Hattersley Samantha M, Dyer Charlotte E, Greenman John, Haswell Stephen J
Department of Chemistry, University of Hull, Hull, HU6 7RX, UK.
Lab Chip. 2008 Nov;8(11):1842-6. doi: 10.1039/b809345h. Epub 2008 Oct 1.
A microfluidic based experimental methodology has been developed that offers a biomimetic microenvironment in which pseudo in vivo tissue studies can be carried out under in vitro conditions. Using this innovative technique, which utilizes the inherent advantages of microfluidic technology, liver tissue has been kept in a viable and functional state for over 70 h during which time on-chip cell lysis has been repeatedly performed. Tissue samples were also disaggregated in situ on-chip into individual primary cells, using a collagenase digestion procedure, enabling further cell analysis to be carried out off-line. It is anticipated that this methodology will have a wide impact on biological and clinical research in fields such as cancer prognosis and treatment, drug development and toxicity, as well as enabling better fundamental research into tissue/cell processes.
一种基于微流控的实验方法已被开发出来,它提供了一个仿生微环境,在此环境中可以在体外条件下进行伪体内组织研究。利用这项创新技术,该技术利用了微流控技术的固有优势,肝脏组织在70多个小时内一直保持存活和功能状态,在此期间,芯片上的细胞裂解已被反复进行。还使用胶原酶消化程序在芯片上原位将组织样本分解为单个原代细胞,从而能够离线进行进一步的细胞分析。预计这种方法将对癌症预后与治疗、药物开发与毒性等领域的生物学和临床研究产生广泛影响,同时也有助于对组织/细胞过程进行更好的基础研究。