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使用含有鸭掌来源胶原蛋白的聚乳酸-乙醇酸共聚物/羟基磷灰石支架促进骨再生。

Accelerating bone regeneration using poly(lactic-co-glycolic acid)/hydroxyapatite scaffolds containing duck feet-derived collagen.

作者信息

Song Jeong Eun, Lee Dae Hoon, Khang Gilson, Yoon Sun-Jung

机构信息

Department of Bionanotechnology and Bio-Convergence Technology, Jeonbuk National University, 567 Baekje-daero, Deokjin-gu, Jeonju-si, Jeollabuk-do 54896, Republic of Korea.

Department of Bionanotechnology and Bio-Convergence Technology, Jeonbuk National University, 567 Baekje-daero, Deokjin-gu, Jeonju-si, Jeollabuk-do 54896, Republic of Korea; Department of PolymerNano Science & Technology and Polymer Materials Fusion Research Center, Jeonbuk National University, 567 Baekje-daero, Deokjin-gu, Jeonju-si, Jeollabuk-do 54896, Republic of Korea.

出版信息

Int J Biol Macromol. 2023 Feb 28;229:486-495. doi: 10.1016/j.ijbiomac.2022.12.296. Epub 2022 Dec 29.

Abstract

Collagen, with low antigenicity and excellent cell adhesion, is a biomaterial mainly used for regenerating bone, cartilage, and skin, owing to its biocompatibility and biodegradability. Results from a previous study confirmed that a scaffold mixed with duck feet-derived collagen (DC) and Poly(lactic-co-glycolic acid) (PLGA) reduced inflammatory reaction and increased bone regeneration. To develop an optimal bone substitute we included hydroxyapatite (HAp), a key osteoconductive material, in a DC and PLGA mixture. We fabricated 0, 10, 20, 40, 60, and 80 wt% DC/PLGA/HAp scaffolds and studied their potential for bone tissue engineering. Characteristic analysis of the scaffold and seeding of rabbit bone marrow mesenchymal stem cells (rBMSCs) on the scaffold were conducted to investigate cell proliferation, osteogenic differentiation, and bone formation. We confirmed that increasing DC concentration not only improved the compressive strength of the DC/PLGA/HAp scaffold but also cell proliferation and osteogenic differentiation. It was found through comparison with previous studies that including HAp in the scaffold also promotes osteogenic differentiation. Our study thus shows through in vivo results that the 80 wt% DC/PLGA/HAp scaffold promotes bone mineralization and collagen deposition while reducing the inflammatory response. Hence, 80 wt% DC/PLGA/HAp has excellent potential as a biomaterial for bone regeneration applications.

摘要

胶原蛋白具有低抗原性和出色的细胞黏附性,由于其生物相容性和可生物降解性,是一种主要用于骨、软骨和皮肤再生的生物材料。先前一项研究的结果证实,一种混合了鸭脚源胶原蛋白(DC)和聚乳酸-羟基乙酸共聚物(PLGA)的支架减少了炎症反应并促进了骨再生。为了开发一种最佳的骨替代物,我们在DC和PLGA混合物中加入了羟基磷灰石(HAp),这是一种关键的骨传导材料。我们制备了0、10、20、40、60和80重量百分比的DC/PLGA/HAp支架,并研究了它们在骨组织工程中的潜力。对支架进行特性分析,并将兔骨髓间充质干细胞(rBMSCs)接种在支架上,以研究细胞增殖、成骨分化和骨形成。我们证实,增加DC浓度不仅提高了DC/PLGA/HAp支架的抗压强度,还促进了细胞增殖和成骨分化。通过与先前研究比较发现,在支架中加入HAp也能促进成骨分化。因此,我们的研究通过体内实验结果表明,80重量百分比的DC/PLGA/HAp支架在减少炎症反应的同时促进了骨矿化和胶原蛋白沉积。因此,80重量百分比的DC/PLGA/HAp作为骨再生应用的生物材料具有出色的潜力。

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