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PUBMED FOR HANDHELDS

Journal Abstract Search


694 related items for PubMed ID: 15176904

  • 21.
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  • 22. Photopolymerization of bovine hemoglobin entrapped nanoscale hydrogel particles within liposomal reactors for use as an artificial blood substitute.
    Patton JN, Palmer AF.
    Biomacromolecules; 2005; 6(1):414-24. PubMed ID: 15638547
    [Abstract] [Full Text] [Related]

  • 23. PEGylation promotes hemoglobin tetramer dissociation.
    Caccia D, Ronda L, Frassi R, Perrella M, Del Favero E, Bruno S, Pioselli B, Abbruzzetti S, Viappiani C, Mozzarelli A.
    Bioconjug Chem; 2009 Jul; 20(7):1356-66. PubMed ID: 19534518
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  • 24.
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  • 25. Functional cross-linked hemoglobin bis-tetramers: geometry and cooperativity.
    Hu D, Kluger R.
    Biochemistry; 2008 Nov 25; 47(47):12551-61. PubMed ID: 18956893
    [Abstract] [Full Text] [Related]

  • 26. Red cell substitutes from hemoglobin--do we start all over again?
    Kluger R.
    Curr Opin Chem Biol; 2010 Aug 25; 14(4):538-43. PubMed ID: 20392662
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  • 30. Molecular engineering of proteins with predefined function. Part I: Design of a hemoglobin-based oxygen carrier.
    Sivan S, Lotan N.
    Biomol Eng; 2003 Mar 25; 20(3):83-90. PubMed ID: 12684069
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  • 31.
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  • 32. Static and dynamic light scattering approach to the hydration of hemoglobin and its supertetramers in the presence of osmolites.
    Arosio D, Kwansa HE, Gering H, Piszczek G, Bucci E.
    Biopolymers; 2002 Jan 25; 63(1):1-11. PubMed ID: 11754343
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  • 33. Fine tuning of polymerized pyridoxylated hemoglobin as a red blood cell substitute.
    Hsia CJ.
    Prog Clin Biol Res; 1989 Jan 25; 319():339-49. PubMed ID: 2622918
    [Abstract] [Full Text] [Related]

  • 34. Novel water-mediated hydrogen bonds as the structural basis for the low oxygen affinity of the blood substitute candidate rHb(alpha 96Val-->Trp).
    Puius YA, Zou M, Ho NT, Ho C, Almo SC.
    Biochemistry; 1998 Jun 30; 37(26):9258-65. PubMed ID: 9649306
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  • 35. Protein/polysaccharide cogel formation based on gelatin and chemically modified schizophyllan.
    Fang Y, Takahashi R, Nishinari K.
    Biomacromolecules; 2005 Jun 30; 6(6):3202-8. PubMed ID: 16283747
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  • 36.
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  • 37. Subunit-directed click coupling via doubly cross-linked hemoglobin efficiently produces readily purified functional bis-tetrameric oxygen carriers.
    Singh S, Dubinsky-Davidchik IS, Yang Y, Kluger R.
    Org Biomol Chem; 2015 Dec 07; 13(45):11118-28. PubMed ID: 26400017
    [Abstract] [Full Text] [Related]

  • 38. [Polyhemoglobin-based model of an artificial oxygen carrier with functional properties similar to blood].
    Khachatur'ian AA, Shlimak VM, Azhigirova MA, Viazova EP, Zeĭnalov AM.
    Biull Eksp Biol Med; 1981 Mar 07; 91(3):311-3. PubMed ID: 7248504
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  • 40. Site-specific cross-linking of human and bovine hemoglobins differentially alters oxygen binding and redox side reactions producing rhombic heme and heme degradation.
    Nagababu E, Ramasamy S, Rifkind JM, Jia Y, Alayash AI.
    Biochemistry; 2002 Jun 11; 41(23):7407-15. PubMed ID: 12044174
    [Abstract] [Full Text] [Related]


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