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体外肌肉的骨基质定向软骨生成

Bone matrix-directed chondrogenesis of muscle in vitro.

作者信息

Nathanson M A

出版信息

Clin Orthop Relat Res. 1985 Nov(200):142-58.

PMID:3905106
Abstract

Bone matrix is the largely collagenous residue of demineralized bone. Experimental data demonstrate that a substance, which is acid-stable during demineralization, occurs as a part of bone matrix, and that it is capable of stimulating the redifferentiation of skeletal muscle into cartilage. Reproducibility of redifferentiation is high and all cells derived from embryonic mesoderm appear competent to yield cartilage. This effect is highly significant to the developmental biology of musculoskeletal tissues, as muscle and cartilage arise from a similar embryonic origin. With regard to the embryonic limb as a model system, it appears that both muscle and cartilage progenitor cells do not have rigidly-defined developmental programs, and that this is a result of their origin from a common pool of embryonic mesoderm. This pool originates as embryonic mesenchyme long before any evidence of limb development can be detected. It is proposed that the active component of bone matrix, termed "bone morphogenetic protein (BMP)," acts upon a tissue whose developmental program is not stabilized, or has been experimentally destabilized (by injury), to augment and sustain syntheses of cartilage extracellular matrix. The use of bone matrix, and active substances derived from it, suggests that differentiation is not irreversible. Hard tissue growth and repair may occur via recruitment of competent responding cells from a variety of nonchondrogenic sources, provided that the extracellular milieu (i.e., presence of BMP) is supportive.

摘要

骨基质是脱矿质骨的主要胶原残留物。实验数据表明,一种在脱矿质过程中耐酸的物质作为骨基质的一部分存在,并且它能够刺激骨骼肌再分化为软骨。再分化的可重复性很高,所有源自胚胎中胚层的细胞似乎都有能力产生软骨。这种效应对于肌肉骨骼组织的发育生物学具有高度重要性,因为肌肉和软骨起源于相似的胚胎来源。以胚胎肢体作为模型系统来看,似乎肌肉和软骨祖细胞都没有严格定义的发育程序,这是它们起源于共同的胚胎中胚层池的结果。这个池早在能够检测到任何肢体发育迹象之前就以胚胎间充质的形式存在。有人提出,骨基质的活性成分,称为“骨形态发生蛋白(BMP)”,作用于一个发育程序尚未稳定或已通过实验使其不稳定(因损伤)的组织,以增强和维持软骨细胞外基质的合成。骨基质及其衍生的活性物质的应用表明分化并非不可逆转。只要细胞外环境(即BMP的存在)有利,硬组织的生长和修复可能通过从各种非软骨形成来源募集有能力做出反应的细胞来实现。

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