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| 1 | TPGS/hyaluronic acid dual-functionalized PLGA nanoparticles delivered through dissolving microneedles for markedly improved chemo-photothermal combined therapy of superficial tumor显示文摘Nanoparticles(NPs)have shown potential in cancer therapy,while a single administration conferring a satisfactory outcome is still unavailable.To address this issue,the dissolving microneedles(DMNs)were developed to locally deliver functionalized NPs with combined chemotherapy and photothermal therapy(PTT).α-Tocopheryl polyethylene glycol succinate(TPGS)/hyaluronic acid(HA)dualfunctionalized PLGA NPs(HD10 NPs)were fabricated to co-load paclitaxel and indocyanine green.HD10 NPs significantly enhanced the cytotoxicity of low-dose paclitaxel because of active and mitochondrial targeting by HA and TPGS,respectively.PTT could further sensitize tumor cells toward chemotherapy by promoting apoptosis into the advanced period,highly activating caspase 3 enzyme,and significantly reducing the expression of survivin and MMP-9 proteins.Further,the anti-tumor effects of HD10 NPs delivered through different administration routes were conducted on the 4 T1 tumorbearing mice.After a single administration,HD10 NPs delivered with DMNs showed the best antitumor effect when giving chemotherapy alone.As expected,the anti-tumor effect was profoundly enhanced after combined therapy,and complete tumor ablation was achieved in the mice treated with DMNs and intra-tumor injection.Moreover,DMNs showed better safety due to moderate hyperthermia.Therefore,the DMNs along with combined chemo-photothermal therapy provide a viable treatment option for superficial tumors. | Tingting Peng Yao Huang Xiaoqian Feng Chune Zhu Shi Yin Xinyi Wang Xuequn Bai Xin Pan Chuanbin Wu | 2021 | Acta Pharmaceutica Sinica B2021,11,10: | 4 |
| 2 | Biocompatibility of nano-hydroxyapatite/Mg-Zn-Ca alloy composite scaffolds to human umbilical cord mesenchymal stem cells from Wharton's jelly in vitro显示文摘Seeding cells and scaffolds play pivotal roles in bone tissue engineering and regenerative medicine.Wharton’s jelly-derived mesenchymal stem cells(WJCs)from human umbilical cord represent attractive and promising seeding cells in tissue regeneration and engineering for treatment applications.This study was carried out to explore the biocompatibility of scaffolds to seeding cells in vitro.Rod-like nano-hydroxyapatite(RN-HA)and flake-like micro-hydroxyapatite(FM-HA)coatings were prepared on Mg-Zn-Ca alloy substrates using micro-arc oxidation and electrochemical deposition.WJCs were utilized to investigate the cellular biocompatibility of Mg-Zn-Ca alloys after different surface modifications by observing the cell adhesion,morphology,proliferation,and osteoblastic differentiation.The in vitro results indicated that the RN-HA coating group was more suitable for cell proliferation and cell osteoblastic differentiation than the FM-HA group,demonstrating better biocompatibility.Our results suggested that the RN-HA coating on Mg-Zn-Ca alloy substrates might be of great potential in bone tissue engineering. | GUAN FangXia MA ShanShan SHI XinYi MA Xun CHI LianKai LIANG Shuo CUI YuanBo WANG ZhiBin YAO Ning GUAN ShaoKang YANG Bo | 2014 | Science China(Life Sciences)2014,57,2: | 4 |
| 3 | Surface Oxygen Injection in Tin Disulfide Nanosheets for Efficient CO_(2) Electroreduction to Formate and Syngas显示文摘Surface chemistry modification represents a promising strategy to tailor the adsorption and activation of reaction intermediates for enhancing activity.Herein,we designed a surface oxygen-injection strategy to tune the electronic structure of SnS_(2) nanosheets,which showed effectively enhanced electrocatalytic activity and selectivity of CO_(2) reduction to formate and syngas(CO and H_(2)).The oxygen-injection SnS_(2) nanosheets exhibit a remarkable Faradaic efficiency of 91.6%for carbonaceous products with a current density of 24.1 mA cm^(−2) at−0.9 V vs RHE,including 83.2%for formate production and 16.5%for syngas with the CO/H_(2) ratio