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PUBMED FOR HANDHELDS

Journal Abstract Search


125 related items for PubMed ID: 38902971

  • 1. Cellulose acetate scaffold coated with a hydroxyapatite/graphene oxide nanocomposite for application in tissue engineering.
    Dos Santos Menezes L, Navarro da Rocha D, Nonato RC, Costa AR, Morales AR, Correr-Sobrinho L, Correr AB, Neves JG.
    Proc Inst Mech Eng H; 2024 Jul; 238(7):793-802. PubMed ID: 38902971
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  • 2. Chitosan/Xanthan/Hydroxyapatite-graphene oxide porous scaffold associated with mesenchymal stem cells for dentin-pulp complex regeneration.
    Souza AP, Neves JG, Navarro da Rocha D, Lopes CC, Moraes ÂM, Correr-Sobrinho L, Correr AB.
    J Biomater Appl; 2023 Apr; 37(9):1605-1616. PubMed ID: 36740600
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  • 3. Bone tissue engineering gelatin-hydroxyapatite/graphene oxide scaffolds with the ability to release vitamin D: fabrication, characterization, and in vitro study.
    Mahdavi R, Belgheisi G, Haghbin-Nazarpak M, Omidi M, Khojasteh A, Solati-Hashjin M.
    J Mater Sci Mater Med; 2020 Oct 31; 31(11):97. PubMed ID: 33135110
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  • 7. Electrospinning of Scaffolds from the Polycaprolactone/Polyurethane Composite with Graphene Oxide for Skin Tissue Engineering.
    Sadeghianmaryan A, Karimi Y, Naghieh S, Alizadeh Sardroud H, Gorji M, Chen X.
    Appl Biochem Biotechnol; 2020 Jun 31; 191(2):567-578. PubMed ID: 31823274
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  • 10. Fabrication and characterization of novel ethyl cellulose-grafted-poly (ɛ-caprolactone)/alginate nanofibrous/macroporous scaffolds incorporated with nano-hydroxyapatite for bone tissue engineering.
    Hokmabad VR, Davaran S, Aghazadeh M, Rahbarghazi R, Salehi R, Ramazani A.
    J Biomater Appl; 2019 Mar 31; 33(8):1128-1144. PubMed ID: 30651055
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  • 11. Arabinoxylan/graphene-oxide/nHAp-NPs/PVA bionano composite scaffolds for fractured bone healing.
    Aslam Khan MU, Haider A, Abd Razak SI, Abdul Kadir MR, Haider S, Shah SA, Hasan A, Khan R, Khan SD, Shakir I.
    J Tissue Eng Regen Med; 2021 Apr 31; 15(4):322-335. PubMed ID: 33432773
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  • 12. In vitro evaluation for apatite-forming ability of cellulose-based nanocomposite scaffolds for bone tissue engineering.
    Saber-Samandari S, Saber-Samandari S, Kiyazar S, Aghazadeh J, Sadeghi A.
    Int J Biol Macromol; 2016 May 31; 86():434-42. PubMed ID: 26836617
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  • 13. Generation of graphene oxide and nano-bioglass based scaffold for bone tissue regeneration.
    Kumari S, Singh D, Srivastava P, Singh BN, Mishra A.
    Biomed Mater; 2022 Sep 30; 17(6):. PubMed ID: 36113451
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  • 17. Electrospun polyurethane/hydroxyapatite bioactive scaffolds for bone tissue engineering: the role of solvent and hydroxyapatite particles.
    Tetteh G, Khan AS, Delaine-Smith RM, Reilly GC, Rehman IU.
    J Mech Behav Biomed Mater; 2014 Nov 30; 39():95-110. PubMed ID: 25117379
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  • 19. Biomimetic composite scaffolds based mineralization of hydroxyapatite on electrospun calcium-containing poly(vinyl alcohol) nanofibers.
    Chang W, Mu X, Zhu X, Ma G, Li C, Xu F, Nie J.
    Mater Sci Eng C Mater Biol Appl; 2013 Oct 30; 33(7):4369-76. PubMed ID: 23910355
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  • 20. Glycol chitosan/nanohydroxyapatite biocomposites for potential bone tissue engineering and regenerative medicine.
    Dumont VC, Mansur HS, Mansur AA, Carvalho SM, Capanema NS, Barrioni BR.
    Int J Biol Macromol; 2016 Dec 30; 93(Pt B):1465-1478. PubMed ID: 27086294
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