PLLA Membranes Enriched with Chitosan/DCPA: Innovative Approach to Bone Tissue Engineering.

Q2 Dentistry
Nader-Yassin Moubarec, Sabrinna-Effgen Pereira, Marco-Antônio Rigo-Rodrigues, Denisse-Esther-Mallaupoma Camarena, Laura-Oliveira Rebouças, Luiz-Henrique Catalani, Maria-Stella Moreira, Leticia-Cristina-Cidreira Boaro, Flávia Gonçalves
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引用次数: 0

Abstract

Bone tissue engineering has been very promising. The use of scaffolds of synthetic and natural materials is an alternative to combine the advantages of both types of materials. This study aimed to evaluate electrospun polymeric matrices of pure PLLA or associated with 5% or 10% of chitosan particles loaded or not with DCPA in bone proliferation and differentiation of periodontal ligament stem cells (PDLSC). The particles and matrices were characterized by scanning electron microscopy. PDLSC were isolated from periodontal ligament fragments of human permanent teeth using the explant technique. Cell proliferation assay (Alamar Blue) was performed from 1 to 21 days of culture in clonogenic medium and Alizarin Red assay was performed after 21 days of culture in osteogenic medium. The data were analyzed using Kruskal-Wallis test, and the comparison between media was given by the Student-Newman-Keuls test (α = 0.05). On days 1 and 7 there were no statistical difference between materials regarding cell proliferation (p>0.05). The materials with 5 and 10% chitosan / DCPA showed greater proliferation than PLLA control on days 14 and 21 and the material with 10% pure chitosan was greater than the control in 21 days. Regarding the alizarin red assay, PLLA 5% chitosan, PLLA 5 and 10% chitosan / DCPA showed a greater degree of mineralization than the control and the PLLA 10% chitosan material, and they were similar to each other. We conclude that PLLA 5 and 10% chitosan / DCPA materials were able to increase both, cell proliferation and differentiation of PDLSC in bone cells. Key words:Chitosan, PLLA, polymeric matrix, electrospinning.

富含壳聚糖/DCPA 的 PLLA 膜:骨组织工程的创新方法。
骨组织工程的前景非常广阔。使用合成材料和天然材料的支架是结合两种材料优点的一种选择。本研究旨在评估纯聚乳酸(PLLA)或含有或不含有 DCPA 的 5%或 10%壳聚糖颗粒的电纺聚合物基质在牙周韧带干细胞(PDLSC)骨增殖和分化中的作用。扫描电子显微镜对颗粒和基质进行了表征。采用外植技术从人类恒牙的牙周韧带片段中分离出牙周韧带干细胞。细胞增殖检测(阿拉玛蓝)在克隆培养基中培养 1 至 21 天后进行,茜素红检测在成骨培养基中培养 21 天后进行。数据分析采用 Kruskal-Wallis 检验,不同培养基之间的比较采用 Student-Newman-Keuls 检验(α = 0.05)。第 1 天和第 7 天,不同培养基在细胞增殖方面没有统计学差异(P>0.05)。含 5%和 10%壳聚糖/DCPA的材料在第 14 天和第 21 天的增殖率高于 PLLA 对照组,含 10%纯壳聚糖的材料在第 21 天的增殖率高于对照组。在茜素红检测方面,5%壳聚糖、5%壳聚糖和10%壳聚糖/DCPA的PLLA比对照组和10%壳聚糖的PLLA材料显示出更高的矿化度,而且它们之间的矿化度相似。我们得出结论:PLLA 5和10%壳聚糖/DCPA材料能够增加骨细胞中PDLSC的细胞增殖和分化。关键词:壳聚糖 PLLA 高分子基质 电纺丝
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来源期刊
CiteScore
2.70
自引率
0.00%
发文量
118
期刊介绍: Indexed in PUBMED, PubMed Central® (PMC) since 2012 and SCOPUSJournal of Clinical and Experimental Dentistry is an Open Access (free access on-line) - http://www.medicinaoral.com/odo/indice.htm. The aim of the Journal of Clinical and Experimental Dentistry is: - Periodontology - Community and Preventive Dentistry - Esthetic Dentistry - Biomaterials and Bioengineering in Dentistry - Operative Dentistry and Endodontics - Prosthetic Dentistry - Orthodontics - Oral Medicine and Pathology - Odontostomatology for the disabled or special patients - Oral Surgery
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