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用于犬模型界面组织再生的 3D 打印双层聚合物/水凝胶构建体。

3D-printed bi-layered polymer/hydrogel construct for interfacial tissue regeneration in a canine model.

机构信息

Department of Oral and Maxillofacial Surgery, Hamadan University of Medical Sciences, Hamadan, Iran; Dental Implants Research Center, Hamadan University of Medical Sciences, Hamadan, Iran.

Marquette University School of Dentistry, Milwaukee, WI 53207, USA.

出版信息

Dent Mater. 2022 Aug;38(8):1316-1329. doi: 10.1016/j.dental.2022.06.020. Epub 2022 Jun 21.

Abstract

OBJECTIVES

There are complications in applying regenerative strategies at the interface of hard and soft tissues due to the limited designs of constructs that can accommodate different cell types in different sites. The problem originates from the challenges in the adhesion of dissimilar materials, such as polymers and hydrogels, that can be suitable for regenerating different tissues such as bone and soft tissues. This paper presents a design of a new hybrid construct in which a polymer (polycaprolactone (PCL)) membrane firmly adheres to a layer of hydrogen (gelatin).

METHODS

PCL membranes with defined size and porosity were fabricated using 3D printing. The gelatin layer was attached to the PCL membranes using the aminolysis procedure. We have examined this construct for the application of Guided Bone Regeneration (GBR) as a typical surgical regenerative procedure of the oral cavity at the interface of bone and soft tissue. Complete in vitro and in vivo investigations on canine tibia bone defects have been performed. Histological analyses for fibrosis morphometric and bone morphometric evaluation, as well as bone-fibrosis histological grading and CBCT imaging, were conducted.

RESULTS

Chemical and morphological studies of the membrane proved that gelatin was uniformly attached to the aminolyzed PCL membranes. The in vitro and in vivo studies indicated the membrane's biocompatibility, mechanical stability, and barrier function for the GBR application. Furthermore, in vitro study showed that the membranes could improve osteogenesis and the regeneration of bone defects. The results illustrated that the mean bone density in the membrane groups was about three times more than that of the control group.

SIGNIFICANCE

The fabricated 3D-printed hybrid Gelatin/PCL bi-layered membrane can be a good candidate for interfacial tissue engineering and a promising membrane for GBR procedure.

摘要

目的

由于构建物的设计有限,无法在硬组织和软组织界面容纳不同类型的细胞,因此在硬组织和软组织界面应用再生策略存在并发症。这个问题源于不同材料(如聚合物和水凝胶)之间的附着力问题,这些材料可以适用于不同组织的再生,如骨骼和软组织。本文提出了一种新的混合构建物的设计,其中聚合物(聚己内酯(PCL))膜牢固地附着在一层氢(明胶)上。

方法

使用 3D 打印制造具有规定尺寸和孔隙率的 PCL 膜。使用氨解程序将明胶层附着到 PCL 膜上。我们已经研究了这种构建物在引导骨再生(GBR)中的应用,作为口腔中骨和软组织界面的典型手术再生过程。已经对犬胫骨骨缺损进行了完整的体外和体内研究。进行了纤维化形态计量和骨形态计量评估、骨-纤维组织学分级和 CBCT 成像的组织学分析。

结果

对膜的化学和形态学研究证明,明胶均匀地附着在氨解的 PCL 膜上。体外和体内研究表明,该膜具有生物相容性、机械稳定性和 GBR 应用的屏障功能。此外,体外研究表明,该膜可以促进成骨和骨缺损的再生。结果表明,膜组的平均骨密度约为对照组的三倍。

意义

制造的 3D 打印混合明胶/PCL 双层膜可以成为界面组织工程的良好候选物,也是 GBR 手术有前途的膜。

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