Ruthenium complexes: photochemical and biomedical applications
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Weitere Verfasser: | , , , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
[2018]
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Schlagworte: | |
Online-Zugang: | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-33957-0/ Inhaltsverzeichnis |
Beschreibung: | xx, 324 Seiten Illustrationen, Diagramme (teilweise farbig) |
ISBN: | 9783527339570 |
Internformat
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245 | 1 | 0 | |a Ruthenium complexes |b photochemical and biomedical applications |c edited by Alvin A. Holder, Lothar Lilge, Wesley R. Browne, Mark A. W. Lawrence, Jimmie L. Bullock Jr. |
264 | 1 | |a Weinheim |b Wiley-VCH |c [2018] | |
264 | 4 | |c © 2018 | |
300 | |a xx, 324 Seiten |b Illustrationen, Diagramme (teilweise farbig) | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
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650 | 0 | 7 | |a Photosynthese |0 (DE-588)4045936-6 |2 gnd |9 rswk-swf |
653 | |a Biomedizin | ||
653 | |a Chemie | ||
653 | |a Chemistry | ||
653 | |a Industrial Chemistry | ||
653 | |a Metallkomplexe | ||
653 | |a Metallorganische Verbindungen | ||
653 | |a Nachhaltige u. Grüne Chemie | ||
653 | |a Organische Chemie | ||
653 | |a Organometallchemie | ||
653 | |a Organometallic Chemistry | ||
653 | |a Pharmaceutical & Medicinal Chemistry | ||
653 | |a Pharmazeutische u. Medizinische Chemie | ||
653 | |a Photochemie | ||
653 | |a Photochemistry | ||
653 | |a Rutheniumverbindungen | ||
653 | |a Sustainable Chemistry & Green Chemistry | ||
653 | |a Technische u. Industrielle Chemie | ||
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700 | 1 | |a Browne, Wesley R. |0 (DE-588)1059302373 |4 edt | |
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700 | 1 | |a Bullock, Jimmie L. |0 (DE-588)1150979321 |4 edt | |
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Datensatz im Suchindex
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adam_text | CONTENTS
ABOUT THE EDITORS XV
PREFACE XVII
ACKNOWLEDGMENTS XIX
SECTION I INTRODUCTION 1
1 KAREN J. BREWER (1961-2014): A BRIGHT STAR THAT BURNED OUT FAR
TOO SOON 3
SETH C RASMUSSEN
1.1 INTRODUCTION 3
1.2 EARLY YEARS 4
1.3 GRADUATE STUDIES AND CLEMSON UNIVERSITY 6
1.4 POSTDOCTORAL RESEARCH AND THE UNIVERSITY OF CALIFORNIA, BERKELEY 11
1.5 WASHINGTON STATE UNIVERSITY: BEGINNING AN INDEPENDENT CAREER 13
1.6 MOVE TO VIRGINIA TECH IS
1.7 COLLABORATION WITH BRENDA WINKEL AND THE STUDY OF METAL-DNA
INTERACTIONS 16
1.8 A RETURN TO WHERE IT ALL STARTED: PHOTOCHEMICAL H2 PRODUCTION 18
