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Journal Abstract Search


1045 related items for PubMed ID: 20337439

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  • 23. PEO-PPO-PEO-based poly(ether ester urethane)s as degradable reverse thermo-responsive multiblock copolymers.
    Cohn D, Lando G, Sosnik A, Garty S, Levi A.
    Biomaterials; 2006 Mar; 27(9):1718-27. PubMed ID: 16310849
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  • 24. Novel injectable pH and temperature sensitive block copolymer hydrogel.
    Shim WS, Yoo JS, Bae YH, Lee DS.
    Biomacromolecules; 2005 Mar; 6(6):2930-4. PubMed ID: 16283710
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  • 26. New aspects of the formation of physical hydrogels of chitosan in a hydroalcoholic medium.
    Boucard N, Viton C, Domard A.
    Biomacromolecules; 2005 Mar; 6(6):3227-37. PubMed ID: 16283750
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  • 27. Injectable biodegradable thermosensitive hydrogel composite for orthopedic tissue engineering. 1. Preparation and characterization of nanohydroxyapatite/poly(ethylene glycol)-poly(epsilon-caprolactone)-poly(ethylene glycol) hydrogel nanocomposites.
    Fu S, Guo G, Gong C, Zeng S, Liang H, Luo F, Zhang X, Zhao X, Wei Y, Qian Z.
    J Phys Chem B; 2009 Dec 31; 113(52):16518-25. PubMed ID: 19947637
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  • 28. Temperature-responsive magnetite/PEO-PPO-PEO block copolymer nanoparticles for controlled drug targeting delivery.
    Chen S, Li Y, Guo C, Wang J, Ma J, Liang X, Yang LR, Liu HZ.
    Langmuir; 2007 Dec 04; 23(25):12669-76. PubMed ID: 17988160
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  • 29. In-situ formation of biodegradable hydrogels by stereocomplexation of PEG-(PLLA)8 and PEG-(PDLA)8 star block copolymers.
    Hiemstra C, Zhong Z, Li L, Dijkstra PJ, Feijen J.
    Biomacromolecules; 2006 Oct 04; 7(10):2790-5. PubMed ID: 17025354
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  • 30. Poly(ethylene glycol) methacrylate/dimethacrylate hydrogels for controlled release of hydrophobic drugs.
    Diramio JA, Kisaalita WS, Majetich GF, Shimkus JM.
    Biotechnol Prog; 2005 Oct 04; 21(4):1281-8. PubMed ID: 16080712
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  • 31. Poly(ethylene glycol)-carboxymethyl chitosan-based pH-responsive hydrogels: photo-induced synthesis, characterization, swelling, and in vitro evaluation as potential drug carriers.
    El-Sherbiny IM, Smyth HD.
    Carbohydr Res; 2010 Sep 23; 345(14):2004-12. PubMed ID: 20708174
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  • 32. Effects of cross-linking molecular weights in a hyaluronic acid-poly(ethylene oxide) hydrogel network on its properties.
    Noh I, Kim GW, Choi YJ, Kim MS, Park Y, Lee KB, Kim IS, Hwang SJ, Tae G.
    Biomed Mater; 2006 Sep 23; 1(3):116-23. PubMed ID: 18458391
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  • 33. Studies on chemically crosslinkable carboxy terminated-poly(propylene fumarate-co-ethylene glycol)-acrylamide hydrogel as an injectable biomaterial.
    Kallukalam BC, Jayabalan M, Sankar V.
    Biomed Mater; 2009 Feb 23; 4(1):015002. PubMed ID: 18981542
    [Abstract] [Full Text] [Related]

  • 34. Synthesis and characterization of cyclic acetal based degradable hydrogels.
    Kaihara S, Matsumura S, Fisher JP.
    Eur J Pharm Biopharm; 2008 Jan 23; 68(1):67-73. PubMed ID: 17888640
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  • 36. Injectable, dual cross-linkable polyphosphazene blend hydrogels.
    Potta T, Chun C, Song SC.
    Biomaterials; 2010 Nov 23; 31(32):8107-20. PubMed ID: 20692695
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  • 37. Regulating drug release from pH- and temperature-responsive electrospun CTS-g-PNIPAAm/poly(ethylene oxide) hydrogel nanofibers.
    Yuan H, Li B, Liang K, Lou X, Zhang Y.
    Biomed Mater; 2014 Aug 18; 9(5):055001. PubMed ID: 25135109
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