Bio-nanomaterials: designing materials inspired by nature
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
2013
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Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | XI, 458 S. Ill., graph. Darst. 240 mm x 170 mm |
ISBN: | 9783527410156 3527410155 |
Internformat
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IMAGE 1
CONTENTS
PREFACE IX
1 MOLECULAR UNITS 1
1.1 CASE STUDIES 1
1.1.1 NUCLEIC ACIDS 4
1.1.2 PROTEINS 11
1.1.3 CARBOHYDRATES 20
1.1.4 LIPIDS 25
1.2 BASIC PRINCIPLES 27
1.2.1 THE PERSISTENCE LENGTHS O F BIOPOLYMER CHAINS 2 7 1.2.2
EQUILIBRIUM SHAPE O F A SEMIFLEXIBLE POLYMER CHAIN 30 1.2.3 THE
LOAD-EXTENSION DIAGRAM O F A SEMIFLEXIBLE POLYMER CHAIN 31 1.2.4
COOPERATIVITY 37
1.2.5 PROTEIN FOLDING 39
1.2.6 DNA MELTING TRANSITION 46 1.2.7 BIOCATALYTIC REACTIONS 46 1.3
BIOENGINEERING 51
1.3.1 BIOINTERFACING 51
1.3.2 DNA-BASED NANOTECHNOLOGY 54 1.3.2.1 BIOMOLECULAR TEMPLATES FOR
SUBMICROMETER ELECTRONIC CIRCUITRIES 54 1.3.2.2 DNA-BASED NANOPROBES 85
1.3.3 PROTEIN-BASED NANOTECHNOLOGY 97
REFERENCES 104
2 MOLECULAR RECOGNITION 109
2.1 CASE STUDY 109
2.2 BASIC PRINCIPLES 112
2.2.1 COMPLEMENTARY INTERACTION BETWEEN PROTEINS AND LIGANDS 113 2.2.2
COOPERATIVE PROTEIN-IIGAND INTERACTION 114 2.2.3 THE ENZYME-LINKED
IMMUNOSORBENT ASSAY 116 2.3 ENGINEERING O F BIOMOLECULAR RECOGNITION
SYSTEMS 119 2.3.1 ENGINEERING O F PROTEIN-BASED BIOAFFINE MATERIALS 119
2.3.1.1 INTERFACING MECHANISMS O F PROTEINS VIA BIOAFFINITY 119
HTTP://D-NB.INFO/103000269X
IMAGE 2
V I I CONTENTS
2.3.2 ENGINEERING O F SENSING BIOFUNCTIONALIZED MATERIALS 127
2.3.2.1 DESIGN PRINCIPLES O F BIOSENSORS 128 2.3.2.2 INTEGRATION OF
SENSING BIOLOGICAL ELEMENTS AND TRANSDUCER UNITS 129 REFERENCES 147
3 CELL ADHESION 149
3.1 CASE STUDY 150
3.2 BASIC PRINCIPLES 154
3.2.1 THE CELLULAR MECHANOTRANSDUCTION SYSTEM 154 3.2.2 MECHANICAL
IMPACT OF THE ECM ON CELL DEVELOPMENT 158 3.2.3 INFLUENCE O F THE
MICROENVIRONMENT TOPOLOGY ON THE CELL SPREADING AND DEVELOPMENT 162
3.3 BIOENGINEERING 164
3.3.1 THE BASIC APPROACH AND GOALS 164 3.3.2 TAILORED SURFACES FOR IN
VITRO CULTURING O F CELLS 168 3.3.2.1 A MODULAR POLYMER PLATFORM FOR
MECHANICALLY REGULATED CELL CULTURING AT INTERFACES 168
3.3.2.2 REGULATION OF CELL FATE BY NANOSTRUCTURED SURFACES 172 3.3.3
THREE-DIMENSIONAL SCAFFOLDS FOR TISSUE ENGINEERING 175 3.3.4 SWITCHABLE
SUBSTRATES AND MATRICES 176 REFERENCES 181
4 WHOLE-CELL SENSOR STRUCTURES 183
4.1 CASE STUDIES 183
4.2 BASIC PRINCIPLES 184
4.3 BIOENGINEERING 187
REFERENCES 197
5 BIOHYBRID SILICA-BASED MATERIALS 199 5.1 CASE STUDIES 199
5.2 BASIC PRINCIPLES 205
5.2.1 PREPARATION O F SILICA-BASED XEROGELS 205 5.2.2 BIOLOGICAL
PROPERTIES O F SILICA-BASED BIOCERS 212 5.3 BIOENGINEERING 215
5.3.1 BIOACTIVE SOL-GEL COATINGS AND COMPOSITES 216 5.3.2 BIOCATALYTIC
SOL-GEL COATINGS 221 5.3.3 BIOREMEDIATION 223
5.3.4 CELL-BASED BIOREACTORS 228 5.3.5 SILICA-BASED CONTROLLED RELEASE
STRUCTURES 229 5.3.6 PATTERNED STRUCTURES 230
5.4 SILICIFIED GEOLOGICAL BIOMATERIALS 231 REFERENCES 234
