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7篇 您的检索式:作者名="Lang Mai"
    题名 作者 年代 出处 被引量
1The Chinese Society of Clinical Oncology(CSCO)clinical guidelines for the diagnosis and treatment of nasopharyngeal carcinoma显示文摘Nasopharyngeal carcinoma(NPC)is a malignant epithelial tumor originating in the nasopharynx and has a high incidence in Southeast Asia and North Africa.To develop these comprehensive guidelines for the diagnosis and management of NPC,the Chinese Society of Clinical Oncology(CSCO)arranged a multi-disciplinary team comprising of experts from all sub-specialties of NPC to write,discuss,and revise the guidelines.Based on the findings of evidencebased medicine in China and abroad,domestic experts have iteratively developed these guidelines to provide proper management of NPC.Overall,the guidelines describe the screening,clinical and pathological diagnosis,staging and risk assessment,therapies,and follow-up of NPC,which aim to improve the management of NPC.Ling-Long Tang Yu-Pei Chen Chuan-Ben Chen Ming-Yuan Chen Nian-Yong Chen Xiao-Zhong Chen Xiao-Jing Du Wen-Feng Fang Mei Feng Jin Gao Fei Han Xia He Chao-Su Hu De-sheng Hu Guang-Yuan Hu Hao Jiang Wei Jiang Feng Jin Jin-Yi Lang Jin-Gao Li Shao-Jun Lin Xu Liu Qiu-Fang Liu Lin Ma Hai-Qiang Mai Ji-Yong Qin Liang-Fang Shen Ying Sun Pei-Guo Wang Ren-Sheng Wang Ruo-Zheng Wang Xiao-Shen Wang Ying Wang Hui Wu Yun-Fei Xia Shao-Wen Xiao Kun-Yu Yang Jun-Lin Yi Xiao-Dong Zhu Jun Ma 2021Cancer Communications2021,41,11:22
2Multi-platform omics analysis reveals molecular signature for COVID-19 pathogenesis,prognosis and drug target discovery显示文摘Disease progression prediction and therapeutic drug target discovery for Coronavirus disease 2019(COVID-19)are particularly important,as there is still no effective strategy for severe COVID-19 patient treatment.Herein,we performed multi-platform omics analysis of serial plasma and urine samples collected from patients during the course of COVID-19.Integrative analyses of these omics data revealed several potential therapeutic targets,such as ANXA1 and CLEC3B.Molecular changes in plasma indicated dysregulation of macrophage and suppression of T cell functions in severe patients compared to those in non-severe patients.Further,we chose 25 important molecular signatures as potential biomarkers for the prediction of disease severity.The prediction power was validated using corresponding urine samples and plasma samples from new COVID-19 patient cohort,with AUC reached to 0.904 and 0.988,respectively.In conclusion,our omics data proposed not only potential therapeutic targets,but also biomarkers for understanding the pathogenesis of severe COVID-19.Yuming Li Guixue Hou Haibo Zhou Yanqun Wang Hein Min Tun Airu Zhu Jingxian Zhao Fei Xiao Shanwen Lin Dongdong Liu Dunrong Zhou Lang Mai Lu Zhang Zhaoyong Zhang Lijun Kuang Jiao Guan Qiushi Chen Liyan Wen Yanjun Zhang Jianfen Zhuo Fang Li Zhen Zhuang Zhao Chen Ling Luo Donglan Liu Chunke Chen Mian Gan Nanshan Zhong Jincun Zhao Yan Ren Yonghao Xu 2021Signal Transduction and Targeted Therapy2021,6,5:1
3Characterization and micromechancal testing of the interphase of aramid-reinforced epoxy composites显示文摘Lange P Jde Mader E Mai K 2001Composites:Part A2001,32,:1
4Characterization and micromechanical testing of the interphase of aramid-reinforced epoxy composites显示文摘Lange de P J Mader E Mai K 2001Composites Part A: Applied Science and Manufacturing2001,32,34:1
5Biomimetic manganese-based theranostic nanoplatform for cancer multimodal imaging and twofold immunotherapy显示文摘The limited clinical response and serious side effect have been challenging in cancer immunotherapy resulting from immunosuppressive tumor microenvironment(TME)and inferior drug targeting.Herein,an active targeting TME nanoplatform capable of revising the immunosuppressive TME microenvironment is designed.Briefly,gold nanorods(GNRs)are covered with silica dioxide(SiO_(2))and then coated manganese dioxide(MnO_(2))to obtain GNRs@SiO_(2)@MnO_(2)(GSM).Myeloid-derived suppressor cells(MDSCs)membrane is further camouflaged on the surface of GSM to obtain GNRs@SiO_(2)@MnO_(2)@MDSCs(GSMM).In this system,GSMM inherits