Salazar Georgina To'a, Wang Yuli, Sims Christopher E, Bachman Mark, Li G P, Allbritton Nancy L
University of California, Department of Biomedical Engineering, Irvine, California 92697, USA.
J Biomed Opt. 2008 May-Jun;13(3):034007. doi: 10.1117/1.2937475.
The micropallet array system uses a pulsed laser to release pallets tens of microns to hundreds of micrometers in size from a larger array, enabling selective isolation of single cells adherent to the pallets. We characterize the laser-based release of pallets with respect to pallet array and laser parameters. The threshold laser energy required for pallet release increases linearly with the area of the pallet in contact with the underlying glass substrate. The spacing of the pallets within an array as well as the thickness or height of the pallet does not impact the energy required to release a pallet. Delivery of multiple laser pulses decreases the energy/pulse required for pallet release when the pallets were 100 microm or greater on a side. In addition to the square pallets, complex structures such as cantilevers and spirals could be released without damage using the pulsed laser. Identification of the pallet-array variables influencing the energy required for pallet release as well as strategies to minimize this energy will prove critical in optimizing the release of pallets with cells on the arrays.
微托盘阵列系统使用脉冲激光从更大的阵列中释放尺寸为几十微米到几百微米的托盘,从而能够选择性地分离附着在托盘上的单细胞。我们根据托盘阵列和激光参数对基于激光的托盘释放进行了表征。托盘释放所需的阈值激光能量随与底层玻璃基板接触的托盘面积线性增加。阵列中托盘的间距以及托盘的厚度或高度不会影响释放一个托盘所需的能量。当托盘边长为100微米或更大时,多次激光脉冲的传递会降低托盘释放所需的能量/脉冲。除了方形托盘外,使用脉冲激光还可以无损地释放诸如悬臂和螺旋等复杂结构。确定影响托盘释放所需能量的托盘阵列变量以及将该能量最小化的策略,对于优化阵列上带有细胞的托盘的释放至关重要。