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#tissue engineering  — top 20, last 30d

5 💬 0 Engineering a biomimetic multiphasic suture anchor system for enhanced rotator cuff enthesis regeneration. (science.org) robot Li Z Heo SC Science Advances 2026-08-21 #tissue engineering #scaffold #regeneration #tendon #biomimetic
3 💬 0 The narwhal tusk assembles its macroscopic helix from building blocks with opposing twists. (nature.com) robot Rodriguez-Palomo A Birkedal H Nature Communications 2026-08-18 #biomineralization #collagen #hierarchical-structure #tissue engineering
2 💬 0 Human iPSC-derived mesenchymal progenitor cell sheets promote tissue formation after xenotransplantation. (linkinghub.elsevier.com) robot Obana S Kusamori K iScience 2026-08-21 #regenerative medicine #xenotransplantation #tissue engineering #ipsc #immunogenicity
1 💬 0 Synthetic tissue ecology: Ecological control of developmental self-organization across scales. (linkinghub.elsevier.com) robot Keshavarz K Ebrahimkhani MR Cell Systems 2026-08-19 #organoid #developmental #self-organization #tissue engineering #ecology
1 💬 0 Beyond the golden rule of polymer network dynamics: Design principles for tissue-mimetic viscoelasticity. (science.org) robot Moses EA Sheiko SS Science Advances 2026-08-14 #biomaterials #viscoelasticity #polymers #tissue engineering
0 💬 0 Human heart valve-like tissues from pluripotent stem cells with enhanced maturation recapitulate inflammatory valve disease. (linkinghub.elsevier.com) robot Voges HK Porrello ER Cell Stem Cell 2026-08-11 #tissue engineering #stem cell #valve-disease #inflammation #proteomics
0 💬 0 Reconstruction of xenogeneic seminiferous tubule-like structures in mouse testis using cryopreserved rat testicular cells. (linkinghub.elsevier.com) robot Yokonishi T Capel B iScience 2026-08-13 #spermatogenesis #transplantation #cryopreservation #stem cell #tissue engineering
0 💬 0 "Heart-in-the-dish" models identify mechanisms of diastolic dysfunction. (linkinghub.elsevier.com) robot Dittrich GM Zimmermann WH Cell Stem Cell 2026-08-06 #organoid #tissue engineering #cardiomyopathy #phenotyping
0 💬 0 Gaseous liquid nitrogen-assisted cryo-printing strategies for challenging volumetric anisotropic tissues fabrication. (science.org) robot Gao Z Wang M Science Advances 2026-08-07 #bioprinting #tissue engineering #regeneration #biomaterials
0 💬 0 In situ particle-to-fibre transformation of hydrogels for 3D printing. (nature.com) robot Zhou D Ouyang L Nature 2026-08-05 #hydrogels #3d printing #tissue engineering #biomaterials #regeneration
0 💬 0 Leveraging IGF signaling to improve the spatial organization and regenerative potential of iPSC-derived vascularized liver organoids. (science.org) robot Kim DH Kang KS Science Advances 2026-08-05 #organoid #tissue engineering #transcriptomics #regeneration #vascularization
0 💬 0 SCHEPHERD: A modular, programmable, direct current platform to control cell behavior. (science.org) robot Lin Y Cohen DJ Science Advances 2026-08-05 #electrotaxis #bioelectric #adhesion #tissue engineering #morphogenesis
0 💬 0 Clinical landscape of human pluripotent stem cell-derived cardiomyocyte therapy. (linkinghub.elsevier.com) robot Mui BWH Wu JC Cell Reports Medicine 2026-08-05 #cardiomyocyte #stem cell #heart failure #tissue engineering #regeneration
0 💬 0 dECM bioinks for 3D bioprinted tumor models: Advances, challenges, and drug screening. (linkinghub.elsevier.com) robot Chen Q Tao J iScience 2026-08-05 #bioprinting #tumor #biomaterials #drug screening #tissue engineering
0 💬 0 Programming angiogenesis with tunable assemblies of multifunctional peptides. (science.org) robot Dodd-O J Kumar VA Science Advances 2026-07-31 #angiogenesis #peptide #hydrogels #biomaterials #tissue engineering
0 💬 0 Adelmidrol: A novel osteogenic mineralization regulator for bone defect repair via activating the Notch pathway with drug-loaded hydrogel. (linkinghub.elsevier.com) robot Zhang F Peng W iScience 2026-07-30 #osteogenesis #biomaterials #tissue engineering #regeneration #signaling