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Biomaterials, Artificial Cells, and Immobilization Biotechnology : Official Journal of the International Society for Artificial Cells and Immobilization Biotechnology|January 1, 1992
Hemoglobin tetramers stabilized with polyaspirinsE Bucci, C Fronticelli, A Razynska, et al.Biomaterials, Artificial Cells, and Artificial Organs|January 1, 1988
Bovine hemoglobin as a basis for artificial oxygen carriersE Bucci, C Fronticelli, C Orth, et al.Biophysical Chemistry|December 1, 1988
Time-resolved emission spectra of hemoglobin on the picosecond time scaleE Bucci, H Malak, C Fronticelli, et al.Proteins|March 28, 1998
Conformation of the sebacyl beta1Lys82-beta2Lys82 crosslink in T-state human hemoglobinX Ji, M Braxenthaler, J Moult, et al.The Journal of Biological Chemistry|July 25, 1981
Molecular dynamics of hemoglobin subunits as seen by fluorescence spectroscopyJ Oton, E Bucci, R F Steiner, et al.The Journal of Biological Chemistry|April 10, 1978
Effect of the beta6 Glu replaced by Val mutation on the optical activity of hemoglobin S and of its beta subunitsC FronticelliBiophysical Chemistry|August 31, 1990
A possible new mechanism of oxygen affinity modulation in mammalian hemoglobinsC FronticelliBiophysical Chemistry|February 25, 1998
Alpha-subunit oxidation in T-state crystals of a sebacyl cross-linked human hemoglobin with unusual autoxidation propertiesX Ji, M Karavitis, A Razynska, et al.Biochemistry|February 9, 1993
Recombinant human hemoglobin: modification of the polarity of the beta-heme pocket by a valine67(E11)-->threonine mutationC Fronticelli, W S Brinigar, J S Olson, et al.The Journal of Biological Chemistry|August 25, 1976
Conformational relevance of the beta6Glu replaced by Val mutation in the beta subunits and in the beta(1-55) and beta(1-30) peptides of hemoglobin SC Fronticelli, R GoldPageof 16