Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.
KAIST Institute for Health Science and Technology (KIHST), Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.
ACS Appl Mater Interfaces. 2023 Jul 26;15(29):34323-34331. doi: 10.1021/acsami.3c01856. Epub 2023 Jul 12.
Cell lysis serves as an essential role in the sample preparation for intracellular material extraction in lab-on-a-chip applications. However, recent microfluidic-based cell lysis chips still face several technical challenges such as reagent removal, complex design, and high fabrication cost. Here, we report highly efficient on-chip photothermal cell lysis for nucleic acid extraction using strongly absorbed plasmonic Au nanoislands (SAP-AuNIs). The highly efficient photothermal cell lysis chip (HEPCL chip) consists of a PDMS microfluidic chamber and densely distributed SAP-AuNIs with large diameters and small nanogaps, allowing for broad-spectrum light absorption. The SAP-AuNIs induce photothermal heat, resulting in a uniform temperature distribution within the chamber and rapidly reaching the target temperature for cell lysis within 30 s. Furthermore, the localized plasmonic heating of SAP-AuNIs expeditiously triggers phase transition and photoporation in the directly contacted lipid bilayer of the cell membrane, resulting in rapid and highly efficient cell lysis. The HEPCL chip successfully lysed 93% of PC9 cells at 90 °C for 90 s without nucleic acid degradation. This on-chip cell lysis offers a new sample preparation platform for integrated point-of-care molecular diagnostics.
细胞裂解在微流控芯片应用中的细胞内物质提取的样品制备中起着重要作用。然而,最近的基于微流控的细胞裂解芯片仍然面临着一些技术挑战,如试剂去除、复杂的设计和高制造成本。在这里,我们报告了使用强吸收等离子体 Au 纳米岛 (SAP-AuNIs) 进行高效的片上光热细胞裂解,用于核酸提取。高效的光热细胞裂解芯片 (HEPCL 芯片) 由 PDMS 微流控腔室和密集分布的 SAP-AuNIs 组成,具有较大的直径和较小的纳米间隙,允许宽光谱光吸收。SAP-AuNIs 诱导光热,导致腔内的温度分布均匀,并在 30 秒内迅速达到细胞裂解的目标温度。此外,SAP-AuNIs 的局域等离子体加热迅速引发细胞膜直接接触的脂质双层的相变和光穿孔,导致快速和高效的细胞裂解。HEPCL 芯片在 90°C 下成功裂解了 93%的 PC9 细胞,持续 90 秒,没有核酸降解。这种片上细胞裂解为集成即时分子诊断提供了一个新的样品制备平台。