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Human levator veli palatini muscle: a novel source of mesenchymal stromal cells for use in the rehabilitation of patients with congenital craniofacial malformations

机译:人类levator veli palatini肌肉:一种新型间充质基质细胞来源,用于先天性颅面畸形患者的康复

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摘要

Bone reconstruction in congenital craniofacial differences, which affect about 2–3% of newborns, has long been the focus of intensive research in the field of bone tissue engineering. The possibility of using mesenchymal stromal cells in regenerative medicine protocols has opened a new field of investigation aimed at finding optimal sources of multipotent cells that can be isolated via non-invasive procedures. In this study, we analyzed whether levator veli palatini muscle fragments, which can be readily obtained in non-invasive manner during palatoplasty in cleft palate patients, represent a novel source of MSCs with osteogenic potential. We obtained levator veli palatini muscle fragments (3–5?mm3), during surgical repair of cleft palate in 5 unrelated patients. Mesenchymal stromal cells were isolated from the muscle using a pre-plating technique and other standard practices. The multipotent nature of the isolated stromal cells was demonstrated via flow cytometry analysis and by induction along osteogenic, adipogenic, and chondrogenic differentiation pathways. To demonstrate the osteogenic potential of these cells in vivo, they were used to reconstruct a critical-sized full-thickness calvarial defect model in immunocompetent rats. Flow cytometry analysis showed that the isolated stromal cells were positive for mesenchymal stem cell antigens (CD29, CD44, CD73, CD90, and CD105) and negative for hematopoietic (CD34 and CD45) or endothelial cell markers (CD31). The cells successfully underwent osteogenic, chondrogenic, and adipogenic cell differentiation under appropriate cell culture conditions. Calvarial defects treated with CellCeram? scaffolds seeded with the isolated levator veli palatini muscle cells showed greater bone healing compared to defects treated with acellular scaffolds. Cells derived from levator veli palatini muscle have phenotypic characteristics similar to other mesenchymal stromal cells, both in vitro and in vivo. Our findings suggest that these cells may have clinical relevance in the surgical rehabilitation of patients with cleft palate and other craniofacial anomalies characterized by significant bone deficit.
机译:先天性颅面差异的骨重建,影响了2-3%的新生儿,长期以来一直是骨组织工程领域密集研究的重点。在再生医学方案中使用间充质基质细胞的可能性已经开辟了一种新的研究领域,旨在发现可以通过非侵入性程序分离的多电细胞的最佳来源。在这项研究中,我们分析了Levator Veli Palatini肌肉片段,可在腭裂患者的腭成形术期间以非侵入性方式易于获得,代表了具有成骨潜力的新型MSC来源。我们在5名无关患者中的腭裂修复期间获得了levator veli palatini肌肉片段(3-5?mm3)。使用预电镀技术和其他标准实践从肌肉中分离间充质基质细胞。通过流式细胞术分析和沿骨质发生,脂肪发生和软骨形成分化途径诱导来证明分离的基质细胞的多能性质。为了证明这些细胞在体内的骨质原性潜力,它们用于重建免疫活性大鼠的临界大小的全厚颅缺陷模型。流式细胞术分析表明,分离的基质细胞是间充质干细胞抗原的阳性(CD29,CD44,CD73,CD90和CD105),对造血(CD34和CD45)或内皮细胞标记物(CD31)阴性。在适当的细胞培养条件下,细胞在适当的细胞培养条件下成功进行了骨质骨质,软骨和脂肪细胞分化。用Cellceram治疗的颅脂缺损?与用细胞支架处理的缺陷相比,用孤立的喇叭veli palatini肌肉细胞播种的支架呈现出更大的骨愈合。来自Levator Veli Palatini肌肉的细胞具有类似于其他间充质基质细胞的表型特性,两种间充质基质细胞在体外和体内。我们的研究结果表明,这些细胞可能在腭裂患者和其他颅面异常的患者的外科康复中具有临床相关性,其特征在于显着的骨缺损。
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