액체생검용 Lab-on-a-Disc의 평탄도 향상을 위한 최적화

Design Optimization to achieve an enhanced flatness of a Lab-on-a-Disc for liquid biopsy

  • 홍석관 (한국생산기술연구원 금형성형연구부문) ;
  • 이정원 (한국생산기술연구원 금형성형연구부문) ;
  • 황택용 (한국생산기술연구원 금형성형연구부문) ;
  • 이성훈 ((주)클리노믹스 암유전체연구소) ;
  • 김경태 (한국생산기술연구원 금형성형연구부문) ;
  • 강태곤 (한국항공대학교 항공우주 및 기계공학부) ;
  • 황철진 (한국생산기술연구원 금형성형연구부문)
  • Seokkwan Hong (Molding & Metal Forming R&D Department, Korea Institute of Industrial Technology) ;
  • Jeong-Won Lee (Molding & Metal Forming R&D Department, Korea Institute of Industrial Technology) ;
  • Taek Yong Hwang (Molding & Metal Forming R&D Department, Korea Institute of Industrial Technology) ;
  • Sung-Hun Lee (Cancer Genome Research Institute, Clinomics, Inc.) ;
  • Kyung-Tae Kim (Molding & Metal Forming R&D Department, Korea Institute of Industrial Technology) ;
  • Tae Gon Kang (School of Aerospace and Mechanical Engineering, Korea Aerospace University) ;
  • Chul Jin Hwang (Molding & Metal Forming R&D Department, Korea Institute of Industrial Technology)
  • 투고 : 2023.02.07
  • 심사 : 2023.03.31
  • 발행 : 2023.03.31

초록

Lab-on-a-disc is a circular disc shape of cartridge that can be used for blood-based liquid biopsy to diagnose an early stage of cancer. Currently, liquid biopsies are regarded as a time-consuming process, and require sophisticated skills to precisely separate cell-free DNA (cfDNA) and circulating tumor cells (CTCs) floating in the bloodstream for accurate diagnosis. However, by applying the lab-on-a-disc to liquid biopsy, the entire process can be operated automatically. To do so, the lab-on-a-disc should be designed to prevent blood leakage during the centrifugation, transport, and dilution of blood inside the lab-on-a-disc in the process of liquid biopsy. In this study, the main components of lab-on-a-disc for liquid biopsy are fabricated by injection molding for mass production, and ultrasonic welding is employed to ensure the bonding strength between the components. To guarantee accurate ultrasonic welding, the flatness of the components is optimized numerically by using the response surface methodology with four main injection molding processing parameters, including the mold & resin temperatures, the injection speed, and the packing pressure. The 27 times finite element analyses using Moldflow® reveal that the injection time and the packing pressure are the critical factors affecting the flatness of the components with an optimal set of values for all four processing parameters. To further improve the flatness of the lab-on-a-disc components for stable mass production, a quarter-disc shape of lab-on-a-disc with a radius of 75 mm is used instead of a full circular shape of the disc, and this significantly decreases the standard deviation of flatness to 30% due to the reduced overall length of the injection molded components by one-half. Moreover, it is also beneficial to use a quarter disc shape to manage the deviation of flatness under 3 sigma limits.

키워드

과제정보

본 연구는 정부(과학기술정보통신부, 산업통상자원부, 보건복지부, 식품의약품안전처)의 재원으로 범부처 전주기 의료기기 연구개발사업단의 지원을 받아 수행된 연구임(과제 고유번호 : RS-2020-KD000019).

참고문헌

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  8. Hee Chul Park, Ju Young Choi, Seokkwan Hong, Jeong-Won Lee, Chul Jin Hwang, and Kyusang Lee, "CD-LBx, a Fully Automated Blood Centrifugation Device for Liquid Biopsy using cfDNA and PBMC", 116, 2020 Annual Spring Meeting of The Korean BioChip Society, 2020.