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13篇 您的检索式:作者名="Shenglan Yu"
    题名 作者 年代 出处 被引量
1Dendritic cell-based vaccination with lentiviral vectors encoding ubiquitinated hepatitis B core antigen enhances hepatitis B virus-specific immune responses in vivo显示文摘肝炎 B 病毒(HBV ) 的活动特定的细胞毒素的 T 淋巴细胞(CTL ) 戏在 HBV 的清理的一个占优势的角色。树枝状的房间(DC ) 是关键介绍抗原的房间并且在有免疫力的回答的开始起一个重要作用。我们以前验证了有效地编码 ubiquitinated 肝炎 B 核心抗原(LV-Ub-HBcAg ) 的那 lentiviral 向量导致成熟的 transduced DC,和成熟 DC 高效地导致了 T 房间极化到 Th1 并且产生了 HBcAg 特定的 CTL 前 vivo。在这研究,在 BALB/c 老鼠的 LV-Ub-HBcAg 的 HBV 特定的有免疫力的回答(H-2K d ) 被评估。LV-Ub-HBcAg 的直接注射增加了 cytokines IL-2 和 IFN- 的生产,这被显示出,得到了强壮的抗体回答,并且显著地产生了 IFN-+ 有在 BALB/c 老鼠的 HBV 特定的 CTL 回答的 CD8 + T 房间。另外, LV-Ub-HBcAg 的直接注射导致了有势力 anti-HBV 免疫者回答,类似于得到由的那些在 vitro-transduced DC。在结论,基于 DC 的治疗学的疫苗的 LV-Ub-HBcAg 得到了特定的抗体免疫者回答并且在 vivo 导致了柔韧的特定的 CTL 活动。Shenglan Dai Meng Zhuo Linlin Song Xiaohua Chen Yongsheng Yu Zhenghao Tang Guoqing Zang 2015Acta Biochimica et Biophysica Sinica2015,47,11:9
2FeCo alloy catalysts promoting polysulfide conversion for advanced lithium-sulfur batteries显示文摘Lithium sulfur batteries(LSBs)draw extensive interest because of the ultra-high capacity and low material cost.However,the sluggish lithium polysulfides(LIPSs)conversion processes are detrimental to cycle stability and rate capability,inhibiting the commercial application of LSBs.Here we present the well-designed Fe Co alloy catalysts anchored on porous carbon(FeCo-C)as sulfur host to improve the electrochemical performance by accelerating the conversion reactions.The FeCo alloy demonstrates high catalytic effect and strong adsorption capability of LIPSs,in which potential polarization can be greatly decreased and'shuttle effects'can be largely avoided.As a result,the obtained S/Fe Co-C composites show an initial specific capacity of 791.9 m Ah g^-1 at a large current density of 2 C and maintain 502.5 mAh g^-1 even after 500 cycles.Moreover,720 m Ah g^-1(corresponding to 70%retention)can be achieved after 100 cycles at 0.2 C with a high sulfur content of 80 wt%,enabling high sulfur utilization.This work not only provides a new insight to investigate the conversion kinetics of Li PSs,but also opens up a new avenue for advanced lithium sulfur batteries.Hongyi Li Linfeng Fei Rong Zhang Shenglan Yu Yongyi Zhang Longlong Shu Yong Li Yu Wang 2020Journal of Energy Chemistry2020,29,10:3
3Using hyperspectral vegetation indices as a proxy to monitor soilsalinity显示文摘Zhang Tingting Zeng Shenglan Gao Yu 2011Ecological Indicators2011,11,3:1
4Dietary bamboo leaf flavonoids improve quality and microstructure of broiler meat by changing untargeted metabolome显示文摘Background Dietary bamboo leaf flavonoids(BLFs)are rarely used in poultry production,and it is unknown whether they influence meat texture profile,perceived color,or microstructure.Results A total of 720 one-day-old Arbor Acres broilers were supplemented with a basal diet with 20 mg bacitracin/kg,50 mg BLFs/kg,or 250 mg BLFs/kg or without additions.Data showed that the dietary BLFs significantly(P<0.05)changed growth performance and the texture profile.In particular,BLFs increased birds’average daily gain and average daily feed intake,decreased the feed:gain ratio and mortality rate,improved elasticity of breast meat,enhanced the gumminess of breast and leg meat,and decreased the hardness of breast meat.Moreover,a significant(P<0.05)increase in redness(a*)and chroma(c*)of breast meat and c*and water-holding capacity of leg meat was found in BLF-supplemented broilers compared with control broilers.In addition,BLFs supplementation significantly decreased(P<0.05)theβ-sheet ratio and serum malondialdehyde and increased theβ-turn ratio of protein secondary structure,superoxide dismutase,and glutathione peroxidase of breast meat and total antioxidant capacity and catalase of serum.Based on the analysis of untargeted metabolome,BLFs treatment considerably altered 14 metabolites of the breast meat,including flavonoids,amino acids,and organic acids,as well as phenolic and aromatic compounds.Conclusions Dietary BLFs supplementation could play a beneficial role in improving meat quality and sensory color in the poultry industry by changing protein secondary structures and modulating metabolites.Guangtian Cao Huixian Wang Yang Yu Fei Tao Huijuan Yang Shenglan Yang Ye Qian Hui Li Caimei Yang 2023Journal of Animal Science and Biotechnology2023,14,4:1