1.9 A CAREER CUT TRAGICALLY SHORT 19
1.10 KARENS LEGACY 20
ACKNOWLEDGMENTS 20
REFERENCES 20
2 BASIC COORDINATION CHEMISTRY OF RUTHENIUM 25
MARK A. W. LAWRENCE, JIMMIE L. BULLOCK, AND ALVIN A. HOLDER
2.1 COORDINATION CHEMISTRY OF RUTHENIUM 25
2.1.1 THE ELEMENT 25
2.1.2 STEREOCHEMISTRY AND COMMON OXIDATION STATES 26
2.1.2.1 RUTHENIUM IN LOW OXIDATION STATES 27
2.1.2.2 CHEMISTRY OF RUTHENIUM(II) AND (III) 31
2.1.2.3 HIGHER OXIDATION STATES OF RUTHENIUM 36
2.1.3 CONCLUSION 37
REFERENCES 37
SECTION II ARTIFICIAL PHOTOSYNTHESIS 43
3 WATER OXIDATION CATALYSIS WITH RUTHENIUM 45
ANDREA SARTOREL
3.1 INTRODUCTION 45
3.1.1 ENERGY ISSUE AND ENERGY FROM THE SUN 45
3.1.2 PHOTOSYNTHESIS AND SOLAR FUELS 46
3.1.3 WATER OXIDATION 48
3.1.4 ARTIFICIAL WATER OXIDATION 49
3.2 RUTHENIUM IN WATER OXIDATION CATALYST 50
3.2.1 RUTHENIUM OXIDE 50
3.2.2 MOLECULAR RUTHENIUM WOC 52
3.2.2.1 MEYERS BLUE DIMER 53
3.2.2.2 THE RU-HBPP CATALYST 54
3.2.2.3 SINGLE-SITE RU-WOCS 55
3.2.2.4 HEPTACOORDINATED RU INTERMEDIATES 56
3.2.3 POLYOXOMETALATES: THE BRIDGE BETWEEN METAL OXIDES AND
COORDINATION COMPLEXES 57
3.3 CONCLUSIONS AND PERSPECTIVES 60
REFERENCES 61
4 RUTHENIUM- AND COBALT-CONTAINING COMPLEXES AND
HYDROGENASES FOR HYDROGEN PRODUCTION 67
MICHAEL J. CELESTINE, RAJ K. GURUNG, AND ALVIN A. HOLDER
4.1 INTRODUCTION 67
4.2 (A) RUTHENIUM- AND COBALT-CONTAINING COMPLEXES FOR HYDROGEN
PRODUCTION 68
4.2.1 NONBRIDGED SYSTEMS 68
4.2.2 BRIDGED SYSTEMS 70
4.3 (B) RUTHENIUM(II)-CONTAINING COMPLEXES AND HYDROGENASES FOR
HYDROGEN GENERATION IN AQUEOUS SOLUTION 77
4.3.1 HYDROGENASES 77
4.3.2 HYDROGENASES WITH RUTHENIUM(II) COMPLEXES
78
4.4 CONCLUSIONS 84
REFERENCES 85
SECTION III APPLICATIONS IN MEDICINE 89
5 LIGAND PHOTOSUBSTITUTION REACTIONS WITH RUTHENIUM
COMPOUNDS: APPLICATIONS IN CHEMICAL BIOLOGY AND MEDICINAL
CHEMISTRY 91
SAMANTHA L HOPKINS AND SYLVESTRE BONNET
5.1 INTRODUCTION 91
5.2 CAGING AND UNCAGING BIOLOGICALLY ACTIVE LIGANDS WITH A NONTOXIC
RUTHENIUM COMPLEX 92
5.3 CAGING CYTOTOXIC RUTHENIUM COMPLEXES WITH ORGANIC LIGANDS 96
5.4 LOW-ENERGY PHOTOSUBSTITUTION 100
5.4.1 INTRODUCTION 100
5.4.2 MODULATING RU PHOTOPHYSICS BY LIGAND MODULATION 100
5.4.3 BYCONVERSION (UC) 105
5.4.3.1 TRIPLET-TRIPLET ANNIHILATION UPCONVERSION 105
5A3.2 UPCONVERTING NANOPARTICLES (UCNPS) 106
5.4.3.3 TWO-PHOTON ABSORPTION (TPA) PHOTOSUBSTITUTION 109
5.5 CONCLUSIONS 110
REFERENCES 111
6 USE OF RUTHENIUM COMPLEXES AS PHOTOSENSITIZERS IN
PHOTODYNAMIC THERAPY 117
LOTHAR LILGE
6.1 INTRODUCTION 117
6.2 THE BASICS OF PHOTODYNAMIC THERAPY 118
6.2.1 SINGLET OXYGEN PRODUCTION 120
6.2.2 OTHER RADICAL PRODUCTION 120
