Encyclopedia of Inorganic and Bioinorganic Chemistry
Энциклопедия неорганической и биоорганической химии
2011-12-02
SCID: 54.1/gqx9emw4
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bioinorganic chemistrychemical biologymedicinal chemistrymetal complexesprotein modulators
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Abstract (AI)
In cells and organisms, metal complexes can be specifically designed to interact with biomolecules \nand accordingly alter important biological processes. These interactions have been widely explored for targeting specific biological functions and diseases. In fact, several studies have demonstrated that inorganic chemistry offers significant diversity and versatility for the preparation of highly potent protein modulators (e.g. inhibitors). Moreover, both coordination and organometallic complexes featuring favourable chemico-physical properties (e.g. luminescence) have proven to be well suited to image proteins and peptides in living cells by various methods. \n \nAn inherent advantage of metal complexes is the accessibility of multiple oxidation states, and overall charge and geometries, which makes them attractive from the point of view of chemical design. However, these properties can become a disadvantage if not controlled and fine-tuned in the biological application. In this review, we generally discuss the use of metal compounds, targeting proteins and/or peptides, in medicinal chemistry and chemical biology, and then focus on \nrepresentative recent examples and applications. Furthermore, we highlight future challenges and \nattractive perspectives in the field, which may stimulate research and define new frontiers in bioinorganic chemistry.
Key Findings
1
Accessible oxidation states, charges, and geometries make metal complexes versatile design tools, but these features require precise control in biological applications.
2
Coordination and organometallic complexes with properties such as luminescence enable imaging of proteins and peptides in living cells.
3
Inorganic chemistry provides substantial diversity for developing potent protein modulators, including inhibitors, against specific biological functions and diseases.
4
Metal complexes can be designed to interact selectively with biomolecules and alter biologically important processes.
5
The review examines medicinal and chemical-biology applications targeting proteins and peptides, while identifying future challenges and opportunities in bioinorganic chemistry.
Research Object
Metal coordination and organometallic complexes designed to interact with proteins and peptides in biological systems
Research Subject
Their design, chemical properties, and applications as protein/peptide modulators and imaging agents in medicinal chemistry and chemical biology
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2011-12-02
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