Biomaterial science: anatomy and physiology aspects
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1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin ; Boston
De Gruyter
[2022]
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Schriftenreihe: | De Gruyter graduate
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Schlagworte: | |
Online-Zugang: | https://www.degruyter.com/isbn/9783110655353 Inhaltsverzeichnis |
Beschreibung: | XVII, 458 Seiten Illustrationen 24 cm x 17 cm |
ISBN: | 9783110655353 3110655357 |
Internformat
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020 | |a 9783110655353 |c : EUR 133.95 (DE) (freier Preis), EUR 133.95 (AT) (freier Preis) |9 978-3-11-065535-3 | ||
020 | |a 3110655357 |9 3-11-065535-7 | ||
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035 | |a (OCoLC)1306328913 | ||
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084 | |a QT 37 |2 nlm | ||
100 | 1 | |a Aguilar, Ludwig Erik |e Verfasser |0 (DE-588)1271061082 |4 aut | |
245 | 1 | 0 | |a Biomaterial science |b anatomy and physiology aspects |c Ludwig Erik Aguilar |
264 | 1 | |a Berlin ; Boston |b De Gruyter |c [2022] | |
264 | 4 | |c © 2022 | |
300 | |a XVII, 458 Seiten |b Illustrationen |c 24 cm x 17 cm | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 0 | |a De Gruyter graduate | |
650 | 0 | 7 | |a Biomaterial |0 (DE-588)4267769-5 |2 gnd |9 rswk-swf |
653 | |a Biomaterialien | ||
653 | |a Anatomie | ||
653 | |a Physiologie | ||
653 | |a TB: Textbook | ||
689 | 0 | 0 | |a Biomaterial |0 (DE-588)4267769-5 |D s |
689 | 0 | |5 DE-604 | |
710 | 2 | |a Walter de Gruyter GmbH & Co. KG |0 (DE-588)10095502-2 |4 pbl | |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe, EPUB |z 978-3-11-065568-1 |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe, PDF |z 978-3-11-065537-7 |
856 | 4 | 2 | |m X:MVB |u https://www.degruyter.com/isbn/9783110655353 |
856 | 4 | 2 | |m DNB Datenaustausch |q application/pdf |u http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033760818&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |3 Inhaltsverzeichnis |
999 | |a oai:aleph.bib-bvb.de:BVB01-033760818 | ||
883 | 1 | |8 1\p |a vlb |d 20220323 |q DE-101 |u https://d-nb.info/provenance/plan#vlb |
Datensatz im Suchindex
_version_ | 1804184263455670272 |
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adam_text | CONTENTS
ABOUT
THE
AUTHORS
-
VII
PREFACE
-
IX
GOALS
-
XI
CHAPTER
1
IMPORTANCE
OF
HUMAN
ANATOMY
AND
PHYSIOLOGY
IN
BIOMATERIAL
SCIENCE
-
1
1.1
1.2
1.3
1.4
1.5
1.6
1.7
1.8
1.9
1.10
BIOMATERIALS
----
2
BIOMATERIALS
FOR
THE
INTEGUMENTARY
SYSTEM
----
3
BIOMATERIALS
FOR
THE
MUSCULOSKELETAL
SYSTEM
-
5
BIOMATERIALS
FOR
THE
CARDIOVASCULAR
SYSTEM
-
9
BIOMATERIALS
FOR
THE
NERVOUS
SYSTEM
-
13
BIOMATERIALS
FOR
THE
DIGESTIVE
SYSTEM
----
18
BIOMATERIALS
