Bioactive hydrogels for bone regeneration
Биоактивные гидрогели для регенерации костной ткани
2018-05-26
SCID: 54.1/bb98sb9n
Discuss with AI
bioactive hydrogelsbone regenerationcalcium phosphate cementsdrug delivery strategiespolymeric scaffolds
Figures from the paper
Abstract (AI)
Bone self-healing is limited and generally requires external intervention to augment bone repair and regeneration. While traditional methods for repairing bone defects such as autografts, allografts, and xenografts have been widely used, they all have corresponding disadvantages, thus limiting their clinical use. Despite the development of a variety of biomaterials, including metal implants, calcium phosphate cements (CPC), hydroxyapatite, etc., the desired therapeutic effect is not fully achieved. Currently, polymeric scaffolds, particularly hydrogels, are of interest and their unique configurations and tunable physicochemical properties have been extensively studied. This review will focus on the applications of various cutting-edge bioactive hydrogels systems in bone regeneration, as well as their advantages and limitations. We will examine the composition and defects of the bone, discuss the current biomaterials for bone regeneration, and classify recently developed polymeric materials for hydrogel synthesis. We will also elaborate on the properties of desirable hydrogels as well as the fabrication techniques and different delivery strategies. Finally, the existing challenges, considerations, and the future prospective of hydrogels in bone regeneration will be outlined.
Key Findings
1
Autografts, allografts, xenografts, and established biomaterials such as metal implants, calcium phosphate cements, and hydroxyapatite have important limitations that restrict therapeutic effectiveness or clinical use.
2
Bioactive hydrogel systems are evaluated through their composition, desirable properties, fabrication techniques, and delivery strategies for bone regeneration applications.
3
Bone self-healing is limited, creating a need for external interventions to enhance bone repair and regeneration.
4
Polymeric hydrogels are promising bone-regeneration scaffolds because their configurations and physicochemical properties can be extensively tuned.
5
Significant challenges and design considerations remain before hydrogels can achieve broader clinical translation in bone regeneration.
Research Object
Bioactive polymeric hydrogels for bone regeneration
Research Subject
Applications, composition, physicochemical properties, fabrication, delivery strategies, advantages, limitations, and challenges of bioactive hydrogels in bone regeneration
Publication Details
Publication Date
2018-05-26
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest