Fr. 134.00

Anti-Cancer N-Heterocyclic Carbene Complexes of Gold(III), Gold(I) and Platinum(II) - Thiol "Switch-on" Fluorescent Probes, Thioredoxin Reductase Inhibitors and Endoplasmic Reticulum Targeting Agents

English · Paperback / Softback

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This thesis focuses on the development of gold- and non-classical platinum-based anti-cancer agents that display distinctively different anti-cancer mechanisms compared to the commonly used cisplatin. These metal complexes contain N-heterocyclic carbene (NHC) ligands which are able to form strong M-C(NHC) bonds, conferring high stability and favorable lipophilicity, reactivity and binding specificity of metal complexes on biomolecules. The author demonstrates significant advances made in anti-cancer gold(III), gold(I) and platinum(II) complexes. Detailed chemical synthesis, in vitro and/or in vivo anti-cancer activities are clearly presented including: (i) a class of Au(III) complexes containing a highly fluorescent N^N^N ligand and NHC ligand that simultaneously act as fluorescent thiol "switch-on" probes and anti-cancer agents; (ii) a dinuclear gold(I) complex with a mixed diphosphine and bis(NHC) ligand displaying favorable stability and showing significant inhibition of tumor growth in two independent mice models with no observable side effects; and (iii) a panel of stable luminescent cyclometalated platinum(II) complexes exhibiting high specificity to localize to the endoplasmic reticulum (ER) domain, inducing ER stress and cell apoptosis. These works highlight the clinical potential that gold and platinum complexes offer for cancer treatment.

List of contents

Introduction.- Experimental Section.- Gold(III) ComplexesContaining N-Heterocyclic Carbene Ligand Serve as Dual FluorescentThiol "Switch-on" Probe and Anti-Cancer Agent.- A Binuclear Gold(I) Complexwith Mixed Bridging Diphosphine and Bis(N-Heterocyclic Carbene) Ligands ShowsFavorable Thiol Reactivity and Effectively Inhibits Tumor Growth andAngiogenesis in Vivo.- Luminescent Organoplatinum(II)Complexes Containing Bis(N-Heterocyclic Carbene) Ligands Selectively TargetEndoplasmic Reticulum and Induce Potent Phototoxicity.- Summary and Evaluation.

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Summary

This thesis focuses on the development of gold- and non-classical platinum-based anti-cancer agents that display distinctively different anti-cancer mechanisms compared to the commonly used cisplatin. These metal complexes contain N-heterocyclic carbene (NHC) ligands which are able to form strong M-C(NHC) bonds, conferring high stability and favorable lipophilicity, reactivity and binding specificity of metal complexes on biomolecules. The author demonstrates significant advances made in anti-cancer gold(III), gold(I) and platinum(II) complexes. Detailed chemical synthesis, in vitro and/or in vivo anti-cancer activities are clearly presented including: (i) a class of Au(III) complexes containing a highly fluorescent N^N^N ligand and NHC ligand that simultaneously act as fluorescent thiol “switch-on” probes and anti-cancer agents; (ii) a dinuclear gold(I) complex with a mixed diphosphine and bis(NHC) ligand displaying favorable stability and showing significant inhibition of tumor growth in two independent mice models with no observable side effects; and (iii) a panel of stable luminescent cyclometalated platinum(II) complexes exhibiting high specificity to localize to the endoplasmic reticulum (ER) domain, inducing ER stress and cell apoptosis. These works highlight the clinical potential that gold and platinum complexes offer for cancer treatment.

Product details

Authors Taotao Zou
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 01.01.2018
 
EAN 9789811092213
ISBN 978-981-10-9221-3
No. of pages 164
Dimensions 155 mm x 10 mm x 235 mm
Weight 283 g
Illustrations XIII, 164 p. 179 illus., 79 illus. in color.
Series Springer Theses
Springer Theses
Subjects Natural sciences, medicine, IT, technology > Chemistry > Inorganic chemistry

B, Medical research, biochemistry, molecular biology, Oncology, Chemistry and Materials Science, Cancer Research, Biomedical Research, Inorganic Chemistry, Molecular Medicine, MEDICINAL CHEMISTRY

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