FOR
THE
REPRODUCTIVE
SYSTEM
-
23
BIOMATERIALS
FOR
THE
URINARY
SYSTEM
----
26
BIOMATERIALS
FOR
THE
SENSORY
ORGANS
(EYES
AND
EARS)
-
29
CONCLUSION
----
32
REFERENCES
----
33
CHAPTER
2
CLASSIFICATION
OF
BIOMATERIALS
-
45
2.1
2.2
2.2.1
2.2.2
2.2.3
2.3
2.3.1
2.3.2
2.3.3
2.3.4
2.4
2.4.1
2.4.2
2.4.3
2.5
DESCRIPTION
OF
DIFFERENT
CLASSES
OF
BIOMATERIALS
-
45
NATURAL
BIOMATERIALS
-
46
POLYSACCHARIDES
USED
AS
BIOMATERIALS
-
46
POLYPEPTIDES
USED
AS
BIOMATERIALS
-
55
PHENOLICS
USED
AS
BIOMATERIALS
-
62
SYNTHETIC
BIOMATERIALS
-
67
SYNTHETIC
POLYMERS
(NONBIODEGRADABLE)
-
67
SYNTHETIC
POLYMERS
(BIODEGRADABLE
AND
BIORESORBABLE)
-
79
BIOCERAMICS
-
90
METALLIC
BIOMATERIALS
-
100
COMPOSITE
BIOMATERIALS
-
110
POLYMER-CERAMIC
COMPOSITES
-
111
CERAMIC-METAL
COMPOSITES
----
112
METAL-POLYMER
COMPOSITES
-
113
CONCLUSION
----
115
REFERENCES
-
115
XIV
-
CONTENTS
CHAPTER
3
METHODS
IN
BIOMATERIALS
YY
-
151
3.1
3.2
3.2.1
3.2.2
3.2.3
BIOMATERIAL
SYNTHESIS
AND
FABRICATION
YY
-
151
ELECTROSPINNING
-
152
BASICS
OF
THE
ELECTROSPINNING
SETUP
YY
-
152
EFFECT
OF
POLYMER
PROPERTIES
(MOLECULAR
WEIGHT
DISTRIBUTION)
YY
-
154
EFFECT
OF
POLYMER
SOLUTION
PROPERTIES
(VISCOSITY,
CONDUCTIVITY,
SURFACE
TENSION)
ON
ELECTROSPUN
FIBERS
-
154
3.2.4
3.2.5
3.2.6
EFFECT
OF
APPLIED
VOLTAGE
AND
FEED
RATE
-
155
EFFECT
OF
DISTANCE
OF
NOZZLE
TO
COLLECTOR
YY
-
155
EFFECT
OF
DISTANCE
OF
AMBIENT
PARAMETERS
(TEMPERATURE,
HUMIDITY
IN
THE
CHAMBER)
YY
-
156
3.2.7
3.2.8
3.2.9
3.2.10
3.3
3.3.1
3.3.2
3.4
3.4.1
3.5
3.5.1
3.5.2
3.5.3
3.5.4
3.5.5
3.5.6
3.5.7
3.6
3.6.1
3.6.2
3.6.3
3.6.4
3.7
3.7.1
3.7.2
3.7.3
3.8
3.8.1
EFFECT
OF
MOTION
OF
THE
NOZZLE
AND
COLLECTOR
ROTATION
----
156
EFFECT
OF
NOZZLE
GAUGE
-
156
CHALLENGES
IN
ELECTROSPINNING
----
157
ELECTROSPINNING
MODIFICATIONS
-
157
3D
BIOPRINTING
----
163
BASICS
OF
3D
BIOPRINTING
----
163
BIOINK
----
165
3D
METAL
AND
CERAMIC
PRINTING
-
171
SELECTIVE
LASER
SINTERING
-
171
COATING
METHODS
----
172
DIP
COATING
----
172
SPIN
COATING
----
173
SPRAY
COATING
(COLD
SPRAYING)
-
174
ELECTROSPRAYING
----
174
ELECTROPOLYMERIZATION
COATING
-
175
UV-LIGHT-ASSISTED
COATING
-
175
COATING
METHOD
CHALLENGES
----
176
HYDROGEL
PREPARATIONS
-
177
PHYSICAL
CROSS-LINKING
----
177
CHEMICAL
CROSS-LINKING
(POLYMER
GRAFTING)
-
179
UNIQUE
HYDROGEL
ITERATIONS
USED
IN
BIOMEDICINE
----
180
HYDROGEL
PREPARATION
CHALLENGES
-
181
INORGANIC
AND
ORGANIC
NANOPARTICLES
PREPARATIONS
-
182
ORGANIC
NANOPARTICLES
----
182
INORGANIC
NANOPARTICLES
-
185
CHALLENGES
IN
NANOPARTICLES
SYNTHESIS
-
190
BIOCERAMIC
SYNTHESIS
METHODS
----
191
WET
CHEMICAL
PRECIPITATION
SYNTHESIS
OF
BIOCERAMICS
(HYDROXYAPATITE)
-
191
3.8.2
SOL-GEL
METHOD
IN
THE
PREPARATION
OF
BULK
POROUS
BIOCERAMIC
----
192
CONTENTS
-
XV
3.8.3
3.8.4
3.8.5
3.8.6
3.9
3.9.1
3.9.2
3.9.3
3.9.4
3.9.5
3.9.6
3.9.7
3.10
HYDROTHERMAL
METHOD
FOR
CREATING
CALCIUM
OXIDE
----