6 BIOMINERALIZATION 237
6.1 CASE STUDIES 237
6.2 BASIC PRINCIPLES 240
IMAGE 3
CONTENTS I V I I
6.2.1 PRECIPITATION 244
6.2.1.1 THERMODYNAMICS OF MINERALIZATION 245 6.2.1.2 KINETICS O F
MINERALIZATION 250 6.2.2 PHENOMENOLOGY O F BIOMINERALIZATION 253 6.2.3
BASIC MECHANISMS IN BIOMINERALIZATION 254 6.2.4 BIOLOGICALLY MEDIATED
MINERALIZATION: THE COMPETITION
BETWEEN INHIBITION AND GROWTH 255 6.2.4.1 EFFECT O F POLYPEPTIDES ON
PRECIPITATE HABITUS 256 6.2.4.2 THE FORMATION O F METASTABLE POLYMORPHS
258 6.2.5 BIOLOGICALLY INDUCED MINERALIZATION: ROLE O F THE EPICELLULAR
SPACE
AND THE EXTRACELLULAR POLYMERIC SUBSTANCES 260 6.2.6 BIOLOGICALLY
CONTROLLED MINERALIZATION: MOLECULAR PREORGANIZATION, RECOGNITION, AND
VECTORIAL GROWTH 267 6.2.6.1 INTRACELLULAR MINERALIZATION 267 6.2.6.2
EPI- AND EXTRACELLULAR MINERALIZATION 272 6.2.7 MINERALIZATION O F
DIATOM SHELLS: AN EXAMPLE O F UNICELLULAR
HIERARCHICAL STRUCTURES 277 6.2.8 MINERALIZATION OF BONE: AN EXAMPLE O F
MULTICELLULAR BIOMINERALIZATION 282 6.2.8.1 THE MESOSCOPIC ARCHITECTURE
O F BONE 284 6.2.8.2 BONE REMODELING AND BONE REPAIR 287 6.2.8.3 THE
NANOSCOPIC STRUCTURE O F THE EXTRACELLUAR
MATRIX O F BONE 292
6.2.8.4 THE POLYMER-INDUCED LIQUID PRECURSOR PROCESS 298 6.2.8.5
SCALE-DEPENDENT MECHANICAL BEHAVIOR O F BONE 301 6.2.9 ANCIENT EVIDENCE
O F BIOMINERALIZATION 304 6.2.9.1 STROMATOLITES: THE OLDEST FOSSILS BY
BIOGENIC MINERALIZATION 304 6.3 BIOENGINEERING 306
6.3.1 BACTERIA-DERIVED MATERIALS DEVELOPMENT 306 6.3.1.1 BIO-PALLADIUM:
BIOLOGICALLY CONTROLLED GROWTH O F METALLIC NANOPARTICLES 306 6.3.1.2
BIOGENIC ION EXCHANGE MATERIALS 313
6.3.2 BIO-INSPIRED DESIGN O F MINERALIZED COLLAGEN AND BONE-LIKE
MATERIALS 314 6.3.2.1 BIOMIMETIC GROWTH O F APATITE-GELATIN
NANOCOMPOSITES 314 6.3.2.2 BIOMIMETIC MANUFACTURING O F MINERALIZED
COLLAGEN SCAFFOLDS 324 6.3.3 BIOMIMICKING O F BONE TISSUE 338 6.3.3.1
NATURAL VERSUS SYNTHETIC BIOPOLYMERS FOR SCAFFOLD DESIGN 339 6.3.3.2
PROTEIN-ENGINEERED SYNTHETIC POLYMERS 341 6.3.3.3 PROTEIN-ENGINEERED
COLLAGEN MATRICES 345
6.3.4 MICROBIAL CARBONATE PRECIPITATION I N CONSTRUCTION MATERIALS 354
6.3.5 THE POTENTIAL O F BIOMINERALIZATION FOR CARBON CAPTURE AND STORAGE
(CCS) 357 REFERENCES 359
IMAGE 4
V I I I I CONTENTS
7 SELF-ASSEMBLY 367
7.1 CASE STUDY 367
7.2 BASIC PRINCIPLES 372
7.2.1 BASIC PHENOMENA O F SELF-ASSEMBLY AND SELF-ORGANIZATION 372 7.2.2
SELF-ASSEMBLY O F PROTEIN FILAMENTS: THE CYTOSKELETON 373 7.2.3
SELF-ASSEMBLY OF P-SHEETS: THE AMYLOID FIBRILS 380 7.2.4 SELF-ASSEMBLY O
F TWO-DIMENSIONAL PROTEIN LATTICES: THE BACTERIAL
SURFACE LAYERS (S-LAYERS) 381 7.2.5 SELF-ORGANIZED STRUCTURES O F LIPIDS
392 7.2.6 LIQUID CRYSTALS 396
7.3 BIOENGINEERING 398
7.3.1 IN VITRO SELF-ASSEMBLY OF LARGE-SCALE NANOSTRUCTURED BIOMATERIALS
399 7.3.2 TEMPLATE-DIRECTED ASSEMBLY O F ARTIFICIAL NANOPARTICLES AND
NANOWIRES 413
7.3.3 TEMPLATE-FREE DIRECTED SELF-ASSEMBLY O F NANOPARTICLES 429
REFERENCES 437
APPENDIX A CONSTANTS, UNITS, AND MAGNITUDES 441 A.1 FUNDAMENTAL
CONSTANTS 441
A.2 TABLE O F SI BASE UNITS 441
