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Notch 信号通路增强斑马鱼下颌骨的再生。

Notch signaling enhances bone regeneration in the zebrafish mandible.

机构信息

Department of Orthopaedic Surgery, University of Connecticut Health Center, Farmington, CT 06030, USA.

Department of Stem Cell Biology and Regenerative Medicine, Keck School of Medicine of the University of Southern California, Los Angeles, CA 90033, USA.

出版信息

Development. 2022 Mar 1;149(5). doi: 10.1242/dev.199995. Epub 2022 Mar 11.

Abstract

Loss or damage to the mandible caused by trauma, treatment of oral malignancies, and other diseases is treated using bone-grafting techniques that suffer from numerous shortcomings and contraindications. Zebrafish naturally heal large injuries to mandibular bone, offering an opportunity to understand how to boost intrinsic healing potential. Using a novel her6:mCherry Notch reporter, we show that canonical Notch signaling is induced during the initial stages of cartilage callus formation in both mesenchymal cells and chondrocytes following surgical mandibulectomy. We also show that modulation of Notch signaling during the initial post-operative period results in lasting changes to regenerate bone quantity one month later. Pharmacological inhibition of Notch signaling reduces the size of the cartilage callus and delays its conversion into bone, resulting in non-union. Conversely, conditional transgenic activation of Notch signaling accelerates conversion of the cartilage callus into bone, improving bone healing. Given the conserved functions of this pathway in bone repair across vertebrates, we propose that targeted activation of Notch signaling during the early phases of bone healing in mammals may both augment the size of the initial callus and boost its ossification into reparative bone.

摘要

创伤、口腔恶性肿瘤及其他疾病导致的下颌骨损失或损伤,可采用骨移植技术进行治疗,但该技术存在诸多缺点和禁忌症。斑马鱼可自然修复下颌骨的严重损伤,这为深入了解如何增强内在愈合潜能提供了机会。利用新型 her6:mCherry Notch 报告基因,我们发现 Notch 信号通路在手术下颌骨切除后,间充质细胞和成软骨细胞中软骨性骨痂形成的初始阶段被诱导。我们还发现,在术后早期调节 Notch 信号通路,可导致一个月后再生骨量的持久变化。Notch 信号通路的药理学抑制会减少软骨性骨痂的大小,并延迟其向骨的转化,从而导致骨不连。相反,条件性转基因激活 Notch 信号通路可加速软骨性骨痂向骨的转化,从而改善骨愈合。鉴于该途径在脊椎动物骨修复中的保守功能,我们提出,在哺乳动物骨愈合的早期阶段靶向激活 Notch 信号通路,既可以增加初始骨痂的大小,又可以促进其矿化为修复性骨。

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