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Chemically and physically cross-linked polyvinyl alcohol-borosilicate gel hybrid scaffolds for bone regeneration

机译:化学和物理交联的聚乙烯醇 - 硼硅酸盐凝胶杂交支架用于骨再生

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摘要

The composite scaffolds of bioactive glasses and polymers are often used in bone regeneration which could improve the stiffness, compressive strength and bioactivity of polymers while maintaining the osteoconductivity and osteoinductivity of bioactive glasses. But due to complicated situations and limitations of compositing process, the prepared composite materials have low uniformity and obvious phase separation, leading to problems such as poor mechanical properties and inferior new bone formation capacity. In this paper, a modified sol-gel processing technique was used to realize the homogeneous inorganic-organic composites. After hydrolysis of the metal alkoxide, the sol was mixed with the aqueous solution of polyvinyl alcohol (PVA), and through gelation and chemical reaction, the mixture was solidified into the inorganic-organic composite hydrogel. The composites showed as a uniform single phase with interpenetrating networks of PVA gel and borosilicate gel (BG) that chemically and physically interacted at the scale of molecular or nanometer, therefore PVA-BG hybrids were obtained. When immersed in phosphate-buffered saline, the PVA-BG hybrid-derived scaffolds released beneficial ions into the medium and converted to hydroxyapatite. The scaffolds were not toxic to the rat bone marrow-derived mesenchymal stem cells (rBMSCs), and supported rBMSCs proliferation. Furthermore, the alkaline phosphatase activity of the rBMSCs and the expression levels of osteogenic-related genes (alkaline phosphatase, osteocalcin and runt-related transcription factor 2) increased significantly with increasing amount of BG in the hybrid scaffolds. Finally, the bone defect repair results of critical-sized femoral condyle defect rat model demonstrated that PVA-BG hybrid scaffolds could enhance bone regeneration compared with PVA scaffolds. The results suggested that PVA-BG hybrid scaffolds may be a promising biomaterial for bone regeneration.
机译:生物活性玻璃和聚合物的复合支架通常用于骨再生,这可以改善聚合物的刚度,抗压强度和生物活性,同时保持生物活性玻璃的骨导电性和骨诱导性。但由于复杂的合成过程的情况和局限性,所制备的复合材料具有低均匀性和明显的相分离,导致机械性能差和较差的新骨形成能力等问题。本文使用改性溶胶 - 凝胶加工技术来实现均匀的无机有机复合材料。在金属醇盐水解后,将溶胶与聚乙烯醇(PVA)的水溶液混合,并通过凝胶化和化学反应,将混合物固化为无机 - 有机复合水凝胶。复合材料显示为具有在分子或纳米的等级化学和物理相互作用的PVA凝胶和硼硅酸盐凝胶(BG)的互穿的单相,因此获得PVA-BG杂种。当浸入磷酸盐缓冲的盐水中时,PVA-BG杂化衍生的支架释放到培养基中并转化为羟基磷灰石。支架对大鼠骨髓衍生的间充质干细胞(RBMSCs)无毒,并负载支持的RBMSCs增殖。此外,RBMSCs的碱性磷酸酶活性和骨质发生相关基因的表达水平(碱性磷酸酶,骨钙酶和相关转录因子2)随着杂交支架中的量的增加而显着增加。最后,临界尺寸股骨髁缺损大鼠模型的骨缺损修复结果证明,与PVA支架相比,PVA-BG杂交支架可以增强骨再生。结果表明PVA-BG杂交支架可以是骨再生的有希望的生物材料。

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