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| 1 | Severe burn injury alters intestinal microbiota composition and impairs intestinal barrier in mice显示文摘Background:The intestinal barrier integrity is crucial for maintaining intestinal homeostasis,and the mechanisms of intestinal barrier disruption induced by burn injury remain obscure.This study was aimed to investigate the changes of intestinal microbiota and barrier function in burned mice to further comprehend the mechanisms of burn-induced intestinal barrier dysfunction.Methods:Samples were from mice inflicted with 30%total body surface area(TBSA)full-thickness burns.The intestinal permeability,tight junction proteins expressions,zonula occludens-1(ZO-1)localization,inflammatory cytokines expressions,and short-chain fatty acids(SCFAs)contents were determined.The microbial community was assessed via 16S rDNA Illumina sequencing.Results:The intestinal permeability was increased after severe burn injury,peaking at 6 h post-burn,with approximately 20-folds of the control(p<0.001).The expression of tight junction proteins(ZO-1,occludin,claudin-1,and claudin-2)was significantly altered(p<0.05).The ZO-1 morphology was dramatically changed following burn injury.The fecal SCFAs’contents(acetate,propionate,butyrate,isobutyrate,and isovalerate)were noticeably declined after burn injury(p<0.05).The expressions of pro-inflammatory cytokines(interleukin(IL)-1βand IL-6)in ileal mucosa were increased,whereas the expressions of anti-inflammatory cytokines(IL-4 and IL-13)were decreased following burn injury(p<0.05).In addition,burned mice showed an alteration of intestinal microbial community,such as decreased diversity,reduced Bacteroidetes abundance,and increased Firmicutes abundance.Conclusions:The severe burn-induced intestinal barrier dysfunction is along with the alterations of microbial community. | Yanhai Feng Yalan Huang Yu Wang Pei Wang Fengjun Wang | 2019 | Burns & Trauma2019,7,1: | 11 |
| 2 | Interferon-armed RBD dimer enhances the immunogenicity of RBD for sterilizing immunity against SARS-CoV-2显示文摘Severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)has caused a global crisis,urgently necessitating the development of safe,efficacious,convenient-to-store,and low-cost vaccine options.A major challenge is that the receptor-binding domain(RBD)-only vaccine fails to trigger long-lasting protective immunity if used alone for vaccination. | Shiyu Sun Yueqi Cai Tian-Zhang Song Yang Pu Lin Cheng Hairong Xu Jing Sun Chaoyang Meng Yifan Lin Haibin Huang Fang Zhao Silin Zhang Yu Gao Jian-Bao Han Xiao-Li Feng Dan-Dan Yu Yalan Zhu Pu Gao Haidong Tang Jincun Zhao Zheng Zhang Jiaming Yang Zhenxiang Hu Yang-Xin Fu Yong-Tang Zheng Hua Peng | 2021 | Cell Research2021,31,9: | 7 |
| 3 | Xingnao Kaiqiao acupuncture combined with Angong Niuhuang Wan for a patient under persistent vegetative state: a case report显示文摘 | Hujie Song Xiao Chen Yalan Yu Ling Zhang | 2018 | Frontiers of Medicine2018,12,3: | 4 |
| 4 | The completed macronuclear genome of a model ciliate Tetrahymena thermophila and its application in genome scrambling and copy number analyses显示文摘The ciliate Tetrahymena thermophila has been a powerful model system for molecular and cellular biology.However,some investigations have been limited due to the incomplete closure and sequencing of the macronuclear genome assembly,which for many years has been stalled at 1,158 scaffolds,with large sections of unknown sequences(available in Tetrahymena Genome Database,TGD,http://gffzz1148a1d02dcb4144hw9n9o0xwwxvv6ovb.ffgz.tsg.suse.edu.cn/).Here we completed the first chromosome-level Tetrahymena macronuclear genome assembly,with approximately 300×long Single Molecule,Real-Time reads of the wild-type SB210 cells—the reference strain for the initial macronuclear genome sequencing project.All 181 chromosomes were capped with two telomeres and gaps were entirely closed.The completed genome shows significant improvements over the current assembly(TGD 2014)in both chromosome structure and sequence integrity.The majority of previously identified gene models shown in TGD were retained,with the addition of 36 new genes and 883 genes with modified gene models.The new genome and annotation were incorporated into TGD.This new genome allows for pursuit in some underexplored areas that were far more challenging previously;two of them,genome scrambling and chromosomal copy number,were investigated in this study.We expect that the completed macronuclear genome will facilitate many studies in Tetrahymena biology,as well as multiple lines of research in other eukaryotes. | Yalan Sheng Lili Duan Ting Cheng Yu Qiao Naomi AStover Shan Gao | 2020 | Science China(Life Sciences)2020,63,10: | 3 |
