BioPharmaNet, Department of Biochemistry and Molecular Biology, University of Ferrara, Ferrara, Italy.
J Mater Sci Mater Med. 2010 Sep;21(9):2653-64. doi: 10.1007/s10856-010-4125-2. Epub 2010 Jul 13.
The rapid increase of the applications for Lab-on-a-chip devices has attracted the interest of researchers and engineers on standard process of the electronics industry for low production costs and large scale development, necessary for disposable applications. The printed circuit board technology could be used for this purpose, in particular for the wide range of materials available. In this paper, assays on biocompatibility of materials used for Lab-on-a-chip fabrication has been carried out using two tumor cell lines growing in suspension, the human chronic myelogenous leukemia K562 cell line, able to undergo erythroid differentiation when cultured with chemical inducers, and the lymphoblastoid cell line (LCL), extensively used for screening of cytotoxic T-lymphocytes (CTLs). We have demonstrated that some materials strongly inhibit cell proliferation of both the two cell lines to an extent higher that 70-75%, but only after a prolonged exposure of 3-6 days (Copper, Gold over Nickel, Aramid fiber filled epoxy uncured, b-stage epoxy die attach film, Tesa 4985 adhesive tape, Pyralux uncured, Copper + 1-octodecanethiol). However, when experiments were performed with short incubation time (1 h), only Aramid fiber filled epoxy uncured was cytotoxic. Variation of the results concerning the other materials was appreciable when the experiments performed on two cell lines were compared together. Furthermore, the effects of the materials on erythroid differentiation and CTL-mediated LCL lysis confirmed, in most of the cases, the data obtained in cytotoxic and antiproliferative tests.
用于微流控芯片的快速发展引起了研究人员和工程师对电子行业标准工艺的关注,因为这种工艺具有低成本和大规模开发的特点,非常适合一次性应用。印刷电路板技术可用于此目的,特别是对于广泛可用的材料。在本文中,使用两种悬浮生长的肿瘤细胞系(能够在与化学诱导剂共培养时发生红细胞分化的人类慢性髓系白血病 K562 细胞系和广泛用于细胞毒性 T 淋巴细胞(CTL)筛选的淋巴母细胞系(LCL))进行了用于微流控芯片制造的材料的生物相容性检测。我们已经证明,一些材料强烈抑制两种细胞系的细胞增殖,抑制程度超过 70-75%,但仅在 3-6 天的长时间暴露后(铜、镀镍金、未固化的芳纶纤维填充环氧树脂、b 阶段环氧树脂模具粘贴薄膜、Tesa 4985 胶带、未固化的 Pyralux、铜+1-辛硫醇)。然而,当进行短孵育时间(1 小时)的实验时,只有未固化的芳纶纤维填充环氧树脂具有细胞毒性。当将在两种细胞系上进行的实验进行比较时,对其他材料的结果变化是明显的。此外,材料对红细胞分化和 CTL 介导的 LCL 裂解的影响在大多数情况下证实了细胞毒性和抗增殖试验中获得的数据。