5Using hyperspectral vegetation indices as a proxy to monitor soil salinity 显示文摘ZHANG Tingting ZENG Shenglan GAO Yu 2011Ecological Indicators2011,11,6:1
6Using hyperspectral vegetation indices as a proxy to monitor soil salinity显示文摘Zhang Tingting Zeng Shenglan Gao Yu 2011Ecological Indicators2011,11,6:1
7Using hyperspeetral vegetation indices as a proxy to monitor soil salinity 显示文摘Zhang Tinting Zeng Shenglan Gao Yu 2011Ecological Indicators2011,11,6:1
8Signaling pathways in brain tumors and therapeutic interventions显示文摘Brain tumors,although rare,contribute to distinct mortality and morbidity at all ages.Although there are few therapeutic options for brain tumors,enhanced biological understanding and unexampled innovations in targeted therapies and immunotherapies have considerably improved patients’prognoses.Nonetheless,the reduced response rates and unavoidable drug resistance of currently available treatment approaches have become a barrier to further improvement in brain tumor(glioma,meningioma,CNS germ cell tumors,and CNS lymphoma)treatment.Previous literature data revealed that several different signaling pathways are dysregulated in brain tumor.Importantly,a better understanding of targeting signaling pathways that influences malignant behavior of brain tumor cells might open the way for the development of novel targeted therapies.Thus,there is an urgent need for a more comprehensive understanding of the pathogenesis of these brain tumors,which might result in greater progress in therapeutic approaches.This paper began with a brief description of the epidemiology,incidence,risk factors,as well as survival of brain tumors.Next,the major signaling pathways underlying these brain tumors’pathogenesis and current progress in therapies,including clinical trials,targeted therapies,immunotherapies,and system therapies,have been systemically reviewed and discussed.Finally,future perspective and challenges of development of novel therapeutic strategies in brain tumor were emphasized.Shenglan Li Can Wang Jinyi Chen Yanjie Lan Weichunbai Zhang Zhuang Kang Yi Zheng Rong Zhang Jianyu Yu Wenbin Li 2023Signal Transduction and Targeted Therapy2023,8,2:0
98-Oxoguanine DNA glycosylase protects cells from senescence via the p53-p21 pathway显示文摘Cellular senescence is an important factor leading to pulmonary fibrosis.Deficiency of 8-oxoguanine DNA glyco-sylase(OGG1)in mice leads to alleviation of bleomycin(BLM)-induced mouse pulmonary fibrosis,and inhibition of the OGG1 enzyme reduces the epithelial mesenchymal transition(EMT)in lung cells.In the present study,we find decreased expression of OGG1 in aged mice and BLM-induced cell senescence.In addition,a decrease in OGG1 expression results in cell senescence,such as increases in the percentage of SA-β-gal-positive cells,and in the p21 and p-H2AX protein levels in response to BLM in lung cells.Furthermore,OGG1 promotes cell transformation in A549 cells in the presence of BLM.We also find that OGG1 siRNA impedes cell cycle progression and inhibits the levels of telomerase reverse transcriptase(TERT)and LaminB1 in BLM-treated lung cells.The increase in OGG1 expression results in the opposite phenomenon.The mRNA levels of senescence-associated secretory phenotype(SASP)components,including