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    题名 作者 年代 出处 被引量
1Reviewofliteratureofradialnerveinju-riesassociatedwithhumeralfractures-anintegratedmanagementstrategy显示文摘LiY NingG WuQ etal 2013PloSOne2013,8,78:1
2Diabetes in China:a societal solution for a personal challenge 显示文摘ChanJC ZhangY NingG 2014Lancet Diabetes Endocrinol2014,14,70:1
3Expanding Exchange and Enhancing Understanding──Note on the Visit of the Institute of the National Economy Forecast,Under the Russian Science Academy显示文摘Spring in Beijing is em-braced by blossoming flow-ers and vigour.In this lovely season,a four-member dele-gation of the Institute of Na-tional Economy Forecast un-der the Russian Science Acad-emy visited China from May 9 to 18 at the Invitation of the Chinese Association for In-ternational Understanding(CAFIU).The delegation is composedof 0.S.Pchelintsev,director of the Institute's De-partment on Regional Eco-nomic Studies,N.B.Suvorov,director of the Department on the Income and Expenditure Forecast Studics,A.A.Blokhin,director of the Re-structuring Studies Depart-ment and D.G.Zhdanovich,director of the International Cooperation.You Ningge 1996International Understanding1996,,3:0
4Evaluation of erastin synergized cisplatin anti-nasopharyngeal carcinoma effect with a glutathione-activated near-infrared fluorescent probe显示文摘Nasopharyngeal carcinoma(NPC),a malignant tumor originating from the nasopharynx,is one of the common malignant tumors of the head and neck.There are significant geographical differences in the incidence of nasopharyngeal carcinoma,with a high incidence in China and Southeast Asian countries.Herein,we designed and synthesized a novel near-infrared fluorescent(NIRF)probe to detect glutathione(GSH)in cellular and tumor environments using semi-naphthofluorescein(SNAFL)as the fluorescent molecular backbone and 2-fluoro-4-nitrobenzenesulfonate as the recognition moiety.Upon reaction with GSH,SNAFL-GSH emitted a fluorescence signal,and its emission wavelength at 650 nm was remarkably enhanced.The results of selectivity experiments indicated that SNAFL-GSH was able to discriminate GSH from Cys,Hcy,and H_(2) S.Moreover,SNAFL-GSH could image both endogenous and exogenous GSH and distinguish normal and cancer cells by fluorescence signal difference.At the cellular level,cisplatin(DDP)-induced ferroptosis and inhibition of proliferation of various NPC cell lines(CNE2,CNE1,5-8F cells)by erastin combined with DDP were visualized with the help of SNAFL-GSH.In a mouse tumor xenograft model,we successfully employed SNAFL-GSH for the evaluation of the efficacy of erastin combined with DDP in the treatment of NPC.More importantly,the probe could image cancerous tissue sections from NPC patients with an imaging depth of approximately 80µm.It was foreseen that SNAFL-GSH offered great potential for application in the diagnosis and evaluation of the therapeutic efficacy of NPC,and these results would also provide new ideas for the clinical treatment of NPC.Rong He Dandan Tang Ningge Xu Heng Liu Kun Dou Xuejun Zhou Fabiao Yu 2024Chinese Chemical Letters2024,35,2:0
5Recent advances in microsystem approaches for mechanical characterization of soft biological tissues显示文摘Microsystem technologies for evaluating the mechanical properties of soft biological tissues offer various capabilities relevant to medical research and clinical diagnosis of pathophysiologic conditions.Recent progress includes(1)the development of tissue-compliant designs that provide minimally invasive interfaces to soft,dynamic biological surfaces and(2)improvements in options for assessments of elastic moduli at spatial scales from cellular resolution to macroscopic areas and across depths from superficial levels to deep geometries.This review summarizes a collection of these technologies,with an emphasis on operational principles,fabrication methods,device designs,integration schemes,and measurement features.The core content begins with a discussion of platforms ranging from penetrating filamentary probes and shape-conformal sheets to stretchable arrays of ultrasonic transducers.Subsequent sections examine different techniques based on planar microelectromechanical system(MEMS)approaches for biocompatible interfaces to targets that span scales from individual cells to organs.One highlighted example includes miniature electromechanical devices that allow depth profiling of soft tissue biomechanics across a wide range of thicknesses.The clinical utility of these technologies is in monitoring changes in tissue properties and in targeting/identifying diseased tissues with distinct variations in modulus.The results suggest future opportunities in engineered systems for biomechanical sensing,spanning a broad scope of applications with relevance to many aspects of health care and biology research.Enming Song Ya Huang Ningge Huang Yongfeng Mei Xinge Yu John A.Rogers 2022Microsystems & Nanoengineering2022,8,4:0
6The Delegation of 'Russia:Our Homeland' Movement Visits china显示文摘TheDelegationof"Russia:OurHomeland"MovementVisitschinaByYouNinggeAttheinvitationofCAFIU,an8-memberdelegationof"Russia:OurHome...You Ningge 1997International Understanding1997,,2:0
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