School of chemical engineering, Sichuan University, Chengdu, Sichuan 610065, PR China.
College of Physical Science and Technology, Sichuan University, Chengdu, Sichuan 610065, PR China.
Biomater Adv. 2022 Feb;133:112627. doi: 10.1016/j.msec.2021.112627. Epub 2021 Dec 27.
Poly-amino acid (PAA) is a promising biomaterial in biomedical engineering due to its similar amide bond structure to collagen and excellent biocompatibility, but the lack of osteogenic activity and inferior mechanical strength limit its long-term application in orthopedics. In this study, a poly-amino acid/poly (p-benzamide) (PAA-PBA) copolymer with high mechanical strength was designed and fabricated by the method of solution polymerization. The chain structures, thermal properties and mechanical properties of these polymers were evaluated and results showed that PBA greatly promoted the mechanical properties of PAA, and the copolymer performed the maximum mechanical strengths with compressive strength, bending strength and tensile strength of 123 MPa, 107 MPa and, 95 MPa, respectively. To increase the bioactivity of surface, a bioactive coating that consists of poly-(dopamine) (PDA) nanolayers and tripeptide Arginine-Glycine-Aspartic acid (RGD) on sulfonated PAA-PBA copolymer was created. A porous structure appeared on the surface after modification, the surface roughness and hydrophilicity of copolymer has been improved obviously after introducing PDA and RGD peptide coating. The in vitro bioactivity evaluation demonstrated that the RGD-functionalized sample showed a significantly improved ability to promote bone apatite mineralization, cell adhesion, proliferation and osteogenic differentiation. In a word, such a strategy of material synthesis and surface modification method shows a great potential for broadening the use of PAA in the application of load-bearing bone substitute biomaterials.
聚氨基酸(PAA)由于其酰胺键结构与胶原蛋白相似,具有优异的生物相容性,在生物医学工程中是一种很有前途的生物材料,但缺乏成骨活性和较差的机械强度限制了其在骨科的长期应用。在这项研究中,通过溶液聚合的方法设计并制备了一种具有高机械强度的聚氨基酸/聚(对苯甲酰胺)(PAA-PBA)共聚物。评估了这些聚合物的链结构、热性能和机械性能,结果表明 PBA 极大地提高了 PAA 的机械性能,共聚物具有最大的机械强度,抗压强度、抗弯强度和拉伸强度分别为 123MPa、107MPa 和 95MPa。为了提高表面的生物活性,在磺化 PAA-PBA 共聚物上制备了由聚多巴胺(PDA)纳米层和三肽精氨酸-甘氨酸-天冬氨酸(RGD)组成的生物活性涂层。修饰后表面出现多孔结构,引入 PDA 和 RGD 肽涂层后,共聚物的表面粗糙度和亲水性明显提高。体外生物活性评价表明,RGD 功能化样品表现出明显提高的促进骨磷灰石矿化、细胞黏附、增殖和成骨分化的能力。总之,这种材料合成策略和表面改性方法为拓宽 PAA 在承重骨替代生物材料中的应用提供了很大的潜力。