192
SOLID-STATE
REACTIONS
IN
THE
PREPARATION
OF
SYNTHETIC
APATITE
----
193
MELTING-QUENCHING
METHOD
FOR
BIOGLASS
PREPARATION
----
193
CHALLENGES
IN
BIOCERAMIC
SYNTHESIS
AND
MANUFACTURING
----
194
FABRICATION
METHODS
OF
BIOMEDICAL-GRADE
ALLOYS
-
194
THERMOMECHANICAL
PROCESS
(TMP)
----
195
HOT
ISO-STATIC
PRESSING
(HIP)
----
195
POWDER
METALLURGY
(SINTERING)
----
196
SUPERPLASTIC
DEFORMATION
AND
ISOTHERMAL
FORGING
-
196
ELASTIC
METAL
ALLOY
MANUFACTURING
(NITINOT)
----
197
POST-PROCESSING
OF
METALLIC
ALLOYS
TO
BE
USED
IN
BIOMEDICINE
-
198
CHALLENGES
IN
METAL
FABRICATION
FOR
BIOMEDICAL
APPLICATIONS
-
199
CONCLUSIONS
-
199
REFERENCES
----
200
CHAPTER
4
BIOMATERIALS
AND
THE
HUMAN
IMMUNE
SYSTEM
-
223
4.1
4.1.1
4.1.2
4.1.3
4.1.4
THE
HUMAN
IMMUNE
RESPONSE
TOWARD
BIOMATERIALS
-
223
THE
BASICS
OF
THE
HUMAN
IMMUNE
SYSTEM
-
223
CLASSES
OF
IMMUNE
CELLS
----
224
COMMUNICATION
BETWEEN
IMMUNE
CELLS
----
228
IMMUNOGLOBULINS
AND
THEIR
ROLE
TO
IMMUNE
RESPONSE
(ANTIBODY
IMMUNE
RESPONSE)
-
229
4.1.5
THE
MAJOR
HISTOCOMPATIBILITY
COMPLEX
AND
ACTIVATED
COMPLEMENT
PROTEINS
(PROTEINS
ROLE
IN
IMMUNITY)
----
230
4.2
4.2.1
4.2.2
4.3
THE
BODY
S
GENERAL
RESPONSE
TOWARD
BIOMATERIALS
-
232
FOREIGN
BODY
RESPONSE
----
232
INFLAMMATION
AND
WOUND
HEALING
PROCESS
-
234
THE
BODY
S
RESPONSE
TOWARD
DIFFERENT
CLASSES
OF
BIOMATERIALS
AND
BIOMEDICAL
DEVICES
-
235
4.3.1
4.3.2
4.3.3
4.4
4.5
4.5.1
METALLIC
MATERIALS
AND
THE
IMMUNE
SYSTEM
-
235
CERAMIC
MATERIALS
AND
THE
IMMUNE
SYSTEM
-
239
POLYMERIC
MATERIALS
AND
THE
IMMUNE
SYSTEM
----
239
IMMUNE
RESPONSES
TO
NANOMATERIALS
-
242
IMMUNE
MODULATION
TOOLS
IN
BIOMATERIALS
-
244
PHYSICAL
MODIFICATIONS
(SURFACE
TOPOGRAPHY
AND
HYDROPHILICITY)
----
245
4.5.2
4.5.3
4.6
CHEMICAL
MODIFICATIONS
-
246
ACTIVE
DELIVERY
OF
IMMUNE-MODULATORY
COMPOUNDS
----
247
CONCLUSION
----
247
REFERENCES
----
248
XVI
-
CONTENTS
CHAPTER
5
BIOMATERIALS
IN
MEDICAL
DEVICE
DEVELOPMENT
-
257
5.1
5.1.1
5.1.2
5.1.3
5.2
5.3
BIOMATERIALS
ROLE
IN
MEDICAL
DEVICE
DEVELOPMENT
----
257
CLASS
1
MEDICAL
DEVICES
----
257
CLASS
II
MEDICAL
DEVICES
----
258
CLASS
III
MEDICAL
DEVICES
-
259
BIOMATERIALS
IN
MEDICAL
DEVICES
(BIOSENSORS)
-
259
BIOMATERIALS
IN
MEDICAL
DEVICES
(VASCULAR
AND
NONVASCULAR
STENTS)
----
261
5.3.1
5.3.2
5.4
5.4.1
5.4.2
5.5
VASCULAR
STENTS
----
262
NONVASCULAR
STENTS
-
266
BIOMATERIAL
IN
MEDICAL
DEVICES
(ARTIFICIAL
HEART
VALVES)
----
270
MECHANICAL
HEART
VALVES
-
272
TISSUE
(ENGINEERED)
HEART
VALVES
-
273
BIOMATERIAL
IN
MEDICAL
DEVICES
(BONE
PROSTHESIS
AND
IMPLANTS)
----
276
5.5.1
5.6
BONE
PROSTHESIS
(ARTIFICIAL
HIP
AND
KNEE
PROSTHESIS)
-
277
BIOMATERIAL
IN
MEDICAL
DEVICES
(INTRAPERITONEAL
MESH
IMPLANTS)
----
281
5.7
CONCLUSION
----
284
REFERENCES
----
285
CHAPTER
6
BIOMATERIALS
IN
CANCER
TREATMENT
-
297
6.1
6.2
6.2.1
CANCER
AND
ITS
TREATMENT
MODALITIES
-
297
BIOMATERIALS
IN
CANCER
