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Generation of Pearl/Calcium Phosphate Composite Particles and Their Integration into Porous Chitosan Scaffolds for Bone Regeneration.
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- Journal of Functional Biomaterials, 2024, v. 15, n. 3, p. 55, doi. 10.3390/jfb15030055
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- Article
Electron Beam-Treated Enzymatically Mineralized Gelatin Hydrogels for Bone Tissue Engineering.
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- Journal of Functional Biomaterials, 2021, v. 12, n. 4, p. 57, doi. 10.3390/jfb12040057
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- Article
Synthesis and Characterization of Polymer-Based Coatings Modified with Bioactive Ceramic and Bovine Serum Albumin.
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- Journal of Functional Biomaterials, 2021, v. 12, n. 2, p. 21, doi. 10.3390/jfb12020021
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- Article
Development of Thermosensitive Hydrogels of Chitosan, Sodium and Magnesium Glycerophosphate for Bone Regeneration Applications.
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- Journal of Functional Biomaterials, 2015, v. 6, n. 2, p. 192, doi. 10.3390/jfb6020192
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- Article
WPI Hydrogels with a Prolonged Drug-Release Profile for Antimicrobial Therapy.
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- Pharmaceutics, 2022, v. 14, n. 6, p. 1199, doi. 10.3390/pharmaceutics14061199
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- Article
Heparin Enriched-WPI Coating on Ti6Al4V Increases Hydrophilicity and Improves Proliferation and Differentiation of Human Bone Marrow Stromal Cells.
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- International Journal of Molecular Sciences, 2022, v. 23, n. 1, p. 139, doi. 10.3390/ijms23010139
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- Article
Dairy-Inspired Coatings for Bone Implants from Whey Protein Isolate-Derived Self-Assembled Fibrils.
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- International Journal of Molecular Sciences, 2020, v. 21, n. 15, p. 5544, doi. 10.3390/ijms21155544
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- Article
Enhancement of Biomimetic Enzymatic Mineralization of Gellan Gum Polysaccharide Hydrogels by Plant-Derived Gallotannins.
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- International Journal of Molecular Sciences, 2020, v. 21, n. 7, p. 2315, doi. 10.3390/ijms21072315
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- Article
Enrichment of thermosensitive chitosan hydrogels with glycerol and alkaline phosphatase for bone tissue engineering applications.
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- Acta of Bioengineering & Biomechanics, 2016, v. 18, n. 2, p. 51, doi. 10.5277/ABB-00391-2015-03
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- Article
Enzymatic Mineralization of Hydrogels for Bone Tissue Engineering by Incorporation of Alkaline Phosphatase.
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- Macromolecular Bioscience, 2012, v. 12, n. 8, p. 1077, doi. 10.1002/mabi.201100501
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- Article
The Enrichment of Whey Protein Isolate Hydrogels with Poly-γ-Glutamic Acid Promotes the Proliferation and Osteogenic Differentiation of Preosteoblasts.
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- Gels (2310-2861), 2024, v. 10, n. 1, p. 18, doi. 10.3390/gels10010018
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- Article
Novel self‐gelling injectable hydrogel/alpha‐tricalcium phosphate composites for bone regeneration: Physiochemical and microcomputer tomographical characterization.
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- Journal of Biomedical Materials Research, Part A, 2018, v. 106, n. 3, p. 822, doi. 10.1002/jbm.a.36277
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- Article
Vaterite coatings on electrospun polymeric fibers for biomedical applications.
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- Journal of Biomedical Materials Research, Part A, 2017, v. 105, n. 1, p. 94, doi. 10.1002/jbm.a.35870
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- Article
High-resolution synchrotron X-ray analysis of bioglass-enriched hydrogels.
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- Journal of Biomedical Materials Research, Part A, 2016, v. 104, n. 5, p. 1194, doi. 10.1002/jbm.a.35642
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- Article
Collagen-lactoferrin fibrillar coatings enhance osteoblast proliferation and differentiation.
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- Journal of Biomedical Materials Research, Part A, 2015, v. 103, n. 2, p. 525, doi. 10.1002/jbm.a.35199
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- Article
Enzymatically induced mineralization of platelet-rich fibrin.
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- Journal of Biomedical Materials Research, Part A, 2012, v. 100A, n. 5, p. 1335, doi. 10.1002/jbm.a.34073
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- Article
Electrospun polycaprolactone membranes with Zn-doped bioglass for nasal tissues treatment.
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- Journal of Materials Science: Materials in Medicine, 2019, v. 30, n. 7, p. N.PAG, doi. 10.1007/s10856-019-6280-4
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- Article
Amine-Rich Coatings to Potentially Promote Cell Adhesion, Proliferation and Differentiation, and Reduce Microbial Colonization: Strategies for Generation and Characterization.
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- Coatings (2079-6412), 2021, v. 11, n. 8, p. 983, doi. 10.3390/coatings11080983
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- Article
Nanofibrous poly(lactide-co-glycolide) membranes loaded with diamond nanoparticles as promising substrates for bone tissue engineering.
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- International Journal of Nanomedicine, 2012, v. 7, p. 1931, doi. 10.2147/IJN.S26665
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- Article
In vivo implantation of porous titanium alloy implants coated with magnesium-doped octacalcium phosphate and hydroxyapatite thin films using pulsed laser depostion.
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- Journal of Biomedical Materials Research, Part B: Applied Biomaterials, 2015, v. 103, n. 1, p. 151, doi. 10.1002/jbm.b.33170
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- Article
Novel multicomponent organic–inorganic WPI/gelatin/CaP hydrogel composites for bone tissue engineering.
