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牙周骨诱导活性玻璃调节成骨细胞RNA干扰。

PerioGlas regulates osteoblast RNA interfering.

作者信息

Palmieri Annalisa, Pezzetti Furio, Spinelli Giuseppe, Arlotti Marzia, Avantaggiato Anna, Scarano Antonio, Scapoli Luca, Zollino Ilaria, Carinci Francesco

机构信息

Institute of Histology, University of Bologna and Center of Molecular Genetics, CARISBO Foundation, Bologna, Italy.

出版信息

J Prosthodont. 2008 Oct;17(7):522-6. doi: 10.1111/j.1532-849X.2008.00331.x. Epub 2008 Jun 20.

Abstract

PURPOSE

PerioGlas (PG) is an alloplastic material that has been used for grafting periodontal osseous defects since the 1990s. In animal models, it has been proven that PG achieves histologically good repairs of surgically created defects. In clinical trials, PG is effective as an adjunct to conventional surgery in the treatment of intrabony defects; however, how PG alters osteoblast activity to promote bone formation is poorly understood. We therefore attempted to address this question by using microRNA (miRNA) microarray techniques to investigate the translation process in osteoblasts exposed to PG.

MATERIALS AND METHODS

By using miRNA microarrays containing 329 probes designed from human miRNA sequences, we identified several miRNA whose expression was significantly modified in osteoblast-like cell lines (MG-63) cultured with PG.

RESULTS

There were ten up-regulated miRNA (mir-337, mir-377, mir-9, mir-516, mir-515-3p, mir-496, mir-200b, mir-489, mir-25, mir-423) and two down-regulated miRNA (mir-26a, mir-30d).

CONCLUSION

PG acts on miRNAs, which in turn regulate several messengers. Among them there are mRNAs related to bone formation and skeletal and cartilage development. The vast majority of detected genes are down-regulated, and some are homeobox genes like NOG, EN1, and CHRD. Other down-regulated genes are receptors (like GHRHR) and extracellular matrix proteins (like COMP). Although the exact mechanism of PG action on osteoblasts is still incompletely understood, these data demonstrate that PG has not only an osteoconductive effect, but also regulates bone formation.

摘要

目的

PerioGlas(PG)是一种异质材料,自20世纪90年代以来一直用于牙周骨缺损的移植。在动物模型中,已证明PG在组织学上能很好地修复手术造成的缺损。在临床试验中,PG作为传统手术的辅助手段治疗骨内缺损是有效的;然而,PG如何改变成骨细胞活性以促进骨形成却知之甚少。因此,我们试图通过使用微小RNA(miRNA)微阵列技术来研究暴露于PG的成骨细胞中的翻译过程,以解决这个问题。

材料和方法

通过使用包含从人类miRNA序列设计的329个探针的miRNA微阵列,我们鉴定了几种在用PG培养的成骨样细胞系(MG-63)中表达有显著改变的miRNA。

结果

有10种上调的miRNA(mir-337、mir-377、mir-9、mir-516、mir-515-3p、mir-496、mir-200b、mir-489、mir-25、mir-423)和2种下调的miRNA(mir-26a、mir-30d)。

结论

PG作用于miRNA,而miRNA反过来调节多种信使分子。其中有与骨形成以及骨骼和软骨发育相关的mRNA。检测到绝大多数基因是下调的,一些是如NOG、EN1和CHRD这样的同源盒基因。其他下调的基因是受体(如GHRHR)和细胞外基质蛋白(如COMP)。尽管PG对成骨细胞作用的确切机制仍未完全了解,但这些数据表明PG不仅具有骨传导作用,还能调节骨形成。

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