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源自海洋资源的光交联鱼胶原蛋白肽/几丁质纳米纤维复合水凝胶:制备、力学性能及体外研究

Photocrosslinked Fish Collagen Peptide/Chitin Nanofiber Composite Hydrogels from Marine Resources: Preparation, Mechanical Properties, and an In Vitro Study.

作者信息

Yano Shinya, Yamaguchi Kei, Shibata Mitsuhiro, Ifuku Shinsuke, Teramoto Naozumi

机构信息

Department of Applied Chemistry, Faculty of Engineering, Chiba Institute of Technology, 2-17-1 Tsudanuma, Narashino, Chiba 275-0016, Japan.

Department of Chemistry and Biotechnology, Graduate School of Engineering, Tottori University, 4-101 Koyama-cho Minami, Tottori, Tottori 680-8550, Japan.

出版信息

Polymers (Basel). 2023 Jan 29;15(3):682. doi: 10.3390/polym15030682.

Abstract

Fish collagen peptide (FCP) is a water-soluble polymer with easy accessibility, bioactivity, and reactivity due to its solubility. The gelation of FCP can be carried out by chemical crosslinking, but the mechanical strength of FCP hydrogel is very low because of its intrinsically low molecular weight. Therefore, the mechanical properties of FCP gel should be improved for its wider application as a biomaterial. In this study, we investigated the mechanical properties of M-FCP gel in the context of understanding the influence of chitin nanofibers (CHNFs) on FCP hydrogels. FCP with a number average molecular weight () of ca. 5000 was reacted with glycidyl methacrylate (GMA) and used for the preparation of photocrosslinked hydrogels. Subsequently, composite hydrogels of methacrylate-modified FCP (M-FCP) and CHNF were prepared by the photoirradiation of a solution of M-FCP containing dispersed CHNF at an intensity of ~60 mW/cm for 450 s in the presence of 2-hydroxy-1-[4-(hydroxyethoxy)phenyl]-2-methyl-1-propanone (Irgacure 2959) as a photoinitiator. Compression and tensile tests of the FCP hydrogels were carried out using a universal tester. The compression and tensile strength of the hydrogel increased 10-fold and 4-fold, respectively, by the addition of 0.6% CHNF (20% M-FCP), and Young's modulus increased 2.5-fold (20% M-FCP). The highest compression strength of the M-FCP/CHNF hydrogel was ~300 kPa. Cell proliferation tests using fibroblast cells revealed that the hydrogel with CHNF showed good cell compatibility. The cells showed good adhesion on the M-FCP gel with CHNF, and the growth of fibroblast cells after 7 days was higher on the M-FCP/CHNF gel than on the M-FCP gel without CHNF. In conclusion, we found that CHNF improved the mechanical properties as well as the fibroblast cell compatibility, indicating that M-FCP hydrogels reinforced with CHNF are useful as scaffolds and wound-dressing materials.

摘要

鱼胶原蛋白肽(FCP)是一种水溶性聚合物,因其溶解性而易于获取、具有生物活性和反应活性。FCP的凝胶化可以通过化学交联来实现,但由于其固有低分子量,FCP水凝胶的机械强度非常低。因此,为了更广泛地用作生物材料,应改善FCP凝胶的机械性能。在本研究中,我们在了解几丁质纳米纤维(CHNFs)对FCP水凝胶影响的背景下,研究了M-FCP凝胶的机械性能。数均分子量()约为5000的FCP与甲基丙烯酸缩水甘油酯(GMA)反应,并用于制备光交联水凝胶。随后,在作为光引发剂的2-羟基-1-[4-(羟基乙氧基)苯基]-2-甲基-1-丙酮(Irgacure 2959)存在下,通过以~60 mW/cm的强度对含有分散CHNF的M-FCP溶液进行450 s的光照射,制备了甲基丙烯酸酯改性FCP(M-FCP)和CHNF的复合水凝胶。使用万能试验机对FCP水凝胶进行压缩和拉伸试验。通过添加0.6%的CHNF(20%的M-FCP),水凝胶的压缩强度和拉伸强度分别提高了10倍和4倍,杨氏模量提高了2.5倍(20%的M-FCP)。M-FCP/CHNF水凝胶的最高压缩强度约为300 kPa。使用成纤维细胞进行的细胞增殖试验表明,含有CHNF的水凝胶具有良好的细胞相容性。细胞在含有CHNF的M-FCP凝胶上表现出良好的粘附性,并且在M-FCP/CHNF凝胶上培养7天后成纤维细胞的生长比在不含CHNF的M-FCP凝胶上更高。总之,我们发现CHNF改善了机械性能以及成纤维细胞相容性,表明用CHNF增强的M-FCP水凝胶可用作支架和伤口敷料材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0d7/9920125/1cdae14f7298/polymers-15-00682-sch001.jpg

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