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11篇 您的检索式:作者名="Cesar LI"
    题名 作者 年代 出处 被引量
1Ultrasound-guided Removal of Retained Soft Tissue Foreign Body with Late Presentation显示文摘Ying Fu Li-Gang Cui Cesare Romagnoli Zhi-Qiang Li Yu-Tao Lei 2017Chinese Medical Journal2017,,14:5
2Metabolic abnormalities in young offsprings of parents with essential hypertension显示文摘Vicco MH Rodeles L Cesar LI 2013Medicina(B Aires)2013,73,3:1
3Prevalence of biliary lithiasisin a Sicilian population of hemodialysis patients显示文摘Li Vecchi M Cesare S Soresi M 2001Clin Nephrol2001,55,2:1
4Nanoporous Walls on Macroporous Foam: Rational Design of Electrodes to Push Areal Pseudocapacitance显示文摘Cao Guan Xianglin Li Zilong Wang Xiehong Cao Cesare Soci Hua Zhang Hong Jin Fan 2012Adv. Mater2012,,30:1
5Artifacts found in computed radlography显示文摘Cesar LI Schueler BA Zink FE 2001Brit J Radiol2001,74,:1
6Strain-induced spatially indirect exciton recombination in zinc-blende/wurtzite CdS heterostructures显示文摘Strain engineering provides an effective mean of tuning the fundamental properties of semiconductors for electric and optoelectronic applications. Here we report on how the applied strain changes the emission properties of hetero- structures consisting of different crystalline phases in the same CdS nanobelts. The strained portion was found to produce an additional emission peak on the low-energy side that was blueshifted with increasing strain. Furthermore, the additional emission peak obeyed the Varshni equation with temperature and exhibited the band-filling effect at high excitation power. This new emission peak may be attributed to spatially indirect exciton recombination between different crystalline phases of CdS. First-principles calculations were performed based on the spatially indirect exciton recombination, and the calculated and experimental results agreed with one another. Strain proved to be capable of enhancing the anti-Stokes emission, suggesting that the efficiency of laser cooling may be improved by strain engineering.Dehui Li Yang Liu Maria de la Mata Cesar Magen Jordi Arbiol Yuanping Feng Qihua Xiong 2015Nano Research2015,8,9:1
7查看详情显示文摘Sun Y Chen X Q Li D Z Cesare F Yunoki S Li Y Y Sun Z F 0,,:1
8High molecular weight poly(lactic acid) produced by an efficient iron catalyst bearing a bis(amidinato)- N -heterocyclic carbene ligand显示文摘Cesar M. Manna Hilan Z. Kaplan Bo Li Jeffery A. Byers 2014Polyhedron2014,,:1
93D-bioprinted cholangiocarcinoma-on-a-chip model for evaluating drug responses显示文摘Cholangiocarcinoma(CCA)is characterized by heterogeneous mutations and a refractory nature.Thus,the development of a model for effective drug screening is urgently needed.As the established therapeutic testing models for CCA are often ineffective,we fabricated an enabling three-dimensional(3D)-bioprinted CCA-on-a-chip model that to a good extent resembled the multicellular microenvironment and the anatomical microstructure of the hepato-vascular-biliary system to perform high-content antitumor drug screening.Specifically,cholangiocytes,hepatocytes,and vascular endotheliocytes were employed for 3D bioprinting of the models,allowing for a high degree of spatial and tube-like microstructural control.Interestingly,it was possible to observe CCA cells attached to the surfaces of the gelatin methacryloyl(GelMA)hydrogelembedded microchannels and overgrown in a thickening manner,generating bile duct stenosis,which was expected to be analogous to the in vivo configuration.Over 4000 differentially expressed genes were detected in the CCA cells in our 3D coculture model compared to the traditional two-dimensional(2D)monoculture.Further screening revealed that the CCA cells grown in the 3D traditional model were more sensitive to the antitumoral prodrug than those in the 2D monoculture due to drug biotransformation by the neighboring functional hepatocytes.This study provides proof-of-concept validation of our bioprinted CCA-on-a-chip as a promising drug screening model for CCA treatment and paves the way for potential personalized medicine strategies for CCA patients in the future.Qiong Liu Luis SMille Cesar Villalobos Ingrid Anaya Matthias Vostatek Sili Yi Wanlu Li Junlong Liao Huanghui Wu Yongteng Song Lize Xiong Yu Shrike Zhang 2023Bio-Design and Manufacturing2023,6,4:0
10Antibiofilm and immunomodulatory resorbable nanofibrous filing for dental pulp regenerative procedures显示文摘Multifunctional scaffolds with host defense peptides designed for regenerative endodontics are desirable nanobiotechnological tools for dentistry.Here,different scaffolds were tested for use during the pulp revascularization process,including poly(vinyl alcohol)-PVA hydrogels or resins,collagen hydrogels and poly(vinyl alcohol)PVA/Chitosan(PVA/CS)nanofibers.Based on time to degradation(21 days),nanofibers were chosen to be incorporated with ciprofloxacin and IDR-1002(each at 50 mg/g).Nanofibers containing ciprofloxacin and IDR-1002 had anti-biofilm activity against Enterococcus faecalis,Staphylococcus aureus and a multispecies oral biofilm,besides anti-inflammatory activities.The in vivo subcutaneous tissue response to tooth fragments filled with nanofibers demonstrated a pulp-like tissue formation,when compared to empty teeth fragments.Thus,we designed a strong antimicrobial,immunomodulatory and regenerative candidate for pulp revascularization and regeneration procedures.Mauricio Gonçalves da Costa Sousa Gabriela Conceiçao de Almeida Danilo Cesar Martins Mota Rosiane Andrade da Costa Simoni Campos Dias Samuel Nunes Limberger Frank Ko Li Ting Lin Evan FHaney Hashem Etayash Beverlie Baquir Michael J.Trimble Ya Shen Zheng Su Markus Haapasalo Daniel Pletzer Letícia Chaves de Souza Glaucia Schuindt Teixeira Renato M.Silva Robert E.W.Hancock Octavio Luiz Franco Taia Maria Berto Rezende 2022Bioactive Materials2022,7,10:0
11Advances in probing single biomolecules: From DNA bases to glycans显示文摘Imaging biomolecules in real space is crucial for gaining a comprehensive understanding of the properties and functions of biological systems at the most fundamental level.Among the various imaging techniques available for biomolecules and their assembled nanostructures,scanning probe microscopy(SPM)provides a powerful and nondestructive imaging option.SPM is unique in visualizing intrinsically disordered biomolecules at the nanometer scale(e.g.,glycans).This review highlights recent achievements in studying biomolecules using SPM technique,focusing on DNA bases,amino acids,proteins,and glycans.The atomic-level analysis of biomolecules made possible by SPM allows for a more accurate definition of the local structure–property relationship.High-resolution SPM imaging of single biomolecules offers a new way to study basic processes of life at the molecular level.Baofei Hou Teng Zhang Huixia Yang Xu Han Liwei Liu Linfei Li Cesare Grazioli Xu Wu Nan Jiang Yeliang Wang 2023Interdisciplinary Materials2023,2,4:0
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