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Biodegradable polymer promotes osteogenic differentiation in immortalized and primary osteoblast-like cells

机译:可生物降解的聚合物促进永生化和原发性骨细胞样细胞中的成骨分化

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Biodegradable polymers have been broadly used as agents that can complex with and deliver osteoinductive agents, but osteoinductivity of the polymers themselves has been rarely studied. Here we report the osteoinductivity of poly(4-hydroxy-L-proline ester) (PHPE), a biodegradable cationic polymer with cell penetrating properties. Under physiological conditions, PHPE degrades into trans- 4-hydroxy-L-proline (trans-Hyp), a non-coded amino acid with essential functions in collagen fibril formation and fibril stability. Treatment of SaOS-2 osteoblast-like cells and hFOB 1.19 primary osteoblast cells with PHPE promoted earlier collagen nodule formation and mineralization of the extracellular matrix compared to untreated cells, even when mineralization activators were absent in the growth medium. Our results indicate that PHPE is a potential osteoinductive agent in vitro that can favor bone regeneration. Moreover, this osteoinductive property could be partly attributed to the degradation product trans-Hyp, which could recapitulate some, but not all of the osteogenic activity. The primary findings of this study can be summarized as follows: treatment of cells with PHPE led to (1) the induction of COL1A1 expression, collagen synthesis and secretion in osteoblast-like cells, (2) mineralization of theECMin both SaOS-2 and hFOB 1.19 primary osteoblasts, and (3) induction of BMP2 gene and protein expression in osteoblast-like cells, which can promote mineralization of the ECMand regeneration of the bone tissue. Our results suggest that PHPE is a non-cytotoxic polymer and can be potentially used to overcome collagenopathies such as osteogenesis imperfecta.
机译:可生物降解的聚合物已被广泛地用作可复杂化合物和递送骨诱导剂的试剂,但是聚合物本身的骨诱导性很少研究。在这里,我们报告了聚(4-羟基-L-脯氨酸酯)(PHPE)的骨诱导性,一种具有细胞穿透性的可生物降解的阳离子聚合物。在生理条件下,PHPE降解到反式 - 4-羟基-1-脯氨酸(TRANS-HYP)中,一种非编码氨基酸,具有胶原纤维形成和原纤维稳定性的基本功能。与未处理的细胞相比,将索塞-2甲状腺细胞样细胞和HFOB 1.19初级成骨细胞和HFOB 1.19初级成骨细胞的形成和细胞外基质的矿化相比,即使在生长培养基中不存在矿化活化剂。我们的结果表明,PHPE是体外骨诱导剂,可以有利于骨再生。此外,这种骨诱导性能可以部分地归因于降解产物反式溶液,其可以重新承载一些,但不是所有的骨质发生活性。本研究的主要发现如下:用PHPE治疗细胞导致(1)诱导COL1A1表达,胶原蛋白合成和分泌物中的骨质细胞样细胞,(2)塞米蛋白的矿化,均匀的SAOS-2和HFOB的矿化1.19初级成骨细胞,(3)诱导BMP2基因和蛋白质表达在成骨细胞样细胞中,这可以促进骨组织的ECMAND再生的矿化。我们的研究结果表明,PHPE是非细胞毒性聚合物,可能潜在地用于克服胶原蛋白,例如骨肉蛋白酶蛋白化蛋白酶蛋白。

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