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| 1 | In vivo flow cytometry reveals a circadian rhythm of circulating tumor cells显示文摘Circulating tumor cells(CTCs)is an established biomarker of cancer metastasis.The circulation dynamics of CTCs are important for understanding the mechanisms underlying tumor cell dissemination.Although studies have revealed that the circadian rhythm may disrupt the growth of tumors,it is generally unclear whether the circadian rhythm controls the release of CTCs.In clinical examinations,the current in vitro methods for detecting CTCs in blood samples are based on a fundamental assumption that CTC counts in the peripheral blood do not change significantly over time,which is being challenged by recent studies.Since it is not practical to draw blood from patients repeatedly,a feasible strategy to investigate the circadian rhythm of CTCs is to monitor them by in vivo detection methods.Fluoresce nee in vivo flow cytometry(IVFC)is a powerful optical technique that is able to detect fluoresce nt circulating cells directly in living animals in a noninvasive manner over a long period of time.In this study,we applied fluorescence IVFC to monitor CTCs noninvasively in an orthotopic mouse model of human prostate cancer.We observed that CTCs exhibited stochastic bursts over cancer progression.The probability of the bursting activity was higher at early stages than at late stages.We longitudinally monitored CTCs over a 24-h period,and our results revealed striking daily oscillations in CTC counts that peaked at the onset of the night(active phase for rodents),suggesting that the release of CTCs might be regulated by the circadian rhythm. | Xi Zhu Yuanzhen Suo Yuting Fu Fuli Zhang Nan Ding Kai Pang Chengying Xie Xiaofu Weng Meilu Tian Hao He Xunbin Wei | 2021 | Light(Science & Applications)2021,10,6: | 6 |
| 2 | Microglia modulation with 1070-nm light attenuates Aβ burden and cognitive impairment in Alzheimer’s disease mouse model显示文摘Photobiomodulation,by utilizing low-power light in the visible and near-infrared spectra to trigger biological responses in cells and tissues,has been considered as a possible therapeutic strategy for Alzheimer’s disease(AD),while its specific mechanisms have remained elusive.Here,we demonstrate that cognitive and memory impairment in an AD mouse model can be ameliorated by 1070-nm light via reducing cerebralβ-amyloid(Aβ)burden,the hallmark of AD.The glial cells,including microglia and astrocytes,play important roles in Aβclearance.Our results show that 1070-nm light pulsed at 10 Hz triggers microglia rather than astrocyte responses in AD mice.The 1070-nm lightinduced microglia responses with alteration in morphology and increased colocalization with Aβare sufficient to reduce Aβload in AD mice.Moreover,1070-nm light pulsed at 10 Hz can reduce perivascular microglia and promote angiogenesis to further enhance Aβclearance.Our study confirms the important roles of microglia and cerebral vessels in the use of 1070-nm light for the treatment of AD mice and provides a framework for developing a novel therapeutic approach for AD. | Lechan Tao Qi Liu Fuli Zhang Yuting Fu Xi Zhu Xiaofu Weng Hongbin Han Yong Huang Yuanzhen Suo Liang Chen Xiaoling Gao Xunbin Wei | 2021 | Light(Science & Applications)2021,10,10: | 4 |
| 3 | Reply to Comment on “In vivo flow cytometry reveals a circadian rhythm of circulating tumor cells”显示文摘Dear Editor,We thank Niedre et al.for their correspondence regarding our recent paper1.They proposed a point that the temporal distribution of circulating tumor cells(CTCs)monitored by diffuse in vivo flow cytometry in a multiple myeloma mouse model in their previous work2 might be different from our results.Niedre et al.claimed that CTC detection statistics deviated from Poisson but did not found circadian variations in CTC numbers in a multiple myeloma mouse model.They also cite another literature by Juratli.et al.3,in which the authors reported that CTC numbers did not always correlate with tumor size during cancer progression.However,by establishing an orthotopic mouse model of prostate cancer and utilizing the technology in vivo flow cytometry(IVFC),we found CTCs exhibited bursting activity and daily oscillation in an orthotopic model of prostate cancer. | Xi Zhu Yuanzhen Suo Yuting Fu Fuli Zhang Nan Ding Kai Pang Chengying Xie Xiaofu Weng Meilu Tian Hao He Xunbin Wei | 2021 | Light(Science & Applications)2021,10,10: | 2 |