6.2.3 PDT DOSE DEFINITION 120
6.2.3.1 PDT DOSIMETRY
IN VITRO 122
6.2.3.2 PDT DOSIMETRY
IN VIVO 124
6.2.3.3 OXYGEN CONSUMPTION MODEL 125
6.2.3.4 IN VIVO TISSUE RESPONSE MODELS 125
6.2.4 PDT AND IMMUNOLOGY 126
6.3 STATUS OF RU PHOTOSENSITIZING COMPLEXES 126
6.3.1 PHOTOSTABILITY FOR RU-PS COMPLEXES 128
6.3.2 LONG WAVELENGTH ACTIVATION OF RU(II)-PS COMPLEXES 128
6.4 ISSUES TO BE CONSIDERED TO FURTHER DEVELOP RU-BASED
PHOTOSENSITIZERS 129
6.4.1 SUBCELLULAR LOCALIZATION 130
6.4.2 RUTHENIUM COMPLEX PHOTOSENSITIZERS AND THE IMMUNE RESPONSE 131
6.5 FUTURE DIRECTIONS FOR RU-PS RESEARCH 131
6.6 CONCLUSION 132
REFERENCES 132
1 PHOTODYNAMIC THERAPY IN MEDICINE WITH
MIXED-METAL/SUPRAMOLECULAR COMPLEXES 139
JIMMIE L. BULLOCK AND ALVIN A. HOLDER
7.1 INTRODUCTION 139
7.2 PLATINUM AND RHODIUM CENTERS AS BIOACTIVE SITES 140
7.2.1 PLATINUM(II)-BASED CHEMOTHERAPEUTICS 140
7.2.2 RHODIUM(III) AS A BIOACTIVE SITE 141
7.3 SUPRAMOLECULAR COMPLEXES AS DNA PHOTOMODIFICATION AGENTS 142
7.4 MIXED-METAL COMPLEXES AS PHOTODYNAMIC THERAPEUTIC AGENTS 143
7.4.1 PHOTOSENSITIZERS WITH A RU(II) METAL CENTER COUPLED TO PT(II)
BIOACTIVE
SITES 143
7.4. 1.1 BINUCLEAR COMPLEXES WITH RU(II) AND PT(II) METAL CENTERS WITH
BIDENTATE LIGANDS 143
7.4.1.2 BINUCLEAR AND TRINUCLEAR COMPLEXES WITH RU, PT WITH TRIDENTATE
LIGANDS 146
7.4.2 PHOTOSENSITIZERS WITH A RU(II) METAL CENTER COUPLED TO RH(III)
BIOACTIVE SITES 147
7.4.2.1 TRINUCLEAR COMPLEXES WITH RU(II), RH(III), AND RU(II) METAL
CENTERS 147
7A2.2 BINUCLEAR COMPLEXES WITH RU(II) AND RH(III) METAL CENTERS 149
7.4.3 PHOTOSENSITIZERS WITH A RU(II) METAL CENETR COUPLED TO OTHER
BIOACTIVE SITES ISO
7.4.3.1 BINUCLEAR COMPLEXES WITH RU(II) AND CU ISO
7A3.2 BINUCLEAR COMPLEXES WITH RU(II) AND CO(III) METAL CENTERS 1S1
7A3.3 BINUCLEAR COMPLEXES WITH RU (II) AND V(IV) METAL CENTERS 1S1
7A3.4 APPLICATIONS OF RU(II) METAL CENTERS IN NANOMEDICINE 1S2
7.5 SUMMARY AND CONCLUSIONS 755
ABBREVIATIONS 756
REFERENCES 757
8 RUTHENIUM ANTICANCER AGENTS EN ROUTE TO THE TUMOR: FROM
PLASMA PROTEIN BINDING AGENTS TO TARGETED DELIVERY 767
MUHAMMAD HANIFAND CHRISTIAN G. HARTINGER
8.1 INTRODUCTION 767
8.2 PROTEIN BINDING RUM ANTICANCER DRUG CANDIDATES 163
8.2.1 RUM ANTICANCER DRUG CANDIDATES TARGETING PRIMARY TUMORS 163
8.2.2 ANTIMETASTATIC RUM COMPOUNDS 765
8.3 FUNCTIONALIZATION OF MACROMOLECULAR CARRIER SYSTEMS WITH RU
ANTICANCER AGENTS 766
8.3.1 PROTEINS AS DELIVERY VECTORS FOR ORGANOMETALLIC COMPOUNDS 766
8.3.2 POLYMERS AND LIPOSOMES AS DELIVERY SYSTEMS FOR BIOACTIVE RUTHENIUM
COMPLEXES 168
8.3.3 DENDRIMERS 769
8.4 HORMONES, VITAMINS, AND SUGARS: RUTHENIUM COMPLEXES TARGETING
