Liver‐Inspired Polyetherketoneketone Scaffolds Simulate Regenerative Signals and Mobilize Anti‐Inflammatory Reserves to Reprogram Macrophage Metabolism for Boosted Osteoporotic Osseointegration - Gu - 2023 - Advanced Science - Wiley Online Library

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Liver‐Inspired Polyetherketoneketone Scaffolds Simulate Regenerative  Signals and Mobilize Anti‐Inflammatory Reserves to Reprogram Macrophage  Metabolism for Boosted Osteoporotic Osseointegration - Gu - 2023 - Advanced  Science - Wiley Online Library
Liver‐Inspired Polyetherketoneketone Scaffolds Simulate Regenerative  Signals and Mobilize Anti‐Inflammatory Reserves to Reprogram Macrophage  Metabolism for Boosted Osteoporotic Osseointegration - Gu - 2023 - Advanced  Science - Wiley Online Library
PDF) Zinc-Modified Sulfonated Polyetheretherketone Surface with Immunomodulatory Function for Guiding Cell Fate and Bone Regeneration
Liver‐Inspired Polyetherketoneketone Scaffolds Simulate Regenerative  Signals and Mobilize Anti‐Inflammatory Reserves to Reprogram Macrophage  Metabolism for Boosted Osteoporotic Osseointegration - Gu - 2023 - Advanced  Science - Wiley Online Library
PDF) Zinc-Modified Sulfonated Polyetheretherketone Surface with Immunomodulatory Function for Guiding Cell Fate and Bone Regeneration
Liver‐Inspired Polyetherketoneketone Scaffolds Simulate Regenerative  Signals and Mobilize Anti‐Inflammatory Reserves to Reprogram Macrophage  Metabolism for Boosted Osteoporotic Osseointegration - Gu - 2023 - Advanced  Science - Wiley Online Library
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Liver‐Inspired Polyetherketoneketone Scaffolds Simulate Regenerative  Signals and Mobilize Anti‐Inflammatory Reserves to Reprogram Macrophage  Metabolism for Boosted Osteoporotic Osseointegration - Gu - 2023 - Advanced  Science - Wiley Online Library
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Liver‐Inspired Polyetherketoneketone Scaffolds Simulate Regenerative  Signals and Mobilize Anti‐Inflammatory Reserves to Reprogram Macrophage  Metabolism for Boosted Osteoporotic Osseointegration - Gu - 2023 - Advanced  Science - Wiley Online Library
Frontiers Targeting Mechanotransduction at the Transcriptional Level: YAP and BRD4 Are Novel Therapeutic Targets for the Reversal of Liver Fibrosis
Liver‐Inspired Polyetherketoneketone Scaffolds Simulate Regenerative  Signals and Mobilize Anti‐Inflammatory Reserves to Reprogram Macrophage  Metabolism for Boosted Osteoporotic Osseointegration - Gu - 2023 - Advanced  Science - Wiley Online Library
Frontiers Reactive Oxygen Species Induce Fatty Liver and Ischemia-Reperfusion Injury by Promoting Inflammation and Cell Death
Liver‐Inspired Polyetherketoneketone Scaffolds Simulate Regenerative  Signals and Mobilize Anti‐Inflammatory Reserves to Reprogram Macrophage  Metabolism for Boosted Osteoporotic Osseointegration - Gu - 2023 - Advanced  Science - Wiley Online Library
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Liver‐Inspired Polyetherketoneketone Scaffolds Simulate Regenerative  Signals and Mobilize Anti‐Inflammatory Reserves to Reprogram Macrophage  Metabolism for Boosted Osteoporotic Osseointegration - Gu - 2023 - Advanced  Science - Wiley Online Library
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Liver‐Inspired Polyetherketoneketone Scaffolds Simulate Regenerative  Signals and Mobilize Anti‐Inflammatory Reserves to Reprogram Macrophage  Metabolism for Boosted Osteoporotic Osseointegration - Gu - 2023 - Advanced  Science - Wiley Online Library
Frontiers Incorporation of Bone Morphogenetic Protein-2 and Osteoprotegerin in 3D-Printed Ti6Al4V Scaffolds Enhances Osseointegration Under Osteoporotic Conditions
Liver‐Inspired Polyetherketoneketone Scaffolds Simulate Regenerative  Signals and Mobilize Anti‐Inflammatory Reserves to Reprogram Macrophage  Metabolism for Boosted Osteoporotic Osseointegration - Gu - 2023 - Advanced  Science - Wiley Online Library
PDF) Liver‐Inspired Polyetherketoneketone Scaffolds Simulate Regenerative Signals and Mobilize Anti‐Inflammatory Reserves to Reprogram Macrophage Metabolism for Boosted Osteoporotic Osseointegration

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