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CD44 is involved in mineralization of dental pulp cells

机译:CD44参与牙髓细胞的矿化

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Introduction: CD44 is a transmembrane glycoprotein with various biological functions. Histologic studies have shown that CD44 is strongly expressed in odontoblasts at the appositional stage of tooth development. We investigated whether CD44 is involved in the mineralization of dental pulp cells. Methods: Ten human third molars with incomplete root formation were collected and processed for immunohistochemistry of CD44. Dental pulp cells isolated from another 5 human third molars were assayed for their viability, alkaline phosphatase activity, and alizarin red staining in vitro after silencing stably their expression of CD44 by using the short hairpin RNA technique. The CD44 knockdown cells were cultured on a collagen sponge and transplanted subcutaneously into the dorsal surfaces of immunocompromised mice. After 6 weeks, the subcutaneous tissues were processed for alizarin red staining and immunohistochemistry of human specific antigen. The dental pulp cells transduced with control short hairpin RNA were used as the control in all assays. Results: CD44 is expressed in odontogenic cells with active mineral deposition during tooth development. Odontoblasts in the root ends of immature teeth express a stronger CD44 signal compared with those in the crown portion. When CD44 expression was stably suppressed in dental pulp cells, their mineralization activities were substantially decreased in both in vitro and in vivo assays. Conclusions: CD44 may play a crucial role in the initial mineralization of tooth-associated structures. However, further studies are required to clarify the underlying mechanisms. ? 2013 American Association of Endodontists.
机译:简介:CD44是一种具有多种生物学功能的跨膜糖蛋白。组织学研究表明,CD44在牙齿发育的并发阶段在成牙本质细胞中强烈表达。我们调查了CD44是否参与牙髓细胞的矿化。方法:收集十个人根不完整的第三磨牙并进行CD44免疫组化处理。通过使用短发夹RNA技术稳定沉默其CD44的表达后,在体外测定了从另外5个人类第3颗臼齿中分离出的牙髓细胞的活力,碱性磷酸酶活性和茜素红染色。将CD44组合式细胞培养在胶原海绵上,并皮下移植到免疫受损小鼠的背侧表面。 6周后,对皮下组织进行茜素红染色和人特异性抗原的免疫组织化学处理。用对照短发夹RNA转导的牙髓细胞在所有测定中均用作对照。结果:CD44在成牙细胞中表达,在牙齿发育过程中具有活跃的矿物质沉积。与牙冠部分相比,未成熟牙齿根端的成牙本质细胞表达更强的CD44信号。当CD44在牙髓细胞中的表达被稳定抑制时,其矿化活性在体外和体内试验中均大大降低。结论:CD44可能在牙齿相关结构的初始矿化中起关键作用。但是,需要进一步研究以阐明其潜在机制。 ? 2013美国牙医学院会员协会。

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