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The regulation and interplay between the Notch and BMP pathways in the periosteum and its implications in bone tissue engineering

机译:骨膜缺口和BMP途径与BMP途径的调节及其在骨组织工程中的影响

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Introduction: The Notch and BMP pathway are highly conserved cell signalling pathway that plays a key role in cell proliferation, fate and differentiation. In the following study we report on the interaction and cross-talk between these pathways in the periosteum. The periosteum is a specialised connective tissue that lines bone and contains an osteoprogenitor niche that plays a key role in bone maintenance and repair. The study explores how the Notch, Wnt and BMP pathways regulate this niche in normal bone and in a BMP-2 based tissue engineered construct in a large segmental sheep defect model. Materials and Methods: Four sample groups were utilised in the study; PCL scaffold only (n=6), PCL scaffold with alginate hydrogel (n=6), PCL scaffold with alginate hydrogel loaded with 2mg of rhBMP-2 (n=6) and normal contralateral bone (n = 5). Tissue engineered constructs were evaluated in a large segmenta! defect model using Merino sheep (6 years) as previously described[3]. In brief, a 3cm defect was created in mid diaphyseal of the tibia and a custom PCL tubular scaffold was placed around the defect and filled with alginate, alginate with BMP-2 or left empty. The defects were fixed then with a broad dynamic compression plate. Animals were allowed unrestricted weight bearing after the surgery and sacrificed after 6 months. The samples were evaluated using immunohistochemistry, proximity ligand assay and western blot analysis. Results and Discussion: In normal control bone a distinct Notch-1 was expressed throughout the periosteum, whilst the Notch ligand Jagged-1 was exclusively expressed in cells directly adjacent to the bone. The downstream effector protein of the Notch pathway Hey-1 was highly expressed at the interface where Notch-1 and Jag-1 intersect and overlap indicating potential activation of the notch pathway via Notch-1/Jagged-1 binding. Expression of Notch-1 was upregulated throughout the periosteum of the tissue engineered constructs in all conditions, whilst jagged-1 expression was mainly localised in the distal and proximal ends of the constructs near the host bone and was only expressed in the mid-section of BMP-2 treated group. Notch-1 expression in the tissue engineered construct was co-localised with periostin, an ECM protein exclusively expressed in periostin that has been shown to stabilise precursor Notch-1 and may facilitate its expression in the newly formed bone. Whilst the factor that influence jagged-1 expression remain unclear, the data suggests that its expression in periosteum is influenced by BMP-2. BMP2/4 was constitutively expressed in the periosteum of normal bone and upregulated in the periosteum of all conditions in tissue engineered constructs, as was the BMP antagonist, Noggin. Phosphorylation of SMAD 1/5/8 and the downstream effector RUNX2 indicates that the co-localisation of Noggin does not inhibit BMP receptor signalling. Mature osteoblast markers ALP and osteocalcin was localised only in the cells directly lining the bone in the periosteum indicating a potential cell hierachy within the periosteum.
机译:简介:凹口和BMP途径是高度保守的细胞信号通路,其在细胞增殖,命运和分化中起着关键作用。在下面的研究中,我们报告近侧孔中这些途径之间的相互作用和交叉谈话。骨膜是一种专门的结缔组织,其线骨并含有骨质促蛋白酶在骨骼维护和修复中起关键作用。该研究探讨了凹口,WNT和BMP途径如何调节正常骨骼中的该乳头物,并在大型羊缺陷模型中的BMP-2基于BMP-2的组织工程构建体调节。材料和方法:研究中使用了四组样品基团; PCL支架仅(n = 6),PCL支架具有藻酸盐水凝胶(n = 6),PCL支架,具有藻酸盐水凝胶,载有2mg的RHBMP-2(n = 6)和正常对侧骨(n = 5)。在大段中评估组织工程化构建体!使用Merino Sheep(6年)如前所述的缺陷模型[3]。简而言之,在胫骨中,在胫骨中产生3cm缺陷,并将定制的PCL管状支架围绕缺陷置于缺陷并用藻酸盐填充,用BMP-2藻酸盐或留空。用宽的动态压缩板固定缺陷。在手术后允许动物不受限制的体重轴承,并在6个月后处死。使用免疫组织化学,接近配体测定和Western印迹分析评估样品。结果与讨论:在正常对照骨中,在整个骨膜中表达不同的Notch-1,而凹口配体锯齿状-1仅在直接与骨相邻的细胞中表达。在Notch-1和Jag-1的界面处高度表达凹口途径Hey-1的下游效应蛋白在Notch-1和Jag-1的相交和重叠通过Notch-1 / jagged-1结合表示凹口途径的潜在激活。在所有条件下,在组织工程化构建体的整个骨膜内上调Notch-1的表达,而锯齿状-1表达主要是局部局部的,并且仅在宿主骨附近的构建体的远端和近端局部。 BMP-2治疗组。组织工程化构建体中的Notch-1表达与Periostin共局部地局部地,一种ECM蛋白,其专用于肝蛋白中已被证明稳定前体Notch-1,并且可以促进其在新形成的骨中的表达。虽然影响锯齿状-1表达的因素仍然不清楚,但数据表明其在骨膜中的表达受BMP-2的影响。 BMP2 / 4在正常骨周围体组成型表达,并在组织工程构建体中的所有条件的骨外上调,如BMP拮抗剂,Noggin。 Smad 1/5/8和下游效应器Runx2的磷酸化表明Noggin的共定位不抑制BMP受体信号传导。成熟的成骨细胞标记物Alp和骨钙素仅在直接衬砌的细胞中定位,所述细胞在骨膜中骨骼中的骨骼中表明骨膜内的潜在细胞比先生。

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