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Insertion of Vertically Aligned Nanowires into Living Cells by Inkjet Printing of Cells
Authors:Donggyu Lee  Daehee Lee  Yulim Won  Hyeonaug Hong  Yongjae Kim  Hyunwoo Song  Jae‐Chul Pyun  Yong Soo Cho  Wonhyoung Ryu  Jooho Moon
Affiliation:1. Department of Materials Science and Engineering, Yonsei University, Seoul, Republic of Korea;2. Department of Mechanical Engineering, Yonsei University, Seoul, Republic of Korea
Abstract:Effective insertion of vertically aligned nanowires (NWs) into cells is critical for bioelectrical and biochemical devices, biological delivery systems, and photosynthetic bioenergy harvesting. However, accurate insertion of NWs into living cells using scalable processes has not yet been achieved. Here, NWs are inserted into living Chlamydomonas reinhardtii cells (Chlamy cells) via inkjet printing of the Chlamy cells, representing a low‐cost and large‐scale method for inserting NWs into living cells. Jetting conditions and printable bioink composed of living Chlamy cells are optimized to achieve stable jetting and precise ink deposition of bioink for indentation of NWs into Chlamy cells. Fluorescence confocal microscopy is used to verify the viability of Chlamy cells after inkjet printing. Simple mechanical considerations of the cell membrane and droplet kinetics are developed to control the jetting force to allow penetration of the NWs into cells. The results suggest that inkjet printing is an effective, controllable tool for stable insertion of NWs into cells with economic and scale‐related advantages.
Keywords:bio‐inks  cell fixation  Chlamy cells  inkjet printing
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