FGF and TGF-β growth factor isoform modulation of human gingival and periodontal ligament fibroblast wound healing phenotype

IF 4.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Chengyu Guo , Amin S. Rizkalla , Douglas W. Hamilton
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引用次数: 0

Abstract

Release of growth factors in the tissue microenvironment is a critical process in the repair and regeneration of periodontal tissues, regulating fibroblast behavior and phenotype. As a result of the complex architecture of the periodontium, distinct fibroblast populations in the periodontal ligament and gingival connective tissue exist in close proximity. Growth factor therapies for periodontal regeneration have gained traction, but quantification of their effects on multiple different fibroblast populations that are required for repair has been poorly investigated. In this study, we examined the effects of TGF-β1, TGF-β3, FGF-2, and FGF-9 on human gingival fibroblasts (hGF) and human periodontal ligament cells (hPDL), as well as the combined effects of TGF-β3 and FGF-2. We show that FGF-2 enhances cell migration while TGF-β1 and TGF-β3 promotes matrix production, and TGF-β1 promotes fibroblast to myofibroblast transition. Interestingly, the combination of TGF-β3 and FGF-2, acting through both p-SMAD3 and p-ERK pathways, mitigates the inhibitory effects of TGF-β3 on migration in hPDL cells, suggesting synergistic and complimentary effects of FGF-2 and TGF-β3. Additionally, fibronectin production in hGF increased when treated with the combined TGF-β3+FGF-2 compared to FGF-2 alone, indicating that the effects of TGF-β3 in promoting extracellular matrix production are still active in the combined treatment condition. Finally, our study highlights that FGF-9 did not influence migration, α-SMA expression, or extracellular matrix production in either cell type, emphasizing the unique roles of specific growth factors in cellular responses. The synergistic effects observed with combined TGF-β3 and FGF-2 treatments present promising avenues for further research and clinical advancements in regenerative medicine.
FGF和TGF-β生长因子亚型对人牙龈和牙周韧带成纤维细胞伤口愈合表型的调节。
组织微环境中生长因子的释放是牙周组织修复和再生、调节成纤维细胞行为和表型的关键过程。由于牙周组织结构复杂,在牙周韧带和牙龈结缔组织中存在着不同的成纤维细胞群。生长因子治疗牙周再生已经获得了广泛的关注,但是对其对修复所需的多种不同成纤维细胞群体的影响的量化研究却很少。本研究考察了TGF-β1、TGF-β3、FGF-2和FGF-9对人牙龈成纤维细胞(hGF)和人牙周韧带细胞(hPDL)的影响,以及TGF-β3和FGF-2的联合作用。我们发现FGF-2促进细胞迁移,TGF-β1和TGF-β3促进基质生成,TGF-β1促进成纤维细胞向肌成纤维细胞转变。有趣的是,TGF-β3和FGF-2联合作用,通过p-SMAD3和p-ERK途径,减轻了TGF-β3对hPDL细胞迁移的抑制作用,提示FGF-2和TGF-β3具有协同和互补作用。此外,TGF-β3+FGF-2联合治疗hGF比单独治疗FGF-2时,hGF中纤维连接蛋白的生成增加,表明TGF-β3促进细胞外基质生成的作用在联合治疗条件下仍然活跃。最后,我们的研究强调了FGF-9在两种细胞类型中都不影响迁移、α-SMA表达或细胞外基质的产生,强调了特定生长因子在细胞反应中的独特作用。TGF-β3和FGF-2联合治疗的协同效应为再生医学的进一步研究和临床进展提供了有希望的途径。
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来源期刊
Matrix Biology
Matrix Biology 生物-生化与分子生物学
CiteScore
11.40
自引率
4.30%
发文量
77
审稿时长
45 days
期刊介绍: Matrix Biology (established in 1980 as Collagen and Related Research) is a cutting-edge journal that is devoted to publishing the latest results in matrix biology research. We welcome articles that reside at the nexus of understanding the cellular and molecular pathophysiology of the extracellular matrix. Matrix Biology focusses on solving elusive questions, opening new avenues of thought and discovery, and challenging longstanding biological paradigms.
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