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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Evaluation of biological activity of bone morphogenetic proteins on exposure to commonly used electrospinning solvents
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Evaluation of biological activity of bone morphogenetic proteins on exposure to commonly used electrospinning solvents

机译:评估骨形态发生蛋白在常用静电纺丝溶剂中的生物活性

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Bone tissue engineering is one of the emerging strategies for developing functionally viable bone substitutes. The recent trend in bone tissue engineering is to combine the benefits of a three-dimensional nanofibrous scaffold with biologically active molecules and responsive stem cells. Electrospinning is the most versatile of the scaffold fabrication strategies and may involve the use of an organic solvent at one stage or another. In spite of all distinct advantages of electrospinning, valid concerns about potentially denaturing interactions between the organic solvent and the biomolecules exist. Efforts are ongoing to incorporate osteoinductive molecules, such as bone morphogenetic proteins (BMPs), during the electrospinning process. The challenge lies in ensuring that the biological activity of these incorporated molecules survives the process. This study was specifically designed to investigate the effects of exposure to commonly used organic solvents on heterodimeric BMP-2/7 using slot-blot assay quantified by infrared imaging and on embryonic myoblasts stably transfected with BMP-specific response element linked to a luciferase reporter - C2C12BRA. Overall, the biological activity of these molecules significantly decreased when exposed to organic solvents but can be restored to their original values by increasing the polarity of the solvent. It was found that an aqueous buffer can effectively overcome the deleterious effects of organic solvents on BMPs, thus generating osteoinductive bone scaffolds.
机译:骨组织工程学是开发功能可行的骨替代物的新兴策略之一。骨组织工程学的最新趋势是将三维纳米纤维支架的优势与生物活性分子和响应性干细胞相结合。电纺丝是支架制造策略中最通用的,并且可能涉及在一个阶段或另一个阶段使用有机溶剂。尽管静电纺丝具有所有明显的优势,但仍然存在着对有机溶剂和生物分子之间可能发生相互作用的潜在担忧。正在努力在电纺丝过程中掺入骨诱导分子,例如骨形态发生蛋白(BMP)。挑战在于确保这些掺入分子的生物学活性在整个过程中得以生存。这项研究是专门设计用于研究通过红外成像定量的狭缝印迹分析以及暴露于与萤光素酶报道分子连接的BMP特异性反应元件稳定转染的胚胎成肌细胞对常用有机溶剂暴露于异二聚体BMP-2 / 7的影响- C2C12BRA。总体而言,这些分子的生物活性在暴露于有机溶剂时会显着降低,但可以通过增加溶剂的极性恢复到其原始值。发现水性缓冲液可以有效克服有机溶剂对BMP的有害作用,从而产生骨诱导性骨支架。

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