| 5 | BMAL1 functions as a cAMP-responsive coactivator of HDAC5 to regulate hepatic gluconeogenesis显示文摘 | Jian Li Sihan Lv Xinchen Qiu Jiamin Yu Junkun Jiang Yalan Jin Wenxuan Guo| Ruowei Zhao Zhen-Ning Zhang Chao Zhang Bing Luan | 2018 | Protein & Cell2018,9,11: | 3 |
| 6 | Flexible,video-rate,and aberration-compensated axial dual-line scanning imaging with field-of-view jointing and stepped remote focusing显示文摘Parallel dual-plane imaging with a large axial interval enables the simultaneous observation of biological structures and activities in different views of interest.However,the inflexibility in adjusting the field-of-view(FOV)positions in three dimensions and optical sectioning effects,as well as the relatively small effective axial range limited by spherical aberration,have hindered the application of parallel dual-plane imaging.Herein,we propose a flexible,video-rate,and defocus-aberration-compensated axial dual-line scanning imaging method.We used a stepped mirror to remotely generate and detect dual axial lines with compensation for spherical aberration and FOV-jointing to rearrange into a head-to-head line for high-speed optical sectioning acquisition.The lateral and axial positions of the two FOVs could be flexibly adjusted before and during imaging,respectively.The method also allows the adjustment of optical sectioning effects according to specific experimental requirements.We experimentally verified the consistent imaging performance over an axial range of 300μm.We demonstrated high throughput by simultaneously imaging Brownian motions in two 250μm×250μm FOVs with axial and lateral intervals of 150μm and 240μm,respectively,at 24.5 Hz.We also showed potential application in functional imaging by simultaneously acquiring neural activities in the optic tectum and hindbrain of a zebrafish brain.The proposed method is,thus,advantageous compared to existing parallel dual-plane imaging and potentially facilitates intravital biological study in large axial range. | RUI JIN YALAN YU DAN SHEN QINGMING LUO HUI GONG JING YUAN | 2021 | Photonics Research2021,9,8: | 2 |
| 7 | Origin and evolution of alginate-c5-mannuronan-epimerase gene based on transcriptomic analysis of brown algae显示文摘The coding product of alginate-c5-mannuronan-epimerase gene(algG gene) can catalyze the conversion of mannuronate to guluronate and determine the M/G ratio of alginate.Most of the current knowledge about genes involved in the alginate biosynthesis comes from bacterial systems.In this article,based on some algal and bacterial algG genes registered on GenBank and EMBL databases,we predicted 94 algG genes open reading frame(ORF) sequences of brown algae from the 1 000 Plant Transcriptome Sequencing Project(OneKP).By method of transcriptomic sequence analysis,gene structure and gene localization analysis,multiple sequence alignment and phylogenetic tree construction,we studied the algal algG gene family characteristics,the structure modeling and conserved motifs of AlgG protein,the origin of alginate biosynthesis and the variation incidents that might have happened during evolution in algae.Although there are different members in the algal algG gene family,almost all of them harbor the conserved epimerase region.Based on the phylogenetic analysis of algG genes,we proposed that brown algae acquired the alginate biosynthesis pathway from an ancient bacterium by horizontal gene transfer(HGT).Afterwards,followed by duplications,chromosome disorder,mutation or recombination during evolution,brown algal algG genes were divided into different types. | WANG Ren WANG Xumin ZHANG Yalan YU Jun LIU Tao CHEN Shengping CHI Shan | 2014 | Acta Oceanologica Sinica2014,33,2: | 1 |
| 8 | Monodisperse mierospheres with poly(N-isopropylacrylamide) core and poly(2- hydroxyethyl methaerylate) shell 显示文摘 | Yu Yalan Xie Rui Zhang Maojie | 2010 | Journal of Colloid and Interface Science2010,346,2: | 1 |
