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Progress in bioactive surface coatings on biodegradable Mg alloys: A critical review towards clinical translation.
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- Bioactive Materials, 2023, v. 19, p. 717, doi. 10.1016/j.bioactmat.2022.05.009
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Robust hydrogel adhesives for emergency rescue and gastric perforation repair.
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- Bioactive Materials, 2023, v. 19, p. 703, doi. 10.1016/j.bioactmat.2022.05.010
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Zinc oxide nanoparticles inhibit osteosarcoma metastasis by downregulating β-catenin via HIF-1α/BNIP3/LC3B-mediated mitophagy pathway.
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- Bioactive Materials, 2023, v. 19, p. 670, doi. 10.1016/j.bioactmat.2022.05.006
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Engineering multifunctional bioactive citrate-based biomaterials for tissue engineering.
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- Bioactive Materials, 2023, v. 19, p. 511, doi. 10.1016/j.bioactmat.2022.04.027
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An immunomodulatory polypeptide hydrogel for osteochondral defect repair.
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- Bioactive Materials, 2023, v. 19, p. 678, doi. 10.1016/j.bioactmat.2022.05.008
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A TEMPOL and rapamycin loaded nanofiber-covered stent favors endothelialization and mitigates neointimal hyperplasia and local inflammation.
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- Bioactive Materials, 2023, v. 19, p. 666, doi. 10.1016/j.bioactmat.2022.04.033
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Chitosan@Puerarin hydrogel for accelerated wound healing in diabetic subjects by miR-29ab1 mediated inflammatory axis suppression.
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- Bioactive Materials, 2023, v. 19, p. 653, doi. 10.1016/j.bioactmat.2022.04.032
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Polymeric dual-modal imaging nanoprobe with two-photon aggregation-induced emission for fluorescence imaging and gadolinium-chelation for magnetic resonance imaging.
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- Bioactive Materials, 2023, v. 19, p. 538, doi. 10.1016/j.bioactmat.2022.04.026
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Characterization of the interaction of nanobubble ultrasound contrast agents with human blood components.
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- Bioactive Materials, 2023, v. 19, p. 642, doi. 10.1016/j.bioactmat.2022.05.001
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Apoptotic extracellular vesicles are metabolized regulators nurturing the skin and hair.
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- Bioactive Materials, 2023, v. 19, p. 626, doi. 10.1016/j.bioactmat.2022.04.022
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3D cell-printing of gradient multi-tissue interfaces for rotator cuff regeneration.
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- Bioactive Materials, 2023, v. 19, p. 611, doi. 10.1016/j.bioactmat.2022.05.004
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TGF-β1-supplemented decellularized annulus fibrosus matrix hydrogels promote annulus fibrosus repair.
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- Bioactive Materials, 2023, v. 19, p. 581, doi. 10.1016/j.bioactmat.2022.04.025
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A non-invasive smart scaffold for bone repair and monitoring.
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- Bioactive Materials, 2023, v. 19, p. 499, doi. 10.1016/j.bioactmat.2022.04.034
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Mg-based materials diminish tumor spreading and cancer metastases.
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- Bioactive Materials, 2023, v. 19, p. 594, doi. 10.1016/j.bioactmat.2022.05.002
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A reactive oxygen species-responsive hydrogel encapsulated with bone marrow derived stem cells promotes repair and regeneration of spinal cord injury.
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- Bioactive Materials, 2023, v. 19, p. 550, doi. 10.1016/j.bioactmat.2022.04.029
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Nitric-oxide enriched plasma-activated water inactivates 229E coronavirus and alters antiviral response genes in human lung host cells.
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- Bioactive Materials, 2023, v. 19, p. 569, doi. 10.1016/j.bioactmat.2022.05.005
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Nanoengineered hydrogels as 3D biomimetic extracellular matrix with injectable and sustained delivery capability for cartilage regeneration.
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- Bioactive Materials, 2023, v. 19, p. 487, doi. 10.1016/j.bioactmat.2022.03.032
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Corrigendum to "Nanoenzyme engineered neutrophil-derived exosomes attenuate joint injury in advanced rheumatoid arthritis via regulating inflammatory environment" [Bioact. Mater. 18C (2022) 1-14].
