Synthetic Three-Dimensional Scaffold for Application in the Regeneration of Bone Tissue

D. J. Coletta, L. Missana, Talita Martins, M. V. Jammal, Luciano Andrés García, Nayla Farez, Tomas De Glee, J. Issa, S. Feldman
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引用次数: 2

Abstract

Bone tissue engineering aims to use biodegrade able scaffolds to replace damaged tissue. This scaffold must be gradually degraded and replaced by tissue as similar as possible to the original one. In this work a hybrid porous scaffold containing chitosan, polyvinyl alcohol and bioactive glass was successfully obtained and subsequently characterized by scanning electron microscopy. The scaffold presented satisfactory pore size range and open interconnected pores, which are essential for tissue ingrowth. A cytotoxicity assay showed that this biomaterial allows adequate cell viability, so that it was considered suitable for an in vivo experiment. Promising results were obtained with the implant of the scaffold in an experimental model of a New Zealand rabbit femur bone lesion. Clinical and biochemical parameters measured such as complete blood count, total serum proteins, albumin, alanine aminotransferase and aspartate aminotransferase were similar between animals in the control group at all time periods studied. Histological and histometric studies showed that the scaffold was coated with a cement-like substance, exhibiting many areas of mineralized structures. Very few osteocyte-like cells or lining-like cells were found inside the amorphous mineralized deposit. In vivo results allow us to consider this scaffold as a promising biomaterial to be applied in bone tissue engineering.
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三维合成支架在骨组织再生中的应用
骨组织工程旨在使用可生物降解的支架来替代受损的组织。这种支架必须逐渐降解,并被与原始支架尽可能相似的组织所取代。本研究成功制备了一种含有壳聚糖、聚乙烯醇和生物活性玻璃的杂化多孔支架,并用扫描电镜对其进行了表征。支架具有良好的孔径范围和开放的相互连接的孔,这是组织向内生长所必需的。细胞毒性试验表明,这种生物材料允许足够的细胞活力,因此它被认为适合体内实验。在新西兰兔大腿骨病变实验模型中植入支架获得了令人满意的结果。临床生化指标如全血细胞计数、血清总蛋白、白蛋白、丙氨酸转氨酶和天冬氨酸转氨酶在研究的各个时期对照组动物之间相似。组织学和组织计量学研究表明,支架被一种水泥样物质覆盖,显示出许多矿化结构区域。在无定形矿化沉积物中很少发现骨细胞样细胞或衬里样细胞。体内实验结果使我们认为这种支架是一种很有前途的生物材料,可以应用于骨组织工程。
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