| 9 | Dual drug delivery system with flexible and controllable drug ratios for synergistic chemotherapy显示文摘Determination of whether multidrug nanocarriers can deliver and release loaded drugs at a predefined synergistic ratio to target cancer cells is crucial.Although there are many successful applications for delivery of multiple drugs,most current carriers are unable to achieve coordinated loading and release,leading to a drug release ratio that disagrees with the predefined loading ratio.In this work,a simple dual-drug delivery system with a flexible and controllable drug release ratio was constructed to deliver two anticancer drugs,doxorubicin(DOX)and curcumin(CUR).The drug ratio of DOX and CUR can be easily tuned for an enhanced synergistic effect,and the drugs can be released at predesigned ratios due to synchronous drug activation and nanoparticle collapse.Drug release at predefined ratios for synergistic anticancer therapy was demonstrated via in vitro and in vivo experiments. | Yalan Tu Rui Zheng Fangzhou Yu Xuan Xiao Maoling Jiang Youyong Yuan | 2021 | Science China Chemistry2021,64,6: | 1 |
| 10 | Alleviative effects of a novel strain Bacillus coagulans XY2 on copper-induced toxicity in zebrafish larvae显示文摘Copper (Cu) is a kind of micronutrient element that is essential for human metabolism.However,it is also considered as an environmental pollutant which is toxic to organisms at a high concentration level.Probiotics,regarded as beneficial microorganisms for promoting human health,have functions of antioxidant capacity,immune-enhancing properties,intestinal barrier protection and regulation.Several studies have reported that probiotics show positive effects on alleviating and intervening heavy metals toxicity.However,evidence for relieving copper-induced toxicity by probiotics is still limited.In this study,we firstly conducted a zebrafish larvae model to screen out microorganisms which are helpful for CuSO_(4)toxicity resistance and one novel strain named as Bacillus coagulans XY2 was discovered with the best protective activity.B.coagulans XY2 significantly reduced the mortality of zebrafish larvae exposed to 10μmol/L CuSO_(4)for 96 hr,as well as alleviated the neutrophils infiltration in the larvae lateral line under a 2 hr exposure.B.coagulans XY2 exhibited a high in vitro antioxidant activity and against CuSO_(4)-induced oxidative stress in zebrafish larvae by up-regulating sod1,gstp1 and cat gene transcriptional levels and relevant enzymatic activities.CuSO_(4)stimulated the inflammation process resulting in obvious increases of gene il-1βand il-10 transcription,which were suppressed by B.coagulans XY2 intervention.Overall,our results underline the bio-function of B.coagulans XY2 on protecting zebrafish larvae from copper toxicity,suggesting the potential application values of probiotics in copper toxicity alleviation on human and the environment. | Fang Ai Xuedi Huang Yalan Wu Chen Ji Yufang Gao Ting Yu Fujie Yan | 2023 | Journal of Environmental Sciences2023,,3: | 1 |
| 11 | Beneficial Effects of Celastrol on Immune Balance by Modulating Gut Microbiota in Experimental Ulcerative Colitis Mice显示文摘Ulcerative colitis(UC)is a chronic inflammatory bowel disease caused by many factors including colonic inflammation and microbiota dysbiosis.Previous studies have indicated that celastrol(CSR)has strong anti-inflammatory and immune-inhibitory effects.Here,we investigated the effects of CSR on colonic inflammation and mucosal immunity in an experimental colitis model,and addressed the mechanism by which CSR exerts the protective effects.We characterized the therapeutic effects and the potential mechanism of CSR on treating UC using histological staining,intestinal permeability assay,cytokine assay,flow cytometry,fecal microbiota transplantation(FMT),16S rRNA sequencing,untargeted metabolomics,and cell differentiation.CSR administration significantly ameliorated the dextran sodium sulfate(DSS)-induced colitis in mice,which was evidenced by the recovered body weight and colon length as well as the decreased disease activity index(DAI)score and intestinal permeability.Meanwhile,CSR down-regulated the production of pro-inflammatory cytokines and up-regulated the amount of anti-inflammatory mediators at both mRNA and protein levels,and improved the balances of Treg/Th1 and Treg/Th17 to maintain the colonic immune homeostasis.Notably,all the therapeutic effects were exerted in a gut microbiota-dependent manner.Furthermore,CSR treatment increased the gut microbiota diversity and changed the compositions of the gut microbiota and metabolites,which is probably associated with the gut microbiota-mediated protective effects.In conclusion,this study provides the strong evidence that CSR may be a promising therapeutic drug for UC. | Mingyue Li Weina Guo Yalan Dong Wenzhu Wang Chunxia Tian Zili Zhang Ting Yu Haifeng Zhou Yang Gui Kaming Xue Junyi Li Feng Jiang Alexey Sarapultsev Huafang Wang Ge Zhang Shanshan Luo Heng Fan Desheng Hu | 2022 | Genomics, Proteomics & Bioinformatics2022,20,2: | 1 |