| 4 | The analysis of trans fatty acid profiles in deep frying palm oil and chicken fillets with an improved gas chromatography method显示文摘 | Yi Chen Ying Yang Shaoping Nie Xi Yang Yuting Wang Meiyan Yang Chang Li Mingyong Xie | 2014 | Food Control2014,,: | 2 |
| 5 | Recognition of high-specificity hERG K+ channel inhibitor-induced arrhythmia in cardiomyocytes by automated template matching显示文摘Cardiovascular disease(CVD)is the number one cause of death in humans.Arrhythmia induced by gene mutations,heart disease,or hERG K+channel inhibitors is a serious CVD that can lead to sudden death or heart failure.Conventional cardiomyocyte-based biosensors can record extracellular potentials and mechanical beating signals.However,parameter extraction and examination by the naked eye are the traditional methods for analyzing arrhythmic beats,and it is difficult to achieve automated and efficient arrhythmic recognition with these methods.In this work,we developed a unique automated template matching(ATM)cardiomyocyte beating model to achieve arrhythmic recognition at the single beat level with an interdigitated electrode impedance detection system.The ATM model was established based on a rhythmic template with a data length that was dynamically adjusted to match the data length of the target beat by spline interpolation.The performance of the ATM model under long-term astemizole,droperidol,and sertindole treatment at different doses was determined.The results indicated that the ATM model based on a random rhythmic template of a signal segment obtained after astemizole treatment presented a higher recognition accuracy(100%for astemizole treatment and 99.14%for droperidol and sertindole treatment)than the ATM model based on arrhythmic multitemplates.We believe this highly specific ATM method based on a cardiomyocyte beating model has the potential to be used for arrhythmia screening in the fields of cardiology and pharmacology. | Hao Wang Hongbo Li Xinwei Wei Tao Zhang Yuting Xiang Jiaru Fang Peiran Wu Xi Xie Ping Wang Ning Hu | 2021 | Microsystems & Nanoengineering2021,7,2: | 2 |
| 6 | Responses of the methanogenic pathway and fraction of CH4 oxidization in a flooded paddy soil to rice planting显示文摘Rice planting(RP)is significant to methane(CH4_(4))emissions from paddy fields,but its effect on the relative contribution of the acetoclastic methanogenesis to total CH4_(4) production(F_(ac))and the fraction of CH4_(4) oxidized(Fox)is poorly understood.To quantify the responses of the F_(ac) and Fox to RP,we investigated CH4_(4) fluxes,CH4_(4) production and oxidation potentials,dissolved CH4_(4) concentrations,and their stable carbon isotopes in a flooded paddy soil.The mcrA and pmoA gene copies were also determined by quantitative polymerase chain reaction(qPCR).Compared with the unplanted soil(control,CK),the seasonal CH4_(4) emissions from the planted soil were significantly enhanced,13.6 times,resulting in large decreases in the CH4_(4) concentrations in the soil solution.This indicated that much more CH4_(4) was released into the atmosphere by the RP than was stored in the soils.Acetoclastic methanogenesis became more important from the tillering stage(TS)to the ripening stage(RS)for the CK,with F_(ac) values increased from 17%-20% to 46%-55%.With RP,the F_(ac) values were enhanced by 10%-20%,and it significantly increased the copy numbers of the mcrA gene at the four rice