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13篇 您的检索式:作者名="Yujia Cui"
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1Metal-Organic Framework Nanocarriers for Drug Delivery in Biomedical Applications显示文摘Investigation of metal–organic frameworks(MOFs)for biomedical applications has attracted much attention in recent years.MOFs are regarded as a promising class of nanocarriers for drug delivery owing to well-defined structure,ultrahigh surface area and porosity,tunable pore size,and easy chemical functionalization.In this review,the unique properties of MOFs and their advantages as nanocarriers for drug delivery in biomedical applications were discussed in the first section.Then,state-ofthe-art strategies to functionalize MOFs with therapeutic agents were summarized,including surface adsorption,pore encapsulation,covalent binding,and functional molecules as building blocks.In the third section,the most recent biological applications of MOFs for intracellular delivery of drugs,proteins,and nucleic acids,especially aptamers,were presented.Finally,challenges and prospects were comprehensively discussed to provide context for future development of MOFs as efficient drug delivery systems.Yujia Sun Liwei Zheng Yu Yang Xu Qian Ting Fu Xiaowei Li Zunyi Yang He Yan Cheng Cui Weihong Tan 2020Nano-Micro Letters2020,12,8:10
2A new effect of IL-4 on human γδ T cells: promoting regulatory Vδ1 T cells via IL-10 production and inhibiting function of Vδ2 T cells显示文摘Yujia Mao Shanshan Yin Jianmin Zhang Yu Hu Bo Huang Lianxian Cui Ning Kang Wei He 2016Cellular & Molecular Immunology2016,13,2:8
3Gap junction-mediated cell-to-cell communication in oral development and oral diseases: a concise review of research progress显示文摘Homoeostasis depends on the close connection and intimate molecular exchange between extracellular, intracellular and intercellular networks. Intercellular communication is largely mediated by gap junctions(GJs), a type of specialized membrane contact composed of variable number of channels that enable direct communication between cells by allowing small molecules to pass directly into the cytoplasm of neighbouring cells. Although considerable evidence indicates that gap junctions contribute to the functions of many organs, such as the bone, intestine, kidney, heart, brain and nerve, less is known about their role in oral development and disease. In this review, the current progress in understanding the background of connexins and the functions of gap junctions in oral development and diseases is discussed. The homoeostasis of tooth and periodontal tissues, normal tooth and maxillofacial development, saliva secretion and the integrity of the oral mucosa depend on the proper function of gap junctions.Knowledge of this pattern of cell–cell communication is required for a better understanding of oral diseases. With the everincreasing understanding of connexins in oral diseases, therapeutic strategies could be developed to target these membrane channels in various oral diseases and maxillofacial dysplasia.Wenjing Liu Yujia Cui Jieya Wei Jianxun Sun Liwei Zheng Jing Xie 2020International Journal of Oral Science2020,12,2:7
4Lipid metabolism in cartilage and its diseases:a concise review of the research progress显示文摘The homeostasis of the vertebrate body depends on anabolic and catabolic activities that are closely linked the inside and outside of the cell.Lipid metabolism plays an essential role in these metabolic activities.Although a large amount of evidence shows that normal lipid metabolism guarantees the conventional physiological activities of organs in the vertebrate body and that abnormal lipid metabolism plays an important role in the occurrence and deterioration of cardiovascular-related diseases,such as obesity,atherosclerosis,and type II diabetes,little is known about the role of lipid metabolism in cartilage and its diseases.This review aims to summarize the latest advances about the function of lipid metabolism in cartilage and its diseases including osteoarthritis,rheumatoid arthritis,and cartilage tumors.With the gradual in-depth understanding of lipid metabolism in cartilage,treatment methods could be explored to focus on this metabolic process in various cartilage diseases.Yueyi Yang Jieya Wei Jiachi Li Yujia Cui Xuedong Zhou Jing Xie 2021Acta Biochimica et Biophysica Sinica2021,53,5:7
