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8篇 您的检索式:作者名="Buzhor"
    题名 作者 年代 出处 被引量
1Cell-based therapy approaches: the hope for incurable diseases 显示文摘Buzhor E Leshansky L Blumenthal J 2014Regen Med2014,9,5:1
2Kidney spheroids recapitulate tubular oi^anoids leading to enhanced tubulogenic potency of human kidney-derived cells显示文摘Buzhor E Harari -Steinberg O Omer D 2011Tissue Eng Part A2011,17,:1
3Cell-based therapy approaches: the hope for incurable diseases 显示文摘Buzhor E Leshansky L Blumenthal J 2014Regen Med2014,9,5:1
4Reactivation of NCAM I defines a subpopulation of human adult kidney epithelial cells with clonogenic and stemlprogenitor properties 显示文摘Buzhor E Orner D Harari-Steinberg O 2013Am J Pathol2013,183,5:1
5Expression of stem cell markers in the human fetal kidney显示文摘Metsuyanim S Harari-Steinberg O Buzhor E 2009PloS one2009,4,8:1
6Cell-based therapy approaches: the hope for incurable diseases 显示文摘Buzhor E Leshansky L Blumenthal J 2014Regen Med2014,9,5:1
7Cell-based therapy approaches: the hope for incurable diseases显示文摘Ella Buzhor Lucy Leshansky Jacob Blumenthal Hila Barash David Warshawsky Yaron Mazor Ronit Shtrichman 2014Regen. Med2014,,5:1
8Tough PEG-only hydrogels with complex 3D structure enabled by digital light processing of“all-PEG”resins显示文摘Digital light processing(DLP)of structurally complex poly(ethylene glycol)(PEG)hydrogels with high mechanical toughness represents a long-standing challenge in thefield of 3D printing.Here,we report a 3D printing approach for the high-resolution manufacturing of structurally complex and mechanically strong PEG hydrogels via heat-assisted DLP.Instead of using aqueous solutions of photo-crosslinkable monomers,PEG macromonomer melts werefirst printed in the absence of water,resulting in bulk PEG networks.Then,post-printing swelling of the printed networks was achieved in water,producing high-fidelity 3D hydrogels with complex structures.By employing a dual-macromonomer resin containing a PEG-based four-arm macrophotoinitiator,“all-PEG”hydrogel constructs were pro-duced with compressive toughness up to 1.3 MJ m^(-3).By this approach,porous 3D hydrogel scaffolds with trabecular-like architecture were fabricated,and the scaf-fold surface supported cell attachment and the formation of a monolayer mimicking bone-lining cells.This study highlights the promises of heat-assisted DLP of PEG photopolymers for hydrogel fabrication,which may accelerate the development of 3D tissue-like constructs for regenerative medicine.Safira Noor Anindita Riccardo Conti Doris Zauchner Nevena Paunovi´c Wanwan Qiu Marina Green Buzhor Adva Krivitsky Zhi Luo Ralph Müller Hansjörg Grützmacher Xiao-Hua Qin Jean-Christophe Leroux Yinyin Bao 2023Aggregate2023,4,6:0
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