stages(TS,booting stage(BS),grain-filling stage(GS),and RS).Furthermore,the effect of the RP on the abundance of the mcrA gene was highly concurrent with the effect on the F_(ac) values.At the TS,the Fox values at the soil-water interface were around 50%-75% for the CK,being 15%-20% lower than those of the RP in the rhizosphere.It increased to 65%-100% at the GS,but was reduced by 20%-30% after the RP.These differences might be because the copy numbers of the pmoA gene were significantly raised at the TS while lowered at the GS by the RP.This was further demonstrated by the strong correlations between the effect of the RP on the abundance of the pmoA gene and the effect on the Fox values.These findings suggest that RP markedly impacts on the abundances of the mcrA and pmoA genes,affecting the pathway of CH4_(4) production and the fraction of CH4_(4) oxidization,respectively. | Yuting YANG Guangbin ZHANG Jing MA Qiong HUANG Haiyang YU Kaifu SONG Xiaoli ZHU Xi MIAO Hua XU | 2021 | Pedosphere2021,31,6: | 1 |
| 7 | Cross-boundary transport and source apportionment for PM_(2.5) in a typical industrial city in the Hebei Province,China:A modeling study显示文摘Cross-boundary transport of air pollution is a difficult issue in pollution control for the North China Plain.In this study,an industrial district(Shahe City)with a large glass manufactur-ing sector was investigated to clarify the relative contribution of fine particulate matter(PM_(2.5))to the city's high levels of pollution.The Nest Air Quality Prediction Model System(NAQPMS),paired with Weather Research and Forecasting(WRF),was adopted and applied with a spatial resolution of 5 km.During the study period,the mean mass concentrations of PM_(2.5),SO_(2),and NO_(2)were observed to be 132.0,76.1,and 55.5μg/m^(3),respectively.The model reproduced the variations in pollutant concentrations in Shahe at an acceptable level.The simulation of online source-tagging revealed that pollutants emitted within a 50-km radius of downtown Shahe contributed 63.4%of the city's total PM_(2.5)concentration.This contribu-tion increased to 73.9±21.2%when unfavorable meteorological conditions(high relative hu-midity,weak wind,and low planetary boundary layer height)were present;such conditions are more frequently associated with severe pollution(PM_(2.5)≥250μg/m^(3)).The contribution from Shahe was 52.3±21.6%.The source apportionment results showed that industry(47%),transportation(10%),power(17%),and residential(26%)sectors were the most important sources of PM_(2.5)in Shahe.The glass factories(where chimney stack heights were normally<70 m)in Shahe contributed 32.1%of the total PM_(2.5)concentration in Shahe.With an in-crease in PM_(2.5)concentration,the emissions from glass factories accumulated vertically and narrowed horizontally.At times when pollution levels were severe,the horizontally influ-enced area mainly covered Shahe.Furthermore,sensitivity tests indicated that reducing emissions by 20%,40%,and 60% could lead to a decrease in themass concentration of PM_(2.5) of of 12.0%,23.8%,and 35.5%,respectively. | Xiaoyong Liu Xiaole Pan Jie Li Xi Chen Hang Liu Yu Tian Yuting Zhang Shandong Lei Weijie Yao Qi Liao Yele Sun Zifa Wang Hong He | 2022 | Journal of Environmental Sciences2022,34,5: | 1 |
| 8 | Designing and deploying a mixed-reality aquarium for cognitive training of young children with autism spectrum disorder显示文摘Autism spectrum disorder(ASD),a developmental disorder severely affecting cognition and social behavior,is increasing in prevalence[1].This increasing trend is especially severe in children,making the early intervention crucial to ASD treatment.Children with ASD have been found impairments in several aspects of cognition functions. | Juan LIU Yulong BIAN Yanran YUAN Yuting XI Wenxiu GENG Xinpei JIN Wei GAI Xiangmin FAN Feng TIAN Xiangxu MENG Chenglei YANG | 2021 | Science China(Information Sciences)2021,64,5: | 1 |