CHEMOTHERAPY
AND
DIAGNOSTICS
-
298
BIOMATERIAL
DRUG
DELIVERY
SYSTEM
FOR
ENHANCING
CHEMOTHERAPY
EFFECTS
----
298
6.2.2
6.2.3
6.2.4
6.2.5
6.2.6
6.3
6.4
6.4.1
6.4.2
6.4.3
6.4.4
6.4.5
6.4.6
6.5
PASSIVE
TUMOR
TARGETING
-
302
ACTIVE
TUMOR
TARGETING
----
304
THE
PROTON
SPONGE
EFFECT
-
305
NANOPARTICLE
TRANSPORT
ACROSS
PHYSIOLOGICAL
BARRIERS
-
306
THERANOSTICS
----
308
BIOMATERIALS
USED
IN
SURGICAL
INTERVENTION
OF
CANCER
-
309
BIOMATERIALS
USED
IN
HYPERTHERMIA
TREATMENT
OF
CANCER
-
313
MAGNETIC
HYPERTHERMIA
(NANOPARTICLE
HEATING)
-
316
MAGNETIC
HYPERTHERMIA
(BULK
HEATING)
-
318
PHOTODYNAMIC
HYPERTHERMIA
THERAPY
-
320
METALLIC
NANOPARTICLE-MEDIATED
PTT
-
321
CARBON-BASED
NANOMATERIAL-MEDIATED
PTT
-
321
POLYMERIC
MATERIAL-MEDIATED
PTT
----
321
BIOMATERIALS
USED
IN
IMMUNOTHERAPY
OF
CANCER
----
322
CONTENTS
-
XVII
6.5.1
6.5.2
6.5.3
6.6
IMPLANTABLE
AND
INJECTABLE
BIOMATERIALS
FOR
IMMUNOTHERAPY
----
322
TRANSDERMAL
BIOMATERIALS
FOR
IMMUNOTHERAPY
----
327
NANOPARTICLE
TECHNOLOGY
IN
CANCER
IMMUNOTHERAPY
----
327
CONCLUSION
----
329
REFERENCES
----
330
CHAPTER
7
BIOMATERIALS
IN
DRUG
DELIVERY
----
345
7.1
7.1.1
7.1.2
7.1.3
7.1.4
7.1.5
7.1.6
7.2
7.2.1
7.2.2
7.2.3
7.2.4
PHARMACOLOGICAL
CONCEPTS
----
345
CONVENTIONAL
DELIVERY
METHODS
FOR
DRUG
COMPOUNDS
----
345
DRUG
CLASSIFICATIONS
-
347
DRUG-TO-DRUG
INTERACTIONS
----
349
ADVERSE
AND
SIDE
EFFECTS
OF
THERAPEUTIC
COMPOUNDS
----
349
THERAPEUTIC
RANGE
----
350
PHARMACOKINETICS
AND
PHARMACODYNAMICS
-
350
BIOMATERIALS
ROLE
IN
DRUG
DELIVERY
----
351
BIOMATERIALS
IN
SYSTEMIC
DRUG
DELIVERY
----
353
BIOMATERIALS
IN
ALTERNATIVE
DRUG
DELIVERY
----
372
BIOMATERIALS
IN
GENE
THERAPY
AGENT
DELIVERY
----
379
BIOMATERIALS
ALLOW
DRUG
DELIVERY
CAPABILITIES
IN
MEDICAL
DEVICES
----
384
7.3
CONCLUSION
----
385
REFERENCES
----
385
CHAPTER
8
BIOMATERIALS
IN
TISSUE
ENGINEERING
-
399
8.1
8.1.1
8.1.2
8.1.3
8.1.4
8.2
8.2.1
8.2.2
8.2.3
8.3
TISSUE
DISEASES
AND
REPAIR
PROCESS
----
399
PHYSICAL
INJURIES
AND
ITS
HEALING
PROCESS
----
400
DEGENERATIVE
AND
AUTOIMMUNE
DISEASES
-
403
PERFUSION
AND
ISCHEMIC
ACCIDENTS
----
407
CONGENITAL
DEFECTS
-
410
TISSUE
ENGINEERING
METHODS
AND
APPLICATIONS
-
410
CONVENTIONAL
TISSUE
ENGINEERING
-
412
STEM
CELL
BIOMATERIAL-BASED
TISSUE
ENGINEERING
-
426
BIOMATERIALS
IN
CLOSED-LOOP
TISSUE
ENGINEERING
METHODS
-
432
CONCLUSIONS
----
433
REFERENCES
----
433
CONCLUDING
REMARKS
-
447
INDEX
----
449
|
adam_txt |
CONTENTS
ABOUT
THE
AUTHORS
-
VII
PREFACE
-
IX
GOALS
-
XI
CHAPTER
1
IMPORTANCE
OF
HUMAN
ANATOMY
AND
PHYSIOLOGY
IN
BIOMATERIAL
SCIENCE
-
1
1.1
1.2
1.3
1.4
1.5
1.6
1.7
1.8
1.9
1.10
BIOMATERIALS
----
2
BIOMATERIALS
FOR
THE
INTEGUMENTARY
SYSTEM
----
3
BIOMATERIALS
FOR
THE
MUSCULOSKELETAL
SYSTEM
-
5
BIOMATERIALS
FOR
THE
CARDIOVASCULAR
SYSTEM
-
9
BIOMATERIALS
FOR
THE
NERVOUS
SYSTEM
-
13
BIOMATERIALS
FOR
THE
DIGESTIVE
SYSTEM
----
18
