Recombinant bovine basic fibroblast growth factor gel prevents dry socket syndrome after toothextraction
Xue Ling-fa
Xu Yao-xiang
Yue Jin
Wang Shuang-yi
Xiao Wen-lin
Zhang Chun-yang
Abstract: BACKGROUND:Recombinant bovine basic fibroblast growth factor is a manifold effect cytokine which can promote angiogenesis, wound healing, tissue repair and bone regeneration. Recombinant bovine basic fibroblast growth factor with good histocompatibility is easy to operate and has been widely used in oral and maxil ary surgery. <br> OBJECTIVE:To evaluate the effect of recombinant bovine basic fibroblast growth factor against dry socket syndrome after tooth extraction. <br> METHODS:A total of 160 patients who had been extracted mandibular third molar were selected and randomly divided into two groups. In the experimental group, recombinant bovine basic fibroblast growth factor was put into the sockets after mandibular third molars were extracted, while in the control group, we let the wounds to be healed natural y without any materials. The incidence of dry socket syndrome was observed and compared between two groups at 3 days, 5 days and 1 week after tooth extraction. <br> RESULTS AND CONCLUSION:One patient had dry socket after operation in the experimental group, and the incidence was 1.25%. In the control group, 10 patients suffered from dry socket, and the incidence was 12.5%. There was a significant difference in the incidence of dry socket between the two groups (P<0.01). There was visible granulation tissue within the tooth socket after tooth extraction in the experimental group, and extraction sockets narrowed and were fil ed with granulation tissues, which was 1-2 days earlier than the control group. No al ergies, tissue hyperplasia and other local and systemic reactions occurred in patients receiving implantation of&nbsp;recombinant bovine basic fibroblast growth factor gel. These findings indicate that local implantation of recombinant bovine basic fibroblast growth factor gel after mandibular tooth extractions can speed up the healing of dental extraction wounds.
Keywords:biomaterialstissue-engineered oral materialsbasic fibroblast growth factordry socketimpacted teethgelbioactive factorstooth extractional ergiestissue hyperplasiacomplications
Publication Date:2013-01-01
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:6( 6097-6102 )
Chinese Journal of Tissue Engineering Research

Chinese Journal of Tissue Engineering Research

PKUISTIC
ISSN:1673-8225
Year, Vol.(Issue):2013,(34)