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首页> 外文期刊>Clinical Oral Investigations >Human periodontal ligament fibroblasts stimulated by nanocrystalline hydroxyapatite paste or enamel matrix derivative. An in vitro assessment of PDL attachment, migration, and proliferation
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Human periodontal ligament fibroblasts stimulated by nanocrystalline hydroxyapatite paste or enamel matrix derivative. An in vitro assessment of PDL attachment, migration, and proliferation

机译:纳米晶羟基磷灰石糊剂或釉质基质衍生物刺激的人牙周膜成纤维细胞。 PDL附着,迁移和增殖的体外评估

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摘要

We determined the effects of soluble or coated nanocrystalline hydroxyapatite paste (nano-HA) and enamel matrix derivative (EMD) on proliferation, adhesion, and migration of periodontal ligament fibroblasts (PDLs). Cultured PDLs were stimulated with nano-HA paste or EMD in a soluble form or were coated to the surface of cell culture dishes. Proliferation of PDLs on coated nano-HA and EMD was quantified by various methods including bromodeoxyuridine (BrdU) incorporation and Western blot. Cell migration was investigated in a modified Boyden chamber. The surface integrin profile of PDLs was determined using an integrin-specific ELISA, and integrin-specific signaling was measured by immunoblotting of phosphorylated focal adhesion kinase (FAK). Coated nano-HA stimulated PDL proliferation to a larger extent as compared with coated EMD. PDL migration towards a nano-HA or EMD gradient was more efficiently mediated by soluble EMD as compared with nano-HA but vice versa, adhesion of PDLs to compound-coated dishes was more effectively mediated by nano-HA as compared with EMD. Mechanistically, majorly integrin α5β1-mediated adhesion of PDL and both coated compounds mediated a significant increase in FAK activation though to a different extent. Current findings offer two different modes of action for EMD and nano-HA paste. EMD efficiently acts as a chemoattractant in its soluble form, while nano-HA paste effectively serves as a synthetic extracellular matrix component in its coated form. Our findings suggest that EMD and nano-HA paste display different molecular characteristics and apply alternative routes to mediate their beneficial effects on periodontal tissues.
机译:我们确定了可溶性或包覆的纳米晶羟基磷灰石糊剂(nano-HA)和牙釉质基质衍生物(EMD)对牙周膜成纤维细胞(PDLs)增殖,粘附和迁移的影响。用可溶形式的纳米HA糊剂或EMD刺激培养的PDL,或者将其涂覆到细胞培养皿的表面。通过多种方法,包括溴脱氧尿苷(BrdU)掺入和Western印迹,对包被的纳米HA和EMD上PDL的增殖进行了定量。在改良的博登室中研究细胞迁移。使用整联蛋白特异性ELISA测定PDL的表面整联蛋白谱,并通过磷酸化粘着斑激酶(FAK)的免疫印迹法测量整联蛋白特异性信号传导。与包被的EMD相比,包被的纳米HA刺激PDL增殖的程度更大。与nano-HA相比,PDL向nano-HA或EMD梯度的迁移更有效地由可溶性EMD介导,反之亦然,与EMD相比,nano-HA更有效地介导了PDL对化合物包被碟的粘附。从机理上讲,主要是整联蛋白α5β1介导的PDL粘附,两种包被的化合物均介导FAK活化显着增加,尽管程度不同。目前的发现为EMD和nano-HA糊剂提供了两种不同的作用方式。 EMD以其可溶形式有效地充当化学吸引剂,而nano-HA糊剂以其包衣形式有效地充当合成的细胞外基质成分。我们的发现表明,EMD和nano-HA糊剂显示出不同的分子特征,并应用其他途径来介导它们对牙周组织的有益作用。

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