BIOMATERIALS
FOR
THE
REPRODUCTIVE
SYSTEM
-
23
BIOMATERIALS
FOR
THE
URINARY
SYSTEM
----
26
BIOMATERIALS
FOR
THE
SENSORY
ORGANS
(EYES
AND
EARS)
-
29
CONCLUSION
----
32
REFERENCES
----
33
CHAPTER
2
CLASSIFICATION
OF
BIOMATERIALS
-
45
2.1
2.2
2.2.1
2.2.2
2.2.3
2.3
2.3.1
2.3.2
2.3.3
2.3.4
2.4
2.4.1
2.4.2
2.4.3
2.5
DESCRIPTION
OF
DIFFERENT
CLASSES
OF
BIOMATERIALS
-
45
NATURAL
BIOMATERIALS
-
46
POLYSACCHARIDES
USED
AS
BIOMATERIALS
-
46
POLYPEPTIDES
USED
AS
BIOMATERIALS
-
55
PHENOLICS
USED
AS
BIOMATERIALS
-
62
SYNTHETIC
BIOMATERIALS
-
67
SYNTHETIC
POLYMERS
(NONBIODEGRADABLE)
-
67
SYNTHETIC
POLYMERS
(BIODEGRADABLE
AND
BIORESORBABLE)
-
79
BIOCERAMICS
-
90
METALLIC
BIOMATERIALS
-
100
COMPOSITE
BIOMATERIALS
-
110
POLYMER-CERAMIC
COMPOSITES
-
111
CERAMIC-METAL
COMPOSITES
----
112
METAL-POLYMER
COMPOSITES
-
113
CONCLUSION
----
115
REFERENCES
-
115
XIV
-
CONTENTS
CHAPTER
3
METHODS
IN
BIOMATERIALS
YY
-
151
3.1
3.2
3.2.1
3.2.2
3.2.3
BIOMATERIAL
SYNTHESIS
AND
FABRICATION
YY
-
151
ELECTROSPINNING
-
152
BASICS
OF
THE
ELECTROSPINNING
SETUP
YY
-
152
EFFECT
OF
POLYMER
PROPERTIES
(MOLECULAR
WEIGHT
DISTRIBUTION)
YY
-
154
EFFECT
OF
POLYMER
SOLUTION
PROPERTIES
(VISCOSITY,
CONDUCTIVITY,
SURFACE
TENSION)
ON
ELECTROSPUN
FIBERS
-
154
3.2.4
3.2.5
3.2.6
EFFECT
OF
APPLIED
VOLTAGE
AND
FEED
RATE
-
155
EFFECT
OF
DISTANCE
OF
NOZZLE
TO
COLLECTOR
YY
-
155
EFFECT
OF
DISTANCE
OF
AMBIENT
PARAMETERS
(TEMPERATURE,
HUMIDITY
IN
THE
CHAMBER)
YY
-
156
3.2.7
3.2.8
3.2.9
3.2.10
3.3
3.3.1
3.3.2
3.4
3.4.1
3.5
3.5.1
3.5.2
3.5.3
3.5.4
3.5.5
3.5.6
3.5.7
3.6
3.6.1
3.6.2
3.6.3
3.6.4
3.7
3.7.1
3.7.2
3.7.3
3.8
3.8.1
EFFECT
OF
MOTION
OF
THE
NOZZLE
AND
COLLECTOR
ROTATION
----
156
EFFECT
OF
NOZZLE
GAUGE
-
156
CHALLENGES
IN
ELECTROSPINNING
----
157
ELECTROSPINNING
MODIFICATIONS
-
157
3D
BIOPRINTING
----
163
BASICS
OF
3D
BIOPRINTING
----
163
BIOINK
----
165
3D
METAL
AND
CERAMIC
PRINTING
-
171
SELECTIVE
LASER
SINTERING
-
171
COATING
METHODS
----
172
DIP
COATING
----
172
SPIN
COATING
----
173
SPRAY
COATING
(COLD
SPRAYING)
-
174
ELECTROSPRAYING
----
174
ELECTROPOLYMERIZATION
COATING
-
175
UV-LIGHT-ASSISTED
COATING
-
175
COATING
METHOD
CHALLENGES
----
176
HYDROGEL
PREPARATIONS
-
177
PHYSICAL
CROSS-LINKING
----
177
CHEMICAL
CROSS-LINKING
(POLYMER
GRAFTING)
-
179
UNIQUE
HYDROGEL
ITERATIONS
USED
IN
BIOMEDICINE
----
180
HYDROGEL
PREPARATION
CHALLENGES
-
181
INORGANIC
AND
ORGANIC
NANOPARTICLES
PREPARATIONS
-
182
ORGANIC
NANOPARTICLES
----
182
INORGANIC
NANOPARTICLES
-
185
CHALLENGES
IN
NANOPARTICLES
SYNTHESIS
-
190
BIOCERAMIC
SYNTHESIS
METHODS
----
191
WET
CHEMICAL
PRECIPITATION
SYNTHESIS
OF
BIOCERAMICS
(HYDROXYAPATITE)
-
191
3.8.2
SOL-GEL
METHOD
IN
THE
PREPARATION
OF
BULK
POROUS
BIOCERAMIC
----
192
CONTENTS
-
XV
3.8.3
3.8.4
3.8.5
3.8.6
3.9
3.9.1
3.9.2
3.9.3
3.9.4
3.9.5
3.9.6
3.9.7
3.10
HYDROTHERMAL
METHOD
FOR
CREATING
CALCIUM
