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Advancements in Hydrogel-Based Drug Sustained Release Systems for Bone Tissue Engineering
by
Zhang, Yunfan
, Yu, Tingting
, Peng, Liying
, Sun, Qiannan
, Wei, Yan
, Han, Bing
in
Biomedical materials
/ Bone biomaterials
/ Bone growth
/ Bone healing
/ bone tissue engineering
/ Bones
/ Controlled release
/ Cytokines
/ growth factors
/ hydrogel
/ Hydrogels
/ Mechanical properties
/ mesenchymal stem cells
/ Microenvironments
/ Osteogenesis
/ Pharmacology
/ Regeneration
/ Regenerative medicine
/ Stem cells
/ sustained drug release
/ Tissue engineering
/ Water content
2020
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Advancements in Hydrogel-Based Drug Sustained Release Systems for Bone Tissue Engineering
by
Zhang, Yunfan
, Yu, Tingting
, Peng, Liying
, Sun, Qiannan
, Wei, Yan
, Han, Bing
in
Biomedical materials
/ Bone biomaterials
/ Bone growth
/ Bone healing
/ bone tissue engineering
/ Bones
/ Controlled release
/ Cytokines
/ growth factors
/ hydrogel
/ Hydrogels
/ Mechanical properties
/ mesenchymal stem cells
/ Microenvironments
/ Osteogenesis
/ Pharmacology
/ Regeneration
/ Regenerative medicine
/ Stem cells
/ sustained drug release
/ Tissue engineering
/ Water content
2020
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Do you wish to request the book?
Advancements in Hydrogel-Based Drug Sustained Release Systems for Bone Tissue Engineering
by
Zhang, Yunfan
, Yu, Tingting
, Peng, Liying
, Sun, Qiannan
, Wei, Yan
, Han, Bing
in
Biomedical materials
/ Bone biomaterials
/ Bone growth
/ Bone healing
/ bone tissue engineering
/ Bones
/ Controlled release
/ Cytokines
/ growth factors
/ hydrogel
/ Hydrogels
/ Mechanical properties
/ mesenchymal stem cells
/ Microenvironments
/ Osteogenesis
/ Pharmacology
/ Regeneration
/ Regenerative medicine
/ Stem cells
/ sustained drug release
/ Tissue engineering
/ Water content
2020
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Advancements in Hydrogel-Based Drug Sustained Release Systems for Bone Tissue Engineering
Journal Article
Advancements in Hydrogel-Based Drug Sustained Release Systems for Bone Tissue Engineering
2020
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Overview
Bone defects caused by injury, disease, or congenital deformity remain a major health concern, and efficiently regenerating bone is a prominent clinical demand worldwide. However, bone regeneration is an intricate process that requires concerted participation of both cells and bioactive factors. Mimicking physiological bone healing procedures, the sustained release of bioactive molecules plays a vital role in creating an optimal osteogenic microenvironment and achieving promising bone repair outcomes. The utilization of biomaterial scaffolds can positively affect the osteogenesis process by integrating cells with bioactive factors in a proper way. A high water content, tunable physio-mechanical properties, and diverse synthetic strategies make hydrogels ideal cell carriers and controlled drug release reservoirs. Herein, we reviewed the current advancements in hydrogel-based drug sustained release systems that have delivered osteogenesis-inducing peptides, nucleic acids, and other bioactive molecules in bone tissue engineering (BTE).
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