IL-1α,IL-1β,IL-6,IL-8,CXCL1/CXCL2,and MMP-3,in the absence of OGG1 are obviously increased in A549 cells treated with BLM.Interestingly,we demonstrate that OGG1 binds to p53 to inhibit the activation of p53 and that silencing of p53 reverses the inhibition of OGG1 on senescence in lung cells.Ad-ditionally,the augmented cell senescence is shown in vivo in OGG1-deficient mice.Overall,we provide direct evidence in vivo and in vitro that OGG1 plays an important role in protecting tissue cells against aging associated withthep53pathway.Shenglan Gao Lujun Chen Ziying Lin Zhiliang Xu Yahong Wang Huayu Ling Zijun Wu Yu Yin Weimin Yao Keng Wu Gang Liu 2024Acta Biochimica et Biophysica Sinica2024,56,2:0
10The m^(6)A reader SiYTH1 enhances drought tolerance by affecting the messenger RNA stability of genes related to stomatal closure and reactive oxygen species scavenging in Setaria italica显示文摘Foxtail millet(Setaria italica),a vital drought-resistant crop,plays a significant role in ensuring food and nutritional security.However,its drought resistance mechanism is not fully understood.N6-methyladenosine(m^(6)A)modification of RNA,a prevalent epi-transcriptomic modification in eukaryotes,provides a binding site for m^(6)A readers and affects plant growth and stress responses by regulating RNA metabolism.In this study,we unveiled that the YT521-B homology(YTH)family gene SiYTH1 positively regulated the drought tolerance of foxtail millet.Notably,the siyth1 mutant exhibited reduced stomatal closure and augmented accumulation of excessive H_(2)O_(2)under drought stress.Further investigations demonstrated that SiYTH1 positively regulated the transcripts harboring m^(6)A modification related to stomatal closure and reactive oxygen species(ROS)scavenging under drought stress.SiYTH1 was uniformly distributed in the cytoplasm of SiYTH1-GFP transgenic foxtail millet.It formed dynamic liquid-like SiYTH1 cytosol condensates in response to drought stress.Moreover,the cytoplasmic protein SiYTH1 was identified as a distinct m^(6)A reader,facilitating the stabilization of its directly bound SiARDP and ROS scavenging-related transcripts under drought stress.Furthermore,natural variation analysis revealed SiYTH1AGTG as the dominant allele responsible for drought tolerance in foxtail millet.Collectively,this study provides novel insights into the intricate mechanism of m^(6)A reader-mediated drought tolerance and presents a valuable genetic resource for improving drought tolerance in foxtail millet breeding.Weiwei Luo Yuxiang Tang Shenglan Li Linlin Zhang Yuwei Liu Renliang Zhang Xianmin Diao Jingjuan Yu 2023Journal of Integrative Plant Biology2023,65,12:0
11Progress in phase III clinical trials of molecular targeted therapy and immunotherapy for glioblastoma显示文摘Glioblastoma(GBM)is the most common primary central nervous system tumor,whose prognosis remains poor under the sequential standard of care,such as neurosurgery followed by concurrent temozolomide radiochemotherapy and adjuvant temozolomide chemotherapy in the presence or absence of tumor treating fields.Accordingly,the advent of molecular targeted therapy and immunotherapy has opened a new era of tumor management.A diverse range of targeted drugs have been tested in patients with GBM in phase III clinical trials.However,these drugs are ineffective for all patients,as evidenced by the fact that only a minority of patients in these trials showed prolonged survival.Furthermore,there are several published phase III clinical trials that involve immune checkpoint inhibitors,peptide vaccines,dendritic cell vaccines,and virotherapy.Accordingly,this review comprehensively overviews existing studies of targeted drugs and immunotherapy for glioma and discusses the challenge and perspective of targeted drugs and immunotherapy for glioma to clarify future directions.Yuekun Wang Shenglan Li Yichen Peng Wenbin Ma Yu Wang Wenbin Li 2023Cancer Innovation2023,2,2:0