| 12 | Application of super-resolution fluorescence microscopy in hematologic malignancies显示文摘Hematologic malignancies are one of the most common malignant tumors caused by the clonal proliferation and differentiation of hematopoietic and lymphoid stem cells.The examination of bone marrow cells combined with immunodeficiency typing is of great significance to the diagnostic type,treatment and prognosis of hematologic malignancies.Super-resolution fluorescence microscopy(SRM)is a special kind of optical microscopy technology,which breaks the resolution limit and was awarded the Nobel Prize in Chemistry in 2014.With the development of SRM,many related technologies have been applied to the diagnosis and treatment of clinical diseases.It was reported that a major type of SRM technique,single molecule localization microscopy(SMLM),is more sensitive than flow cytometry(FC)in detecting cell membrane antigens'expression,thus enabling better chances in detecting antigens on hematopoietic cells than traditional analytic tools.Furthermore,SRM may be applied to clinical pathology and may guide precision medicine and personalized medicine for clone hematopoietic cell diseases.In this paper,we mainly discuss the application of SRM in clone hematological malignancies. | Yalan Yu Jianing Yu Zhen-Li Huang Fuling Zhou | 2022 | Journal of Innovative Optical Health Sciences2022,15,2: | 1 |
| 13 | A reporter gene assay for determining the biological activity of therapeutic antibodies targeting TIGIT显示文摘T cell immunoglobulin and ITIM domain(TIGIT)is a novel immune checkpoint that has been considered as a target in cancer immunotherapy.Current available bioassays for measuring the biological activity of therapeutic antibodies targeting TIGIT are restricted to mechanistic investigations because donor primary T cells are highly variable.Here,we designed a reporter gene assay comprising two cell lines,namely,CHO-CD112-CD3 scFv,which stably expresses CD 112(PVRL2,nectin-2)and a membranebound anti-CD3 single-chain fragment variable(scFv)as the target cell,and Jurkat-NFAT-TIGIT,which stably expresses TIGIT as well as the nuclear factor of activated T-cells(NFAT)response element-controlled luciferase gene,as the effector cell.The anti-CD3 scFv situated on the target cells activates Jurkat-NFATTIGIT cells through binding and crosslinking CD3 molecules of the effector cell,whereas interactions between CD 112 and TIGIT prevent activation.The presence of anti-TIGIT mAbs disrupts their interaction,which in turn reverses the inactivation and luciferase expression.Optimization and validation studies have demonstrated that this assay is superior in terms of specificity,accuracy,linearity,and precision.In summary,this reliable and effective reporter gene assay may potentially be utilized in lot release control,stability assays,screening,and development of novel TIGIT-targeted therapeutic antibodies. | Zhihao Fu Hongchuan Liu Lan Wang Chuanfei Yu Yalan Yang Meiqing Feng Junzhi Wang | 2021 | Acta Pharmaceutica Sinica B2021,11,12: | 1 |
| 14 | Electrolyte induced synergistic construction of cathode electrolyte interphase and capture of reactive free radicals for safer high energy density lithium-ion battery显示文摘As the energy density of battery increases rapidly,lithium-ion batteries(LIBs)are facing serious safety issue with thermal runaway,which largely limits the large-scale applications of high-energy-density LIBs.It is generally agreed that the chemical crosstalk between the cathode and anode leads to thermal runaway of LIBs.Herein,a multifunctional high safety electrolyte is designed with synergistic construction of cathode electrolyte interphase and capture of reactive free radicals to limit the intrinsic pathway of thermal runaway.The cathode electrolyte interphase not only resists the gas attack from the anode but suppresses the parasitic side reactions induced by electrolyte.And the function of free radical capture has the ability of reducing heat release from thermal runaway of battery.The dual strategy improves the intrinsic safety of battery prominently that the triggering temperature of thermal runaway is increased by 24.4℃and the maximum temperature is reduced by 177.7℃.Simultaneously,the thermal runaway propagation in module can be