Sasano Y, Ohtani E, Narita K, Kagayama M, Murata M, Saito T, Shigenobu K, Takita H, Mizuno M, Kuboki Y
Second Department of Oral Anatomy, School of Dentistry, Tohoku University, Sendai, Japan.
Anat Rec. 1993 Jun;236(2):373-80. doi: 10.1002/ar.1092360211.
Bone formation in vivo occurs via two major processes, one of which depends on pre-existing cartilage, and the other does not. Bone morphogenetic proteins (BMPs) have been suggested to induce cartilage formation from non-skeletogenic mesenchymal cell population, which results in osteogenesis through the endochondral sequence. In the present study we examined if BMPs could cause direct bone formation independent of pre-existing cartilage using bovine fibrous collagen membrane (FCM) as a carrier for BMPs. Bovine metatarsal bone was extracted in 4 M guanidine HC1 and BMPs were partially purified through the hydroxyapatite chromatography and the Heparin-Sepharose CL6B chromatography. The carrier was loaded with BMPs and then implanted in Wistar rats subcutaneously. The implants were fixed together with surrounding tissue every week after implantation and processed for von Kossa stain, immunohistochemistry, and electron microscopy. The phenotypes of bone and cartilage were identified histologically and immunohistochemically using antibodies against type I and type II collagen. Cartilage and bone were independently induced by 2 weeks. The bone formed directly on the collagen substrate of FCM without pre-existing cartilage. Calcification occurred in the carrier as well as the cartilage and bone matrix. The present study suggests that the BMPs induce osteogenesis in vivo independent of the endochondral sequence.
体内骨形成通过两个主要过程发生,其中一个依赖于预先存在的软骨,另一个则不依赖。骨形态发生蛋白(BMPs)已被认为可诱导非成骨间充质细胞群形成软骨,进而通过软骨内序列导致成骨。在本研究中,我们使用牛纤维胶原膜(FCM)作为BMPs的载体,研究BMPs是否能独立于预先存在的软骨直接诱导骨形成。将牛跖骨在4M盐酸胍中提取,BMPs通过羟基磷灰石层析和肝素-琼脂糖CL6B层析进行部分纯化。将载体加载BMPs后皮下植入Wistar大鼠体内。植入后每周将植入物与周围组织一起固定,并进行冯·科萨染色、免疫组织化学和电子显微镜检查。使用抗I型和II型胶原抗体通过组织学和免疫组织化学鉴定骨和软骨的表型。2周时独立诱导出软骨和骨。骨直接在FCM的胶原基质上形成,无需预先存在的软骨。钙化发生在载体以及软骨和骨基质中。本研究表明,BMPs在体内独立于软骨内序列诱导成骨。