12Plant latent defense response to microbial non-pathogenic factors antagonizes compatibility显示文摘Unlike microbe-associated molecular patterns(MAMPs)that are readily targeted by host immunity,microbial non-pathogenic factors(NPFs)appear negligible as they do not elicit defense.Little is known about whether and how NPFs may be monitored by hosts to control compatibility.Herein,a forward genetic screening isolated an Arabidopsis mutant with a loss of plant-rhizobacteria mutualism,leading to the disclosure of a plant latent defense response(LDR)to NPFs.The activation of LDR in the mutant,named rol1 for regulator of LDR 1,is triggered by several non-pathogenic volatile organic compounds and antagonizes plant compatibility with the beneficial bacterium Bacillus amyloliquefaciens GB03.The activation of LDR in rol1 is mediated through the prokaryotic pathway of chloroplastic lipid biosynthesis.The rol1 root microbiome showed a reduced proportion of the Bacillaceae family.We propose that,parallel to the forefront immunity to MAMPs,LDR to certain NPFs provides a hidden layer of defense for controlling compatibility with commensal or beneficial microbes.Yu Yang Shenglan Chen Xiaoxuan Wu Li Peng Juan I.Vílchez Richa Kaushal Xiaomin Liu Sunil K.Singh Danxia He Fengtong Yuan Suhui Lv Rafael J.L.Morcillo Wei Wang Weichang Huang Mingguang Lei Jian-Kang Zhu Paul W.Paré Huiming Zhang 2022National Science Review2022,9,8:0
13Role of melatonin receptor 1B gene polymorphism and its effect on the regulation of glucose transport in gestational diabetes mellitus显示文摘Melatonin receptor 1B(MT2,encoded by the MTNR1B gene),a high-affinity receptor for melatonin,is associated with glucose homeostasis including glucose uptake and transport.The rs10830963 variant in the MTNR1B gene is linked to glucose metabolism disorders including gestational diabetes mellitus(GDM);however,the relationship between MT2-mediated melatonin signaling and a high birth weight of GDM infants from maternal glucose abnormality remains poorly understood.This article aims to investigate the relationship between rs10830963 variants and GDM development,as well as the effects of MT2 receptor on glucose uptake and transport in trophoblasts.TaqMan-MGB(minor groove binder)probe quantitative realtime polymerase chain reaction(qPCR)assays were used for rs10930963 genotyping.MT2 expression in the placenta of GDM and normal pregnant women was detected by immunofluorescence,western blot,and qPCR.The relationship between MT2 and glucose transporters(GLUTs)or peroxisome proliferator-activated receptorγ(PPARγ)was established by western blot,and glucose consumption of trophoblasts was measured by a glucose assay kit.The results showed that the genotype and allele frequencies of rs10830963 were significantly different between GDM and normal pregnant women(P<0.05).The fasting,1-h and 2-h plasma glucose levels of G-allele carriers were significantly higher than those of C-allele carriers(P<0.05).Besides,the protein and messenger RNA(mRNA)expression of MT2 in the placenta of GDM was significantly higher than that of normal pregnant women(P<0.05).Melatonin could stimulate glucose uptake and GLUT4 and PPARγprotein expression in trophoblasts,which could be attenuated by MT2 receptor knockdown.In conclusion,the rs10830963 variant was associated with an increased risk of GDM.The MT2 receptor is essential for melatonin to raise glucose uptake and transport,which may be mediated by PPARγ.Lijie WEI Yi JIANG Peng GAO Jingyi ZHANG Xuan ZHOU Shenglan ZHU Yuting CHEN Huiting ZHANG Yuanyuan DU Chenyun FANG Jiaqi LI Xuan GAO Mengzhou HE Shaoshuai WANG Ling FENG Jun YU 2023Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)2023,24,1:0
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