OXIDE
----
192
SOLID-STATE
REACTIONS
IN
THE
PREPARATION
OF
SYNTHETIC
APATITE
----
193
MELTING-QUENCHING
METHOD
FOR
BIOGLASS
PREPARATION
----
193
CHALLENGES
IN
BIOCERAMIC
SYNTHESIS
AND
MANUFACTURING
----
194
FABRICATION
METHODS
OF
BIOMEDICAL-GRADE
ALLOYS
-
194
THERMOMECHANICAL
PROCESS
(TMP)
----
195
HOT
ISO-STATIC
PRESSING
(HIP)
----
195
POWDER
METALLURGY
(SINTERING)
----
196
SUPERPLASTIC
DEFORMATION
AND
ISOTHERMAL
FORGING
-
196
ELASTIC
METAL
ALLOY
MANUFACTURING
(NITINOT)
----
197
POST-PROCESSING
OF
METALLIC
ALLOYS
TO
BE
USED
IN
BIOMEDICINE
-
198
CHALLENGES
IN
METAL
FABRICATION
FOR
BIOMEDICAL
APPLICATIONS
-
199
CONCLUSIONS
-
199
REFERENCES
----
200
CHAPTER
4
BIOMATERIALS
AND
THE
HUMAN
IMMUNE
SYSTEM
-
223
4.1
4.1.1
4.1.2
4.1.3
4.1.4
THE
HUMAN
IMMUNE
RESPONSE
TOWARD
BIOMATERIALS
-
223
THE
BASICS
OF
THE
HUMAN
IMMUNE
SYSTEM
-
223
CLASSES
OF
IMMUNE
CELLS
----
224
COMMUNICATION
BETWEEN
IMMUNE
CELLS
----
228
IMMUNOGLOBULINS
AND
THEIR
ROLE
TO
IMMUNE
RESPONSE
(ANTIBODY
IMMUNE
RESPONSE)
-
229
4.1.5
THE
MAJOR
HISTOCOMPATIBILITY
COMPLEX
AND
ACTIVATED
COMPLEMENT
PROTEINS
(PROTEINS
ROLE
IN
IMMUNITY)
----
230
4.2
4.2.1
4.2.2
4.3
THE
BODY
'
S
GENERAL
RESPONSE
TOWARD
BIOMATERIALS
-
232
FOREIGN
BODY
RESPONSE
----
232
INFLAMMATION
AND
WOUND
HEALING
PROCESS
-
234
THE
BODY
'
S
RESPONSE
TOWARD
DIFFERENT
CLASSES
OF
BIOMATERIALS
AND
BIOMEDICAL
DEVICES
-
235
4.3.1
4.3.2
4.3.3
4.4
4.5
4.5.1
METALLIC
MATERIALS
AND
THE
IMMUNE
SYSTEM
-
235
CERAMIC
MATERIALS
AND
THE
IMMUNE
SYSTEM
-
239
POLYMERIC
MATERIALS
AND
THE
IMMUNE
SYSTEM
----
239
IMMUNE
RESPONSES
TO
NANOMATERIALS
-
242
IMMUNE
MODULATION
TOOLS
IN
BIOMATERIALS
-
244
PHYSICAL
MODIFICATIONS
(SURFACE
TOPOGRAPHY
AND
HYDROPHILICITY)
----
245
4.5.2
4.5.3
4.6
CHEMICAL
MODIFICATIONS
-
246
ACTIVE
DELIVERY
OF
IMMUNE-MODULATORY
COMPOUNDS
----
247
CONCLUSION
----
247
REFERENCES
----
248
XVI
-
CONTENTS
CHAPTER
5
BIOMATERIALS
IN
MEDICAL
DEVICE
DEVELOPMENT
-
257
5.1
5.1.1
5.1.2
5.1.3
5.2
5.3
BIOMATERIALS
'
ROLE
IN
MEDICAL
DEVICE
DEVELOPMENT
----
257
CLASS
1
MEDICAL
DEVICES
----
257
CLASS
II
MEDICAL
DEVICES
----
258
CLASS
III
MEDICAL
DEVICES
-
259
BIOMATERIALS
IN
MEDICAL
DEVICES
(BIOSENSORS)
-
259
BIOMATERIALS
IN
MEDICAL
DEVICES
(VASCULAR
AND
NONVASCULAR
STENTS)
----
261
5.3.1
5.3.2
5.4
5.4.1
5.4.2
5.5
VASCULAR
STENTS
----
262
NONVASCULAR
STENTS
-
266
BIOMATERIAL
IN
MEDICAL
DEVICES
(ARTIFICIAL
HEART
VALVES)
----
270
MECHANICAL
HEART
VALVES
-
272
TISSUE
(ENGINEERED)
HEART
VALVES
-
273
BIOMATERIAL
IN
MEDICAL
DEVICES
(BONE
PROSTHESIS
AND
IMPLANTS)
----
276
5.5.1
5.6
BONE
PROSTHESIS
(ARTIFICIAL
HIP
AND
KNEE
PROSTHESIS)
-
277
BIOMATERIAL
IN
MEDICAL
DEVICES
(INTRAPERITONEAL
MESH
IMPLANTS)
----
281
5.7
CONCLUSION
----
284
REFERENCES
----
285
CHAPTER
6
BIOMATERIALS
IN
CANCER
TREATMENT
-
297
6.1
6.2
6.2.1
CANCER
AND
ITS
TREATMENT
MODALITIES
-
297
