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6篇 您的检索式:作者名="Mengdan Zhao"
    题名 作者 年代 出处 被引量
1Lercanidipine hydrochloride versus felodipine sustained-release for mild-to-moderate hypertension: a multi-center, randomized clinical trial显示文摘Ying Wu Mengdan Xu Hao Wang Xin Xu Shuiping Zhao Mei Zhang Huigen Jin Jinchuan Yan Bangning Wang Jianbin Gong Xiang Lu Jianqiang Peng Qiuyan Dai 2014Current Medical Research & Opinion2014,,1:1
2Bifunctional Salen-Cu(II) Complex as Efficient Catalyst for N-Arylation of Imidazoles and Suzuki-Miyaura Coupling Reactions显示文摘WANG Yi GAO Jingyi ZHAO Mengdan LI Jiamei 2015Chemical Research in Chinese Universities2015,31,4:1
3BCAT1 promotes lung adenocarcinoma progression through enhanced mitochondrial function and NF-κB pathway activation显示文摘Lung cancer is one of the most prevalent and malignant cancers,among which lung adenocarcinoma(LUAD)accounts for the majority and remains a major cause of cancer-related mortality worldwide(Cui et al.,2019).Despite the growing intensity of research on the pathobiology and progression of lung cancer and the fact that many genes have been identified as potential drivers and targets for therapy(Luo et al.,2019;Zhang et al.,2019),the treatment and prognosis of lung cancer patients have hardly improved.Therefore,this study aimed to investigate the precise mechanism of lung cancer development and explore efficient diagnostic and therapeutic methods for clinical treatment.Mengdan YU Qianwei ZHAO Jinxia LI Fang XU Zhibiao ZHANG Yixian LIU Liping DAI Bingxia ZHANG Jianying ZHANG Jintao ZHANG 2022Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)2022,23,9:0
4Conductive hydrogels incorporating carbon nanoparticles:A review of synthesis,performance and applications显示文摘As one of the most rapidly expanding materials,hydrogels have gained increasing attention in a variety of fields due to their biocompatibility,degradability and hydrophilic properties,as well as their remarkable adhesion and stretchability to adapt to different surfaces.Hydrogels combined with carbon-based materials possess enhanced properties and new functionalities,in particular,conductive hydrogels have become a new area of research in the field of materials science.This review aims to provide a comprehensive overview and up-to-date examination of recent developments in the synthesis,properties and applications of conductive hydrogels incorporating several typical carbon nanoparticles such as carbon nanotubes,graphene,carbon dots and carbon nanofibers.We summarize key techniques and mechanisms for synthesizing various composite hydrogels with exceptional properties,and represented applications such as wearable sensors,temperature sensors,supercapacitors and human-computer interaction reported recently.The mechanical,electrical and sensing properties of carbon nanoparticles conductive hydrogels are thoroughly analyzed to disclose the role of carbon nanoparticles in these hydrogels and key factors in the microstructure.Finally,future development of conductive hydrogels based on carbon nanoparticles is discussed including the challenges and possible solutions in terms of microstructure optimization,mechanical and other properties,and promising applications in wearable electronics and multifunctional materials.Shipeng Zhang Bo Zhao Ding Zhang Mengdan Yang Xinguang Huang Lei Han Kun Chen Xinjian Li Rui Pang Yuanyuan Shang Anyuan Cao 2023Particuology2023,,12:0
5A Skopos Theory-based Study of Translation Principles of Traditional Chinese Medicine Decoctions显示文摘English translations of Traditional Chinese medicine(TCM)terms and prescriptions need standardizing to minimize ambiguity as the popularity of TCM spreads globally.Herein an evaluation guide for translation of TCM decoctions in English into diverse social,cultural and medical systems,is proffered which integrates Skopos theory and Li Zhaoguo’s principles of English translation(conciseness of lexical composition,information accuracy,and similarity in lexical composition).Based on a case study of the traditional herbal medicine Mahuang Xingren Gancao Shigao Tang,direct translation methods with concise lexical composition are determined to most clearly convey the sophisticated and verbose original TCM prescription.Riliu Huang Mengdan Zhao 2021Journal of Literature and Art Studies2021,11,11:0
6Chemokine Ligand 13 Expression is Abundant in the Tumor Microenvironment and Indicates Poor Prognosis of Kidney Clear Cell Carcinoma显示文摘The chemokine ligand 13-chemokine receptor 5(CXCL13-CXCR5)axis has been characterized as a critical tumor-promoting signaling pathway in the tumor microenvironment(TME)in multiple types of solid tumors.In this study,we analyzed the expression profile of CXCL13 in kidney clear cell carcinoma(KIRC)and its correlation with tumor-infiltrating immune cells(TIICs).A monoclonal antibody against CXCL13 with high affinity and purity was generated in our lab for western blot and immunohistochemistry(IHC).Bioinformatic analysis was performed based on bulk-seq data from the Cancer Genome Atlas(TCGA)-KIRC and single-cell RNA-seq data from scRNASeqDB and PanglaoDB.Results showed that high CXCL13 expression in TME was associated with shorter progression-free survival(PFS),disease-specific survival(DSS),and overall survival(OS).KIRC cell lines,as well as several other cancer cell lines,had negative CXCL13 expression.IHC staining from the Human Protein Atlas(HPA)and our tissue array indicated that CXCL13 might be mainly expressed by TIICs,but not KIRC tumor cells.CXCL13 expression was strongly and positively correlated withγδT cell abundance in TME.Besides,γδT cell infiltration was associated with poor survival of KIRC.Methylation 450k array data showed that CXCL13 promoter hypomethylation was common in TIICs.The methylation level of cg16361705 within the CXCL13 promoter might play an important role in modulating CXCL13 transcription.In conclusion,our study revealed that CXCL13 expression andγδT cell infiltration in TME is associated with unfavorable survival of KIRC.TIICs,most possiblyγδT cells,are the dominant source of CXCL13 in KIRC TME.MENGDAN WU MENGYAO SUN QINHUAI LAI YIN LU YUYIN FU YUJIA PENG WEIRONG LAI LISHI ZENG SHENGYAN ZHAO YUYAN LI ZHIXIONG ZHANG XIAOFENG CHEN FAN QIAO YIWEN ZHANG SHIJIE ZHOU LANTU GOU JINLIANG YANG 2021BIOCELL2021,45,3:0
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