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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Osteochondral and bone tissue engineering scaffold prepared from Gallus var domesticus derived demineralized bone powder combined with gellan gum for medical application
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Osteochondral and bone tissue engineering scaffold prepared from Gallus var domesticus derived demineralized bone powder combined with gellan gum for medical application

机译:由Gallus Var制备的骨质色盲和骨组织工程支架衍生的脱耳化骨粉联合Gellan Gum用于医疗应用

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摘要

Osteochondral (OC) lesions can occur in the knee and ankle. Such lesions induce a fracture in the cartilage protecting the bone joints. Cartilage tissue shows limited self-regeneration ability, hence the tissue is avascular and lack of vascular innervation, while the bone is a unique organ with the capacity to self-repair of small defects. In this present study, we have prepared a scaffold using demineralized bone powder (DBP) extracted from Gallus gallus var domesticus (GD), and Gellan gum (GG) for OC tissue regeneration. They were characterized for their chemical, physical, mechanical and biological properties using different available techniques, in vitro bioactivity was performed in simulated body fluid for 14 days confirming the formation of bone-like apatite. The in vitro biocompatibility was analyzed using chondrocyte cells and osteogenic and chondrogenic marker gene expression using RT-PCR, in vivo experiments performed by implanting scaffold in rabbit and characterized by histology and immunofluorescent stainings. The obtained results indicated that the prepared pores scaffold was biocompatible, and promote OC regeneration and integration of newly formed tissues with the host tissues in a rabbit. The prepared 1% DBP/GG scaffold can be used as a potential and promising alternate material for OC regeneration. (C) 2020 Elsevier B.V. All rights reserved.
机译:膝盖和脚踝可以发生骨色神经(OC)病变。这种病变在保护骨关节的软骨中诱导骨折。软骨组织显示出自再生能力有限,因此组织是缺血和缺乏血管内接管,而骨骼是一个独特的器官,具有少量缺陷的自我修复能力。在本研究中,我们使用从Gallus Gallus var Domesticus(GD)中提取的脱耳化骨粉(DBP)制备了支架,以及用于OC组织再生的Gellan Gul(GG)。它们的特征在于使用不同可用技术的化学,物理,机械和生物学性质,在模拟体液中进行体外生物活性,以确认骨状磷灰石的形成。使用软骨细胞细胞和骨质发生和软骨内标记基因表达进行分析体外生物相容性,使用RT-PCR,通过植入兔子进行的体内实验中进行的体内实验,并通过组织学和免疫荧光染色。所得结果表明,制备的孔支架是生物相容的,并促进OC再生和将新形成的组织与兔子中的宿主组织的整合和整合。制备的1%DBP / GG支架可以用作OC再生的潜在和有前途的交替材料。 (c)2020 Elsevier B.v.保留所有权利。

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