| 9 | Aberrant elevation of FTO levels promotes liver steatosis by decreasing the m^(6)A methylation and increasing the stability of SREBF1 and ChREBP mRNAs显示文摘Previous studies have indicated an association of fat mass and obesity-associated(FTO)with nonalcoholic fatty liver disease(NAFLD),the most common chronic liver disease worldwide.This study aimed to decipher the complex role of FTO in hepatic lipid metabolism.We found that a decrease in N^(6)-methyladenosine(m^(6)A)RNA methylation in the liver of mice fed with a high-fat diet(HFD)was accompanied by an increase in FTO expression.Overexpression of FTO in the liver promoted triglyceride accumulation by upregulating the expression of lipogenic genes.Mechanistical studies revealed that FTO could stabilize the mRNAs of sterol regulatory element binding transcription factor 1(SREBF1)and carbohydrate responsive element binding protein(ChREBP),two master lipogenic transcription factors,by demethylating m^(6)A sites.Knockdown ofeither SREBF1 or ChREBP attenuated the lipogenic effect of FTO,suggesting that they are bona fide effectors for FTO in regulating lipogenesis.Insulin could stimulate FTO transcription through a mechanism involving the action of intranuclear insulin receptor beta,while knockdown of FTO abrogated the lipogenic effect of insulin.Inhibition ofFTo by entacapone decreased the expression of SREBF1,ChREBP,and downstream lipogenic genes,ameliorating liver steatosis in HFD-fed mice.Thus,our study established a critical role of FTO in both the insulin-regulated hepatic lipogenesis and the pathogenesis of NAFLD and provided a potential strategyfor treating NAFLD. | Zhili Tang Chao Sun Ying Yan Zhoumin Niu Yuying Li Xi Xu Jing Zhang Yuting Wu Yan Li Li Wang Cheng Hu Zhuoyang Li Jingjing Jiang Hao Ying | 2022 | Journal of Molecular Cell Biology2022,14,9: | 1 |
| 10 | Milk-derived exosomes as a promising vehicle for oral delivery of hydrophilic biomacromolecule drugs显示文摘Exosomes,as promising vehicles,have been widely used in the research of oral drug delivery,but the generally low drug loading efficiency of exosomes seriously limits its application and transformation.In this study,we systematically investigated the effects of drug loading methods and physicochemical properties(lipophilicity and molecular weight)on drug loading efficiency of milk-derived exosomes to explore the most appropriate loading conditions.Our finding revealed that the drug loading efficiency of exosomes was closely related to the drug loading method,drug lipophilicity,drug molecular weight and exosome/drug proportions.Of note,we demonstrated the universality that hydrophilic biomacromolecule drugs were the most appropriate loading drugs for milk-derived exosomes,which was attributed to the efficient loading capacity and sustained release behavior.Furthermore,milk-derived exosomes could significantly improve the transepithelial transport and oral bioavailability of model hydrophilic biomacromolecule drugs(octreotide,exendin-4 and salmon calcitonin).Collectively,our results suggested that the encapsulation of hydrophilic biomacromolecule drugs might be the most promising direction for milk exosomes as oral drug delivery vehicles. | Yuting Li Liyun Xing Lingling Wang Xi Liu Licheng Wu Mingjie Ni Zhou Zhou Lian Li Xiuxiu Liu Yuan Huang | 2023 | Asian Journal of Pharmaceutical Sciences2023,18,2: | 1 |
