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首页> 外文期刊>International endodontic journal >Assessment of bioactive and bio-adhesive therapies to enhance stem cell attachment to root surface dentine.
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Assessment of bioactive and bio-adhesive therapies to enhance stem cell attachment to root surface dentine.

机译:评估生物活性和生物粘附疗法以增强干细胞对牙根表面牙本质的附着力。

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摘要

AIM: To compare bioactive and bio-adhesive therapies to enhance stem cell attachment to the root dentine of human teeth. METHODOLOGY: Dentine slabs (n = 72) were cut from the lower 3 mm of the roots of extracted human permanent teeth. The root dentine slabs were untreated, or coated with bio-adhesive, or human recombinant transforming growth factor-beta1 (hrTGF-B1), or human recombinant bone morphogenic protein-2 (hrBMP-2). The dentine slabs were placed with the root surface in contact with confluent periodontal stem cell (PSC) cultures using aseptic techniques. The cells and dentine slabs were submerged in culture media for 4, 24 and 72 h. The specimens were fixed in formalin, dehydrated and processed for scanning electron microscopy (SEM). RESULTS: SEM micrographs at x2000 magnification revealed PSC extensive adherence to root dentine for all of the bio-adhesive and bioactive treatments. The addition of bioactive molecules did not improve PSC attachment. Few cells attached to the negative control treatments. CONCLUSIONS: Bio-adhesive and bioactive growth factors were not needed to promote PSC attachment to the root dentine of human teeth, because it already appears to have good natural properties to promote PSC attachment. This suggests PSC can be used for the clinical replantation of avulsed teeth without the need for bio-adhesive and bioactive treatments.
机译:目的:比较生物活性和生物粘附疗法以增强干细胞与人牙根部牙本质的附着力。方法:从拔出的人类恒牙的根部下部3毫米切下牙本质板(n = 72)。未经处理的根牙本质平板,或涂有生物粘合剂或人重组转化生长因子-beta1(hrTGF-B1)或人重组骨形态发生蛋白2(hrBMP-2)。使用无菌技术,将牙本质板的根表面与汇合的牙周干细胞(PSC)培养物接触。将细胞和牙本质平板浸入培养基中4、24和72小时。将样品在福尔马林中固定,脱水并进行扫描电子显微镜(SEM)处理。结果:放大2000倍的SEM显微照片显示,对于所有生物粘附和生物活性处理,PSC广泛附着于牙本质。生物活性分子的添加不能改善PSC的附着。很少有细胞附着于阴性对照治疗。结论:不需要生物粘附和生物活性生长因子来促进PSC附着在人牙齿的根部牙本质上,因为它似乎已经具有促进PSC附着的良好自然特性。这表明PSC可以用于撕脱牙的临床再植,而无需生物粘附和生物活性治疗。

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