For: |
Dahabreh Z, Panteli M, Pountos I, Howard M, Campbell P, Giannoudis PV. Ability of bone graft substitutes to support the osteoprogenitor cells: An |
---|---|
URL: | https://www.wjgnet.com/1948-0210/full/v6/i4/497.htm |
Number | Citing Articles |
1 |
Panji Sananta, Respati Suryanto Dradjat, Domy Pradana Putra, Muhammad Alwy Sugiarto. The effect of bone graft substitute in healing fractures with bone defects through examination of alkaline phosphatase and radiology in the murine model (Rattus norvegicus) Wistar strain. F1000Research 2022; 11: 255 doi: 10.12688/f1000research.109780.1
|
2 |
Ippokratis Pountos, Peter V. Giannoudis. Is there a role of coral bone substitutes in bone repair?. Injury 2016; 47(12): 2606 doi: 10.1016/j.injury.2016.10.025
|
3 |
Xin Bai, Mingzhu Gao, Sahla Syed, Jerry Zhuang, Xiaoyang Xu, Xue-Qing Zhang. Bioactive hydrogels for bone regeneration. Bioactive Materials 2018; 3(4): 401 doi: 10.1016/j.bioactmat.2018.05.006
|
4 |
Guigen Zhang, Helen Lu, Sachin Mamidwar, Min Wang. Biomaterials Science. 2020; : 415 doi: 10.1016/B978-0-12-816137-1.00029-5
|
5 |
Ippokratis Pountos, Michalis Panteli, Anastasios Lampropoulos, Elena Jones, Giorgio Maria Calori, Peter V. Giannoudis. The role of peptides in bone healing and regeneration: a systematic review. BMC Medicine 2016; 14(1) doi: 10.1186/s12916-016-0646-y
|
6 |
Wojciech Zakrzewski, Maciej Dobrzynski, Zbigniew Rybak, Maria Szymonowicz, Rafal J. Wiglusz. Selected Nanomaterials’ Application Enhanced with the Use of Stem Cells in Acceleration of Alveolar Bone Regeneration during Augmentation Process. Nanomaterials 2020; 10(6): 1216 doi: 10.3390/nano10061216
|
7 |
Dirk Wähnert, Julian Koettnitz, Madlen Merten, Daniel Kronenberg, Richard Stange, Johannes F. W. Greiner, Christian Kaltschmidt, Thomas Vordemvenne, Barbara Kaltschmidt. Spongostan™ Leads to Increased Regeneration of a Rat Calvarial Critical Size Defect Compared to NanoBone® and Actifuse. Materials 2021; 14(8): 1961 doi: 10.3390/ma14081961
|