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| 1 | A novel mechanism of inhibiting in-stent restenosis with arsenic trioxide drug-eluting stent: Enhancing contractile phenotype of vascular smooth muscle cells via YAP pathway显示文摘Objective:Arsenic trioxide(ATO or As2O3)has beneficial effects on suppressing neointimal hyperplasia and restenosis,but the mechanism is still unclear.The goal of this study is to further understand the mechanism of ATO's inhibitory effect on vascular smooth muscle cells(VSMCs).Methods and results:Through in vitro cell culture and in vivo stent implanting into the carotid arteries of rabbit,a synthetic-to-contractile phenotypic transition was induced and the proliferation of VSMCs was inhibited by ATO.F-actin filaments were clustered and the elasticity modulus was increased within the phenotypic modulation of VSMCs induced by ATO in vitro.Meanwhile,Yes-associated protein(YAP)nuclear translocation was inhibited by ATO both in vivo and in vitro.It was found that ROCK inhibitor or YAP inactivator could partially mask the phenotype modulation of ATO on VSMCs.Conclusions:The interaction of YAP with the ROCK pathway through ATO seems to mediate the contractile phenotype of VSMCs.This provides an indication of the clinical therapeutic mechanism for the beneficial bioactive effect of ATO-drug eluting stent(AES)on in-stent restenosis(ISR). | Yinping Zhao Guangchao Zang Tieying Yin Xiaoyi Ma Lifeng Zhou Lingjuan Wu Richard Daniel Yunbing Wang Juhui Qiu Guixue Wang | 2021 | Bioactive Materials2021,6,2: | 13 |
| 2 | Effects and safety of aspirin use in patients after cerebrovascular bypass procedures显示文摘Object Superficial temporal artery to middle cerebral artery(STA-MCA)bypass is the most effective treatment for Moyamoya disease(MMD).In this study,we aimed to assess whether aspirin improves STA-MCA bypass patency and is safe in patients with MMD.Methods We performed a retrospective medical record review of patients with ischaemic-onset MMD who had undergone STA-MCA bypass at two hospitals between January 2011 and August 2018,to clarify the effects and safety of aspirin following STA-MCA bypass.The neurological status at the last follow-up(FU)was compared between patients with FU bypass patency and occlusion.Results Among 217 identified patients(238 hemispheres),the mean age was 41.4±10.2 years,and 51.8%were male;the indications for STA-MCA bypass were stroke(48.2%),followed by a transient ischaemic attack(44.0%).Immediate bypass patency was confirmed in all cases.During the FU period(1.5±1.5 y),15 cases were occluded at FU imaging,resulting in an overall cumulative patency rate of 94%.The patency rates were 93%and 94%in the short-term FU group(n=131,mean FU time 0.5±0.2 years)and long-term FU group(n=107,mean FU time 4.1±3.5 years),respectively.The STA-MCA bypass patency rate in the aspirin group was higher than that in the non-aspirin group(98.7%vs 89.7%;HR 1.57;95%CI 1.106 to 2.235;p=0.012).No significant difference in the FU haemorrhagic events was observed between the aspirin and non-aspirin groups.Conclusions Among adult patients with ischaemic-onset MMD undergoing STA-MCA bypass procedures,aspirin might increase the bypass patency rate,without increasing the bleeding risk.FU bypass patency may be associated with a better outcome.Additional studies,especially carefully designed prospective studies,are needed to address the role of aspirin after bypass procedures. | Junlin Lu Guangchao Shi Yuanli Zhao Rong Wang Dong Zhang Xiaolin Chen Hao Wang Ji Zong Zhao | 2021 | Stroke & Vascular Neurology2021,6,4: | 7 |
| 3 | Natural and engineered bacterial outer membrane vesicles显示文摘Bacterial outer membrane vesicle(OMV)is a kind of spherical lipid bilayer nanostructure naturally secreted by bacteria,which has diverse functions such as intracellular and extracellular communication,horizontal gene transfei;transfer of contents to host cells,and eliciting an immune response in host cells.In this review,several methods including ultracentrifugation and precipNation for isolating OMVs were summarized.The latest progresses of OMVs in biomedical fields,especially in vaccine development,cancer treatment,infection control,and bioimaging and detection were also summarized in this review.We highlighted the importance of genetic engineering for the safe and effective application and in facilitating the rapid development of OMVs.Finally,we discussed the bottleneck problems about OMVs in preparation and application at present and put forward our own suggestions about them.Some perspectives of OMVs in biomedical field were also provided. | Guangchao Qing Ningqiang Gong Xiaohui Chen Jing Chen Hong Zhang Yongchao Wang Ruifang Wang Shouwen Zhang Zhen Zhang Xianxian Zhao Yang Luo Xing-Jie Liang | 2019 | Biophysics Reports2019,5,4: | 4 |