A.3 TABLE O F DERIVED UNITS 442
A.4 MAGNITUDES 442
A.4.1 SIZES 442
A.4.2 ENERGIES 443
A.4.3 RATES AND DIFFUSION CONSTANTS 443
APPENDIX B ENERGY O F A BENT FIBER 445
APPENDIX C CIRCULAR DICHROISM SPECTROSCOPY 447
APPENDIX D TASK SOLUTIONS 449
/
INDEX 453 |
any_adam_object | 1 |
author | Pompe, Wolfgang |
author_facet | Pompe, Wolfgang |
author_role | aut |
author_sort | Pompe, Wolfgang |
author_variant | w p wp |
building | Verbundindex |
bvnumber | BV041065848 |
classification_rvk | WC 3420 WD 2200 |
ctrlnum | (OCoLC)855398311 (DE-599)DNB103000269X |
dewey-full | 620.50157 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations |
dewey-raw | 620.50157 |
dewey-search | 620.50157 |
dewey-sort | 3620.50157 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Biologie |
format | Book |
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id | DE-604.BV041065848 |
illustrated | Illustrated |
indexdate | 2024-09-10T00:58:09Z |
institution | BVB |
isbn | 9783527410156 3527410155 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-026042864 |
oclc_num | 855398311 |
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owner | DE-11 DE-1043 DE-29T |
owner_facet | DE-11 DE-1043 DE-29T |
physical | XI, 458 S. Ill., graph. Darst. 240 mm x 170 mm |
publishDate | 2013 |
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publisher | Wiley-VCH |
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spelling | Pompe, Wolfgang Verfasser aut Bio-nanomaterials designing materials inspired by nature Wolfgang Pompe ... Weinheim Wiley-VCH 2013 XI, 458 S. Ill., graph. Darst. 240 mm x 170 mm txt rdacontent n rdamedia nc rdacarrier Nanobiotechnologie (DE-588)7657744-2 gnd rswk-swf Nanobiotechnologie (DE-588)7657744-2 s DE-604 X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=4239514&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=026042864&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Pompe, Wolfgang Bio-nanomaterials designing materials inspired by nature Nanobiotechnologie (DE-588)7657744-2 gnd |
subject_GND | (DE-588)7657744-2 |
title | Bio-nanomaterials designing materials inspired by nature |
title_auth | Bio-nanomaterials designing materials inspired by nature |
title_exact_search | Bio-nanomaterials designing materials inspired by nature |
title_full | Bio-nanomaterials designing materials inspired by nature Wolfgang Pompe ... |
title_fullStr | Bio-nanomaterials designing materials inspired by nature Wolfgang Pompe ... |
title_full_unstemmed | Bio-nanomaterials designing materials inspired by nature Wolfgang Pompe ... |
title_short | Bio-nanomaterials |
title_sort | bio nanomaterials designing materials inspired by nature |
title_sub | designing materials inspired by nature |
topic | Nanobiotechnologie (DE-588)7657744-2 gnd |
topic_facet | Nanobiotechnologie |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=4239514&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=026042864&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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