| 11 | A case of migraine misdiagnosed as epilepsy显示文摘Background:Migraine and epilepsy are both episodic disorders,with some overlapping symptoms,mechanisms and therapies.Clinically,there is a comorbid relationship between them.Some migraine patients may exhibit epileptic discharges by electroencephalogram(EEG)recording.Therefore,the two conditions are easily misdiagnosed.Case presentation:We reported a 16-year-old female patient who was admitted to our hospital due to repeated headaches with disturbance of consciousness.Epileptic discharge was recorded by long-term EEG.The patient had been misdiagnosed as epilepsy,and had no response to anti-seizure medicines(ASMs).We revised her diagnosis and prescribed ibuprofen in her acute episode and prophylactic medicine,including funarizine and amitriptyline in her interictal period.One week later,her headache disappeared.Conclusions:This patient manifested with altered levels of consciousness during headache episodes,and the abnormal EEG results lead to the misdiagnosis as epilepsy.Clinicians should be cautious to the distinction between migraine and epilepsy. | Yuting Yang Xi Peng Yangmei Chen | 2023 | Acta Epileptologica2023,6,1: | 0 |
| 12 | Distribution Patterns of Synechococcus Indicated Their Environmental Constraints and Related Geochemical Processes in the Yellow Sea显示文摘Synechococcus is a widely distributed photosynthetic pico-phytoplankton,which contributes mainly to carbon fixation and maintains the stability of the marine ecosystem.To investigate its distribution patterns in the Yellow Sea,seawater samples were collected during September 2018.Results of flow cytometry analysis showed that the Synechococcus abundance ranged from 6.36×10^(2) to 4.51×10^(4) cells mL^(−1),which correlated with salinity(P<0.01)and temperature(P<0.05).At deeper off-shore sites,Synecho-coccus showed high abundance at the subsurface thermo-halocline,which was in accordance with chlorophyll a(Chl a)content along the vertical column.Based on the high-throughput sequencing data of rpoC1(partial gene encoding RNA polymerase),two Synechococcus subclusters,S5.1 and S5.2,were found to coexist in the studied area.Several clades of S5.1,including Clades I,II,and III,were the dominant components,accounting for 6.63%,26.11%,and 45.5%of the total genus,respectively.Redundancy analysis(RDA)showed that nitrite was the main environmental factor that explained the genus composition among samples.Fur-thermore,co-occurrence network revealed that the main phyla that coexisted with Synechococcus were Proteobacteria,Bacteroidetes,Actinobacteria,Planctomycetes,and Verrucomicrobia,which were involved in the carbon(C),nitrogen(N),sulfur(S),and manga-nese(Mn)cycles.Overall,Synechococcus exhibited biogeographic distribution correlated with temperature-salinity and nitrite in the Yellow Sea,and their geochemical function showed diverse but should be further verified in the future. | ZHOU Yuting WANG Ting CHEN Xi QIN Song ZHAO Zhenjun GUO Xinyi LI Jialin | 2022 | Journal of Ocean University of China2022,21,2: | 0 |
| 13 | Thoracic interstitial injection of drug-liposomes in mice for treating atherosclerosis显示文摘Intervaginal space injection(ISI)is a novel mode of administration investigated over the last decade.After injecting nanoparticles into the intervaginal space,they can be transported along low flow resistance channels into the interstitial space.This transport has a certain delivery direction,and site-specific injection can work on specific organs or tissues.In this study,the thorax,a new ISI site in the interstitial surrounding the internal thoracic artery named the thoracic interstitial injection(tISI)was investigated.To prove the targeting ability of the tISI,two sizes of gold nanoparticles(AuNPs)(47 and 87 nm)were administered to mice.After 1 h,the biodistribution of AuNPs in the tissues was measured via single particle inductively coupled plasma mass spectrometry(spICP-MS).The results showed that the concentration of AuNPs in the aorta after tISI injection was significantly higher than that after intravenous injection.Moreover,fewer nanoparticles with larger particle sizes were observed to have entered the blood and were better targeted to the aorta.Thereafter,tanshinone IIa sodium sulfonate liposomes were administered for the treatment of aortic atherosclerosis.The proportion of aortic plaques in atherosclerotic Apoe-/-mice administered via tISI was significantly lower than that in other model animals(P<0.001).Furthermore,the proteoglycan content and CD68-positive cell count in the plaques were significantly reduced.The vascular elastic fibers at the plaque site were thickened,and fractures were reduced.tISI was,therefore,determined to be an effective strategy for the treatment of atherosclerotic aortic plaques. | Tun Yan Huizhen Sun Yahong Shi Ya Gao Xi Lu Kai Li Yuting Zhu Qiang Zhang Tingting Li Zhongxian Li Xiaohan Zhou Yuting Guo Yinglu Ji Xiaoli Shi Dong Han | 2023 | Nano Research2023,16,4: | 0 |