of 1:1.By operando X-ray absorption spectroscopy,we unravel the in situ surface oxygen doping into the matrix during reaction,thereby optimizing the Sn local electronic states.Operando synchrotron radiation infrared spectroscopy along with theoretical calculations further reveals that the surface oxygen doping facilitated the CO_(2) activation and enhanced the affinity for HCOO*species.This result demonstrates the potential strategy of surface oxygen injection for the rational design of advanced catalysts for CO_(2) electroreduction. | Tao Chen Tong Liu Tao Ding Beibei Pang Lan Wang Xiaokang Liu Xinyi Shen Sicong Wang Dan Wu Dong Liu Linlin Cao Qiquan Luo Wei Zhang Wenkun Zhu Tao Yao | 2021 | Nano-Micro Letters2021,13,11: | 3 |
| 4 | Nascent Proteome and Glycoproteome Reveal the Inhibition Role of ALG1 in Hepatocellular Carcinoma Cell Migration显示文摘Asparagine-linked glycosylation protein 1 homolog(ALG1)participates in the initial stage of protein N-glycosylation and N-glycosylation has been implicated in the process of hepatocellular carcinoma(HCC)progression.However,whether ALG1 plays a role in human HCC remains unknown.In this study,the expression profile of ALG1 in tumorous and corresponding adjacent non-tumor tissues was analyzed.The relationship of ALG1 expression with clinical features and prognosis of HCC patients was also evaluated using immuno-histochemical method.Here we found ALG1 decreased in HCC tissues compared with adjacent normal liver tissues,which predicted an unfavorable prognosis.Combined with RNA interference,nascent proteome and glycoproteome were determined systematically in Huh7 cell line.Bioinformatics analysis indicated that the differentially expressed proteins participating in the response of ALG1 knockdown were most significantly associated with cell-cell adhesion.Functional studies confirmed that knockdown of ALG1 reduced cell adhesion capacity,and promoted cell migration.Furthermore,down-regulation of H8N2(on N-glycosite N651)and H5N4S2F1(on N-glycosite N692)from N-cadherin was identified as a feature of ALG1 knockdown.Our findings revealed that ALG1 controlled the expression of glycosylated N-cadherin and played a role in HCC migration,with implications for prognosis. | Xinyi Cao Yuyin Shao Peiyi Meng Zhao Cao Guoquan Yan Jun Yao Xinwen Zhou Chao Liu Lei Zhang Hong Shu Haojie Lu | 2022 | Phenomics2022,2,4: | 2 |
| 5 | Blue-to-green manipulation of carbon dots from fluorescence to ultralong room-temperature phosphorescence for high-level anti-counterfeiting显示文摘Carbon dots(CDs) with fluorescence(FL) and room-temperature phosphorescence(RTP) optical properties have attracted dramatically growing interest in anti-counterfeiting application. Herein, color-tunable and stable FL and ultralong RTP(to naked eyes ~14 s) are successfully achieved in CDs system. Encoding information and patterns fabricated by directly screen-printing method are invisible to eyes under natural light. Interestingly, clear and multicolor patterns with tunable FL and RTP emissions are identified under the 365 nm, 395 nm and 465 nm excitation and removal of them, indicating potential application of carbon dots with different FL and RTP outputs in the high-level photonic anti-counterfeiting field. | Youfusheng Wu Xinyi Fang Jiaqi Shi Weijing Yao Wei Wu | 2021 | Chinese Chemical Letters2021,32,12: | 2 |
| 6 | Specific Regulation of m^(6)A by SRSF7 Promotes the Progression of Glioblastoma显示文摘Serine/arginine-rich splicing factor 7(SRSF7),a known splicing factor,has been revealed to play oncogenic roles in multiple cancers.However,the mechanisms underlying its oncogenic roles have not been well addressed.Here,based on N6-methyladenosine(m^(6)A)co-methylation network analysis across diverse cell lines,we find that the gene expression of SRSF7 is positively correlated with glioblastoma(GBM)cell-specific m^(6)A methylation.We then indicate that SRSF7 is a novel m^(6)A regulator,which specifically facilitates the m^(6)A methylation near its binding sites on the mRNAs involved in cell proliferation and migration,through