SMALL MOLECULE RECEPTORS 769
8.5 PEPTIDES AS TRANSPORTERS FOR RUTHENIUM COMPLEXES INTO TUMOR CELLS
AND CELL COMPARTMENTS 7 73
8.6 POLYNUCLEAR RUTHENIUM COMPLEXES FOR THE DELIVERY OF A CYTOTOXIC
PAYLOAD 7 74
8.7 SUMMARY AND CONCLUSIONS 7 75
ACKNOWLEDGMENTS 775
REFERENCES 7 76
9 DESIGN ASPECTS OF RUTHENIUM COMPLEXES AS DNA PROBES AND
THERAPEUTIC AGENTS 181
MADELEINE DE BEER AND SHAWN SWAVEY
9.1 INTRODUCTION 181
9.2 PHYSICAL INTERACTION TO DISRUPT DNA STRUCTURE 181
9.2.1 IRREVERSIBLE COVALENT BINDING 182
9.2.2 INTERCALATION 184
9.2.3 ADDITIONAL NONCOVALENT BINDING INTERACTIONS 185
9.3 BIOLOGICAL CONSEQUENCES OF RU-COMPLEX/DNA INTERACTIONS 186
9.4 EFFECTS OF RU COMPLEXES ON TOPOISOMERASES AND TELOMERASE 191
9.5 SUMMARY AND CONCLUSIONS 196
REFERENCES 197
10 RUTHENIUM-BASED ANTICANCER COMPOUNDS: INSIGHTS INTO THEIR
CELLULAR TARGETING AND MECHANISM OF ACTION 201
ANTONIO MATOS, FILIPA MENDES, ANDREIA VALENTE, TANIA MORAIS,
ANA ISABEL TOMAZ, PHILIPPE ZINCK, MARIA HELENA GARCIA, MANUEL BICHO,
AND FERNANDA MARQUES
10.1 INTRODUCTION 201
10.2 CELLULAR UPTAKE 204
10.3 DNA AND DNA-RELATED CELLULAR TARGETS 205
10.4 TARGETING SIGNALING PATHWAYS 207
10.5 TARGETING ENZYMES OF SPECIFIC CELL FUNCTIONS 207
10.6 TARGETING GLYCOLYTIC PATHWAYS 209
10.7 MACROMOLECULAR RUTHENIUM CONJUGATES: A NEW APPROACH TO
TARGETING 211
10.8 CONCLUSIONS 214
REFERENCES 215
11 TARGETING CELLULAR DNA WITH LUMINESCENT RUTHENIUM(LL)
POLYPYRIDYL COMPLEXES 221
MARTIN R. GILL AND JIM A. THOMAS
11.1 INTRODUCTION 221
11.1.1 DNA-BINDING MODES OF SMALL MOLECULES 222
11.1.2 METAL COMPLEXES AND DNA 223
11.2 [RU(BPY)2(DPPZ)]2+ AND THE DNA *LIGHT-SWITCH* EFFECT 224
11.3 CELLULAR UPTAKE OF RPCS AND APPLICATION AS DNA-IMAGING
AGENTS 226
11.3.1 MONONUCLEAR COMPLEXES 226
11.3.2 DINUCLEAR COMPLEXES 228
11.3.3 CYCLOMETALATED SYSTEMS 228
11.4 ALTERNATIVE TECHNIQUES TO ASSESS CELLULAR UPTAKE AND
LOCALIZATION 231
11.5 TOWARD THERANOSTICS: LUMINESCENT RPCS AS ANTICANCER
THERAPEUTICS 232
11.6 SUMMARY AND CONCLUSIONS 234
REFERENCES 235
12 BIOLOGICAL ACTIVITY OF RUTHENIUM COMPLEXES WITH QUINOLINE
ANTIBACTERIAL AND ANTIMALARIAL DRUGS 239
JAKOB KLJUN AND IZTOK TUREL
INTRODUCTION 239
12.1
12.2 ANTIBACTERIAL (FLUORO)QUINOLONES 240
12.2.1 QUINOLONES AND THEIR INTERACTIONS WITH METAL IONS 241
12.2.2 RUTHENIUM AND QUINOLONES 241
12.2.3 RUTHENIUM AND HIV INTEGRASE INHIBITOR ELVITEGRAVIR 245
12.3 ANTIBACTERIAL 8-HYDROXY QUINOLINES 246
12.3.1 MODE OF ACTION OF 8-HYDROXYQUINOLINE AGENTS 246
12.3.2 RUTHENIUM AND 8-HYDROXYQUINOLINES 247
12.4 ANTIMALARIAL 4-AMINOQUINOLINES 248
12.4.1 MECHANISM OF ACTION OF ANTIMALARIAL QUINOLINE AGENTS 248