self-quenched.Moreover,the electrolyte design balances the trade-off of electrochemical and safety performance of high-energy batteries.The capacity retention of LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2)|graphite pouch cell has been significantly increased from 53.85%to 97.05%with higher coulombic efficiency of 99.94%at operating voltage extended up to 4.5 V for 200 cycles.Therefore,this work suggests a feasible strategy to mitigate the safety risk of high-energy-density LIBs without sacrificing electrochemical performances. | Mengfei Ding Xuning Feng Yong Peng Jing Jing Tong Bowen Hou Yalan Xing Weifeng Zhang Li Wang Yu Wu Jiabin Lv Chunyan Luo Dejun Xiong Shichao Zhang Minggao Ouyang | 2023 | Journal of Energy Chemistry2023,,12: | 0 |
| 15 | Analysis of the Effectiveness of Biling Weitong Granules Combined with Trimethoprim and Vonoprazan in The Treatment of Reflux Esophagitis显示文摘Objective:To analyze the effectiveness of Biling Weitong Granules(BLWTG)combined with trimethoprim and vonoprazan in treating reflux esophagitis.Methods:Sixty patients with reflux esophagitis admitted to our hospital from March 2020 to March 2023 were selected as study subjects and randomly divided into a control group and an experimental group,with 30 cases in each group.The control group received only the combination treatment of trimethoprim and vonoprazan,while the experimental group was treated with BLWTG based on the control group.The acid reflux and heartburn symptom scores,quality-of-life scores,clinical efficacy,Chinese medicine symptom incidences,and the occurrence of adverse reactions before and after treatment in the two groups were compared.Results:After treatment,the acid reflux and heartburn symptom scores of patients in the experimental group were lower than those of the treatment control group,and the quality-of-life scores were higher than those of the treatment control group(P<0.05).The total clinical efficacy of the experimental group was 96.66%,which was significantly higher than that of the control group(73.33%,P<0.05).After treatment,the incidence of Chinese medicine symptoms,such as nausea and vomiting,abdominal distension and abdominal pain,and loss of appetite of the patients in the experimental group were significantly lower than those of the control group(P<0.05).During the treatment period,there was no significant difference in the incidence of adverse reactions between the two groups,which indicated that the safety of the two treatments was comparable(P>0.05).Conclusion:BLWTG combined with trimethoprim and vonoprazan was safe and reliable in treating reflux esophagitis,effectively relieving the symptoms and improving its clinical efficacy.This treatment is worthy of popularization. | Yalan Chen Huiqing Zhang Jingwei Kou Huiling Yu | 2024 | Journal of Clinical and Nursing Research2024,8,3: | 0 |
| 16 | Towards extreme fast charging of 4.6 V LiCoO_(2) via mitigating high-voltage kinetic hindrance显示文摘High-voltage LiCoO_(2)(LCO) is an attractive cathode for ultra-high energy density lithium-ion batteries(LIBs) in the 3 C markets.However,the sluggish lithium-ion diffusion at high voltage significantly hampers its rate capability.Herein,combining experiments with density functional theory(DFT) calculations,we demonstrate that the kinetic limitations can be mitigated by a facial Mg^(2+)+Gd^(3+)co-doping method.The as-prepared LCO shows significantly enhanced Li-ion diffusion mobility at high voltage,making more homogenous Li-ion de/intercalation at a high-rate charge/discharge process.The homogeneity enables the structural stability of LCO at a high-rate current density,inhibiting stress accumulation and irreversible phase transition.When used in combination with a Li metal anode,the doped LCO shows an extreme fast charging(XFC) capability,with a superior high capacity of 193.1 mAh g^(-1)even at the current density of 20 C and high-rate capacity retention of 91.3% after 100 cycles at 5 C.This work provides a new insight to prepare XFC high-voltage LCO cathode materials. | Yu Tang Jun Zhao He Zhu Jincan Ren Wei Wang Yongjin Fang Zhiyong Huang Zijia Yin Yalan Huang Binghao Zhang Tingting Yang Tianyi Li Leighanne CGallington Si Lan Yang Ren Qi Liu | 2023 | Journal of Energy Chemistry2023,,3: | 0 |