BIOMATERIALS
IN
CANCER
CHEMOTHERAPY
AND
DIAGNOSTICS
-
298
BIOMATERIAL
DRUG
DELIVERY
SYSTEM
FOR
ENHANCING
CHEMOTHERAPY
EFFECTS
----
298
6.2.2
6.2.3
6.2.4
6.2.5
6.2.6
6.3
6.4
6.4.1
6.4.2
6.4.3
6.4.4
6.4.5
6.4.6
6.5
PASSIVE
TUMOR
TARGETING
-
302
ACTIVE
TUMOR
TARGETING
----
304
THE
PROTON
SPONGE
EFFECT
-
305
NANOPARTICLE
TRANSPORT
ACROSS
PHYSIOLOGICAL
BARRIERS
-
306
THERANOSTICS
----
308
BIOMATERIALS
USED
IN
SURGICAL
INTERVENTION
OF
CANCER
-
309
BIOMATERIALS
USED
IN
HYPERTHERMIA
TREATMENT
OF
CANCER
-
313
MAGNETIC
HYPERTHERMIA
(NANOPARTICLE
HEATING)
-
316
MAGNETIC
HYPERTHERMIA
(BULK
HEATING)
-
318
PHOTODYNAMIC
HYPERTHERMIA
THERAPY
-
320
METALLIC
NANOPARTICLE-MEDIATED
PTT
-
321
CARBON-BASED
NANOMATERIAL-MEDIATED
PTT
-
321
POLYMERIC
MATERIAL-MEDIATED
PTT
----
321
BIOMATERIALS
USED
IN
IMMUNOTHERAPY
OF
CANCER
----
322
CONTENTS
-
XVII
6.5.1
6.5.2
6.5.3
6.6
IMPLANTABLE
AND
INJECTABLE
BIOMATERIALS
FOR
IMMUNOTHERAPY
----
322
TRANSDERMAL
BIOMATERIALS
FOR
IMMUNOTHERAPY
----
327
NANOPARTICLE
TECHNOLOGY
IN
CANCER
IMMUNOTHERAPY
----
327
CONCLUSION
----
329
REFERENCES
----
330
CHAPTER
7
BIOMATERIALS
IN
DRUG
DELIVERY
----
345
7.1
7.1.1
7.1.2
7.1.3
7.1.4
7.1.5
7.1.6
7.2
7.2.1
7.2.2
7.2.3
7.2.4
PHARMACOLOGICAL
CONCEPTS
----
345
CONVENTIONAL
DELIVERY
METHODS
FOR
DRUG
COMPOUNDS
----
345
DRUG
CLASSIFICATIONS
-
347
DRUG-TO-DRUG
INTERACTIONS
----
349
ADVERSE
AND
SIDE
EFFECTS
OF
THERAPEUTIC
COMPOUNDS
----
349
THERAPEUTIC
RANGE
----
350
PHARMACOKINETICS
AND
PHARMACODYNAMICS
-
350
BIOMATERIALS
'
ROLE
IN
DRUG
DELIVERY
----
351
BIOMATERIALS
IN
SYSTEMIC
DRUG
DELIVERY
----
353
BIOMATERIALS
IN
ALTERNATIVE
DRUG
DELIVERY
----
372
BIOMATERIALS
IN
GENE
THERAPY
AGENT
DELIVERY
----
379
BIOMATERIALS
ALLOW
DRUG
DELIVERY
CAPABILITIES
IN
MEDICAL
DEVICES
----
384
7.3
CONCLUSION
----
385
REFERENCES
----
385
CHAPTER
8
BIOMATERIALS
IN
TISSUE
ENGINEERING
-
399
8.1
8.1.1
8.1.2
8.1.3
8.1.4
8.2
8.2.1
8.2.2
8.2.3
8.3
TISSUE
DISEASES
AND
REPAIR
PROCESS
----
399
PHYSICAL
INJURIES
AND
ITS
HEALING
PROCESS
----
400
DEGENERATIVE
AND
AUTOIMMUNE
DISEASES
-
403
PERFUSION
AND
ISCHEMIC
ACCIDENTS
----
407
CONGENITAL
DEFECTS
-
410
TISSUE
ENGINEERING
METHODS
AND
APPLICATIONS
-
410
CONVENTIONAL
TISSUE
ENGINEERING
-
412
STEM
CELL
BIOMATERIAL-BASED
TISSUE
ENGINEERING
-
426
BIOMATERIALS
IN
CLOSED-LOOP
TISSUE
ENGINEERING
METHODS
-
432
CONCLUSIONS
----
433
REFERENCES
----
433
CONCLUDING
REMARKS
-
447
INDEX
----
449 |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author | Aguilar, Ludwig Erik |
author_GND | (DE-588)1271061082 |
author_facet | Aguilar, Ludwig Erik |
author_role | aut |
author_sort | Aguilar, Ludwig Erik |
author_variant | l e a le lea |
building | Verbundindex |
bvnumber | BV048381991 |
classification_rvk | WD 4010 YI 3200 YI 3201 |
ctrlnum | (OCoLC)1306328913 (DE-599)DNB1253949670 |
discipline | Biologie Medizin |
