Human Umbilical Cord Mesenchymal Stem Cells-Derived Exosomes Attenuates Experimental Periodontitis in Mice Partly by Delivering miRNAs.

IF 6.6 2区 医学 Q1 NANOSCIENCE & NANOTECHNOLOGY
International Journal of Nanomedicine Pub Date : 2025-03-08 eCollection Date: 2025-01-01 DOI:10.2147/IJN.S502192
Ke Li, Xiaoli Gu, Yanan Zhu, Ning Guan, Jinlei Wang, Linyuan Wang
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引用次数: 0

Abstract

Introduction: Periodontitis is the most common non-communicable disease in humans. The main challenge in the treatment of periodontitis is to effectively control periodontal inflammation and promote tissue repair. Human umbilical cord mesenchymal stem cells-derived exosomes (hucMSCs-exo) have been reported to modulate inflammatory responses and promote tissue repairment mainly through miRNAs in several diseases. However, the effect of hucMSCs-exo on periodontitis remains unknown. In this study, we hypothesized that hucMSCs-exo could inhibit bone destruction in periodontitis mice.

Methods: In this study, we constructed and characterized the exo@H drug delivery platform. Lipopolysaccharide was used to construct an inflammatory microenvironment in vitro to detect MC3T3-E1 cells proliferation and bone regeneration capacity. Ligation induced to construct an experimental periodontitis mouse model. The distance of the cement-enamel junction (CEJ) to the alveolar bone crest (ABC) was measured for bone resorption evaluation. Hematoxylin-eosin (H&E) staining and Tartrate resistant acid phosphatase (TRAP) staining were used to observe periodontal tissue changes. MicroRNA (miRNA) sequencing was used to detect differential genes and for bioinformatics analysis. Real-time quantitative polymerase chain reaction (qRT-PCR). WB assay and dual luciferase assay were used to further validate the screened differentially expressed miRNAs and the targeted binding relationship with the corresponding target genes.

Results: We found that lyophilized hucMSCs-exo promoted the proliferation and osteogenic differentiation of MC3T3-E1 cells, and showed more significant proliferative and osteogenic differentiation abilities in combination with the hydrogel (P < 0.05). Using periodontitis mice, bone resorption evaluation revealed a significant reduction in alveolar bone resorption in the exo@H group compared to the hydrogel group (P < 0.01), and exo@H was able to reduce the inflammatory response of periodontal tissues and the number of osteoclasts on the surface of the alveolar bone compared to the hydrogel group. Moreover, 59 miRNAs were upregulated, such as let-7f-5p and miR-203-3p, which positively targeted IL-13 and Nit2, respectively.

Discussion: These results suggest that exo@H provides protection against periodontitis partly by delivering miRNAs to periodontal tissue. Our results confirm the feasibility of the exo@H delivery platform we constructed and the effectiveness of its use for periodontitis treatment, and this study provides a promising approach for the treatment of periodontitis via miRNA.

人脐带间充质干细胞衍生的外泌体通过递送mirna部分减轻小鼠实验性牙周炎。
牙周炎是人类最常见的非传染性疾病。牙周炎治疗的主要挑战是有效控制牙周炎症,促进组织修复。据报道,人脐带间充质干细胞来源的外泌体(hucMSCs-exo)主要通过mirna在几种疾病中调节炎症反应并促进组织修复。然而,hucMSCs-exo对牙周炎的影响尚不清楚。在这项研究中,我们假设humscs -exo可以抑制牙周炎小鼠的骨破坏。方法:构建exo@H给药平台并对其进行表征。采用脂多糖构建体外炎症微环境,检测MC3T3-E1细胞增殖和骨再生能力。结扎诱导构建实验性牙周炎小鼠模型。测定骨水泥-牙釉质接点(CEJ)到牙槽骨嵴(ABC)的距离,评价骨吸收。采用苏木精-伊红(H&E)染色和抗酒石酸酸性磷酸酶(TRAP)染色观察牙周组织变化。MicroRNA (miRNA)测序用于检测差异基因和生物信息学分析。实时定量聚合酶链反应。WB法和双荧光素酶法进一步验证筛选到的差异表达mirna及其与相应靶基因的靶向结合关系。结果:我们发现冻干的hucMSCs-exo能促进MC3T3-E1细胞的增殖和成骨分化,并与水凝胶联合使用时表现出更显著的增殖和成骨分化能力(P < 0.05)。用牙周炎小鼠进行骨吸收评估,结果显示exo@H组与水凝胶组相比,显著减少了牙槽骨吸收(P < 0.01), exo@H组与水凝胶组相比,能够减少牙周组织的炎症反应和牙槽骨表面破骨细胞的数量。此外,59个mirna上调,如let-7f-5p和miR-203-3p,分别正靶向IL-13和Nit2。讨论:这些结果表明exo@H部分通过向牙周组织传递mirna来提供对牙周炎的保护。我们的研究结果证实了我们构建的exo@H传递平台的可行性及其用于牙周炎治疗的有效性,本研究为通过miRNA治疗牙周炎提供了一条有希望的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Nanomedicine
International Journal of Nanomedicine NANOSCIENCE & NANOTECHNOLOGY-PHARMACOLOGY & PHARMACY
CiteScore
14.40
自引率
3.80%
发文量
511
审稿时长
1.4 months
期刊介绍: The International Journal of Nanomedicine is a globally recognized journal that focuses on the applications of nanotechnology in the biomedical field. It is a peer-reviewed and open-access publication that covers diverse aspects of this rapidly evolving research area. With its strong emphasis on the clinical potential of nanoparticles in disease diagnostics, prevention, and treatment, the journal aims to showcase cutting-edge research and development in the field. Starting from now, the International Journal of Nanomedicine will not accept meta-analyses for publication.
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