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- Bioactive Materials, 2023, v. 19, p. 486, doi. 10.1016/j.bioactmat.2022.04.018
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- Article
Regulated macrophage immune microenvironment in 3D printed scaffolds for bone tumor postoperative treatment.
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- Bioactive Materials, 2023, v. 19, p. 474, doi. 10.1016/j.bioactmat.2022.04.028
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Hyaluronic acid association with bacterial, fungal and viral infections: Can hyaluronic acid be used as an antimicrobial polymer for biomedical and pharmaceutical applications?
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- Bioactive Materials, 2023, v. 19, p. 458, doi. 10.1016/j.bioactmat.2022.04.023
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A bioactive compliant vascular graft modulates macrophage polarization and maintains patency with robust vascular remodeling.
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- Bioactive Materials, 2023, v. 19, p. 167, doi. 10.1016/j.bioactmat.2022.04.004
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Amorphous silica fiber matrix biomaterials: An analysis of material synthesis and characterization for tissue engineering.
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- Bioactive Materials, 2023, v. 19, p. 155, doi. 10.1016/j.bioactmat.2022.04.002
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Enhanced osteoarthritis therapy by nanoengineered mesenchymal stem cells using biomimetic CuS nanoparticles loaded with plasmid DNA encoding TGF-β1.
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- Bioactive Materials, 2023, v. 19, p. 444, doi. 10.1016/j.bioactmat.2022.04.021
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Injectable bone cements: What benefits the combination of calcium phosphates and bioactive glasses could bring?
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- Bioactive Materials, 2023, v. 19, p. 217, doi. 10.1016/j.bioactmat.2022.04.007
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Intelligent polymeric hydrogen sulfide delivery systems for therapeutic applications.
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- Bioactive Materials, 2023, v. 19, p. 198, doi. 10.1016/j.bioactmat.2022.03.043
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Natural, synthetic and commercially-available biopolymers used to regenerate tendons and ligaments.
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- Bioactive Materials, 2023, v. 19, p. 179, doi. 10.1016/j.bioactmat.2022.04.003
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Reversing the imbalance in bone homeostasis via sustained release of SIRT-1 agonist to promote bone healing under osteoporotic condition.
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- Bioactive Materials, 2023, v. 19, p. 429, doi. 10.1016/j.bioactmat.2022.04.017
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Extracellular magnetic labeling of biomimetic hydrogel-induced human mesenchymal stem cell spheroids with ferumoxytol for MRI tracking.
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- Bioactive Materials, 2023, v. 19, p. 418, doi. 10.1016/j.bioactmat.2022.04.024
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Open-porous magnesium-based scaffolds withstand in vitro corrosion under cyclic loading: A mechanistic study.
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- Bioactive Materials, 2023, v. 19, p. 406, doi. 10.1016/j.bioactmat.2022.04.012
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Scalable fabrication, compartmentalization and applications of living microtissues.
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- Bioactive Materials, 2023, v. 19, p. 392, doi. 10.1016/j.bioactmat.2022.04.005
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Degradation of 3D-printed magnesium phosphate ceramics in vitro and a prognosis on their bone regeneration potential.
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- Bioactive Materials, 2023, v. 19, p. 376, doi. 10.1016/j.bioactmat.2022.04.015
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Smart bioadhesives for wound healing and closure.
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- Bioactive Materials, 2023, v. 19, p. 360, doi. 10.1016/j.bioactmat.2022.04.020
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Spatial distribution and network morphology of epicardial, endocardial, interstitial, and Purkinje cell-associated elastin fibers in porcine left ventricle.
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- Bioactive Materials, 2023, v. 19, p. 348, doi. 10.1016/j.bioactmat.2022.04.019
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Tailoring micro/nano-fibers for biomedical applications.
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- Bioactive Materials, 2023, v. 19, p. 328, doi. 10.1016/j.bioactmat.2022.04.016
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3D printing of bio-instructive materials: Toward directing the cell.
