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PUBMED FOR HANDHELDS

Journal Abstract Search


304 related items for PubMed ID: 24793656

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  • 2. Thermally triggered injectable hydrogel, which induces mesenchymal stem cell differentiation to nucleus pulposus cells: Potential for regeneration of the intervertebral disc.
    Thorpe AA, Boyes VL, Sammon C, Le Maitre CL.
    Acta Biomater; 2016 May; 36():99-111. PubMed ID: 26996377
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  • 3. Stem Cell Delivery With Polymer Hydrogel for Treatment of Intervertebral Disc Degeneration: From 3D Culture to Design of the Delivery Device for Minimally Invasive Therapy.
    Kumar D, Lyness A, Gerges I, Lenardi C, Forsyth NR, Liu Y.
    Cell Transplant; 2016 Dec 13; 25(12):2213-2220. PubMed ID: 27452665
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  • 4. Effects of bound versus soluble pentosan polysulphate in PEG/HA-based hydrogels tailored for intervertebral disc regeneration.
    Frith JE, Menzies DJ, Cameron AR, Ghosh P, Whitehead DL, Gronthos S, Zannettino AC, Cooper-White JJ.
    Biomaterials; 2014 Jan 13; 35(4):1150-62. PubMed ID: 24215733
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  • 8. Functional nucleus pulposus-like matrix assembly by human mesenchymal stromal cells is directed by macromer concentration in photocrosslinked carboxymethylcellulose hydrogels.
    Gupta MS, Nicoll SB.
    Cell Tissue Res; 2014 Nov 13; 358(2):527-39. PubMed ID: 25092545
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  • 9. Injectable, redox-polymerized carboxymethylcellulose hydrogels promote nucleus pulposus-like extracellular matrix elaboration by human MSCs in a cell density-dependent manner.
    Varma DM, DiNicolas MS, Nicoll SB.
    J Biomater Appl; 2018 Oct 13; 33(4):576-589. PubMed ID: 30326804
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  • 10. An injectable hydrogel incorporating mesenchymal precursor cells and pentosan polysulphate for intervertebral disc regeneration.
    Frith JE, Cameron AR, Menzies DJ, Ghosh P, Whitehead DL, Gronthos S, Zannettino AC, Cooper-White JJ.
    Biomaterials; 2013 Dec 13; 34(37):9430-40. PubMed ID: 24050877
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  • 12. Injectable biodegradable hydrogels with tunable mechanical properties for the stimulation of neurogenesic differentiation of human mesenchymal stem cells in 3D culture.
    Wang LS, Chung JE, Chan PP, Kurisawa M.
    Biomaterials; 2010 Feb 13; 31(6):1148-57. PubMed ID: 19892395
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  • 13. Differential response of encapsulated nucleus pulposus and bone marrow stem cells in isolation and coculture in alginate and chitosan hydrogels.
    Naqvi SM, Buckley CT.
    Tissue Eng Part A; 2015 Jan 13; 21(1-2):288-99. PubMed ID: 25060596
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  • 16. Effects of hypoxia on differentiation from human placenta-derived mesenchymal stem cells to nucleus pulposus-like cells.
    Ni L, Liu X, Sochacki KR, Ebraheim M, Fahrenkopf M, Shi Q, Liu J, Yang H.
    Spine J; 2014 Oct 01; 14(10):2451-8. PubMed ID: 24662208
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  • 19. Thermoreversible hyaluronan-based hydrogel supports in vitro and ex vivo disc-like differentiation of human mesenchymal stem cells.
    Peroglio M, Eglin D, Benneker LM, Alini M, Grad S.
    Spine J; 2013 Nov 01; 13(11):1627-39. PubMed ID: 23830827
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  • 20. Differentiation of mesenchymal stem cells towards a nucleus pulposus-like phenotype in vitro: implications for cell-based transplantation therapy.
    Risbud MV, Albert TJ, Guttapalli A, Vresilovic EJ, Hillibrand AS, Vaccaro AR, Shapiro IM.
    Spine (Phila Pa 1976); 2004 Dec 01; 29(23):2627-32. PubMed ID: 15564911
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