| 4 | Photocrosslinking silver nanoparticles–aloe vera–silk fibroin composite hydrogel for treatment of full-thickness cutaneous wounds显示文摘Damage to the skin causes physiological and functional issues.The most effective treatment approach is the use of wound dressings.Silk fibroin(SF)is a promising candidate biomaterial for regulating wound healing;however,its antibacterial properties and biological activity must be further improved.In this study,a photocrosslinking hydrogel was developed to treat full-thickness cutaneous wounds.The composite hydrogel(Ag-AV-SF hydrogel)was prepared by introducing the silver nanoparticles(AgNPs)and aloe vera(AV)as the modifiers.In vitro study exhibited great antibacterial ability,biocompatibility and cell-proliferation and-migration-promoting capacities.It also showed the pH-response releasing properties which release more AgNPs in a simulated chronic infection environment.The healing effect evaluation in vivo showed the healing-promoting ability of the Ag-AV-SF hydrogel was stronger than the single-modifiers groups,and the healing rate of it reached 97.02%on Day 21,higher than the commercial wound dressing,silver sulfadiazine(SS)cream on sale.Additionally,the histological and protein expression results showed that the Ag-AV-SF hydrogel has a greater effect on the pro-healing regenerative phenotype with M2 macrophages at the early stage,reconstructing the blood vessels networks and inhibiting the formation of scars.In summary,the Ag-AV-SF hydrogel developed in this study had good physical properties,overwhelming antibacterial properties,satisfactory biocompatibility and significantly promoting effect on cell proliferation,migration and wound healing.Overall,our results suggest that the Ag-AV-SF hydrogel we developed has great potential for improving the wound healing in clinical treatment. | Yangkun Liu JinChuan Fan MingQi Lv Kepeng She Jiale Sun Qingqing Lu Changhao Han SongTao Ding Shuang Zhao GuiXue Wang YuChan Zhang GuangChao Zang | 2021 | Regenerative Biomaterials2021,8,6: | 2 |
| 5 | Cell-derived biomimetic nanoparticles as a novel drug delivery system for atherosclerosis:predecessors and perspectives显示文摘Atherosclerosis is a key mechanism underlying the pathogenesis of cardiovascular disease,which is associated with high morbidity and mortality.In the field of precision medicine for the treatment of atherosclerosis,nanoparticle(NP)-mediated drug delivery systems have great potential,owing to their ability to release treatment locally.Cell-derived biomimetic NPs have attracted extensive attention at present due to their excellent targeting to atherosclerotic inflammatory sites,low immunogenicity and long blood circulation time.Here,we review the utility of cell-derived biomimetic NPs,including whole cells,cell membranes and extracellular vesicles,in the treatment of atherosclerosis. | Long Yang Guangchao Zang Jingwen Li Xinyue Li Yuanzhu Li Yinping Zhao | 2020 | Regenerative Biomaterials2020,7,4: | 2 |
| 6 | Therapeutic effects of a novel tylophorine analog, NK‐007, on collagen‐induced arthritis through suppressing tumor necrosis factor α production and Th17 cell differentiation显示文摘 | Ti Wen Yangguang Li Meng Wu Xiaolin Sun Xiucong Bao Yuquan Lin Jianlei Hao Lin Han Guangchao Cao Ziwen Wang Yuxiu Liu Zhenzhou Wu Zhangyong Hong Puyue Wang Liqing Zhao Zhanguo Li Qingmin Wang Zhinan Yin | 2012 | Arthritis & Rheumatism2012,,9: | 2 |
