Comparative evaluation of sponges using demineralized bone particles derived from poultry for bone regeneration

IF 2.8 4区 工程技术 Q2 POLYMER SCIENCE
Jeong Eun Song, Cheol Ui Song, Seung Ho Choe, Gilson Khang, Sun-Jung Yoon
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引用次数: 0

Abstract

Bone regeneration is essential for treating critically sized bone defects, which are challenging to restore naturally. The traditional methods like autogenous bone grafting have limitations, prompting research into alternative materials such as demineralized bone matrix (DBM). While bovine and porcine DBMs are common, they have stability and safety concerns, leading to the exploration of poultry-derived DBPs. The study aimed to fabricate scaffolds using DBPs from different poultry species and compare their effectiveness in bone regeneration. DBPs were extracted from the femurs and tibias of chickens, ducks, and Yeonsan ogolgye (Gallus gallus domesticus Brisson). These DBPs were used to create sponges, which were then characterized for their physical and chemical properties. The bone marrow-derived stem cells (rBMSCs) from rabbits were seeded onto these sponges to evaluate their biocompatibility and bone regeneration potential in vitro. The sponges were porous, facilitating cell infiltration and nutrient exchange, with different compressive strengths and porosity levels based on the poultry source. The sponges supported cell proliferation, with the Yeonsan ogolgye-derived sponge (GDS) showing the highest levels of osteogenic markers, likely due to its melanin content, which enhances bone growth factors. The study found that all sponges were biocompatible, with the GDS being the most effective in promoting bone regeneration. Poultry-derived DBP sponges, especially those from Yeonsan ogolgye, are promising candidates for bone graft materials due to their favorable properties in supporting bone regeneration.

Graphic abstract

使用家禽脱矿骨颗粒进行骨再生的海绵的比较评价
骨再生是至关重要的治疗临界大小的骨缺损,这是具有挑战性的自然恢复。自体骨移植等传统方法存在局限性,促使人们研究替代材料,如脱矿骨基质(DBM)。虽然牛和猪dbp很常见,但它们存在稳定性和安全性问题,因此需要探索家禽衍生dbp。本研究旨在利用不同家禽品种的dbp制备骨支架,并比较其骨再生效果。分别从鸡、鸭和燕山高溪(Gallus Gallus domesticus Brisson)的股骨和胫骨中提取dbp。这些dbp被用来制造海绵,然后对其物理和化学性质进行表征。将兔骨髓源性干细胞(rBMSCs)植入海绵中,评估其体外生物相容性和骨再生潜力。海绵具有多孔性,有利于细胞浸润和养分交换,不同来源的家禽具有不同的抗压强度和孔隙度。海绵支持细胞增殖,莲山高溪衍生海绵(GDS)显示出最高水平的成骨标志物,可能是由于其黑色素含量,可以增强骨骼生长因子。研究发现,所有海绵都具有生物相容性,其中GDS在促进骨再生方面最有效。家禽来源的DBP海绵,特别是来自燕山高溪的DBP海绵,由于其支持骨再生的良好特性,是骨移植材料的有希望的候选材料。图形抽象
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来源期刊
Macromolecular Research
Macromolecular Research 工程技术-高分子科学
CiteScore
4.70
自引率
8.30%
发文量
100
审稿时长
1.3 months
期刊介绍: Original research on all aspects of polymer science, engineering and technology, including nanotechnology Presents original research articles on all aspects of polymer science, engineering and technology Coverage extends to such topics as nanotechnology, biotechnology and information technology The English-language journal of the Polymer Society of Korea Macromolecular Research is a scientific journal published monthly by the Polymer Society of Korea. Macromolecular Research publishes original researches on all aspects of polymer science, engineering, and technology as well as new emerging technologies using polymeric materials including nanotechnology, biotechnology, and information technology in forms of Articles, Communications, Notes, Reviews, and Feature articles.
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