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- Bioactive Materials, 2023, v. 19, p. 292, doi. 10.1016/j.bioactmat.2022.04.008
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Nanostructured polyvinylpyrrolidone-curcumin conjugates allowed for kidney-targeted treatment of cisplatin induced acute kidney injury.
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- Bioactive Materials, 2023, v. 19, p. 282, doi. 10.1016/j.bioactmat.2022.04.006
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Tissue-specific melt electrowritten polymeric scaffolds for coordinated regeneration of soft and hard periodontal tissues.
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- Bioactive Materials, 2023, v. 19, p. 268, doi. 10.1016/j.bioactmat.2022.04.013
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GelNB molecular coating as a biophysical barrier to isolate intestinal irritating metabolites and regulate intestinal microbial homeostasis in the treatment of inflammatory bowel disease.
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- Bioactive Materials, 2023, v. 19, p. 251, doi. 10.1016/j.bioactmat.2022.04.001
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Biomimetic manganese-based theranostic nanoplatform for cancer multimodal imaging and twofold immunotherapy.
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- Bioactive Materials, 2023, v. 19, p. 237, doi. 10.1016/j.bioactmat.2022.04.011
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Amelioration of ligamentum flavum hypertrophy using umbilical cord mesenchymal stromal cell-derived extracellular vesicles.
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- Bioactive Materials, 2023, v. 19, p. 139, doi. 10.1016/j.bioactmat.2022.03.042
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Decoupling the role of chemistry and microstructure in hMSCs response to an osteoinductive calcium phosphate ceramic.
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- Bioactive Materials, 2023, v. 19, p. 127, doi. 10.1016/j.bioactmat.2022.03.030
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Bone without borders - Monetite-based calcium phosphate guides bone formation beyond the skeletal envelope.
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- Bioactive Materials, 2023, v. 19, p. 103, doi. 10.1016/j.bioactmat.2022.03.012
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Reactive oxygen species (ROS)-responsive size-reducible nanoassemblies for deeper atherosclerotic plaque penetration and enhanced macrophage-targeted drug delivery.
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- Bioactive Materials, 2023, v. 19, p. 115, doi. 10.1016/j.bioactmat.2022.03.041
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Seamless and early gap healing of osteochondral defects by autologous mosaicplasty combined with bioactive supramolecular nanofiber-enabled gelatin methacryloyl (BSN-GelMA) hydrogel.
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- Bioactive Materials, 2023, v. 19, p. 88, doi. 10.1016/j.bioactmat.2022.03.038
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A biomimetic and bioactive scaffold with intelligently pulsatile teriparatide delivery for local and systemic osteoporosis regeneration.
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- Bioactive Materials, 2023, v. 19, p. 75, doi. 10.1016/j.bioactmat.2022.03.023
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Therapeutic strategies of three-dimensional stem cell spheroids and organoids for tissue repair and regeneration.
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- Bioactive Materials, 2023, v. 19, p. 50, doi. 10.1016/j.bioactmat.2022.03.039
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ROS-responsive 18β-glycyrrhetic acid-conjugated polymeric nanoparticles mediate neuroprotection in ischemic stroke through HMGB1 inhibition and microglia polarization regulation.
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- Bioactive Materials, 2023, v. 19, p. 38, doi. 10.1016/j.bioactmat.2022.03.040
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Sequential gastrodin release PU/n-HA composite scaffolds reprogram macrophages for improved osteogenesis and angiogenesis.
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- Bioactive Materials, 2023, v. 19, p. 24, doi. 10.1016/j.bioactmat.2022.03.037
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Additively manufactured pure zinc porous scaffolds for critical-sized bone defects of rabbit femur.
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- Bioactive Materials, 2023, v. 19, p. 12, doi. 10.1016/j.bioactmat.2022.03.010
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Defect self-assembly of metal-organic framework triggers ferroptosis to overcome resistance.
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- Bioactive Materials, 2023, v. 19, p. 1, doi. 10.1016/j.bioactmat.2021.12.018
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