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Bone Marrow Stromal Cells Promote Innervation of Bioengineered Teeth

机译:骨髓基质细胞促进生物工程牙齿的原因

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摘要

Transplantation of bone marrow mesenchymal stem cells (BMDCs) into a denervated side of the spinal cord was reported to be a useful option for axonal regeneration. The innervation of teeth is essential for their function and protection but does not occur spontaneously after injury. Cultured reassociations between dissociated embryonic dental mesenchymal and epithelial cells and implantation lead to a vascularized tooth organ regeneration. However, when reassociations were coimplanted with a trigeminal ganglion (TG), innervation did not occur. On the other hand, reassociations between mixed embryonic dental mesenchymal cells and bone marrow-derived cells isolated from green fluorescent protein (GFP) transgenic mice (BMDCs-GFP) (50/50) with an intact and competent dental epithelium (ED14) were innervated. In the present study, we verified the stemness of isolated BMDCs, confirmed their potential role in the innervation of bioengineered teeth, and analyzed the mechanisms by which this innervation can occur. For that purpose, reassociations between mixed embryonic dental mesenchymal cells and BMDCs-GFP with an intact and competent dental epithelium were cultured and coimplanted subcutaneously with a TG for 2 wk in ICR mice. Axons entered the dental pulp and reached the odontoblast layer. BMDCs-GFP were detected at the base of the tooth, with some being present in the pulp associated with the axons. Thus, while having a very limited contribution in tooth formation, they promoted the innervation of the bioengineered teeth. Using quantitative reverse transcription polymerase chain reaction and immunostainings, BMDCs were shown to promote innervation by 2 mechanisms: 1) via immunomodulation by reducing the number of T lymphocytes (CD3+, CD25+) in the implants and 2) by expressing neurotrophic factors such as NGF, BDNF, and NT3 for axonal growth. This strategy using autologous mesenchymal cells coming from bone marrow could be used to innervate bioengineered teeth without treatment with an immunosuppressor such as cyclosporine A (CsA), thus avoiding multiple side effects.
机译:据报道,将骨髓间充质干细胞(BMDC)移植到脊髓的神经脊髓的后侧,是轴突再生的有用选择。牙齿的支护对其功能和保护至关重要,但受伤后不会自发发生。解离胚胎间充质和上皮细胞和植入术后培养的重新分配导致血管化牙齿器官再生。然而,当重新分配与三叉神经节(Tg)共同塑造时,没有发生支气化。另一方面,与绿色荧光蛋白(GFP)转基因小鼠(BMDCS-GFP)(BMDCS-GFP)(BMDCS-GFP)(BMDCS-GFP)(50/50)分离的混合胚胎牙科间充质细胞和骨髓衍生细胞的重新分配,具有完整和称赞的牙科上皮(ED14) 。在本研究中,我们验证了分离的BMDCs的茎,证实了它们在生物工程牙齿的支配中的潜在作用,并分析了可以发生这种内脏的机制。为此目的,混合胚胎牙科间充质细胞和BMDCS-GFP之间的重新分配具有完整和称赞的牙科上皮,并在ICR小鼠中皮下培养并与Tg皮下塑化。轴突进入牙科纸浆并达到了Odontoblast层。在牙齿的底部检测到BMDCS-GFP,其中一些存在于与轴突相关联的纸浆中。因此,虽然在牙齿形成的贡献非常有限,但它们促进了生物工程牙齿的支配。使用定量逆转录聚合酶链反应和免疫抑制,显示BMDC通过通过表达NGF等神经营养因子减少植入物和2)中的T淋巴细胞(CD3 +,CD25 +)的数量,通过免疫调节促进21)。 BDNF和NT3用于轴突生长。使用来自骨髓的自体间充质细胞的这种策略可用于支配生物工程牙齿而不用免疫压缩器(如环孢菌素A(CSA)处理),从而避免多副作用。

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