首页> 美国卫生研究院文献>Tissue Engineering. Part A >Enhancement of the Regenerative Potential of Anorganic Bovine Bone Graft Utilizing a Polyglutamate-Modified BMP2 Peptide with Improved Binding to Calcium-Containing Materials
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Enhancement of the Regenerative Potential of Anorganic Bovine Bone Graft Utilizing a Polyglutamate-Modified BMP2 Peptide with Improved Binding to Calcium-Containing Materials

机译:利用聚谷氨酸修饰的BMP2肽与含钙材料的结合增强无机牛骨移植物的再生潜能

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摘要

Autogenous bone is the gold standard material for bone grafting in craniofacial and orthopedic regenerative medicine. However, due to complications associated with harvesting donor bone, clinicians often use commercial graft materials that may lose their osteoinductivity due to processing. This study was aimed to functionalize one of these materials, anorganic bovine bone (ABB), with osteoinductive peptides to enhance regenerative capacity. Two peptides known to induce osteoblastic differentiation of mesenchymal stem cells were evaluated: (1) DGEA, an amino acid motif within collagen I and (2) a biomimetic peptide derived from bone morphogenic protein 2 (BMP2pep). To achieve directed coupling of the peptides to the graft surface, the peptides were engineered with a heptaglutamate domain (E7), which confers specific binding to calcium moieties within bone mineral. Peptides with the E7 domain exhibited greater anchoring to ABB than unmodified peptides, and E7 peptides were retained on ABB for at least 8 weeks in vivo. To assess the osteoinductive potential of the peptide-conjugated ABB, ectopic bone formation was evaluated utilizing a rat subcutaneous pouch model. ABB conjugated with full-length recombinant BMP2 (rBMP2) was also implanted as a model for current clinical treatments utilizing rBMP2 passively adsorbed to carriers. These studies showed that E7BMP2pep/ABB samples induced more new bone formation than all other peptides, and an equivalent amount of new bone as compared with rBMP2/ABB. A mandibular defect model was also used to examine intrabony healing of peptide-conjugated ABB. Bone healing was monitored at varying time points by positron emission tomography imaging with 18F-NaF, and it was found that the E7BMP2pep/ABB group had greater bone metabolic activity than all other groups, including rBMP2/ABB. Importantly, animals implanted with rBMP2/ABB exhibited complications, including inflammation and formation of cataract-like lesions in the eye, whereas no side effects were observed with E7BMP2pep/ABB. Furthermore, histological analysis of the tissues revealed that grafts with rBMP2, but not E7BMP2pep, induced formation of adipose tissue in the defect area. Collectively, these results suggest that E7-modified BMP2-mimetic peptides may enhance the regenerative potential of commercial graft materials without the deleterious effects or high costs associated with rBMP2 treatments.
机译:自体骨是颅面和整形外科再生医学中用于植骨的金标准材料。但是,由于与收获供体骨相关的并发症,临床医生经常使用商业性移植材料,这些材料可能会因加工而失去其骨诱导能力。这项研究的目的是用骨诱导肽功能化这些材料之一,即无机牛骨(ABB),以增强再生能力。评价了两种已知诱导间充质干细胞成骨细胞分化的肽:(1)DGEA(胶原蛋白I中的氨基酸基序)和(2)源自骨形态发生蛋白2(BMP2pep)的仿生肽。为了实现肽与移植物表面的直接偶联,对肽进行了七谷氨酸域(E7)改造,该结构赋予了与矿物质中钙部分的特异性结合。具有E7​​结构域的肽比未修饰的肽表现出更大的锚定在ABB上,并且E7肽在体内至少保留8周。为了评估肽缀合的ABB的骨诱导潜力,使用大鼠皮下囊模型评估了异位骨形成。还植入了与全长重组BMP2(rBMP2)共轭的ABB,作为利用被动吸附到载体的rBMP2进行当前临床治疗的模型。这些研究表明,与rBMP2 / ABB相比,E7BMP2pep / ABB样品比所有其他肽诱导更多的新骨形成,并诱导了同等数量的新骨。下颌缺损模型也用于检查肽结合的ABB的骨内愈合。用 18 F-NaF通过正电子发射断层显像在不同时间点监测骨愈合,发现E7BMP2pep / ABB组的骨代谢活性高于所有其他组,包括rBMP2 / ABB 。重要的是,植入rBMP2 / ABB的动物表现出并发症,包括炎症和眼内白内障样病变的形成,而使用E7BMP2pep / ABB则未观察到副作用。此外,组织的组织学分析显示,带有rBMP2而非E7BMP2pep的移植物诱导了缺损区域脂肪组织的形成。总的来说,这些结果表明,E7修饰的BMP2模拟肽可以增强商业移植材料的再生潜力,而不会带来与rBMP2治疗相关的有害影响或高成本。

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