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- Journal of Biomedical Materials Research, Part A, 2019, v. 107, n. 11, p. 2479, doi. 10.1002/jbm.a.36754
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- Article
Marine-Inspired Enzymatic Mineralization of Dairy-Derived Whey Protein Isolate (WPI) Hydrogels for Bone Tissue Regeneration.
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- Marine Drugs, 2020, v. 18, p. 294, doi. 10.3390/md18060294
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- Article
Endothelialization of Whey Protein Isolate-Based Scaffolds for Tissue Regeneration.
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- Molecules, 2023, v. 28, n. 20, p. 7052, doi. 10.3390/molecules28207052
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- Article
Complex Material and Surface Analysis of Anterolateral Distal Tibial Plate of 1.4441 Steel.
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- Metals (2075-4701), 2022, v. 12, n. 1, p. 60, doi. 10.3390/met12010060
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- Article
Whey protein isolate: a versatile dairy-derived hydrogel for bone and vascular tissue engineering and antimicrobial applications.
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- Chemical Industry / Hemijska Industrija, 2024, v. 78, p. 11
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- Article
The Effect of Chitosan on Physicochemical Properties of Whey Protein Isolate Scaffolds for Tissue Engineering Applications.
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- Polymers (20734360), 2023, v. 15, n. 19, p. 3867, doi. 10.3390/polym15193867
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- Article
Could Curdlan/Whey Protein Isolate/Hydroxyapatite Biomaterials Be Considered as Promising Bone Scaffolds?—Fabrication, Characterization, and Evaluation of Cytocompatibility towards Osteoblast Cells In Vitro.
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- Cells (2073-4409), 2022, v. 11, n. 20, p. 3251, doi. 10.3390/cells11203251
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Freeze-Dried Curdlan/Whey Protein Isolate-Based Biomaterial as Promising Scaffold for Matrix-Associated Autologous Chondrocyte Transplantation—A Pilot In-Vitro Study.
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- Cells (2073-4409), 2022, v. 11, n. 2, p. 282, doi. 10.3390/cells11020282
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- Article
Mineralization of gellan gum hydrogels with calcium and magnesium carbonates by alternate soaking in solutions of calcium/magnesium and carbonate ion solutions.
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- Journal of Tissue Engineering & Regenerative Medicine, 2018, v. 12, n. 8, p. 1825, doi. 10.1002/term.2675
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- Article
Novel injectable gellan gum hydrogel composites incorporating Zn‐ and Sr‐enriched bioactive glass microparticles: High‐resolution X‐ray microcomputed tomography, antibacterial and in vitro testing.
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- Journal of Tissue Engineering & Regenerative Medicine, 2018, v. 12, n. 6, p. 1313, doi. 10.1002/term.2654
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- Article
Enzymatically biomineralized chitosan scaffolds for tissue-engineering applications.
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- Journal of Tissue Engineering & Regenerative Medicine, 2017, v. 11, n. 5, p. 1500, doi. 10.1002/term.2048
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- Article
Composites of gellan gum hydrogel enzymatically mineralized with calcium-zinc phosphate for bone regeneration with antibacterial activity.
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- Journal of Tissue Engineering & Regenerative Medicine, 2017, v. 11, n. 5, p. 1610, doi. 10.1002/term.2062
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- Article
Generation of composites for bone tissue-engineering applications consisting of gellan gum hydrogels mineralized with calcium and magnesium phosphate phases by enzymatic means.
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- Journal of Tissue Engineering & Regenerative Medicine, 2016, v. 10, n. 11, p. 938, doi. 10.1002/term.1875
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Cover Image, Volume 10, Issue 11.
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- Journal of Tissue Engineering & Regenerative Medicine, 2016, v. 10, n. 11, p. i, doi. 10.1002/term.2347
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- Article
MECHANISM OF FORMATION OF THERMOSENSITIVE CHITOSAN CHLORIDE GELS.
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- Progress on Chemistry & Application of Chitin & its Derivatives, 2014, v. 19, p. 125, doi. 10.15259/PCACD.19.15
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- Article
Glycosaminoglycans Metabolism.
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- Biotechnology Research International, 2012, p. 1, doi. 10.1155/2012/245792
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- Article
Whey Protein Isolate/Calcium Silicate Hydrogels for Bone Tissue Engineering Applications—Preliminary In Vitro Evaluation.
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- Materials (1996-1944), 2023, v. 16, n. 19, p. 6484, doi. 10.3390/ma16196484
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- Article
Composites Based on Hydroxyapatite and Whey Protein Isolate for Applications in Bone Regeneration.
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- Materials (1996-1944), 2021, v. 14, n. 9, p. 2317, doi. 10.3390/ma14092317
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- Article
pH-Sensitive Dairy-Derived Hydrogels with a Prolonged Drug Release Profile for Cancer Treatment.
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- Materials (1996-1944), 2021, v. 14, n. 4, p. 749, doi. 10.3390/ma14040749
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- Article
Electrospun Produced 3D Matrices for Covering of Vascular Stents: Paclitaxel Release Depending on Fiber Structure and Composition of the External Environment.
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- Materials (1996-1944), 2018, v. 11, n. 11, p. 2176, doi. 10.3390/ma11112176
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- Article
Whey Protein Isolate as a Substrate to Design Calendula officinalis Flower Extract Controlled-Release Materials.
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- International Journal of Molecular Sciences, 2024, v. 25, n. 10, p. 5325, doi. 10.3390/ijms25105325
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- Article