5Berberine mediates root remodeling in an immature tooth with apical periodontitis by regulating stem cells from apical papilla differentiation显示文摘Once pulp necrosis or apical periodontitis occurs on immature teeth,the weak root and open root apex are challenging to clinicians.Berberine(BBR)is a potential medicine for bone disorders,therefore,we proposed to apply BBR in root canals to enhance root repair in immature teeth.An in vivo model of immature teeth with apical periodontitis was established in rats,and root canals were filled with BBR,calcium hydroxide or sterilized saline for 3 weeks.The shape of the roots was analyzed by micro-computed tomography and histological staining.In vitro,BBR was introduced into stem cells from apical papilla(SCAPs).Osteogenic differentiation of stem cells from apical papilla was investigated by alkaline phosphatase activity,mineralization ability,and gene expression of osteogenic makers.The signaling pathway,which regulated the osteogenesis of SCAPs was evaluated by quantitative real time PCR,Western blot analysis,and immunofluorescence.In rats treated with BBR,more tissue was formed,with longer roots,thicker root walls,and smaller apex diameters.In addition,we found that BBR promoted SCAPs osteogenesis in a time-dependent and concentration-dependent manner.BBR induced the expression ofβ-catenin and enhancedβ-catenin entering into the nucleus,to up-regulate more runt-related nuclear factor 2 downstream.BBR enhanced root repair in immature teeth with apical periodontitis by activating the canonical Wnt/β-catenin pathway in SCAPs.Yujia Cui Jing Xie Yujie Fu Chuwen Li Liwei Zheng Dingming Huang Changchun Zhou Jianxun Sun Xuedong Zhou 2020International Journal of Oral Science2020,12,2:5
6Spatiotemporal evolution of prehistoric Neolithic-Bronze Age settlements and influencing factors in the Guanting Basin, northeast Tibetan Plateau显示文摘For almost two decades, the relationship between prehistoric natural disasters that struck the Guanting Basin in northeast Tibetan Plateau and the destruction of Lajia, an archeological site, has attracted scholarly attention and been widely discussed. Whereas most studies have focused on the impacts of disasters on a single site within the Guanting Basin, few have examined patterns of spatiotemporal evolution of human settlements from the Neolithic to the Bronze Age. Consequently, there is a lack of clarity on the processes and mechanisms underlying the evolution of prehistoric human-land relationships in the Guanting Basin. We therefore examined spatiotemporal variations in settlements in the Guanting Basin during the period, based on the locations, altitudes, and areas of archaeological sites. We found that four sites were located on the third terrace of the Yellow River during the late Yangshao period(5500–5000 cal yr BP) and distributed within a small area. During the period between the Majiayao and Qijia cultures(5300–3600 cal yr BP), the number of sites evidently increased and the scale and distribution of settlements expanded, with settlements generally shifting toward the lower elevation areas of the Guanting Basin.During the Xindian period(3400–2700 cal yr BP), the number and scale of sites showed a downward trend and the distribution of settlements contracted. The Xindian settlement underwent altitude-based spatial differentiation, with some groups moving to areas at higher altitudes and others remained in lower altitude areas. Moreover, we found that the number, scale, and distribution range of Neolithic and Bronze Age sites in the Guanting Basin were closely related to the evolution and distribution patterns of prehistoric cultures in the regions of Gansu and Qinghai, which were further affected by climate change and agricultural development. Furthermore, there is no evidence that the altitudinal distribution pattern of Neolithic and Bronze Age settlements in the Guanting Basin was influenced by paleofloods rather it was primarily influenced by changes in subsistence strategies.CUI YiFu LIU YuJia MA MinMin 2018Science China Earth Sciences2018,61,2:5
