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组织工程化混合牙与骨

Tissue-engineered hybrid tooth and bone.

作者信息

Young Conan S, Abukawa Harutsugi, Asrican Rose, Ravens Michael, Troulis Maria J, Kaban Leonard B, Vacanti Joseph P, Yelick Pamela C

机构信息

Department of Cytokine Biology, Forsyth Institute, Boston, Massachusetts 02115, USA.

出版信息

Tissue Eng. 2005 Sep-Oct;11(9-10):1599-610. doi: 10.1089/ten.2005.11.1599.

Abstract

Tooth loss accompanied by alveolar bone resorption presents a significant clinical problem. We have investigated the utility of a tissue-engineering approach to provide corrective therapies for tooth-bone loss. Hybrid tooth-bone tissues were bioengineered as follows. Tooth implants were generated from pig third molar tooth bud cells seeded onto polyglycolide (PGA) and polyglycolide-colactide (PLGA) scaffolds, and grown for 4 weeks in the omenta of adult rat hosts. Bone implants were generated from osteoblasts induced from bone marrow progenitor cells obtained from the same pig, seeded onto PLGA fused wafer scaffolds, and grown for 10 days in a rotational oxygen-permeable bioreactor system. The tooth and bone implants were harvested, sutured together, reimplanted, and grown in the omenta for an additional 8 weeks. Histological and immunohistochemical analyses of the excised hybrid tooth-bone constructs revealed the presence of tooth tissues, including primary and reparative dentin and enamel in the tooth portion of hybrid tooth-bone implants, and osteocalcin and bone sialoprotein-positive bone in the bone portion of hybrid tooth-bone constructs. Collagen type III-positive connective tissue resembling periodontal ligament and tooth root structures were present at the interface of bioengineered tooth and bone tissues. These results demonstrate the utility of a hybrid tooth-bone tissue-engineering approach for the eventual clinical treatment of tooth loss accompanied by alveolar bone resorption.

摘要

牙齿缺失伴有牙槽骨吸收是一个重大的临床问题。我们研究了一种组织工程方法用于为牙齿-骨组织缺失提供矫正治疗的效用。混合牙齿-骨组织的生物工程构建如下。牙齿植入物由接种于聚乙醇酸(PGA)和聚乙醇酸-丙交酯(PLGA)支架上的猪第三磨牙牙胚细胞生成,并在成年大鼠宿主的网膜中生长4周。骨植入物由从同一头猪获取的骨髓祖细胞诱导生成的成骨细胞接种于PLGA融合薄片支架上,并在旋转式透氧生物反应器系统中生长10天。将牙齿和骨植入物取出、缝合在一起、重新植入,并在网膜中再生长8周。对切除的混合牙齿-骨构建体进行组织学和免疫组织化学分析显示,在混合牙齿-骨植入物的牙齿部分存在牙齿组织,包括原发性和修复性牙本质以及牙釉质,在混合牙齿-骨构建体的骨部分存在骨钙素和骨唾液蛋白阳性的骨组织。在生物工程牙齿和骨组织的界面处存在类似于牙周韧带和牙根结构的III型胶原阳性结缔组织。这些结果证明了混合牙齿-骨组织工程方法对于最终临床治疗伴有牙槽骨吸收的牙齿缺失的效用。

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