12.5 METALLOCENE ANALOGUES OF CHLOROQUINE 249
12.6 CONCLUSIONS 252
REFERENCES 252
13 RUTHENIUM COMPLEXES AS NO DONORS: PERSPECTIVES AND
PHOTOBIOLOGICAL APPLICATIONS 257
LOYANNE C.B. RAMOS, JULIANA C. BIAZZOTTO, JULIANA A. UZUELLI,
RENATA G. DE LIMA, AND ROBERTO S. DA SILVA
13.1 INTRODUCTION 257
13.2 PHOTOCHEMICAL PROCESSES OF SOME NITROGEN OXIDE
DERIVATIVE-RUTHENIUM COMPLEXES 258
13.2.1 METAL-LIGAND CHARGE-TRANSFER PHOTOLYSIS OF {RU-NO}6 258
13.2.2 NITROSYL RUTHENIUM COMPLEXES: VISIBLE-LIGHT STIMULATION 261
13.3 PHOTOBIOLOGICAL APPLICATIONS OF NITROGEN OXIDE COMPOUNDS 265
13.3.1 PHOTOVASORELAXATION 265
REFERENCES 268
14 TRENDS AND PERSPECTIVES OF RUTHENIUM ANTICANCER COMPOUNDS
(NON-PDT) 271
MICHAEL A. JAKUPEC, WOLFGANG KANDIOLLER, BEATRIX SCHOENHACKER-ALTE,
ROBERT TRONDL, WALTER BERGER, AND BERNHARD K. KEPPLER
14.1 INTRODUCTION 271
14.2 RUTHENIUM(III) COMPOUNDS 272
14.2.1 NAMI-A 273
14.2.1.1 BIOTRANSFORMATION 273
14.2.1.2 ANTIMETASTATIC ACTIVITY 274
14.2.1.3 MODE OF ACTION 274
14.2.1.4 CLINICAL STUDIES AND PERSPECTIVES 275
14.2.2 KP1019/NKP-1339 276
14.2.2.1 TUMOR TARGETING MEDIATED BY PLASMA PROTEINS 276
14.2.2.2 ACTIVATION BY REDUCTION 277
14.2.2.3 MODE OF ACTION 278
14.2.2.4 CLINICAL STUDIES AND PERSPECTIVES 281
14.3 ORGANORUTHENIUM(II) COMPOUNDS 282
14.3.1 RUTHENIUM(II)- ARENE COMPOUNDS IN PRECLINICAL DEVELOPMENT 282
14.3.1.1 ORGANORUTHENIUM COMPLEXES BEARING BIOACTIVE LIGAND
SCAFFOLDS 284
14.3.1.2 CYTOTOXIC ORGANORUTHENIUM COMPLEXES WITHOUT ACTIVATION BY
AQUATION 285
REFERENCES 286
15 RUTHENIUM COMPLEXES AS ANTIFUNGAL AGENTS 293
CLAUDIO L DORMICI, MARIA H. ARAUJO, AND MARIA A. R. STOIANOFF
15.1 INTRODUCTION 293
15.2 ANTIFUNGAL ACTIVITY INVESTIGATIONS OF RUTHENIUM COMPLEXES 304
15.2.1 RUTHENIUM COMPLEXES WITH ACTIVITY AGAINST SEVERAL PATHOGENIC
FUNGI
SPECIES: DINUCLEAR, TRINUCLEAR, AND TETRANUCLEAR RUTHENIUM
POLYDENTATE POLYPYRIDIL LIGANDS, HETEROTRIMETALLIC
DI-RUTHENIUM-MONO-PALLADIUM COMPLEXES, DINUCLEAR
BIS-SS-DIKETONES AND PENTADITHIOCARBAMATE LIGANDS 304
15.2.2 AROMATIC AND HETEROAROMATIC LIGANDS IN RU MONOMETALLIC CENTERS
(PYRIDINE, PHENANTROLINE, TERPYRIDINE, QUINOLINE,
AND PHENAZINE) 305
15.2.3 SCHIFF BASES, THIOSEMICARBAZONES, AND CHALCONES 307
15.2.3.1 SCHIFF BASES (TETRADENTATE SALEN LIKE, TRIDENTATE, AND
BIDENTATE) 307
15.2.3.2 THIOSEMICARBAZONES 309
15.2.3.3 CHALCONE DERIVATIVES 310
15.2.4 OTHER LIGANDS (DITHIO-NAPHTYL-BENZAMIDE, ARYLAZO, CATECHOLAMINE,
ORGANOPHOSPHORATED, HYDRIDOTRIS(PYRAZOLYL)BORATE AND BIOACTIVE
AZOLE LIGANDS) 310
15.3 CONCLUSION 312
REFERENCES 313
INDEX 319
|
any_adam_object | 1 |
author2 | Holder, Alvin A. Lilge, Lothar Browne, Wesley R. Lawrence, Mark A. W. Bullock, Jimmie L. |
