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Nanobioceramics for bone tissue engineering and regenerative biomedicine = tunable biological characteristics /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Nanobioceramics for bone tissue engineering and regenerative biomedicine/ by Reza Gholami, Seyed Morteza Naghib.
其他題名:
tunable biological characteristics /
作者:
Ghulāmī, Riz̤ā.
其他作者:
Naghib, Seyed Morteza.
出版者:
Singapore :Springer Nature Singapore : : 2025.,
面頁冊數:
x, 282 p. :ill. (chiefly color), digital ; : 24 cm.;
Contained By:
Springer Nature eBook
標題:
Bone regeneration. -
電子資源:
https://doi.org/10.1007/978-981-96-0041-0
ISBN:
9789819600410
Nanobioceramics for bone tissue engineering and regenerative biomedicine = tunable biological characteristics /
Ghulāmī, Riz̤ā.
Nanobioceramics for bone tissue engineering and regenerative biomedicine
tunable biological characteristics /[electronic resource] :by Reza Gholami, Seyed Morteza Naghib. - Singapore :Springer Nature Singapore :2025. - x, 282 p. :ill. (chiefly color), digital ;24 cm. - Biological and medical physics, biomedical engineering,2197-5647. - Biological and medical physics, biomedical engineering..
Introduction -- Bone -- Bone Cells -- Bone Extracellular Matrix -- Bone ECM Proteins Part I -- Bone ECM Proteins Part II -- Bioactivity and Osteogenic Features -- Nano-Bioceramics -- Composites for BTE.
This book presents the tunable biological characteristics of nanobioceramics and focuses on some challenges in bone tissue engineering and regenerative medicine. Synthetic composite-based materials and scaffolds should be biodegradable, biocompatible and supply sufficient structural aid for cell migration, along with oxygen, waste, and nutrient carriage to accelerate bone regeneration process and remodeling in defects. These properties may be reached by functioning tunable physical features, including absorption rate, degradation rate, modulus, porosity, and swelling by adjustments with the addition of ceramic phases and copolymers as synthetic composite scaffolds. Synthetic bioceramics seek to imitate the natural hydroxyapatite (HA) crystal creation located in bone. These ceramics, particularly calcium phosphates, have exhibited great osteoinductivity, osteoconductivity, and biocompatibility. Lately, silicon-based glass-ceramics have been investigated as a substitution of calcium phosphates. Several members of this collection exhibit high bioactivity, have attractive mechanical strength, and are known to increase cell proliferation, adhesion, and mineralization of extracellular matrix. Moreover, antibacterial properties of some nanostructured bioceramics established significant interests in avoiding implants rejection in surgery and biomedicine.
ISBN: 9789819600410
Standard No.: 10.1007/978-981-96-0041-0doiSubjects--Topical Terms:
722008
Bone regeneration.
LC Class. No.: R857.T55
Dewey Class. No.: 610.28
Nanobioceramics for bone tissue engineering and regenerative biomedicine = tunable biological characteristics /
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