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9781604567083

Inorganic Biochemistry : Research Progress

by ;
  • ISBN13:

    9781604567083

  • ISBN10:

    1604567082

  • Format: Hardcover
  • Copyright: 2008-07-01
  • Publisher: Nova Science Pub Inc
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List Price: $225.00

Summary

Inorganic biochemistry is an emerging subject and interdisciplinary field between inorganic chemistry and biochemistry. The task of inorganic biochemistry is to research the interaction between the metal complex (or metal ion) with biological ligand at the molecular level. There exists wide research about inorganic biochemistry such as biological macromolecular, oxygen carrier, haemoglobin, mimic enzyme, DNA-binding and cytotoxicity, biological mineralisation, etc. Encompassing the varied and disparate roles of metal ions in biology, the field of bioinorganic chemistry has reached a certain level of maturity. This book provides leading research from around the globe in this field.

Table of Contents

Prefacep. vii
Expert Commentary: Linear vs. Crosslinked Macromolecules as Supports for Biocatalyzed Transformations: Recent Developmentsp. 1
Chimeric Metallonucleases - Design, Realization and Applicationsp. 11
Role of Metal ion in Inorganic Biochemistryp. 27
Catalytic Activity of Iron and Manganese Porphyrins Modulated by Different Microenvironments: Interesting Devices for Nanotechnologyp. 63
Metal Based Drug Designp. 105
Electrochemical Behavior of Flavonoids in the Presence of Metal Ionsp. 161
Theoretical Study on FeOOH Formation and Role of H[subscript 2]O on Cu[subscript B] Site at Early Stage of O[subscript 2] Reduction in Cytochrome C Oxidasep. 185
The Axial Ligand Effect on Substrate Monoxygenation by the Oxo-iron Active Species of Heme Enzymes. How does Cytochrome C Peroxidase Compare to Cytochrome P450?p. 197
The Mechanism of Action of Di-heme Peroxidases: A Theoretical Studyp. 225
Catalase activity of diMn[superscript III] Complexes with the [Mn subscript 2 ([mu]-O[subscript 2]C[subscript 2]H[subscript 3])([mu]-OL)([mu]-OX) superscript 3+] Core (L = Polydentate Ligand; X = CH[subscript 3] or OC[subscript 2]H[subscript 3]). Structural Features that Control Catalysisp. 243
Functional and Structural Mimics of Superoxide Dismutase Enzymesp. 281
From Synthesis to Antitumoral Activity of Platinum(II) and Platinum(IV) Complexes with Bis(carboxyalkylamino)ethane and -propane Ligandsp. 305
Indexp. 327
Table of Contents provided by Ingram. All Rights Reserved.

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