Bone Tissue Engineering: Allograft Bone and Osteogenic Scaffolds Seeded with Human Adipose Stem Cells in Bone Tissue Engineering. in Vitro Study - Suvi Haimi - Kirjat - LAP Lambert Academic Publishing - 9783838302034 - maanantai 1. kesäkuuta 2009
Mikäli Kansi ja otsikko eivät täsmää, on otsikko oikein

Bone Tissue Engineering: Allograft Bone and Osteogenic Scaffolds Seeded with Human Adipose Stem Cells in Bone Tissue Engineering. in Vitro Study

Suvi Haimi

Hinta
€ 56,99

Tilattu etävarastosta

Arvioitu toimitus pe 25. loka - ti 5. marras
Lisää iMusic-toivelistallesi

Bone Tissue Engineering: Allograft Bone and Osteogenic Scaffolds Seeded with Human Adipose Stem Cells in Bone Tissue Engineering. in Vitro Study

The use of allograft bone and other bone substitutes in orthopedic surgery has increased tremendously over the last few years. There are inherent problems with allograft tissues, however, such as the risk of disease transmission and immunologic incompatibility. Strategies to reduce these risks include improving allograft sterilization methods and developing bone tissue substitutes were evaluated in this book. Tissue engineering offers a potential avenue to overcome the limitations related to traditional bone substitutes. To enhance the body¿s own repair system, i.e., tissue regeneration, biomaterial research focuses primarily on developing scaffolds for tissue engineering applications. Among adult stem cells, multipotent adipose stem cells can differentiate into osteoblastic cells when seeded on bioactive biomaterials and/or treated with osteogenic factors. Therefore, adipose stem cells are a promising cell source for bone tissue engineering. The subject of this book is topical and important because in aging population the need for orthopaedic operations will only increase with time.

Media Kirjat     Paperback Book   (Kirja pehmeillä kansilla ja liimatulla selällä)
Julkaisupäivämäärä maanantai 1. kesäkuuta 2009
ISBN13 9783838302034
Tuottaja LAP Lambert Academic Publishing
Sivujen määrä 84
Mitta 225 × 5 × 150 mm   ·   136 g
Kieli English