| 7 | Deregulated expression and subcellular localization of CPSF6,a circRNA-binding protein,promote malignant development of esophageal squamous cell carcinoma显示文摘Objective:Cleavage and polyadenylation specific factor 6(CPSF6)has been documented as an oncoprotein in different types of cancer.However,functions of CPSF6 have not been investigated yet in esophageal squamous cell carcinoma(ESCC).Here,we aimed to investigate the potential clinical values and biological functions of CPSF6 in ESCC.Methods:For determining the expression level of CPSF6 in ESCC patients,we analyzed published data,performed quantitative real-time polymerase chain reaction(RT-qPCR)and immunohistochemistry assays.Kaplan-Meier curves and log-rank tests were used for survival analyses.GO and KEGG analyses were done for CPSF6-related genes.Cell proliferation,colony formation and xenograft assays were conducted to verify the effects of CPSF6 on ESCC.In addition,cell cycle and apoptosis assays were also performed to manifest the functions of CPSF6 and circCPSF6.RNA pulldown and radioimmunoprecipitation(RIP)assays were used for confirming the interaction between circCPSF6(hsa_circ_0000417)and CPSF6 protein.The regulatory relationship between CPSF6 protein and circCPSF6 was determined by RT-qPCR.Results:We found that CPSF6 was upregulated in ESCC tissues and overexpression of cytoplasmic CPSF6 was associated with poor prognosis.GO and KEGG analyses suggested that CPSF6 could mainly affect cell division in ESCC.Further experiments manifested that CPSF6 promoted cell proliferation and colony formation in vitro.Xenograft assay showed that knockdown of CPSF6 significantly decreased tumor growth rate in vivo.Subsequently,we verified that depletion of CPSF6 led to cell cycle arrest and apoptosis.Finally,we validated that CPSF6,as a circRNA-binding protein,interacted with and regulated its circular isoform circCPSF6(hsa_circ_0000417),of which depletion also resulted in cell cycle arrest and cell apoptosis in ESCC.Conclusions:These findings gave us insight that overexpression of cytoplasmic CPSF6 protein is associated with poor prognosis in ESCC and CPSF6 may function as an oncoprotein,at least in part,through regulating circCPSF6 expression. | Shichao Guo Guangchao Wang Zitong Zhao Dan Li Yongmei Song Qimin Zhan | 2022 | Chinese Journal of Cancer Research2022,34,1: | 1 |
| 8 | trans-2-Enoyl-CoA Reductase Tecr-Driven Lipid Metabolism in Endothelial Cells Protects against Transcytosis to Maintain Blood-Brain Barrier Homeostasis显示文摘The transport and metabolism of lipids in cerebrovascular endothelial cells(ECs)have been hypothesized to regulate blood-brain barrier(BBB)maturation and homeostasis.Long-chain polyunsaturated fatty acids(LCPUFAs)as the important lipids components of cell membranes are essential for the development and function of BBB,but the direct links of lipid metabolism and ECs barrier function remain to be established.Here,we comprehensively characterize the transcriptomic phenotype of developmental cerebrovascular ECs in single-cell resolution and firstly find that trans-2-enoyl-CoA reductase(Tecr),a verylong-chain fatty acid synthesis,is highly expressed during barriergenesis and decreased after BBB maturation.EC-specific knockout of Tecr compromises angiogenesis due to delayed vascular sprouting.Importantly,EC-specific deletion of Tecr loss restrictive quality of vascular permeability from neonatal stages to adulthood,with high levels of transcytosis,but maintains the vascular tight junctions.Moreover,lipidomic analysis shows that the expression of Tecr in ECs is associated with the containing of omega-3 fatty acids,which directly suppresses caveolae vesicles formation.These results reveal a protective role for Tecr in BBB integrity and suggest that Tecr as a novel therapeutic target in the central nervous system(CNS)diseases associated with BBB dysfunction. | Jinxuan Wang Jianxiong Xu Guangchao Zang Tao Zhang Qi Wu Hongping Zhang Yidan Chen Yi Wang Weixi Qin Shuang Zhao Erdai Qin Juhui Qiu Xiaojuan Zhang Lin Wen Yeqi Wang Guixue Wang | 2022 | Research2022,,3: | 1 |
| 9 | Myoglobin on multi-walled carbon nanotubes modified electrode:direct electrochemistry and electrocatalysis 显示文摘 | Guangchao Zhao Li Zhang Xianwen Wei | 2003 | Electrochemistry Communications2003,5,: | 1 |
| 10 | Electrocatalytic oxidation of nitric oxide at multi-walled carbon nanotubes modified electrode显示文摘 | WU Fanghui ZHAO Guangchao WEI Xianwen | 2002 | Electrochemistry Communications2002,4,: | 1 |
| 11 | Electrocatalysis of tryptophan at multi-walled carbon nanotube modified electrode 显示文摘 | Wu Fanghui Zhao Guangchao Wei Xianwen | 2004 | Microchim Acta2004,144,4: | 1 |
