Nano-cellulose proteinversusacellular matrixinoral mucosarepair
Wang Zhong-chao
Fan Li-yuan
Cai Wei
Jiang Jun-qiang
Abstract:BACKGROUND:The sensitivity andmucus secretion of theoral mucosamake oral soft tissues difficult to repair, so patients cannot achieve satisfactory outcomes after treatment. Nano-celulose protein mainly composed of glycine, alanine and serine has good histocompati bility. However, there is a lack of comparative study about the effect of nano-celulose protein and acelular matrix in oral mucosa repair, and the clinical effects of the two materials are stil under discussion. <br> OBJECTIVE:To investigate the effects of nano-celulose proteinver susacelular matrix in oral mucosa repair. <br> METHODS:Oral mucosadefect models were preparedinrats, and these rat models were randomly divided into four groups:oral mucosa defectswere repaired by vaseline (control group), nano-celulose protein, bovine skin acelular matrix and human skin acelular matrix, respectively. Repair effects were compared among different materials within 2 months after surgery. <br> RESULTS AND CONCLUSION:The diameter of oral mucosa defect measured using a vernier caliper, had no significant differences among groups at 1 day after surgery (P> 0.05); the diameter of oral mucosa defect in the nano-celulose protein group was significantly lower than that in the other groups at 3, 5 and 7 days after surgery (P<0.05); the diameter of oral mucosa defect in the bovine and human skin acelular matrix groups was significantly lower than that in the control group at 5 and 7 days after surgery (P< 0.05). Morphological observationoftheoral mucosa under light microscope showed: the number of newborn capilary endothelialcels in the defect region had no significant differences among nano-celulose protein, bovine acelular matrix and human acelular matrixgroupsat 1, 3, 5 and 7 weeks after surgery (P> 0.05);but there were significant differences in the number of newborn capilary endothelialcels between the control group and the other three groups (P< 0.05). Furthermore, at 21 days after surgery, closely aligned and thicker new epithelialtissuecould be found in the nano-celulose protein group; in the bovine acelular matrix group,thedefect regionwasrepaired wel, new epithelialtissueappeared andthe number of inflammatory cels decreased; in the human acelular matrix group, inflammatory cels appearedobviously, and new epithelialtissueformed with the normal thickness. In contrast,abundant inflammatory cels and thinner epithelial tissues appeared in the control group. To conclude,bothnano-celulose protein and acelular matrix can accelerate wound healing by promoting oral mucosal epithelial hyperplasia.
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Publication Date:2016-01-01
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:6( 3104-3109 )
