Surface modification of biomaterials: methods, analysis and applications
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Oxford [u.a.]
Woodhead Publ.
2011
|
Schriftenreihe: | Woodhead publishing in materials
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Hier auch später erschienene, unveränderte Nachdrucke. |
Beschreibung: | XVI, 415 S. |
ISBN: | 9781845696405 9780081014691 |
Internformat
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Datensatz im Suchindex
_version_ | 1804143062652289024 |
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adam_text | Titel: Surface modification of biomaterials
Autor: Williams, Rachel
Jahr: 2011
Contents
Contributor contact details xi
Preface xv
Part I Surface modification techniques
1 Surface modification of biomaterials by plasma
polymerization 3
E. J. SziLl, R. D. SHORT and D. A. STEELE, University of
South Australia, Australia and J. W. BRADLEY, University of
Liverpool, UK
1.1 Introduction 3
1.2 An overview of plasma and plasma polymerization 4
1.3 Plasma generation and system design 4
1.4 Plasma parameters 8
1.5 Intrinsic parameters 13
1.6 Potential biomaterial applications 17
1.7 Future trends in plasma polymers 26
1.8 Sources of further information and advice 29
1.9 References 29
2 Surface modification of biomaterials by covalent
binding of poly (ethylene glycol) (PEG) 39
A. Rhodes, S. S. Sandhu and S. J. Onis, Biolnteractions Ltd,
UK
2.1 Introduction 39
2.2 Principles and methods 40
2.3 Technologies and applications 51
2.4 Conclusions and future trends 52
2.5 References 54
vi Contents
3 Surface modification of biomaterials by
heparinisation to improve blood compatibility 56
X. Zhao and J. M. Courtney, University of Strathclyde, UK
3.1 Introduction 56
3.2 Bioactive molecule: heparin 58
3.3 Blood-biomaterial interaction 59
3.4 Surface modification by heparinisation for improved blood
compatibility 62
3.5 Future trends in heparinisation of biomaterial surfaces 73
3.6 References 74
4 Surface modification of biomaterials by peptide
functionalisation 78
L. S. Birchall, H. Qu and R. V. Ulijn, University of
Strathclyde, UK
4.1 Introduction 78
4.2 Peptides and peptide functionalisation of surfaces 78
4.3 Defining the biomaterial surface 81
4.4 Peptide functionalised surfaces 81
4.5 Non-covalent peptide functionalisation by self-assembly 88
4.6 Spatial control of peptide functionality 91
4.7 Conclusions 95
4.8 References 95
5 Metal surface oxidation and surface interactions 102
L. De Nardo, G. Raffaini, F. Ganazzoli and R. Chiesa,
Politecnico di Milano, Italy
5.1 Surface oxides in metallic medical devices: the scenario 102
5.2 Titanium oxides on Ti implants: from crystallographic structure
to the theoretical study of the atomistic surface structure and
behaviour 105
5.3 Technologies for tailoring Ti oxides on titanium 121
5.4 Future trends 135
5.5 References 137
5.6 Appendix A: Materials and methods for unpublished results 141
5.7 Appendix B: Abbreviations and symbols 142
6 Surface modification of biomaterials by calcium
phosphate deposition 143
J. A. JUHASZ and S. M. Best, University of Cambridge, UK
6.1 Introduction 143
6.2 Basic methods and applications 144
Contents vii
6.3 Strengths and weaknesses 156
6.4 Future trends 157
6.5 Sources of further information and advice 158
6.6 References 159
7 Biomaterial surface topography to control cellular
response: technologies, cell behaviour and
biomedical applications 169
V. R. Kearns, University of Liverpool, UK and
R. J. McMurray and M. J. Dalby, University of Glasgow, UK
7.1 Introduction 169
7.2 Defining micro and nano 170
7.3 Manufacturing surface topography 170
7.4 How surface topography affects cell behaviour 175
7.5 Technologies and potential applications 182
7.6 Tissue regeneration 186
7.7 Current issues and future trends 190
7.8 Acknowledgements 192
7.9 References 192
Part II Analytical techniques and applications
8 Techniques for analysing biomaterial surface
chemistry 205
J. Yang and M. R. Alexander, The University of Nottingham,
UK
8.1 Introduction 205
8.2 X-ray photoelectron spectroscopy (XPS) 207
8.3 Time of flight secondary ion mass spectrometry (ToF SIMS) 219
8.4 Sample preparation and handling 227
8.5 Sources of further information and advice 228
8.6 Acknowledgements 229
8.7 References 229
9 Techniques for analyzing biomaterial surface
structure, morphology and topography 232
N. S. Murthy, Rutgers - The State University of New Jersey,
USA
9.1 Introduction 232
9.2 Surface morphology and topography 233
9.3 Surface structure and spatial distribution 245
viii Contents
9.4 Energetics 248
9.5 Future trends 250
9.6 References 253
10 Modifying biomaterial surfaces to optimise
interactions with blood 255
A. de Mel, Y. Rafiei and B. G. Cousins, University College
London, UK and A. M. Seifalian, University College London,
UK and Royal Free Hampstead NHS Trust Hospital, UK
10.1 Introduction 255
10.2 Physicochemical modification 263
10.3 Biofunctionalisation 268