recruiting the methyltransferase complex.Moreover,SRSF7 promotes the proliferation and migration of GBM cells largely dependent on the presence of the m^(6)A methyltransferase.The two m^(6)A sites on the mRNA for PDZ-binding kinase(PBK)are regulated by SRSF7 and partially mediate the effects of SRSF7 in GBM cells through recognition by insulin-like growth factor 2 mRNA-binding protein 2(IGF2BP2).Together,our discovery reveals a novel role of SRSF7 in regulating m^(6)A and validates the presence and functional importance of temporal-and spatial-specific regulation of m^(6)A mediated by RNA-binding proteins(RBPs). | Yixian Cun Sanqi An Haiqing Zheng Jing Lan Wenfang Chen Wanjun Luo Chengguo Yao Xincheng Li Xiang Huang Xiang Sun Zehong Wu Yameng Hu Ziwen Li Shuxia Zhang Geyan Wu Meisongzhu Yang Miaoling Tang Ruyuan Yu Xinyi Liao Guicheng Gao Wei Zhao Jinkai Wang Jun Li | 2023 | Genomics, Proteomics & Bioinformatics2023,21,4: | 1 |
| 7 | Application of mathematical morphology operation with memristor-based computation-in-memory architecture for detecting manufacturing defects显示文摘Mathematical morphology operations are widely used in image processing such as defect analysis in semiconductor manufacturing and medical image analysis.These data-intensive applications have high requirements during hardware implementation that are challenging for conventional hardware platforms such as central processing units(CPUs)and graphics processing units(GPUs).Computation-in-memory(CIM)provides a possible solution for highly efficient morphology operations.In this study,we demonstrate the application of morphology operation with a novel memristor-based auto-detection architecture and demonstrate non-neuromoq)hic computation on a multi-array-based memristor system.Pixel-by-pixel logic computations with low parallelism are converted to parallel operations using memristors.Moreover,hardware-implemented computer-integrated manufacturing was used to experimentally demonstrate typical defect detection tasks in integrated circuit(IC)manufacturing and medical image analysis.In addition,we developed a new implementation scheme employing a four-layer network to realize small-object detection with high parallelism.The system benchmark based on the hardware measurement results showed significant improvement in the energy efficiency by approximately 358 times and 32 times more than when a CPU and GPU were employed,respectively,exhibiting the advantage of the proposed memristor-based morphology operation. | Ying Zhou Bin Gao Qingtian Zhang Peng Yao Yiwen Geng Xinyi Li Wen Sun Meiran Zhao Yue Xi Jianshi Tang He Qian Huaqiang Wu | 2022 | Fundamental Research2022,2,1: | 1 |
| 8 | Electrochemical fabrication of single-crystalline anatase TiO2 nanowire arrays 显示文摘 | Xinyi Zhang Baodian Yao Lixia Zhao | 2001 | Journal of The Electrochemical Society2001,148,7: | 1 |
| 9 | p38α has an important role in antigen cross-presentation by dendritic cells显示文摘The role of the p38 signaling pathway in the innate and adaptive immune responses has been well documented,especially in inflammatory cytokine production by dendritic cells(DCs).However,whether the p38 signaling pathway affects the important antigen(Ag)presentation function of DCs remains largely unknown.In this study,we reported that the deletion of p38αresulted in an impaired cross-presentation ability of CD8^(+) conventional DCs(cDCs)and a reduction in the direct presentation ability of CD8−cDCs ex vivo.Further study revealed that p38αhad a crucial role in Ag processing by CD8^(+) cDCs but did not affect the Ag uptake or co-stimulation of T cells.Moreover,p38αdeficiency led to reduced cross-priming of T cells in vivo.The production of the IL-12p40 and IL-12p70 cytokines by p38α-deficient cDCs was also significantly reduced.Our study identified a new role for p38αin modulating the important antigen cross-presentation function of DCs. | Yifan Zhou Jianfeng Wu Chunxiao Liu Xueheng Guo Xinyi Zhu Yuan Yao Yuhao Jiao Peng He Jiahuai Han Li Wu | 2018 | Cellular & Molecular Immunology2018,15,3: | 1 |