| 12 | Gra- phene-based modified electrode for the direct electro transfer of cytochrome c and biosensing 显示文摘 | Wu Jianfeng Xu Miaoqing Zhao Guangchao | 2010 | Electro- chemCommun2010,12,1: | 1 |
| 13 | Electrocatalytic oxidation of nitric oxide at multi-walled carbon nanotubes modified electrode显示文摘 | WU Fanghui ZHAO Guangchao WEI Xianwen | 2002 | Electrochem Commun2002,4,: | 1 |
| 14 | Corrigendum to“A novel mechanism of inhibiting in-stent restenosis with arsenic trioxide drug-eluting stent:Enhancing contractile phenotype of vascular smooth muscle cells via YAP pathway”[Bioact.Mater.62(February 2021)375-385]显示文摘The authors regret the publication of incorrect fund numbers in the acknowledgment section of the article.The number“cstc2019jcyj-zdxm0033”has been updated as“cstc2019jcyj-zdxmX0028”.The corrected acknowledgment section is as follows:This study was supported in part by grants from the National Natural Science Foundation,China(31971242,31701275),the Natural Science Foundation of Chongqing,China(cstc2020jcjy-msxmX0189),the Chongqing Research Program of Basic Research and Frontier Technology,China(cstc2019jcjy-dxmX0028),Open Fund for Key Laboratory of Biorheological Science and Technology,Ministry of Education,China(CQKLBST-2019-010),Innovation Talent Project of 2020 for Chongqing Primary and secondary School,China(CY200405)and the National Key R&D Program,China(2016YFC1102305).The support from the Chongqing Engineering Laboratory in Vascular Implants,China,the Public Experiment Centre of State Bioindustrial Base(Chongqing)and the National“111 Plan”,China(B06023)are gratefully acknowledged. | Yinping Zhao Guangchao Zang Tieying Yin Xiaoyi Ma Lifeng Zhou Lingjuan Wu Richard Daniel Yunbing Wang Juhui Qiu Guixue Wang | 2022 | Bioactive Materials2022,7,2: | 1 |
| 15 | Voltammetric studies of the interaction of methylene blue with DNA by means of β-cyclodextrin显示文摘 | ZHAO Guangchao ZHU Junjie ZHANG Jingjie | 1999 | Anal Chim Acta1999,394,: | 1 |
| 16 | Graphene-based modified electrode for the direct electron transfer ofCytochrome c and biosensing 显示文摘 | WU Jianfeng XU Miaoqing ZHAO Guangchao | 2010 | Electrochemistry Com-munications2010,12,1: | 1 |
| 17 | An effective indoor radio map construction scheme based on crowdsourced samples显示文摘The crowdsourcing-based WLAN indoor localization system has been widely promoted for the effective reduction of the workload from the offline phase data collection while constructing radio maps.Aiming at the problem of the inaccurate location annotation of the crowdsourced samples,the existing invalid access points(APs)in collected samples,and the uneven sample distribution,as well as the diverse terminal devices,which will result in the construction of the wrong radio map,an effective WLAN indoor radio map construction scheme(WRMCS)is proposed based on crowdsourced samples.The WRMCS consists of 4 main modules:outlier detection,key AP selection,fingerprint interpolation,and terminal device calibration.Moreover,an online localization algorithm is put forward to estimate the position of the online test fingerprint.The simulation results show that the proposed scheme can achieve higher localization accuracy than the peer schemes,and possesses good effectiveness and robustness at the same time. | 郭若琳 Qin Danyang Zhao Min Xu Guangchao | 2020 | High Technology Letters2020,26,4: | 0 |
| 18 | Sound speed profiles in high spatiotemporal resolution using multigrid three-dimensional variational method:a coastal experiment off northern Shandong Peninsula显示文摘It is essential to ac quire sound speed profiles(SSPs)in high-precision spatiotemporal resolution for undersea acoustic activities.However,conventional observation methods cannot obtain high-resolution SSPs.Besides,S SPs are complex and changeable in time and space,especially in coastal areas.We proposed a new space-time multigrid three-dimensional variational method with weak constraint term(referred to as STC-MG3DVar)to construct high-precision spatiotemporal resolution SSPs in coastal areas,in which sound velocity is defined as the analytical variable,and the Chen-Millero sound velocity empirical formula is introduced as a weak constraint term into the cost function of the STC-MG3DVar.The spatiotemporal correlation of sound velocity observations is taken into account in