骨形成蛋白成骨素对成年狒狒骨再生的启动作用

U. Ripamonti , S. Ma , N.S. Cunningham , L. Yeates , A.H. Reddi
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引用次数: 104

摘要

成骨素和相关的骨形态发生蛋白通过一系列事件诱导软骨内骨分化,包括软骨的形成、软骨的肥大和钙化、血管的侵袭、成骨细胞的分化和骨的形成。这些事件已经在啮齿动物的出生后骨骼发育模型中进行了研究。有关骨生成素在灵长类动物中形态发生潜力的信息是在人类中潜在临床应用的先决条件。本文以19只chacma狒狒(Papio ursinus)为研究对象,研究了异基因骨原素在灵长类动物骨骼外和骨骼部位的作用。从脱矿后的狒狒骨基质中分离得到骨原素,采用肝素- sepharose、羟基磷灰石和Sephacryl S-200层析纯化。分子质量在26-42 kDa范围内的蛋白组分诱导大鼠皮下软骨和骨分化。制备的十二烷基硫酸钠(SDS)聚丙烯酰胺凝胶经电内源性洗脱得到最终纯化至均匀性,SDS-聚丙烯酰胺凝胶上出现单条带,表观分子质量为30-34 kDa,在大鼠体内具有生物活性。在灵长类动物中,成骨素的成骨潜能首先在狒狒的肌肉内部位进行了测试,并发现其是活跃的。研究了成年雄性狒狒颅骨缺损的骨再生潜力。狒狒骨原素诱导颅骨伤口完全再生。这些在成年灵长类动物中的发现证实了成骨素在启动和促进成骨过程中的主要作用;并暗示基于细胞外基质-细胞相互作用的细胞生物学的潜在治疗应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Initiation of Bone Regeneration in Adult Baboons by Osteogenin, a Bone Morphogenetic Protein

Osteogenin, and related bone morphogenetic proteins, induce endochondral bone differentiation through a cascade of events which include formation of cartilage, hypertrophy and calcification of the cartilage, vascular invasion, differentiation of osteoblasts, and formation of bone. These events have been studied in a postnatal model of bone development in rodents. Information concerning the morphogenetic potential of osteogenin in primates is a prerequisite for potential clinical application in man. The efficacy of allogeneic osteogenin in primates was investigated in both extraskeletal and skeletal sites in 19-Chacma baboons (Papio ursinus). Osteogenin was isolated from demineralized baboon bone matrix and purified by chromatography on heparin-Sepharose, hydroxyapatite, and Sephacryl S-200. Protein fractions with a molecular mass range of 26-42 kDa induced cartilage and bone differentiation in the subcutaneous space of rats. Final purification to homogeneity was obtained by electroendosmotic elution from a preparative sodium dodecyl sulphate (SDS) polyacrylamide gel, resulting in a single band on a SDS-polyacrylamide gel with an apparent molecular mass of 30-34 kDa, with biological activity in rats. The osteoinductive potential of osteogenin in primates was tested first in intramuscular sites in baboons and found to be active. The bone regeneration potential was investigated in nonhealing calvarial defects surgically prepared in adult male baboons. Baboon osteogenin induced complete regeneration of the cranial wound. These findings in adult primates establish a primary role for osteogenin in initiation and promotion of osteogenesis; and imply a potential therapeutic application based on cell biology of extracellular matrix-cell interactions.

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