| 10 | Electrochemi- cal Fabrication of Single-Crystalline Anatase TiO2 Nanowire Arrays 显示文摘 | Zhang Xinyi Yao Baodian Zhao Lixia | 2001 | JElectrochem Soc2001,148,7: | 1 |
| 11 | Role of pores in the carbothermal reduction of carbon silica nanocomposites into silicon carbide nanostructures 显示文摘 | Yao Jianfeng Wang Huanting Zhang Xinyi | 2007 | The Journal of Physical Chemistry C2007,111,2: | 1 |
| 12 | Seamless and early gap healing of osteochondral defects by autologous mosaicplasty combined with bioactive supramolecular nanofiber-enabled gelatin methacryloyl(BSN-GelMA)hydrogel显示文摘Autologous mosaicplasty is a common approach used to treat osteochondral defects in clinical practice.Gap integration between host and transplanted plugs requires bone tissue reservation and hyaline cartilage regeneration without uneven surface,graft necrosis and sclerosis.However,poor gap integration is a serious concern,which eventually leads to deterioration of joint function.To deal with such complications,this study has developed a strategy to effectively enhance integration of the gap region following mosaicplasty by applying injectable bioactive supramolecular nanofiber-enabled gelatin methacryloyl(GelMA)hydrogel(BSN-GelMA).A rabbit osteochondral defect model demonstrated that BSN-GelMA achieved seamless osteochondral healing in the gap region between plugs of osteochondral defects following mosaicplasty,as early as six weeks.Moreover,the International Cartilage Repair Society score,histology score,glycosaminoglycan content,subchondral bone volume,and collagen II expression were observed to be the highest in the gap region of BSN-GelMA treated group.This improved outcome was due to bio-interactive materials,which acted as tissue fillers to bridge the gap,prevent cartilage degeneration,and promote graft survival and migration of bone marrow mesenchymal stem cells by releasing bioactive supramolecular nanofibers from the GelMA hydrogel.This study provides a powerful and applicable approach to improve gap integration after autologous mosaicplasty.It is also a promising off-the-shelf bioactive material for cell-free in situ tissue regeneration. | Hongwei Wu Yuna Shang Wei Sun Xinyi Ouyang Wenyan Zhou Jieji Lu Shuhui Yang Wei Wei Xudong Yao g Xiaozhao Wang Xianzhu Zhang Yishan Chen Qiulin He Zhimou Yang Hongwei Ouyang | 2023 | Bioactive Materials2023,,1: | 1 |
| 13 | Ultraviolet photoluminescence from nonhridging oxygen hole centers in porous silica 显示文摘 | Yao Baodian Shi Huazhong Zhang Xinyi | 2001 | Appl Phys Lett2001,78,: | 1 |
| 14 | Publishing clinical prActice GuidelinEs(PAGE):Recommendations from Editors and Reviewers显示文摘Transparency Ecosystemfor Research and Journals inMedicine(TERM)Working Group summarized the essential recommendations that should be considered to review and publish a high-quality guideline.These recommendations fromeditors and reviewers included the 10 components of essential requirements:systematic review of existing relevant guidelines,guideline registration,guideline protocol,stakeholders,conflicts of interest,clinical questions,systematic reviews,recommendation consensus,guideline reporting,and external review.TERMWorking Group abbreviates them as PAGE(essential requirements for Publishing clinical prActice GuidelinEs),recommends guideline authors,editors,and peer reviewers use them for high-quality guidelines. | Nan Yang Wei Zhao Wenan Qi Chen Yao Chongya Dong Zhenguo Zhai Tong Chen Enmei Liu Guobao Li Youlin Long Xinyi Wang ZijunWang Ruobing Lei Qi Zhou Yaolong Chen Liang Du | 2022 | Infectious Diseases & Immunity2022,2,4: | 1 |
| 15 | Role of pores in the carbothermal reduction of carbon silica nanocomposites into sili- con carbide nanostructures 显示文摘 | Yao Jianfeng Wang Huanting Zhang Xinyi | 2007 | J Phys Chem C2007,111,2: | 1 |
