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基于血小板裂解物的分隔系统作为细胞和血小板源细胞因子载体用于牙周组织再生的作用

The Role of a Platelet Lysate-Based Compartmentalized System as a Carrier of Cells and Platelet-Origin Cytokines for Periodontal Tissue Regeneration.

作者信息

Babo Pedro S, Cai Xinjie, Plachokova Adelina S, Reis Rui L, Jansen John A, Gomes Manuela E, Walboomers X Frank

机构信息

1 3B's Research Group-Biomaterials, Biodegradables and Biomimetics, University of Minho , Headquarters of the European Institute of Excellence on Tissue Engineering and Regenerative Medicine, Taipas, Portugal .

2 The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei-MOST) and Key Laboratory of Oral Biomedicine Ministry of Education, School and Hospital of Stomatology, Wuhan University , Wuhan, China .

出版信息

Tissue Eng Part A. 2016 Oct;22(19-20):1164-1175. doi: 10.1089/ten.TEA.2016.0226.

Abstract

Currently available clinical therapies are not capable to regenerate tissues that are lost by periodontitis. Tissue engineering can be applied as a strategy to regenerate reliably the tissues and function of damaged periodontium. A prerequisite for this regeneration is the colonization of the defect with the adequate cell populations. In this study, we proposed a bilayered system composed of (1) a platelet lysate (PL)-based construct produced by crosslinking of PL proteins with genipin (gPL) for the delivery of rat periodontal ligament cells (rat-PDLCs); combined with (2) an injectable composite consisting of calcium phosphate cement incorporated with PL-loaded poly(d, l-lactic-co-glycolic acid) microspheres. This system was expected to promote periodontal regeneration by the delivery of adequate progenitor cells and providing a stable system enriched with adequate cytokines and growth factors for the orchestration of tissue regrowth in periodontal defects. The bilayered system was tested in a three-wall intrabony defect in rats and the healing of periodontal tissue was assessed 6 weeks after surgery. Results showed that the bilayered system was able to promote the regrowth of functional periodontal tissues, both with (cells + gPL) and without the loading of PDLCs (gPL). Significant connective tissue attachment (45.0 ± 15.0% and 64.0 ± 15.0% for gPL and cells + gPL group, respectively) and new bone area (33.8 ± 21% and 21.3 ± 3% for gPL and cells + gPL group, respectively) were observed. Nevertheless, rat PDLCs delivered with gPL construct in the defect area were hardly visible 6 weeks after surgery and did not contribute for the regeneration of new periodontal tissue. Overall, our findings show that the bilayered system promotes the stabilization of PL proteins on the root surface and has a positive effect in the repair of periodontal tissues both in quality and in quantity.

摘要

目前可用的临床治疗方法无法再生因牙周炎而丧失的组织。组织工程可作为一种可靠地再生受损牙周组织及其功能的策略。这种再生的一个先决条件是用适当的细胞群体对缺损部位进行定植。在本研究中,我们提出了一种双层系统,该系统由(1)一种基于血小板裂解物(PL)的构建体组成,该构建体通过将PL蛋白与京尼平(gPL)交联产生,用于递送大鼠牙周膜细胞(rat-PDLCs);并与(2)一种可注射复合材料相结合,该复合材料由掺入负载PL的聚(d,l-乳酸-共-乙醇酸)微球的磷酸钙骨水泥组成。该系统有望通过递送足够的祖细胞并提供一个富含足够细胞因子和生长因子的稳定系统,来协调牙周缺损部位的组织再生。该双层系统在大鼠的三壁骨内缺损中进行了测试,并在手术后6周评估了牙周组织的愈合情况。结果表明,该双层系统能够促进功能性牙周组织的再生,无论是否加载PDLCs(gPL)。观察到显著的结缔组织附着(gPL组和细胞+gPL组分别为45.0±15.0%和64.0±15.0%)和新骨面积(gPL组和细胞+gPL组分别为33.8±21%和21.3±3%)。然而,手术后6周,在缺损区域用gPL构建体递送的大鼠PDLCs几乎不可见,并且对新牙周组织的再生没有贡献。总体而言,我们的研究结果表明,该双层系统促进了PL蛋白在根表面的稳定,并在牙周组织的修复中在质量和数量上都具有积极作用。

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