active targeting TME capacity of MDSCs.The localized surface plasmon resonance of GNRs is developed in near-infraredⅡwindow by MnO_(2)layer coating,realizing NIR-Ⅱwindow photothermal imaging and photoacoustic imaging of GSMM.Based on the release of Mn^(2+)in acidic TME,GSMM can be also used for magnetic resonance imaging.In cancer cells,Mn^(2+)catalyzes H_(2)O_(2)into·OH for(chemodynamic therapy)CDT leading to activate cGAS-STING,but also directly acts on STING inducing secretion of typeⅠinterferons,pro-inflammatory cytokines and chemokines.Additionally,photothermal therapy and CDT-mediated immunogenic cell death of tumor cells can further enhance anti-tumor immunity via exposure of CRT,HMGB1 and ATP.In summary,our nanoplatform realizes multimodal cancer imaging and dual immunotherapy.Yuyue Zhao Yuanwei Pan Kelong Zou Zhou Lan Guowang Cheng Qiuying Mai Hao Cui Qianfang Meng Tongkai Chen Lang Rao Limin Ma Guangtao Yu 2023Bioactive Materials2023,,1:0
6Study on Using Biological Sludge from Vinh Loc Industrial Park to Produce Composting Product显示文摘In order to examine the optimal design and operating parameters in composting of waste activated sludge,a series of experiments were conducted to discuss the optimal operating parameters for aerobic composting of waste activated sludge obtained from Vinh Loc Industrial Park that is located in Ho Chi Minh City.The study was done by optimizing the ratios of sludge/inactive fillers and sludge/microbial products to improve the composting efficiency.After 50 days of composting,the composts of all experiment batches met the microorganism-organic fertilizer standards of 10 TCN 526:2002.The study indicated that the highest efficiency decomposition was obtained at the ratio of a sludge/inactive fillers of 1/0.1 and sludge/microbial products of 1/0.05:TOC(Total Organic Carbon)reduced by 20.2%,loss of Nitrogen was trivial(0.53%),the highest temperature reached at 55.5 oC and lasting for 5 days which ensures elimination of pathogens.However,the addition of nitrogen compounds during the composting is necessary to ensure the compost product can meet the nitrogen standard of microorganism-organic fertilizer.Ton That Lang Nguyen Thi Mai Thao Pham Vu Nhat Uyen Dang Anh Tuan 2018Journal of Environmental Science and Engineering(A)2018,7,5:0
7NνDEx-100 conceptual design report显示文摘Observing nuclear neutrinoless double beta (0vββ) decay would be a revolutionary result in particle physics.Observing such a decay would prove that the neutrinos are their own antiparticles,help to study the absolute mass of neutrinos,explore the origin of their mass,and may explain the matter-antimatter asymmetry in our universe by lepton number violation.We propose developing a time projection chamber (TPC) using high-pressure ^(82)SeF_(6) gas and Topmetal silicon sensors for readout in the China Jinping Underground Laboratory (CJPL) to search for neutrinoless double beta decay of82Se,called the NvDEx experiment.Besides being located at CJPL with the world’s thickest rock shielding,NvDEx combines the advantages of the high Qββ(2.996 MeV) of82Se and the TPC’s ability to distinguish signal and background events using their different topological characteristics.This makes NvDEx unique,with great potential for low-background and high-sensitivity 0 vββsearches.NvDEx-100,a NvDEx experiment phase with 100 kg of SeF_(6)gas,is being built,with plans to complete installation at CJPL by 2025.This report introduces 0 vββ physics,the NvDEx concept and its advantages,and the schematic design of NvDEx-100,its subsystems,and background and sensitivity estimation.Xi-Guang Cao Yan-Long Chang Kai Chen Emilio Ciuffoli Li-Min Duan Dong-Liang Fang Chao-Song Gao Surja K.Ghorui Peng-Chong Hu Qiang Hu Si-Yuan Huang Ze-Yu Huang Lei Lang Yu-Lan Li Zhi-Jie Li Tian-Yu Liang Jun Liu Chen-Gui Lu Fa-Tai Mai Yuan Mei Hao Qiu Xiang-Ming Sun Xiao-Xing Tang Hu-Lin Wang Qian-Ming Wang Le Xiao Mu-Yun Xiao Jian-Yu Xin Nu Xu Peng Yang Yi-Chen Yang Zhen Yang Zong-Yang Yu Dong-Liang Zhang Jun-Wei Zhang Cheng-Xin Zhao Dou Zhu NνDEx-100 collaboration 2024Nuclear Science and Techniques2024,35,1:0
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