the STC-MG3DVar method,and the multi-scale information of sound velocity observations from long waves to short waves can be successively extracted.The weak constraint term can optimize sound velocity by the physical relationship between sound velocity and temperature-salinity to obtain more reasonable and accurate SSPs.To verify the accuracy of the STC-MG3DVar,SSPs observations and CTD observations(temperature observations,salinity observations)are obtained from field experiments in the northern coastal area of the Shandong Peninsula.The average root mean square error(RMSE)of the STC-MG3DVar-constructed SSPs is 0.132 m/s,and the STC-MG3DVar method can improve the SSPs construction accuracy over the space-time multigrid 3DVar without weak constraint term(ST-MG3DVar)by 10.14%and over the spatial multigrid 3DVar with weak constraint term(SC-MG3DVar)by 44.19%.With the advantage of the constraint term and the spatiotemporal correlation information,the proposed STC-MG3DVar method works better than the ST-MG3DVar and the SCMG3DVar in constructing high-precision spatiotemporal re solution SSPs. | Guangchao HOU Jingsheng ZHAI Qi SHAO Yanling ZHAO Wei LI Guijun HAN Kangzhuang LIANG | 2023 | Journal of Oceanology and Limnology2023,41,1: | 0 |
| 19 | Potential industrial applications of photo/electrocatalysis: Recent progress and future challenges显示文摘Nowadays,the rapid development of the social economy inevitably leads to global energy and environmental crisis.For this reason,more and more scholars focus on the development of photocatalysis and/or electrocatalysis technology for the advantage in the sustainable production of high-value-added products,and the high efficiency in pollutants remediation.Although there is plenty of outstanding research has been put forward continuously,most of them focuses on catalysis performance and reaction mechanisms in laboratory conditions.Realizing industrial application of photo/electrocatalytic processes is still a challenge that needs to be overcome by social demand.In this regard,this review comprehensively summarized several explorations in thefield of photo/electrocatalytic reduction towards potential industrial applications in recent years.Special attention is paid to the successful attempts and the current status of photo/electrocatalytic water splitting,carbon dioxide conversion,resource utilization from waste,etc.,by using advanced reactors.The key problems and challenges of photo/electrocatalysis in future industrial practice are also discussed,and the possible development directions are also pointed out from the industry view. | Jinhao Li Jing Ren Shaoquan Li Guangchao Li Molly Meng-Jung Li Rengui Li Young Soo Kang Xiaoxin Zou Yong Luo Bin Liu Yufei Zhao | 2024 | Green Energy & Environment2024,9,5: | 0 |
| 20 | De novo design of highly efficient type-Ⅰphotosensitizer based onπ-conjugated oligomer for photodynamic eradication of multidrug-resistant bacterial infections显示文摘Traditional photosensitizers show limited singlet oxygen generation in hypoxic infection lesions,which greatly suppress their performance in antibacterial therapy.Meanwhile,there still is lack of feasible design strategy for developing hypoxia-overcoming photosensitizers agents.Herein,radical generation ofπ-conjugated small molecules is efficiently manipulated by an individual selenium(Se)substituent.With this strategy,the first proof-of-concept study of a Se-anchored oligo(thienyl ethynylene)(OT-Se)with high-performance superoxide radical(O_(2)^(·-))and hydroxyl radical(·OH)generation capability is present,and achieves efficient antibacterial activities towards the clinically extracted multidrug-resistant bacteria methicillin-resistant S.aureus(MRSA)and carbapenem-resistant E.coli(CREC)at sub-micromolar concentration under a low white light irradiation(30 mW/cm^(2)).The water-dispersible OT-Se shows a good bacteria-anchoring capability,biocompatibility,and complete elimination of multidrug-resistant bacteria wound infection in vivo.This work offers a strategy to boost type-I photodynamic therapy(PDT)performance for efficient antibacterial treatments,advancing the development of antibacterial agents. | Qi Zhao Guangchao Qing Jie Yu Ying Liu Jianliang Shen Yang Luo Xingjie Zan Shengliang Li | 2024 | Chinese Chemical Letters2024,35,3: | 0 |