironment responsive nanoagent for highly efficient free radical stress enhanced chemodynamic therapy显示文摘In contrast to reactive oxygen species(ROS),the generation of oxygen-irrelevant free radicals is oxygen-and H2O2-independent in cell,which can offer novel opportunities to maximum the chemodynamic therapy(CDT)efficacy.Herein,an H2O2-independent“functional reversion”strategy based on tumor microenvironment(TME)-toggled C-free radical generation for CDT is developed by confining astaxanthin(ATX)on the NiFe-layered double hydroxide(LDH)nanosheets(denoted as ATX/LDH).The unique ATX/LDH can demonstrate outstanding TME-responsive C-free radical generation performance by proton coupled electron transfer(PCET),owing to the specific ATX activation by unsaturated Fe sites on the LDH nanosheets formed under TME.Significantly,the Brönsted base sites of LDH hydroxide layers can promote the generation of neutral ATX C-free radicals by capturing the protons generated in the ATX activation process.Conversely,ATX/LDH maintain antioxidant performance to prevent normal tissue cancerization due to the synergy of LDH nanosheets and antioxidative ATX.In addition,C-free radical can compromise the antioxidant defense in cells to the maximum extent,compared with ROS.The free radicals burst under TME can significantly elevate free radical stress and induce cancer cell apoptosis.This strategy can realize TME-toggled C free radical generation and perform free radical stress enhanced CDT.Xueting Yang Shuaitian Guo Li Wang Shanyue Guan Shuyun Zhou Jun Lu 2022Nano Research2022,15,9:0
19Capacity Analysis for Dynamic Space Networks显示文摘To evaluate transmission rate of highly dynamic space networks,a new method for studying space network capacity is proposed in this paper. Using graph theory,network capacity is defined as the maximum amount of flows ground stations can receive per unit time. Combined with a hybrid constellation model,network capacity is calculated and further analyzed for practical cases. Simulation results show that network capacity will increase to different extents as link capacity,minimum ground elevation constraint and satellite onboard processing capability change. Considering the efficiency and reliability of communication networks,how to scientifically design satellite networks is also discussed.Yang Lu Bo Li Wenjing Kang Gongliang Liu Xueting Li 2015Journal of Harbin Institute of Technology(New Series)2015,22,6:0
20Two novel aliphatic unsaturated alcohols isolated from a pathogenic fungus Fusarium proliferatum显示文摘Phytopathogenic fungi have attracted great attention as a promising source for new drug discovery.In the progress of our ongoing study for bioactive natural products from an in-house phytopathogenic fungi library,a pathogenic fungus,Fusarium proliferatum strain 13294(FP13294),was selected for chemical investigation.Two novel aliphatic unsaturated alcohols named fusariumnols A and B(1 and 2),together with one previously characterized sesquiterpenoid lignoren(3)were identified.Structures of 1-3 were assigned by mass spectrometry and NMR spectroscopy.Their bioactivities were assessed against Staphylococcus epidermidis,S.aureus,and Methicillin-resistant S.aureus(MRSA).Compounds 1 and 2 exhibited weak antibacterial activity against S.epidermidis(MIC=100μM).Wanying Lu Guoliang Zhu Weize Yuan Zhaoxi Han Huanqin Dai Mostafa Basiony Lixin Zhang Xueting Liu Tom Hsiang Jingyu Zhang 2021Synthetic and Systems Biotechnology2021,6,4:0
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