| 14 | Cyasterone inhibits IL-1β-mediated apoptosis and inflammation via the NF-κB and MAPK signaling pathways in rat chondrocytes and ameliorates osteoarthritis in vivo显示文摘Osteoarthritis is a prevalent global joint disease,which is characterized by inflammatory reaction and cartilage degradation.Cyasterone,a sterone derived from the roots of Cyathula officinalis Kuan,exerts protective effect against several inflammationrelated diseases.However,its effect on osteoarthritis remains unclear.The current study was designed to investigate the potential antiosteoarthritis activity of cyasterone.Primary chondrocytes isolated from rats induced by interleukin(IL)-1βand a rat model stimulated by monosodium iodoacetate(MIA)were used for in vitro and in vivo experiments,respectively.The results of in vitro experiments showed that cyasterone apparently counteracted chondrocyte apoptosis,increased the expression of collagen II and aggrecan,and restrained the production of the inflammatory factors inducible nitric oxide synthase(iNOS),cyclooxygenase-2(COX-2),a disintegrin and metalloproteinase with thrombospondin motifs-5(ADAMTS-5),metalloproteinase-3(MMP-3),and metalloproteinase-13(MMP13)induced by IL-1βin chondrocytes.Furthermore,cyasterone ameliorated the inflammation and degenerative progression of osteoarthritis potentially by regulating the nuclear factor kappa B(NF-κB)and mitogen-activated protein kinase(MAPK)pathways.For in vivo experiments,cyasterone significantly alleviated the inflammatory response and cartilage destruction of rats induced by monosodium iodoacetate,where dexamethasone was used as the positive control.Overall,this study laid a theoretical foundation for developing cyasterone as an effective agent for the alleviation of osteoarthritis. | TENG Li SHEN Yue QU Yuhan YANG Longfei YANG Yuting JIAN Xi FAN Shengli ZHANG Lele FU Qiang | 2023 | Chinese Journal of Natural Medicines2023,21,2: | 0 |
| 15 | Enhanced genome editing to ameliorate a genetic metabolic liver disease through co-delivery of adeno-associated virus receptor显示文摘Genome editing through adeno-associated viral(AAV) vectors is a promising gene therapy strategy for various diseases,especially genetic disorders. However, homologous recombination(HR) efficiency is extremely low in adult animal models. We assumed that increasing AAV transduction efficiency could increase genome editing activity, especially HR efficiency, for in vivo gene therapy. Firstly, a mouse phenylketonuria(PKU) model carrying a pathogenic R408W mutation in phenylalanine hydroxylase(Pah) was generated. Through co-delivery of the general AAV receptor(AAVR), we found that AAVR could dramatically increase AAV transduction efficiency in vitro and in vivo. Furthermore, co-delivery of SaCas9/sgRNA/donor templates with AAVR via AAV8 vectors increased indel rate over 2-fold and HR rate over 15-fold for the correction of the single mutation in Pah;mice. Moreover, AAVR co-injection successfully increased the site-specific insertion rate of a 1.4 kb Pah cDNA by 11-fold, bringing the HR rate up to 7.3% without detectable global off-target effects. Insertion of Pah cDNA significantly decreased the Phe level and ameliorated PKU symptoms. This study demonstrates a novel strategy to dramatically increase AAV transduction which substantially enhanced in vivo genome editing efficiency in adult animal models, showing clinical potential for both conventional and genome editing-based gene therapy. | Shuming Yin Lie Ma Tingting Shao Mei Zhang Yuting Guan Liren Wang Yaqiang Hu Xi Chen Honghui Han Nan Shen Wenjuan Qiu Hongquan Geng Yongguo Yu Shichang Li Weishi Yu Mingyao Liu Dali Li | 2022 | Science China(Life Sciences)2022,65,4: | 0 |