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author_facet | Holder, Alvin A. Lilge, Lothar Browne, Wesley R. Lawrence, Mark A. W. Bullock, Jimmie L. |
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classification_rvk | VH 8086 VH 9600 VH 9700 |
ctrlnum | (OCoLC)1020568452 (DE-599)DNB1135585989 |
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dewey-ones | 540 - Chemistry and allied sciences |
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discipline | Chemie / Pharmazie |
format | Book |
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id | DE-604.BV044398326 |
illustrated | Illustrated |
indexdate | 2024-07-10T07:51:53Z |
institution | BVB |
institution_GND | (DE-588)16179388-5 |
isbn | 9783527339570 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-029800441 |
oclc_num | 1020568452 |
open_access_boolean | |
owner | DE-20 DE-29T DE-703 DE-11 DE-19 DE-BY-UBM DE-384 DE-83 |
owner_facet | DE-20 DE-29T DE-703 DE-11 DE-19 DE-BY-UBM DE-384 DE-83 |
physical | xx, 324 Seiten Illustrationen, Diagramme (teilweise farbig) |
publishDate | 2018 |
publishDateSearch | 2018 |
publishDateSort | 2018 |
publisher | Wiley-VCH |
record_format | marc |
spelling | Ruthenium complexes photochemical and biomedical applications edited by Alvin A. Holder, Lothar Lilge, Wesley R. Browne, Mark A. W. Lawrence, Jimmie L. Bullock Jr. Weinheim Wiley-VCH [2018] © 2018 xx, 324 Seiten Illustrationen, Diagramme (teilweise farbig) txt rdacontent n rdamedia nc rdacarrier Rutheniumkomplexe (DE-588)4266702-1 gnd rswk-swf Fotodynamische Therapie (DE-588)4312776-9 gnd rswk-swf Katalyse (DE-588)4029921-1 gnd rswk-swf Fotochemie (DE-588)4045873-8 gnd rswk-swf Arzneimittel (DE-588)4003115-9 gnd rswk-swf Bildgebendes Verfahren (DE-588)4006617-4 gnd rswk-swf Photosynthese (DE-588)4045936-6 gnd rswk-swf Biomedizin Chemie Chemistry Industrial Chemistry Metallkomplexe Metallorganische Verbindungen Nachhaltige u. Grüne Chemie Organische Chemie Organometallchemie Organometallic Chemistry Pharmaceutical & Medicinal Chemistry Pharmazeutische u. Medizinische Chemie Photochemie Photochemistry Rutheniumverbindungen Sustainable Chemistry & Green Chemistry Technische u. Industrielle Chemie Rutheniumkomplexe (DE-588)4266702-1 s Photosynthese (DE-588)4045936-6 s DE-604 Arzneimittel (DE-588)4003115-9 s Bildgebendes Verfahren (DE-588)4006617-4 s Fotochemie (DE-588)4045873-8 s Katalyse (DE-588)4029921-1 s Fotodynamische Therapie (DE-588)4312776-9 s Holder, Alvin A. (DE-588)1150978635 edt Lilge, Lothar (DE-588)1076869297 edt Browne, Wesley R. (DE-588)1059302373 edt