Shi Bing, Jin Qiaoling, Chen Liaohai, Woods Amina S, Schultz Albert J, Auciello Orlando
Materials Science Division, Argonne National Laboratory, 9700 S. Cass Ave, Argonne, IL 60439, USA.
Advanced Photon Sources, Argonne National Laboratory, 9700 S. Cass Ave, Argonne, IL 60439, USA.
J Funct Biomater. 2012 Aug 16;3(3):588-600. doi: 10.3390/jfb3030588.
Unique functional materials provide a platform as scaffolds for cell/tissue regeneration. Investigation of cell-materials' chemical and biological interactions will enable the application of more functional materials in the area of bioengineering, which provides a pathway to the novel treatment for patients who suffer from tissue/organ damage and face the limitation of donation sources. Many studies have been made into tissue/organ regeneration. Development of new substrate materials as platforms for cell/tissue regeneration is a key research area. Studies discussed in this paper focus on the investigation of novel ultrananocrystalline diamond (UNCD) films as substrate/scaffold materials for developmental biology. Specially designed quartz dishes have been coated with different types of UNCD films and cells were subsequently seeded on those films. Results showed the cells' growth on UNCD-coated culture dishes are similar to cell culture dishes with little retardation, indicating that UNCD films have no or little inhibition on cell proliferation and are potentially appealing as substrate/scaffold materials. The mechanisms of cell adhesion on UNCD surfaces are proposed based on the experimental results. The comparisons of cell cultures on diamond-powder-seeded culture dishes and on UNCD-coated dishes with matrix-assisted laser desorption/ionization-time-of-flight mass spectroscopy (MALDI-TOF MS) and X-ray photoelectron spectroscopy (XPS) analyses provided valuable data to support the mechanisms proposed to explain the adhesion and proliferation of cells on the surface of the UNCD platform.
独特的功能材料为细胞/组织再生提供了作为支架的平台。对细胞与材料之间化学和生物学相互作用的研究将使更多功能材料能够应用于生物工程领域,这为患有组织/器官损伤且面临捐赠来源受限的患者提供了新的治疗途径。人们已经对组织/器官再生进行了许多研究。开发新型基底材料作为细胞/组织再生的平台是一个关键研究领域。本文所讨论的研究重点是对新型超纳米晶金刚石(UNCD)薄膜作为发育生物学的基底/支架材料的研究。经过特殊设计的石英培养皿被涂上了不同类型的UNCD薄膜,随后将细胞接种在这些薄膜上。结果表明,细胞在涂有UNCD的培养皿上的生长情况与普通细胞培养皿相似,几乎没有延迟,这表明UNCD薄膜对细胞增殖没有或几乎没有抑制作用,并且作为基底/支架材料具有潜在的吸引力。基于实验结果提出了细胞在UNCD表面的粘附机制。通过基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)和X射线光电子能谱(XPS)分析,对在涂有金刚石粉末的培养皿和涂有UNCD的培养皿上的细胞培养进行比较,提供了有价值的数据来支持所提出的解释细胞在UNCD平台表面粘附和增殖的机制。