Ferris Cameron J, Gilmore Kerry J, Beirne Stephen, McCallum Donald, Wallace Gordon G, In Het Panhuis Marc
Intelligent Polymer Research Institute, ARC Centre of Excellence for Electromaterials Science, AIIM Facility, University of Wollongong, Wollongong, NSW 2522, Australia.
Biomater Sci. 2013 Feb 3;1(2):224-230. doi: 10.1039/c2bm00114d. Epub 2012 Nov 5.
Drop-on-demand bioprinting allows the controlled placement of living cells, and will benefit research in the fields of tissue engineering, drug screening and toxicology. We show that a bio-ink based on a novel microgel suspension in a surfactant-containing tissue culture medium can be used to reproducibly print several different cell types, from two different commercially available drop-on-demand printing systems, over long printing periods. The bio-ink maintains a stable cell suspension, preventing the settling and aggregation of cells that usually impedes cell printing, whilst meeting the stringent fluid property requirements needed to enable printing even from many-nozzle commercial inkjet print heads. This innovation in printing technology may pave the way for the biofabrication of multi-cellular structures and functional tissue.
按需滴注生物打印技术能够实现活细胞的精准定位,这将推动组织工程、药物筛选和毒理学等领域的研究发展。我们发现,一种基于新型微凝胶悬浮液并添加于含表面活性剂的组织培养基中的生物墨水,可用于在较长打印时间内,通过两种不同的商用按需滴注打印系统,重复打印多种不同类型的细胞。这种生物墨水能够维持稳定的细胞悬浮状态,防止细胞沉降和聚集,而细胞沉降和聚集通常会妨碍细胞打印,同时还能满足严格的流体特性要求,即便使用多喷嘴商用喷墨打印头也能实现打印。这项打印技术的创新可能为多细胞结构和功能性组织的生物制造铺平道路。