| 17 | Intrinsic lithiophilic carbon host derived from bacterial cellulose nanofiber for dendrite-free and long-life lithium metal anode显示文摘Although lithium metal is considered a promising anode for advanced Li-S and Li-air batteries,the uncontrolled dendrite growth and infinite volume change impede its practical application.Herein,we report an ideal framework composed of carbonized bacterial cellulose(CBC)nanofibers,which shows intrinsic lithiophilicity to molten lithium without any lithiophilic surface modification.The wetting behavior of molten lithium can be significantly improved because its surface functional groups provide thermodynamical driving force,and the high surface roughness derived from nanocracks leads to rapid infusion in kinetics.The hybrid anode exhibits long cycle life up to 2000 h and excellent deep stripping-platting capacity up to 20 mAh·cm^(-2).When the anode is assembled with LiFePO_(4) cathode,the full cell delivers a good cycling stability up to 700 cycles.This is attributed to the intrinsic lithiophilic scaffold,which can not only lower the nucleation barrier of Li and provide uniform nucleation sites for stable Li stripping/plating,but also offer interspace to accommodate volume fluctuation of lithium during long cycling.This work provides a new manner to achieve a series of intrinsic lithiophilic carbon skeletons based on the large family of biomass materials and organic materials. | Gangyi Xiong Jiayu Yu Yalan Xing Puheng Yang Shichao Zhang | 2024 | Nano Research2024,17,5: | 0 |
| 18 | CFD simulation on membrane distillation of NaCl solution显示文摘A computational fluid dynamics(CFD)simu-lation that coupled an established heat and mass transfer model was carried out for the air-gap membrane distillation(AGMD)of NaCl solution to predict mass and heat behaviors of the process.The effects of temperature and flowrate on fluxes were first simulated and compared with available experimental data to verify the approach.The profiles of temperature,temperature polarization factor,and mass flux adjacent to the tubular carbon membrane surface were then examined under different feed Reynolds number in the computational domain.Results show that the temperature polarization phenomena can be reduced,and mass flux can be enhanced with increase in the feed Reynolds number. | Zhaoguang XU Yanqiu PAN Yalan YU | 2009 | Frontiers of Chemical Science and Engineering2009,3,3: | 0 |
| 19 | Analysis of Epidemiological and Issues Encountered in Case Reports on Echinococcosis—China,2022显示文摘Summary What is already known about this topic?Echinococcosis is classified as a Class C infectious disease in China.It is endemic in 370 counties located in the agricultural and pastoral regions of western China.What is added by this report?This report provides a comprehensive overview of the cases of echinococcosis reported in China in 2022.Following a thorough evaluation conducted by provincial CDCs. | Yan Kui Shuai Han Xiaojuan Zhang Guangzhong Shi Yale Yu Ruirui Li Peizheng Zhan Hongju Duan Wenbo Luo Benfu Li Shaoqi Ning Yalan Zhang Aiya Zhu Jingbo Xue | 2024 | China CDC weekly2024,6,6: | 0 |
| 20 | Fluorescent bovine serum albumin-silver nanoclusters loaded with paclitaxel can traverse the blood-brain barrier to inhibit the migration of glioma显示文摘Objective::Glioma is the most common and aggressive primary brain tumor. Here, we aimed to establish a nano-drug carrier system to traverse the blood-brain barrier for the treatment and inhibition of glioma migration.Methods::The synthesis of bovine serum albumin protected-silver nanoclusters (BSA-AgNCs) was performed using chemical reduction. The drug paclitaxel (PTX) can be loaded into BSA-AgNCs through electrostatic and hydrophobic interactions to formulate spherical BSA-AgNC-PTX nanoparticles (BSA-AgNC-PTX NPs). A glioma mouse model was established by injecting U251-GFP-Luc cells into the mouse striatum, and all surgical procedures were approved by the Animal Ethics Committee of Nanchang University (SYXK2019-0003) on December 29, 2019.Results::The BSA-AgNC-PTX NPs were able to efficiently pass through the blood-brain barrier, both in vitro and in vivo, to deliver the drug to the tumor site. The in vivo assessment of BSA-AgNC-PTX NPs in glioblastoma multiforme-bearing mice revealed the significant inhibition of tumor growth and migration, prolonging the survival of the mice.Conclusion::These results indicated that BSA-AgNCs might represent an ideal nanocarrier for the treatment of glioma and has the potential to be used in the treatment of a variety of central nervous system diseases. | Yu Liu Yu Liu Yini Zhang Weichang Xie Yalan Yang Kaigeng Hu Hongbo Xin Ping Hu Fanrong Ai | 2020 | Journal of Bio-X Research2020,3,4: | 0 |