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商用聚合膜在大鼠颅缺损骨再生中的效率分析。

Efficiency analysis of commercial polymeric membranes for bone regeneration in rat cranial defects.

机构信息

Universidade Federal do Ceará - Postgraduate Program in Biotechnology - Sobral (CE), Brazil.

Universidade Federal do Ceará - Dental School - Sobral (CE), Brazil.

出版信息

Acta Cir Bras. 2023 Mar 6;38:e380623. doi: 10.1590/acb380623. eCollection 2023.

Abstract

PURPOSE

To evaluate the in vivo efficiency of commercial polymeric membranes for guided bone regeneration.

METHODS

Rat calvarial critical size defects was treated with LuminaCoat (LC), Surgitime PTFE (SP), GenDerm (GD), Pratix (PR), Techgraft (TG) or control (C-) and histomorphometric analysis determined the percentage of new bone, connective tissue and biomaterial at 1 or 3 months. Statistical analysis used ANOVA with Tukey's post-test for means at same experimental time and the paired Student's t test between the two periods, considering p < 0.05.

RESULTS

New bone at 1 month was higher for SP, TG and C-, at 3 months there were no differences, and between 1 and 3 months PR had greater increase growthing. Connective tissue at 1 month was higher for C-, at 3 months for PR, TG and C-, and between 1 and 3 months C- had sharp decline. Biomaterial at 1 month was higher for LC, in 3 months for SP and TG, and between 1 and 3 months, LC, GD and TG had more decreasing mean.

CONCLUSIONS

SP had greater osteopromotive capacity and limitation of connective ingrowth, but did not exhibit degradation. PR and TG had favorable osteopromotion, LC less connective tissue and GD more accelerated biodegradation.

摘要

目的

评估商业聚合膜在引导骨再生中的体内效率。

方法

采用 LuminaCoat(LC)、Surgitime PTFE(SP)、GenDerm(GD)、Pratix(PR)、Techgraft(TG)或对照(C-)处理大鼠颅骨临界尺寸缺损,并进行组织形态计量学分析,以确定 1 个月或 3 个月时新骨、结缔组织和生物材料的百分比。采用方差分析(ANOVA)和 Tukey 事后检验进行同实验时间均值的统计学分析,以及两期之间的配对学生 t 检验,p < 0.05。

结果

1 个月时 SP、TG 和 C-的新骨较多,3 个月时无差异,1 至 3 个月时 PR 有较大的生长增加。1 个月时 C-的结缔组织较多,3 个月时 PR、TG 和 C-的结缔组织较多,1 至 3 个月时 C-的结缔组织急剧减少。1 个月时 LC 的生物材料较多,3 个月时 SP 和 TG 的生物材料较多,1 至 3 个月时 LC、GD 和 TG 的生物材料减少较多。

结论

SP 具有更大的成骨促进能力和限制结缔组织向内生长的能力,但不表现出降解。PR 和 TG 具有良好的成骨促进作用,LC 较少的结缔组织,GD 更快的生物降解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fff9/10037556/e8ad22883f83/1678-2674-acb-38-e380623-gf01.jpg

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