Butkutė Agnė, Jurkšas Tomas, Baravykas Tomas, Leber Bettina, Merkininkaitė Greta, Žilėnaitė Rugilė, Čereška Deividas, Gulla Aiste, Kvietkauskas Mindaugas, Marcinkevičiūtė Kristina, Schemmer Peter, Strupas Kęstutis
Femtika Ltd., Keramikų Str. 2, LT-10233 Vilnius, Lithuania.
Laser Research Center, Vilnius University, Saulėtekio Ave. 10, LT-10223 Vilnius, Lithuania.
Materials (Basel). 2023 Mar 8;16(6):2174. doi: 10.3390/ma16062174.
Nowadays, lab-on-chip (LOC) devices are attracting more and more attention since they show vast prospects for various biomedical applications. Usually, an LOC is a small device that serves a single laboratory function. LOCs show massive potential for organ-on-chip (OOC) device manufacturing since they could allow for research on the avoidance of various diseases or the avoidance of drug testing on animals or humans. However, this technology is still under development. The dominant technique for the fabrication of such devices is molding, which is very attractive and efficient for mass production, but has many drawbacks for prototyping. This article suggests a femtosecond laser microprocessing technique for the prototyping of an OOC-type device-a liver-on-chip. We demonstrate the production of liver-on-chip devices out of glass by using femtosecond laser-based selective laser etching (SLE) and laser welding techniques. The fabricated device was tested with HepG2(GS) liver cancer cells. During the test, HepG2(GS) cells proliferated in the chip, thus showing the potential of the suggested technique for further OOC development.
如今,芯片实验室(LOC)设备正吸引着越来越多的关注,因为它们在各种生物医学应用中展现出广阔的前景。通常,一个LOC是执行单一实验室功能的小型设备。LOC在芯片上器官(OOC)设备制造方面具有巨大潜力,因为它们可以用于研究各种疾病的预防,或者避免在动物或人类身上进行药物测试。然而,这项技术仍在发展中。制造此类设备的主要技术是成型,这对于大规模生产非常有吸引力且高效,但对于原型制作有许多缺点。本文提出了一种用于OOC型设备——肝芯片原型制作的飞秒激光微加工技术。我们展示了通过基于飞秒激光的选择性激光蚀刻(SLE)和激光焊接技术,用玻璃制造出肝芯片设备。用HepG2(GS)肝癌细胞对制造出的设备进行了测试。在测试过程中,HepG2(GS)细胞在芯片中增殖,从而显示出所建议技术在进一步的OOC开发中的潜力。