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Substrate-free multi-cellular aggregates of human gingival fibroblasts:Fabrication, biomechanics and significance for tissue regeneration

机译:人牙龈成纤维细胞的无底物多细胞聚集体:制造,生物力学及其对组织再生的意义

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摘要

Objectives. We fabricate multi-cellular aggregates of human gingival fibroblasts (hGFs) using a novel in vivo method that omits supportive flexible substrates. On the basis of the multi-cellular aggregates, constructive and destructive effects of mechanical stimulation are investigated. Methods. hGFs were seeded onto aligned glass slides (one fixed, one mobile) with an initial gap <30 μm between their connecting edges. After the cells adhere, one of the glass slides is displaced using high precision threads and a piezoelectric element, widening the gap gradually. Results. After several days of gradually widening the gap, multiple multi-cellular hGF aggregates formed, bridging the gap between the glass slides. The effects of discrete displacement events on previously established multi-cellular aggregates ranged from considerable growth and consolidation to collapse and disintegration. A quantitative criterion for assessing the probability for collapse/disintegration of hGF multi-cellular aggregates based on evaluating the meniscus curvature at the free edges before and after displacement is presented and discussed. The curvature is suggested as a representative parameter to characterize the mechanical condition of multi-cellular aggregates, as it is affected by adhesion of cells to the glass slides, cohesion inside the multi-cellular aggregate and the external mechanical load generated by the displacement of the glass slides. Significance. The presented results clarify the potential and limitations of using mechanical stimulation for initiating and controlling regeneration of (gingival) tissue. Further potential applications include usage as biological substrate for co-culturing hierarchical tissue with multiple cell types (e.g. for vessels) and bio-membranes for filters (e.g. in microfluidics).
机译:目标。我们使用一种省略支持性柔性底物的新型体内方法,制备了人牙龈成纤维细胞(hGFs)的多细胞聚集体。在多细胞聚集体的基础上,研究了机械刺激的建设性和破坏性作用。方法。将hGFs接种到对准的玻璃载玻片上(一个固定,一个可移动),其连接边缘之间的初始间隙<30μm。电池粘附后,使用高精度的螺纹和压电元件将玻璃载玻片之一移位,从而逐渐扩大间隙。结果。在逐渐扩大间隙的几天后,形成了多个多细胞hGF聚集体,弥合了载玻片之间的间隙。离散位移事件对先前建立的多细胞聚集体的影响范围从相当大的生长和固结到崩溃和崩解。提出并讨论了一种定量标准,该标准用于评估hGF多细胞聚集体塌陷/崩解的概率,该准则基于评估位移前后自由边缘的弯液面曲率。建议将曲率作为表征多细胞聚集体机械状态的代表参数,因为它受细胞对载玻片的粘附力,多细胞聚集体内部的内聚力以及由位移产生的外部机械负荷的影响幻灯片。意义。提出的结果阐明了使用机械刺激来引发和控制(牙龈)组织再生的潜力和局限性。进一步的潜在应用包括用作与多种细胞类型的分层组织(例如用于血管)和用于过滤器的生物膜(例如在微流体中)共培养的生物底物。

著录项

  • 来源
    《Dental materials》 |2013年第3期|332-338|共7页
  • 作者单位

    Institute of Materials Science and Technology, Friedrich-Schiller-University Jena, Loebdergraben 32, 07743 Jena, Germany;

    Department of Conservative Dentistry, Jena University Hospital, Friedrich-Schiller-University Jena, An der alten Post 4, 07743 Jena,Germany;

    Department of Conservative Dentistry, Jena University Hospital, Friedrich-Schiller-University Jena, An der alten Post 4, 07743 Jena,Germany;

    School of Dentistry and Photon Science Institute, The University of Manchester, Higher Cambridge Street, Manchester M15 6FH, UK;

    Institute of Materials Science and Technology, Friedrich-Schiller-University Jena, Loebdergraben 32, 07743 Jena, Germany;

    Department of Conservative Dentistry, Jena University Hospital, Friedrich-Schiller-University Jena, An der alten Post 4, 07743 Jena,Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    tissue regeneration; periodontitis; biomechanics; multi-cellular aggregates; substrate-free; cell culture;

    机译:组织再生;牙周炎生物力学多细胞聚集体;无底物;细胞培养;
  • 入库时间 2022-08-18 03:47:02

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