Study of a new nano-hydroxyapatite/basic fibroblast growth factor composite promoting periodontal tissue regeneration

H Wang, Y Wu, Z Yao, C Wang - Materials Express, 2020 - ingentaconnect.com
Tissue engineering technology provides a new method for periodontal regeneration. Finding
or preparing a suitable scaffold is the key to periodontal tissue engineering. Here, we use …

Human periodontal ligament cells reaction on a novel hydroxyapatite–collagen scaffold

J Guo, Y Wang, C Cao, R Dziak, B Preston… - Dental …, 2013 - Wiley Online Library
Background Periodontal tissue regeneration presents a highly promising method for
restoring periodontal structures. The development of a suitable bioactive scaffold that …

In vitro comparison of nanofibrillar and macroporous-spongious composite tissue scaffolds for periodontal tissue engineering

KB Şahbazoğlu, M Demirbilek, SH Bayarı… - Connective Tissue …, 2022 - Taylor & Francis
Purpose/Aim of the study The ultimate goal of periodontal treatment is to regenerate the lost
periodontal tissues. The interest in nanomaterials in dentistry is growing rapidly and has …

Three-dimensional nanohydroxyapatite/chitosan scaffolds as potential tissue engineered periodontal tissue

YF Zhang, XR Cheng, Y Chen, B Shi… - Journal of …, 2007 - journals.sagepub.com
The development of suitable three-dimensional scaffold for the maintenance of cellular
viability and differentiation is critical for applications in periodontal tissue engineering. In this …

A study on the effects of cells and scaffolds tissue engineering on the periodontal regeneration

H Lu, ZF Wu, Y Tian - Zhonghua kou qiang yi xue za zhi= Zhonghua …, 2004 - europepmc.org
OBJECTIVE: To observe the effects of cells and scaffolds tissue engineering on the
periodontal regeneration, and to evaluate the feasibility of nano-Hap-collagen (nHAC) as …

Biomimetic collagen-sodium alginate-titanium oxide (TiO2) 3D matrix supports differentiated periodontal ligament fibroblasts growth for periodontal tissue …

J Elango, PR Selvaganapathy, G Lazzari, B Bao… - International journal of …, 2020 - Elsevier
Fabrication of biomaterial that mimics a suitable biological microenvironment is still a major
challenge in the field of periodontitis treatment. Hence, in this report, we presented for the …

Potential of an aligned porous hydrogel scaffold combined with periodontal ligament stem cells or gingival mesenchymal stem cells to promote tissue regeneration in …

W Wang, A Wang, G Hu, M Bian, L Chen… - ACS Biomaterials …, 2023 - ACS Publications
Periodontal tissue regeneration is a major challenge in tissue engineering due to its
regenerated environment complexity. It aims to regenerate not only the supporting alveolar …

Effects of hydroxyapatite nanostructure on channel surface of porcine acellular dermal matrix scaffold on cell viability and osteogenic differentiation of human …

S Ge, N Zhao, L Wang, H Liu, P Yang - International Journal of …, 2013 - Taylor & Francis
A new nanostructured hydroxyapatite-coated porcine acellular dermal matrix (HAp-PADM)
was fabricated by a biomimetic mineralization method. Human periodontal ligament stem …

Multifunctional hydrogel/platelet-rich fibrin/nanofibers scaffolds with cell barrier and osteogenesis for guided tissue regeneration/guided bone regeneration …

L Zhang, Y Dong, Y Liu, X Liu, Z Wang, J Wan… - International Journal of …, 2023 - Elsevier
Periodontal defect seriously affects people's life health and quality. Guided tissue
regeneration (GTR) and guided bone regeneration (GBR) have made great progress in …

Impact exerted by scaffolds and biomaterials in periodontal bone and tissue regeneration engineering: new challenges and perspectives for disease treatment

S Santonocito, S Ferlito, A Polizzi… - Exploration of …, 2023 - explorationpub.com
The periodontium is an appropriate target for regeneration, as it cannot restore its function
following disease. Significantly, the periodontium's limited regenerative capacity could be …