7Transforming growth factor-β1-induced N-cadherin drives cell–cell communication through connexin43 in osteoblast lineage显示文摘Gap junction(GJ)has been indicated to have an intimate correlation with adhesion junction.However,the direct interaction between them partially remains elusive.In the current study,we aimed to elucidate the role of N-cadherin,one of the core components in adhesion junction,in mediating connexin 43,one of the functional constituents in gap junction,via transforming growth factor-β1(TGF-β1)induction in osteoblasts.We first elucidated the expressions of N-cadherin induced by TGF-β1 and also confirmed the upregulation of Cx43,and the enhancement of functional gap junctional intercellular communication(GJIC)triggered by TGF-β1 in both primary osteoblasts and MC3T3 cell line.Colocalization analysis and Co-IP experimentation showed that N-cadherin interacts with Cx43 at the site of cell–cell contact.Knockdown of N-cadherin by siRNA interference decreased the Cx43 expression and abolished the promoting effect of TGF-β1 on Cx43.Functional GJICs in living primary osteoblasts and MC3T3 cell line were also reduced.TGF-β1-induced increase in N-cadherin and Cx43 was via Smad3 activation,whereas knockdown of Smad3 signaling by using siRNA decreased the expressions of both N-cadherin and Cx43.Overall,these data indicate the direct interactions between N-cadherin and Cx43,and reveal the intervention of adhesion junction in functional gap junction in living osteoblasts.Yueyi Yang Wenjing Liu JieYa Wei Yujia Cui Demao Zhang Jing Xie 2021International Journal of Oral Science2021,13,2:4
8Runxl protects against the pathological progression of osteoarthritis显示文摘Runt-related transcription factor-1(Runxl)is required for chondrocyte-to-osteoblast lineage commitment by enhancing both chondrogenesis and osteogenesis during vertebrate development.However,the potential role of Runxl in joint diseases is not well known.In the current study,we aimed to explore the role of Runxl in osteoarthritis induced by anterior cruciate ligament transaction(ACLT)surgery.We showed that chondrocyte-specific Runxl knockout(Runx1f/fCol2a1-Cre)aggravated cartilage destruction by accelerating the loss of proteoglycan and collagen II in early osteoarthritis.Moreover,we observed thinning and ossification of the growth plate,a decrease in chondrocyte proliferative capacity and the loss of bone matrix around the growth plate in late osteoarthritis.We overexpressed Runxl by adeno-associated virus(AAV)in articular cartilage and identified its protective effect by slowing the destruction of osteoarthritis in cartilage in early osteoarthritis and alleviating the pathological progression of growth plate cartilage in late osteoarthritis.ChIP-seq analysis identified new targets that interacted with Runxl in cartilage pathology,and we confirmed the direct interactions of these factors with Runxl by ChIP-qPCR.This study helps us to understand the function of Runxl in osteoarthritis and provides new clues for targeted osteoarthritis therapy.Chenchen Zhou Yujia Cui Yueyi Yang Daimo Guo Demao Zhang Yi Fan Xiaobing Li Jing Zou Jing Xie 2021Bone Research2021,9,4:4
9Characteristics of oral methicillin-resistant Staphylococcus epidermidis isolated from dental plaque显示文摘The oral microbial community is widely regarded as a latent reservoir of antibiotic resistance genes. This study assessed the molecular epidemiology, susceptibility profile, and resistance mechanisms of 35 methicillin-resistant Staphylococcus epidermidis(MRSE) strains isolated from the dental plaque of a healthy human population. Broth microdilution minimum inhibitory concentrations(MICs) revealed that all the isolates were nonsusceptible to oxacillin and penicillin G. Most of them were also resistant to trimethoprim(65.7%) and erythromycin(54.3%). The resistance to multiple antibiotics was found to be largely due to the acquisition of plasmid-borne genes. The mec A and dfr A genes were found in all the isolates, mostly dfr G(80%), aac A-aph D(20%), aad D(28.6%), aph A3(22.9%), msr A(5.7%), and the erm C gene(14.3%). Classical mutational mechanisms found in these isolates were mainly efflux pumps such as qac A(31.4%), qac C(25.7%), tet K(17.1%), and nor A(8.6%). Multilocus sequence type analysis revealed that sequence type 59(ST59) strains comprised 71.43% of the typed isolates, and the e BURST algorithm clustered STs into the clonal complex 2-II(CC2-II). The staphyloccoccal cassette chromosome mec(SCCmec) type results showed that 25(71.43%) were assigned to type IV. Moreover, 88.66% of the isolates were found to harbor six or more biofilm-associated genes. The aap, atl E, embp, sdr F, and IS256 genes were detected in all 35 isolates. This research demonstrates that biofilm-positive multipleantibiotic-resistant ST59-SCCmec IV S. epidermidis strains exist in the dental plaque of healthy people and may be a potential risk for the transmission of antibiotic resistance.Boyu Tang Tao Gong Yujia Cui Lingyun Wang Chao He Miao Lu Jiamin Chen Meiling Jing Anqi Zhang Yuqing Li 2020International Journal of Oral Science2020,12,2:2
10Thiol–ene-based biological/synthetic hybrid biomatrix for 3-D living cell culture显示文摘Kedi Xu Yao Fu WeiJu Chung Xiaoxiang Zheng Yujia Cui Ian C. Hsu Weiyuan John Kao 2012Acta Biomaterialia2012,,7:1
11Recent progress and future perspectives of flexible metal‐air batteries显示文摘With the rapid development of wearable and intelligent flexible electronic devices(FEDs),the demand for flexible energy storage/conversion devices(ESCDs)has also increased.Rechargeable flexible metal‐air batteries(MABs)are expected to be one of the most ideal ESCDs due to their high theoretical energy density,cost advantage,and strong deformation adaptability.With the improvement of the device design,material assemblies,and manufacturing technology,the research on the electrochemical performance of flexible MABs has made significant progress.However,achieving the high mechanical flexibility,high safety,and wearable comfortability required by FEDs while maintaining the high performance of flexible MABs are still a daunting challenge.In this review,flexible Zn‐air and Li‐air batteries are mainly exemplified to describe the most recent progress and challenges of flexible MABs.We start with an overview of the structure and configuration of the flexible MABs and discuss their impact on battery performance and function.Then it focuses on the research progress of flexible metal anodes,gel polymer electrolytes,and air cathodes.Finally,the main challenges and future research perspectives involving flexible MABs for FEDs are proposed.Tingzhen Li Xinwen Peng Peng Cui Ge Shi Wu Yang Zehong Chen Yongfa Huang Yongkang Chen Jinyuan Peng Ren Zou Xiaoyan Zeng Jian Yu Jianyun Gan Zhiyuan Mu Yuling Chen Jiaming Zeng Juan Liu Yunyi Yang Yujia Wei Jun Lu 2021SmartMat2021,2,4:1
12Lipid-oligonucleotide conjugates for bioapplications显示文摘Lipid-oligonucleotide conjugates(LO N s)are powerful molecular-engineering materials for various applications ranging from biosensors to biomedicine.Their unique amphiphilic structures enable the self-assembly and the conveyance of information with high fidelity.In particular,LONs present remarkable potential in measuring cellular mechanical forces and monitoring cell behaviors.LONs are also essential sensing tools for intracellular imaging and have been employed in developing cell-surface-anchored DNA nanostructures for biomimetic-engineering studies.W hen incorporating therapeutic oligonucleotides or small-molecule drugs,LONs hold promise for targeted therapy.Moreover,LONs mediate the controllable assembly and fusion of vesicles based on DNA-strand displacements,contributing to nanoreactor construction and macromolecule delivery.In this review,we will summarize the general synthesis strategies of LONs,provide some characterization analysis and emphasize recent advances in bioanalytical and biomedical applications.We will also consider the relevant challenges and suggest future directions for building better functional LONs in nanotechnology and materials-science applications.Xiaowei Li Kejun Feng Long Li Lu Yang Xiaoshu Pan Hoda Safari Yazd Cheng Cui Juan Li Leonid Moroz Yujia Sun Bang Wang Xiang Li Tong Huang Weihong Tan 2020National Science Review2020,7,12:1
13One-step crosslinking preparation of tannic acid particles for the adsorption and separation of cationic dyes显示文摘In this study,a new tannic acid adsorbent(ethylene glycol diglycidyl ether crosslinked tannic acid,TAEGDE)for adsorptive removal of dyes from water was prepared using EGDE as a cross-linking agent.The resultant TA-EGDE was in particulate form with rough surface morphology and a diameter ranging from 10 to 30μm.The adsorption performance of the TA-EGDE was evaluated in a flow-through mode using water samples contaminated with methylene blue(MB)and two-component mixed dyes,respectively.The TA-EGDE provided adsorption capacity up to 721.8 mg·g^(-1)at 65°C for MB.It showed a high removal efficiency(99%)of MB(50 mg·L^(-1))from the water sample and could recovery 90%of the adsorbed MB by eluting with acidic ethanol aqueous solution.The excellent adsorption of MB and neutral red on the TA-EGDE may be the result of the synergy of electrostatic interaction andπ-πinteraction.Furthermore,the TA-EGDE could separate dyes from water samples contaminated with twocomponent mixed dyes with a separation coefficient ranging from 1.8 to 36.5.The anionic TA-EGDE would be an effective adsorbent to remove and recycle dyes from the contaminated water.Yujia Cui Zhiqiang Tan Yanan Wang Shuxian Shi Xiaonong Chen 2023Chinese Journal of Chemical Engineering2023,57,5:0
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