Comparison of hydroxyapatite and honeycomb micro-structure in bone tissue engineering using electrospun beads-on-string fibers.

IF 1.4 4区 医学 Q4 ENGINEERING, BIOMEDICAL International Journal of Artificial Organs Pub Date : 2024-08-01 Epub Date: 2024-08-21 DOI:10.1177/03913988241268033
Nicolas Rivoallan, Marc Mueller, Timothée Baudequin, Pascale Vigneron, Anne Hébraud, Rachid Jellali, Quentin Dermigny, Anne Le Goff, Guy Schlatter, Birgit Glasmacher, Cécile Legallais
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Abstract

Thick honeycomb-like electrospun scaffold with nanoparticles of hydroxyapatite (nHA) recently demonstrated its potential to promote proliferation and differentiation of a murine embryonic cell line (C3H10T1/2) to osteoblasts. In order to distinguish the respective effects of the structure and the composition on cell differentiation, beads-on-string fibers were used to manufacture thick honeycomb-like scaffolds without nHA. Mechanical and biological impacts of those beads-on string fibers were evaluated. Uniaxial tensile test showed that beads-on-string fibers decreased the Young Modulus and maximal stress but kept them appropriate for tissue engineering. C3H10T1/2 were seeded and cultured for 6 days on the scaffolds without any growth factors. Viability assays revealed the biocompatibility of the beads-on-string scaffolds, with adequate cells-materials interactions observed by confocal microscopy. Alkaline phosphatase staining was performed at day 6 in order to compare the early differentiation of cells to bone fate. The measure of stained area and intensity confirmed the beneficial effect of both honeycomb structure and nHA, independently. Finally, we showed that honeycomb-like electrospun scaffolds could be relevant candidates for promoting bone fate to cells in the absence of nHA. It offers an easier and faster manufacture process, in particular in bone-interface tissue engineering, permitting to avoid the dispersion of nHA and their interaction with the other cells.

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使用电纺串珠纤维的骨组织工程中羟基磷灰石和蜂窝状微结构的比较。
含有羟基磷灰石纳米颗粒(nHA)的厚蜂窝状电纺支架最近被证明具有促进小鼠胚胎细胞系(C3H10T1/2)增殖和分化为成骨细胞的潜力。为了区分结构和成分各自对细胞分化的影响,我们使用串珠纤维制造了不含 nHA 的厚蜂窝状支架。对这些串珠纤维的机械和生物影响进行了评估。单轴拉伸测试表明,串珠纤维降低了杨氏模量和最大应力,但仍适用于组织工程。在不使用任何生长因子的情况下,将 C3H10T1/2 种子接种到支架上并培养 6 天。活力测定显示了珠串支架的生物相容性,共聚焦显微镜观察到了充分的细胞-材料相互作用。第 6 天进行了碱性磷酸酶染色,以比较细胞向骨命运的早期分化。染色面积和强度的测量结果证实,蜂窝结构和 nHA 都能产生有益的影响。最后,我们发现蜂窝状电纺支架可以在没有 nHA 的情况下促进细胞的骨命运。它提供了一种更简单、更快速的制造工艺,特别是在骨界面组织工程中,可以避免 nHA 的分散及其与其他细胞的相互作用。
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来源期刊
International Journal of Artificial Organs
International Journal of Artificial Organs 医学-工程:生物医学
CiteScore
3.40
自引率
5.90%
发文量
92
审稿时长
3 months
期刊介绍: The International Journal of Artificial Organs (IJAO) publishes peer-reviewed research and clinical, experimental and theoretical, contributions to the field of artificial, bioartificial and tissue-engineered organs. The mission of the IJAO is to foster the development and optimization of artificial, bioartificial and tissue-engineered organs, for implantation or use in procedures, to treat functional deficits of all human tissues and organs.
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