Fibrin Glue Implants Seeded with Dental Pulp and Periodontal Ligament Stem Cells for the Repair of Periodontal Bone Defects: A Preclinical Study

Author:

Enukashvily Natella I.ORCID,Dombrovskaya Julia A.,Kotova Anastasia V.,Semenova NataliaORCID,Karabak IrinaORCID,Banashkov Roman E.,Baram Dmitry,Paderina Tatiana,Bilyk Stanislav S.,Grimm Wolf-DieterORCID,Kovalenko Anton N.,Ivolgin Dmitry,Prikhodko Egor M.,Silin Alexey V.

Abstract

A technology to create a cell-seeded fibrin-based implant matching the size and shape of bone defect is required to create an anatomical implant. The aim of the study was to develop a technology of cell-seeded fibrin gel implant creation that has the same shape and size as the bone defect at the site of implantation. Using computed tomography (CT) images, molds representing bone defects were created by 3D printing. The form was filled with fibrin glue and human dental pulp stem cells (DPSC). The viability, set of surface markers and osteogenic differentiation of DPSC grown in fibrin gel along with the clot retraction time were evaluated. In mice, an alveolar bone defect was created. The defect was filled with fibrin gel seeded with mouse DPSC. After 28 days, the bone repair was analyzed with cone beam CT and by histological examination. The proliferation rate, set of surface antigens and osteogenic potential of cells grown inside the scaffold and in 2D conditions did not differ. In mice, both cell-free and mouse DPSC-seeded implants increased the bone tissue volume and vascularization. In mice with cell-seeded gel implants, the bone remodeling process was more prominent than in animals with a cell-free implant. The technology of 3D-printed forms for molding implants can be used to prepare implants using components that are not suitable for 3D printing.

Funder

Ministry of Health of Russian Federation

Publisher

MDPI AG

Subject

Bioengineering

Cited by 10 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Evolving Strategies and Materials for Scaffold Development in Regenerative Dentistry;Applied Sciences;2024-03-08

2. Dental Restorations;Bioengineering;2023-07-10

3. Encapsulation in dentistry;Principles of Biomaterials Encapsulation : Volume Two;2023

4. Application of Dental Pulp Stem Cells in Modern Dentistry: A Narrative Review;Modern Medical Laboratory Journal;2023-01-01

5. Bioactive Materials for Next-Generation Dentistry;Bioengineering;2022-12-08

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