discipline_str_mv | Biologie Medizin |
format | Book |
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id | DE-604.BV048381991 |
illustrated | Illustrated |
index_date | 2024-07-03T20:19:08Z |
indexdate | 2024-07-10T09:36:34Z |
institution | BVB |
institution_GND | (DE-588)10095502-2 |
isbn | 9783110655353 3110655357 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-033760818 |
oclc_num | 1306328913 |
open_access_boolean | |
owner | DE-83 DE-384 DE-578 DE-573 DE-703 |
owner_facet | DE-83 DE-384 DE-578 DE-573 DE-703 |
physical | XVII, 458 Seiten Illustrationen 24 cm x 17 cm |
publishDate | 2022 |
publishDateSearch | 2022 |
publishDateSort | 2022 |
publisher | De Gruyter |
record_format | marc |
series2 | De Gruyter graduate |
spelling | Aguilar, Ludwig Erik Verfasser (DE-588)1271061082 aut Biomaterial science anatomy and physiology aspects Ludwig Erik Aguilar Berlin ; Boston De Gruyter [2022] © 2022 XVII, 458 Seiten Illustrationen 24 cm x 17 cm txt rdacontent n rdamedia nc rdacarrier De Gruyter graduate Biomaterial (DE-588)4267769-5 gnd rswk-swf Biomaterialien Anatomie Physiologie TB: Textbook Biomaterial (DE-588)4267769-5 s DE-604 Walter de Gruyter GmbH & Co. KG (DE-588)10095502-2 pbl Erscheint auch als Online-Ausgabe, EPUB 978-3-11-065568-1 Erscheint auch als Online-Ausgabe, PDF 978-3-11-065537-7 X:MVB https://www.degruyter.com/isbn/9783110655353 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033760818&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p vlb 20220323 DE-101 https://d-nb.info/provenance/plan#vlb |
spellingShingle | Aguilar, Ludwig Erik Biomaterial science anatomy and physiology aspects Biomaterial (DE-588)4267769-5 gnd |
subject_GND | (DE-588)4267769-5 |
title | Biomaterial science anatomy and physiology aspects |
title_auth | Biomaterial science anatomy and physiology aspects |
title_exact_search | Biomaterial science anatomy and physiology aspects |
title_exact_search_txtP | Biomaterial science anatomy and physiology aspects |
title_full | Biomaterial science anatomy and physiology aspects Ludwig Erik Aguilar |
title_fullStr | Biomaterial science anatomy and physiology aspects Ludwig Erik Aguilar |
title_full_unstemmed | Biomaterial science anatomy and physiology aspects Ludwig Erik Aguilar |
title_short | Biomaterial science |
title_sort | biomaterial science anatomy and physiology aspects |
title_sub | anatomy and physiology aspects |
topic | Biomaterial (DE-588)4267769-5 gnd |
topic_facet | Biomaterial |
url | https://www.degruyter.com/isbn/9783110655353 http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033760818&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT aguilarludwigerik biomaterialscienceanatomyandphysiologyaspects AT walterdegruytergmbhcokg biomaterialscienceanatomyandphysiologyaspects |