| 16 | The transcription factor KLF14 regulates macrophage glycolysis and immune function by inhibiting HK2 in sepsis显示文摘Sepsis is a heterogeneous syndrome induced by a dysregulated host response to infection.Glycolysis plays a role in maintaining the immune function of macrophages,which is crucial for severely septic patients.However,how the pathways that link glycolysis and macrophages are regulated is still largely unknown.Here,we provide evidence to support the function of KLF14,a novel Krüppel-like transcription factor,in the regulation of glycolysis and the immune function of macrophages during sepsis.KLF14 deletion led to significantly increased mortality in lethal models of murine endotoxemia and sepsis.Mechanistically,KLF14 decreased glycolysis and the secretion of inflammatory cytokines by macrophages by inhibiting the transcription of HK2.In addition,we confirmed that the expression of KLF14 was upregulated in septic patients.Furthermore,pharmacological activation of KLF14 conferred protection against sepsis in mice.These findings uncover a key role of KLF14 in modulating the inflammatory signaling pathway and shed light on the development of KLF14-targeted therapeutics for sepsis. | Yuan Yuan Guangjian Fan Yuqi Liu Lu Liu Tong Zhang Pengfei Liu Qing Tu Xinyi Zhang Shiyuan Luo Liangfang Yao Feng Chen Jingbao Li | 2022 | Cellular & Molecular Immunology2022,19,4: | 1 |
| 17 | Role of pores in the carbothermal reduction of carbon silica nanocomposites into silicon carbide nanostructures显示文摘 | Yao Jianfeng Wang Huanting Zhang Xinyi | | 0,,02: | 1 |
| 18 | Role of pores in the carbothermal reduction of carbon silica nanocomposites into sili- con carbide nanostructures 显示文摘 | Yao Jianfeng Wang Huanting Zhang Xinyi | 2007 | J Phys Chem C2007,111,2: | 1 |
| 19 | Reinstating Traditional Horsemanship of Ethnic Minorities in Southern China by Excavation,Sorting,and Comparative Research显示文摘In August 1991,the book Chinese Nation’s Traditional Sports History was published,and it was hailed as the“masterpiece of Chinese folk sports”by academic circles.In this masterpiece,the traditional horsemanship of 23 ethnic minorities and that of 10 southern ethnic minorities represented by the Miao,Yi,Bai,Shui,Hani,Naxi,and other ethnic groups has been included.For the first time,this masterpiece integrates the traditional horsemanship of the ethnic minorities in Southern China in one volume.The disadvantage is that most of the included traditional horsemanship of ethnic minorities only made a brief introduction to the time,place,and form of its development.However,under the global trend of the transition from traditional society to modern society and post-modern society,the traditional horsemanship of ethnic minorities in Southern China is facing an increasingly serious crisis of inheritance and disconnection,resulting in a gradual extinction of related traditional cultural heritage.The characteristics are gradually lost because of it.Therefore,it is essential to return to the historical and cultural field of traditional horsemanship,conduct rescue excavation,sort out the traditional horsemanship of ethnic minorities in Southern China,rescue the records of traditional horsemanship that is disappearing or undergoing drastic changes,as well as carry out comparative studies on this basis.This is not only an important way to inherit the traditional culture of ethnic minorities,but also means to protect the diversity of ethnic cultures and promote the development of exotic villages. | Yifan Zheng Xinyi Yao Guoyu Chen | 2022 | Journal of Contemporary Educational Research2022,6,1: | 0 |
| 20 | Hydration of iodine adsorbed on the Au(111) surface显示文摘The hydration of halogens has been widely researched because of its close relation with the water desalination and biochemical reactions.In this work,by a combination of scanning tunneling microscopy and X-ray photoelectron spectroscopy,we have explored the hydration process of iodine via the Eley-Rideal process on the Au(111)surface.Moreover,the hydration process of iodine with the presence of the NiPc self-assembled network as a template has also been investigated,where the stepwise hydration of iodine at room temperature can be visualized on Au(111). | Yuanqi Ding Lei Xie Xinyi Yao Chi Zhang Wei Xu | 2022 | Fundamental Research2022,2,4: | 0 |