10.4 Conclusions 271
10.5 References 273
11 Modifying biomaterial surfaces with bioactives
to control infection 284
H. J. Griesser, K. Vasilev, H. Ys and S. A. Al-Bataineh,
University of South Australia, Australia
11.1 Introduction 284
11.2 Plasma-based strategies for combating device-related infections 287
11.3 Plasma polymers with incorporated metal nanoparticles or ions 290
11.4 Covalent immobilisation of antibacterial molecules 294
11.5 Future trends 304
11.6 References 305
12 Modifying biomaterial surfaces to optimise
interactions with soft tissues 309
J. GOUGH, University of Manchester, UK
12.1 Introduction 309
12.2 Surface modification of biomaterials for the liver 309
12.3 Surface modification of biomaterials for the kidney 312
12.4 Surface modification of biomaterials for tendons/ligaments 314
12.5 Surface modification of biomaterials for skeletal muscle 316
12.6 Surface modification of biomaterials for skin 319
12.7 Conclusions 321
12.8 Future trends 321
12.9 References 322
Contents ix
13 Modifying biomaterial surfaces for the repair and
regeneration of nerve cells 325
M. A. Mateos-Timoneda, and J. A. Planell, The Institute
for Bioengineering of Catalonia (IBEC), Spain and
E. Engel, Technical University of Catalonia, Spain
13.1 Introduction: the nervous system 325
13.2 Surface properties and their effect on neural cells 329
13.3 Future trends 334
13.4 References 338
14 Modifying biomaterial surfaces to control stem
cell growth and differentiation 344
K. H. Smith, Plataforma de Nanotechnologia, Spain and
J. W. Haycock, University of Sheffield, UK
14.1 Introduction 344
14.2 Surfaces for stem cell expansion 346
14.3 Surfaces for directing stem cell differentiation 350
14.4 Surfaces for maintaining the differentiated cell phenotype 356
14.5 Future trends 359
14.6 Acknowledgements 360
14.7 References 360
15 Modifying biomaterial surfaces to optimise
interactions with bone 365
R. L. Sammons, University of Birmingham, UK
15.1 Introduction 365
15.2 Joint replacements: successes and challenges 368
15.3 Bone graft substitute materials: successes and challenges 375
15.4 Percutaneous bone-anchored devices 382
15.5 Summary and conclusions 390
15.6 Sources of further information and advice 391
15.7 References 391
Index 401
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spelling | Surface modification of biomaterials methods, analysis and applications ed. by Rachel Williams Oxford [u.a.] Woodhead Publ. 2011 XVI, 415 S. txt rdacontent n rdamedia nc rdacarrier Woodhead publishing in materials Hier auch später erschienene, unveränderte Nachdrucke. Plasmapolymerisation (DE-588)4174832-3 gnd rswk-swf Biomaterial (DE-588)4267769-5 gnd rswk-swf Chemische Analyse (DE-588)4009840-0 gnd rswk-swf Oberflächenbehandlung (DE-588)4042908-8 gnd rswk-swf Biopolymere (DE-588)4006893-6 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Biomaterial (DE-588)4267769-5 s Oberflächenbehandlung (DE-588)4042908-8 s Biopolymere (DE-588)4006893-6 s Plasmapolymerisation (DE-588)4174832-3 s Chemische Analyse (DE-588)4009840-0 s b DE-604 Williams, Rachel Sonstige oth Erscheint auch als Online-Ausgabe 978-0-85709-076-8 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020421295&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Surface modification of biomaterials methods, analysis and applications Plasmapolymerisation (DE-588)4174832-3 gnd Biomaterial (DE-588)4267769-5 gnd Chemische Analyse (DE-588)4009840-0 gnd Oberflächenbehandlung (DE-588)4042908-8 gnd Biopolymere (DE-588)4006893-6 gnd |
subject_GND | (DE-588)4174832-3 (DE-588)4267769-5 (DE-588)4009840-0 (DE-588)4042908-8 (DE-588)4006893-6 (DE-588)4143413-4 |
title | Surface modification of biomaterials methods, analysis and applications |
title_auth | Surface modification of biomaterials methods, analysis and applications |
title_exact_search | Surface modification of biomaterials methods, analysis and applications |
title_full | Surface modification of biomaterials methods, analysis and applications ed. by Rachel Williams |
title_fullStr | Surface modification of biomaterials methods, analysis and applications ed. by Rachel Williams |
title_full_unstemmed | Surface modification of biomaterials methods, analysis and applications ed. by Rachel Williams |
title_short | Surface modification of biomaterials |
title_sort | surface modification of biomaterials methods analysis and applications |
title_sub | methods, analysis and applications |
topic | Plasmapolymerisation (DE-588)4174832-3 gnd Biomaterial (DE-588)4267769-5 gnd Chemische Analyse (DE-588)4009840-0 gnd Oberflächenbehandlung (DE-588)4042908-8 gnd Biopolymere (DE-588)4006893-6 gnd |
topic_facet | Plasmapolymerisation Biomaterial Chemische Analyse Oberflächenbehandlung Biopolymere Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020421295&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT williamsrachel surfacemodificationofbiomaterialsmethodsanalysisandapplications |