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用于口腔组织工程的预血管化策略的人牙龈成纤维细胞的应用。

Use of Human Gingival Fibroblasts for Pre-Vascularization Strategies in Oral Tissue Engineering.

机构信息

Univ. Bordeaux, INSERM, Laboratoire Bioingénierie Tissulaire (BioTis), U1026, CHU Bordeaux, Univ. Bordeaux, 33 076, Bordeaux, France.

Univ. Bordeaux, CNRS, Chimie et Biologie des Membranes et des Nanoobjets (CBMN), U5248, Univ. Bordeaux, 33600, Pessac, France.

出版信息

Tissue Eng Regen Med. 2022 Jun;19(3):525-535. doi: 10.1007/s13770-021-00415-3. Epub 2022 Jan 20.

Abstract

BACKGROUND

Cocultures of human gingival fibrobasts (hGF) and endothelial cells could enhance regeneration and repair models as well as improve vascularization limitations in tissue engineering. The aim of this study was to assess if hGF could support formation of stable vessel-like networks.

METHODS

Explant primary hGF were isolated from gum surgical wastes collected from healthy patients with no history of periodontitis. Human umbilical vein endothelial cells (HUVEC) were two-dimensional (2D) and three-dimensional (3D) cocultured in vitro with hGF at a cell ratio of 1:1 and medium of 1:1 of their respective media during at least 31 days. Vessel quantification of HUVEC networks was performed. In order to investigate the pericyte-like properties of hGF, the expression of perivascular markers α-SMA, NG2, CD146 and PDGFR-β was studied using immunocytochemistry and flow cytometry on 2D cultures.

RESULTS

hGF were able to support a long-lasting HUVEC network at least 31 days, even in the absence of a bioreactor with flow. As observed, HUVEC started to communicate with each other from day 7, constructing a network. Their interconnection increased significantly between day 2 and day 21 and lasted beyond the 31 days of observation. Moreover, we tried to explain the stability of the networks obtained and showed that a small population of hGF in close vicinity of HUVEC networks expressed perivascular markers.

CONCLUSION

These findings highlight a new interesting property concerning hGF, accentuating their relevance in tissue engineering and periodontal regeneration. These promising results need to be confirmed using more 3D applications and in vivo testing.

摘要

背景

人牙龈成纤维细胞(hGF)与内皮细胞共培养可增强再生和修复模型,并改善组织工程中的血管化限制。本研究旨在评估 hGF 是否能支持稳定的血管样网络的形成。

方法

从无牙周炎病史的健康患者的牙龈手术废物中分离出原代 hGF。将人脐静脉内皮细胞(HUVEC)与 hGF 在体外进行二维(2D)和三维(3D)共培养,细胞比例为 1:1,培养基比例为各自培养基的 1:1,至少 31 天。对 HUVEC 网络的血管定量。为了研究 hGF 的周细胞样特性,使用免疫细胞化学和流式细胞术在 2D 培养物上研究了周细胞标记物α-SMA、NG2、CD146 和 PDGFR-β 的表达。

结果

hGF 能够支持 HUVEC 网络至少 31 天,即使在没有带流的生物反应器的情况下也是如此。正如观察到的那样,HUVEC 从第 7 天开始相互交流,构建网络。它们之间的连接在第 2 天和第 21 天之间显著增加,并持续到 31 天的观察期之后。此外,我们试图解释所获得网络的稳定性,并表明 HUVEC 网络附近的一小部分 hGF 表达周细胞标记物。

结论

这些发现突出了 hGF 的一个新的有趣特性,强调了它们在组织工程和牙周再生中的重要性。这些有前景的结果需要使用更多的 3D 应用和体内测试来证实。

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Engineered Prevascularization for Oral Tissue Grafting: A Systematic Review.工程化预血管化用于口腔组织移植:系统评价。
Tissue Eng Part B Rev. 2020 Aug;26(4):383-398. doi: 10.1089/ten.TEB.2020.0093. Epub 2020 Aug 7.

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