| 16 | Tuning the primary selective nanochannels of MOF thin-film nanocomposite nanofiltration membranes for efficient removal of hydrophobic endocrine disrupting compounds显示文摘Metal organic framework(MOF)incorporated thin-film nanocomposite(TFN)membranes have the potential to enhance the removal of endocrine disrupting compounds(EDCs).In MOF-TFN membranes,water transport nanochannels include(i)pores of polyamide layer,(ii)pores in MOFs and(iii)channels around MOFs(polyamide-MOF interface).However,information on how to tune the nanochannels to enhance EDCs rejection is scarce,impeding the refinement of TFN membranes toward efficient removal of EDCs.In this study,by changing the polyamide properties,the water transport nanochannels could be confined primarily in pores of MOFs when the polyamide layer became dense.Interestingly,the improved rejection of EDCs was dependent on the water transport channels of the TFN membrane.At low monomer concentration(i.e.,loose polyamide structure),the hydrophilic nanochannels of MIL-101(Cr)in the polyamide layer could not dominate the membrane separation performance,and hence the extent of improvement in EDCs rejection was relatively low.In contrast,at high monomer concentration(i.e.,dense polyamide structure),the hydrophilic nanochannels of MIL-101(Cr)were responsible for the selective removal of hydrophobic EDCs,demonstrating that the manipulation of water transport nanochannels in the TFN membrane could successfully overcome the permeability and EDCs rejection trade-off.Our results highlight the potential of tuning primary selective nanochannels of MOF-TFN membranes for the efficient removal of EDCs. | Ruobin Dai Hongyi Han Yuting Zhu Xi Wang Zhiwei Wang | 2022 | Frontiers of Environmental Science & Engineering2022,16,4: | 0 |
| 17 | Peroxidase-like single Fe atoms anchored on Ti_(3)C_(2)T_(x)MXene as surface enhanced Raman scattering substrate for the simultaneous discrimination of multiple antioxidants显示文摘Single-atom nanozymes(SAzymes)are emerging as promising alternatives to mimic natural enzyme,which is due to high atomic utilization efficiency,well-defined geometric,and unique electronic structure.Herein,Fe single atoms supported on Ti_(3)C_(2)T_(x)(Fe-SA/Ti_(3)C_(2)T_(x))with intrinsic peroxidase activity is developed,further constructing a sensitive Raman sensor array for sensing of five antioxidants.Fe-SA/Ti_(3)C_(2)T_(x)shows excellent peroxidase-like performance in catalyzing the oxidation of 3,3',5,5'-tetramethylbenzidine(TMB)with colorimetric reactions.X-ray adsorption fine structure(XAFS)reveals that the electron transport between the Ti_(3)C_(2)T_(x)and Fe atoms occurs along Fe-O-Ti ligands,meanwhile the density functional theory(DFT)calculations confirm the spontaneous dissociation of H_(2)O_(2)and the formation of OH radicals.Furthermore,the peroxidase-like Fe-SA/Ti_(3)C_(2)T_(x)was used as surface enhanced Raman scattering(SERS)substrate of oxidized TMB(TMB+)and achieved satisfied signal amplification performance.Using the blocking effects of free radical reactions,one-off identification of 5 antioxidants,including ascorbic acid(AA),uric acid(UA),glutathione(GSH),melatonin(Mel),and tea polyphenols(TPP),could be realized with this high identifiable catalytic property.This principle could realize 100%distinguish accuracy combined with linear discriminant analysis(LDA)and heat map data analysis.A wide detection concentration ranges from 10^(-8)to 10^(-3)M for five antioxidants was also achieved. | Hongyan Xi Hongfei Gu Yurui Han Tingting You Pengfei Wu Qingqing Liu Lirong Zheng Shuhu Liu Qiang Fu Wenxing Chen Yukun Gao Yuting Wang Penggang Yin | 2023 | Nano Research2023,16,7: | 0 |