首页> 外文期刊>American journal of medical genetics, Part A >Masticatory Muscle Defects in Hemifacial Microsomia: A New Embryological Concept
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Masticatory Muscle Defects in Hemifacial Microsomia: A New Embryological Concept

机译:面肌小指的咀嚼肌缺陷:新的胚胎学概念。

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First arch syndromes correspond to a wide spectrum of human iatero-facial congenital anomalies affecting cranial neural crest cells (CNCCs) derivatives of the first pharyngeal arch (PA1). The abnormal traits display variable quantitative expression and are often unilateral. Mandibular skeletal defects are invariably accompanied by hypoplasia or agenesis of masticatory muscles, but no explanation has been proposed for this association. Indeed, during embryonic development, CNCCs give only rise to skeletal components of the head while muscles derive from cephalic myogenic mesodermal cells (CMMCs), Recent studies on animal models have shown that communication between CNCCs and CMMCs is essential for the development of masticatory muscles: genetic lesions affecting only CNCCs can prevent musculariza-tion of the jaws. To evaluate the involvement of CNCC/CMMC Interactions in human craniofacial development, we performed a quantitative analysis of masticatory muscle and mandibular bone volumes on craniofacial CT-scans from 8 children, ages 3 months to 16 years, affected by hemifacial microsomia. We found that: (I) in seven patients the masseter muscle is absent in the affected side; (2) the absence of masseter is correlated neither with the age of the patients nor with the volume and shape of the affected ramus; and (3) in all cases thepterygoid and the temporal muscles are either reduced or absent. Our findings suggest that an early developmental event is the origin of the muscular defects in these patients. We propose that the hypoplasia or agenesis of masticatory muscles derives from a defect in the CNCCs/CMMCs communication during early embryonic development.
机译:第一弓综合症对应于影响第一咽弓(PA1)的颅神经rest细胞(CNCC)衍生物的广泛的人类面部先天畸形。异常特征表现出可变的定量表达并且通常是单方面的。下颌骨缺损总是伴有乳腺增生或咀嚼肌发育不全,但尚未对此原因提出任何解释。的确,在胚胎发育过程中,CNCC仅产生头部的骨骼成分,而肌肉则来自头肌源性中胚层细胞(CMMC)。最近对动物模型的研究表明,CNCC与CMMC之间的交流对于咀嚼性肌的发育至关重要:仅影响CNCC的遗传损伤可以防止颌骨肌肉化。为了评估CNCC / CMMC相互作用在人类颅面发育中的参与,我们对3例年龄在3个月至16岁,受半面部微粒体影响的儿童进行了颅面CT扫描,对咀嚼肌和下颌骨量进行了定量分析。我们发现:(I)在7例患者中,患侧不存在咬肌。 (2)咬肌的缺失与患者的年龄,患部支气管的体积和形状均无关。 (3)在所有情况下,翼状and肌和颞肌均减少或缺失。我们的发现表明,早期发育事件是这些患者肌肉缺陷的根源。我们建议咀嚼肌发育不全或发育不全是由于早期胚胎发育过程中CNCC / CMMCs通讯的缺陷引起的。

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