Lawrence, Mark A. W. (DE-588)1150978996 edt Bullock, Jimmie L. (DE-588)1150979321 edt Wiley-VCH (DE-588)16179388-5 pbl Erscheint auch als Online-Ausgabe, ePDF 978-3-527-69520-1 Erscheint auch als Online-Ausgabe, ePub 978-3-527-69524-9 Erscheint auch als Online-Ausgabe, Mobi 978-3-527-69521-8 Erscheint auch als Online-Ausgabe, oBook 978-3-527-69522-5 X:MVB http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-33957-0/ DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029800441&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Ruthenium complexes photochemical and biomedical applications Rutheniumkomplexe (DE-588)4266702-1 gnd Fotodynamische Therapie (DE-588)4312776-9 gnd Katalyse (DE-588)4029921-1 gnd Fotochemie (DE-588)4045873-8 gnd Arzneimittel (DE-588)4003115-9 gnd Bildgebendes Verfahren (DE-588)4006617-4 gnd Photosynthese (DE-588)4045936-6 gnd |
subject_GND | (DE-588)4266702-1 (DE-588)4312776-9 (DE-588)4029921-1 (DE-588)4045873-8 (DE-588)4003115-9 (DE-588)4006617-4 (DE-588)4045936-6 |
title | Ruthenium complexes photochemical and biomedical applications |
title_auth | Ruthenium complexes photochemical and biomedical applications |
title_exact_search | Ruthenium complexes photochemical and biomedical applications |
title_full | Ruthenium complexes photochemical and biomedical applications edited by Alvin A. Holder, Lothar Lilge, Wesley R. Browne, Mark A. W. Lawrence, Jimmie L. Bullock Jr. |
title_fullStr | Ruthenium complexes photochemical and biomedical applications edited by Alvin A. Holder, Lothar Lilge, Wesley R. Browne, Mark A. W. Lawrence, Jimmie L. Bullock Jr. |
title_full_unstemmed | Ruthenium complexes photochemical and biomedical applications edited by Alvin A. Holder, Lothar Lilge, Wesley R. Browne, Mark A. W. Lawrence, Jimmie L. Bullock Jr. |
title_short | Ruthenium complexes |
title_sort | ruthenium complexes photochemical and biomedical applications |
title_sub | photochemical and biomedical applications |
topic | Rutheniumkomplexe (DE-588)4266702-1 gnd Fotodynamische Therapie (DE-588)4312776-9 gnd Katalyse (DE-588)4029921-1 gnd Fotochemie (DE-588)4045873-8 gnd Arzneimittel (DE-588)4003115-9 gnd Bildgebendes Verfahren (DE-588)4006617-4 gnd Photosynthese (DE-588)4045936-6 gnd |
topic_facet | Rutheniumkomplexe Fotodynamische Therapie Katalyse Fotochemie Arzneimittel Bildgebendes Verfahren Photosynthese |
url | http://www.wiley-vch.de/publish/dt/books/ISBN978-3-527-33957-0/ http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029800441&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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