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利用脱细胞牙胚细胞外基质支架进行体内生物工程牙形成。

In vivo bioengineered tooth formation using decellularized tooth bud extracellular matrix scaffolds.

作者信息

Zhang Weibo, Yelick Pamela C

机构信息

Department of Orthodontics, Division of Craniofacial and Molecular Genetics, Tufts University School of Dental Medicine, Boston, MA 02111, United States.

出版信息

Stem Cells Transl Med. 2025 Feb 11;14(2). doi: 10.1093/stcltm/szae076.

Abstract

The use of dental implants to replace lost or damaged teeth has become increasingly widespread due to their reported high survival and success rates. In reality, the long-term survival of dental implants remains a health concern, based on their short-term predicted survival of ~15 years, significant potential for jawbone resorption, and risk of peri-implantitis. The ability to create functional bioengineered teeth, composed of living tissues with properties similar to those of natural teeth, would be a significant improvement over currently used synthetic titanium implants. To address this possibility, our research has focused on creating biological tooth substitutes. The study presented here validates a potentially clinically relevant bioengineered tooth replacement therapy for eventual use in humans. We created bioengineered tooth buds by seeding decellularized tooth bud (dTB) extracellular matrix (ECM) scaffolds with human dental pulp cells, porcine tooth bud-derived dental epithelial cells, and human umbilical vein endothelial cells. The resulting bioengineered tooth bud constructs were implanted in the mandibles of adult Yucatan minipigs and grown for 2 or 4 months. We observed the formation of tooth-like tissues, including tooth-supporting periodontal ligament tissues, in cell-seeded dTB ECM constructs. This preclinical translational study validates this approach as a potential clinically relevant alternative to currently used dental implants.

摘要

由于报道的高存活率和成功率,使用牙种植体来替代缺失或受损牙齿的情况越来越普遍。实际上,基于牙种植体约15年的短期预测存活率、显著的颌骨吸收潜力以及种植体周围炎的风险,其长期存活仍然是一个健康问题。能够制造出由具有与天然牙齿相似特性的活组织组成的功能性生物工程牙齿,将是对目前使用的合成钛种植体的重大改进。为了探讨这种可能性,我们的研究集中在制造生物牙齿替代品上。这里介绍的研究验证了一种潜在的与临床相关的生物工程牙齿替代疗法,最终可用于人类。我们通过将脱细胞牙胚(dTB)细胞外基质(ECM)支架接种人牙髓细胞、猪牙胚来源的牙上皮细胞和人脐静脉内皮细胞,制造出生物工程牙胚。将所得的生物工程牙胚构建体植入成年尤卡坦小型猪的下颌骨中,并生长2或4个月。我们在接种细胞的dTB ECM构建体中观察到了类牙组织的形成,包括支持牙齿的牙周韧带组织。这项临床前转化研究验证了这种方法作为目前使用的牙种植体的一种潜在的与临床相关的替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a048/11878782/16b993f1eab7/szae076_iffig1.jpg

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