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用于软组织工程的抗菌且 pH 敏感的甲基丙烯酰基聚-L-精氨酸/聚(β-氨基酯)聚合物。

Antibacterial and pH-sensitive methacrylate poly-L-Arginine/poly (β-amino ester) polymer for soft tissue engineering.

机构信息

Department of Materials Engineering, Isfahan University of Technology, Isfahan, 84156-83111, Iran.

Applied Physiology Research Center, Isfahan, Iran.

出版信息

J Mater Sci Mater Med. 2023 Apr 10;34(4):16. doi: 10.1007/s10856-023-06720-8.

Abstract

During the last decade, pH-sensitive biomaterials containing antibacterial agents have grown exponentially in soft tissue engineering. The aim of this study is to synthesize a biodegradable pH sensitive and antibacterial hydrogel with adjustable mechanical and physical properties for soft tissue engineering. This biodegradable copolymer hydrogel was made of Poly-L-Arginine methacrylate (Poly-L-ArgMA) and different poly (β- amino ester) (PβAE) polymers. PβAE was prepared with four different diacrylate/diamine monomers including; 1.1:1 (PβAE1), 1.5:1 (PβAE1.5), 2:1 (PβAE2), and 3:1 (PβAE3), which was UV cross-linked using dimethoxy phenyl-acetophenone agent. These PβAE were then used for preparation of Poly-L-ArgMA/PβAE polymers and revealed a tunable swelling ratio, depending on the pH conditions. Noticeably, the swelling ratio increased by 1.5 times when the pH decreased from 7.4 to 5.6 in the Poly-L-ArgMA/PβAE1.5 sample. Also, the controllable degradation rate and different mechanical properties were obtained, depending on the PβAE monomer ratio. Noticeably, the tensile strength of the PβAE hydrogel increased from 0.10 ± 0.04 MPa to 2.42 ± 0.3 MPa, when the acrylate/diamine monomer molar ratio increased from 1.1:1 to 3:1. In addition, Poly-L-ArgMA/PβAE samples significantly improved L929 cell viability, attachment and proliferation. Poly-L-ArgMA also enhanced the antibacterial activities of PβAE against both Escherichia coli (5.1 times) and Staphylococcus aureus (2.7 times). In summary, the antibacterial and pH-sensitive Poly-L-ArgMA/PβAE1.5 with suitable mechanical, degradation and biological properties could be an appropriate candidate for soft tissue engineering, specifically wound healing applications.

摘要

在过去的十年中,含有抗菌剂的 pH 敏感生物材料在软组织工程中呈指数级增长。本研究旨在合成一种具有可调机械和物理性能的可生物降解的 pH 敏感和抗菌水凝胶,用于软组织工程。这种可生物降解的共聚物水凝胶由聚-L-精氨酸甲基丙烯酸酯(Poly-L-ArgMA)和不同的聚(β-氨基酯)(PβAE)聚合物组成。PβAE 是由四种不同的二丙烯酸酯/二胺单体制备而成,包括:1.1:1(PβAE1)、1.5:1(PβAE1.5)、2:1(PβAE2)和 3:1(PβAE3),然后使用二苯甲酮基二乙氧基苯乙酮试剂进行 UV 交联。然后,将这些 PβAE 用于制备 Poly-L-ArgMA/PβAE 聚合物,并显示出可调节的溶胀比,这取决于 pH 条件。值得注意的是,当 pH 从 7.4 降低到 5.6 时,Poly-L-ArgMA/PβAE1.5 样品的溶胀比增加了 1.5 倍。此外,还获得了可控的降解率和不同的机械性能,这取决于 PβAE 单体的比例。值得注意的是,当丙烯酰胺/二胺单体摩尔比从 1.1:1 增加到 3:1 时,PβAE 水凝胶的拉伸强度从 0.10±0.04 MPa 增加到 2.42±0.3 MPa。此外,Poly-L-ArgMA/PβAE 样品显著提高了 L929 细胞的存活率、黏附和增殖。Poly-L-ArgMA 还增强了 PβAE 对大肠杆菌(5.1 倍)和金黄色葡萄球菌(2.7 倍)的抗菌活性。总之,具有合适机械、降解和生物学性能的抗菌和 pH 敏感的 Poly-L-ArgMA/PβAE1.5 可以成为软组织工程,特别是伤口愈合应用的合适候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8680/10085925/e6ca2beb434b/10856_2023_6720_Fig1_HTML.jpg

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