Issue
Korean Chemical Engineering Research,
Vol.57, No.3, 321-330, 2019
정보 융합 나노하이브리드 시스템의 이해
A Review on Info-Convergence Nanohybrid System
최신 학제간 융합기술의 발전과 더불어 디지털 사회에서 생성된 방대한 정보를 저장하기 위하여 신뢰성이 높고 정보의 집적화면에서 효율적이며 세계적으로 통용될 수 있는 정보 코드 시스템의 필요성이 대두되고 있다. 그에 발맞춰 화공, 나노화학, 신소재 분야에서도 획기적인 차세대 정보 코드 시스템 개발을 위한 시도가 계속되고 있다. 해결책 가운데 하나로서 DNA를 이용한 정보 코드 시스템이 각광을 받으면서 많은 연구자들이 관련 연구에 박차를 가하고 있다. 본 총설에서는 DNA를 기반으로 하는 정보 융합 나노하이브리드 (infohybrid) 코드 시스템의 연구동향 및 기술개발 현황에 대하여 요약 및 정리하였다. 특히, 코드 시스템에 적합한 하이브리드 소재 및 나노기술에 대하여 알아보고 대표적인 사례를 기반으로 DNA 정보 코드화 기법에 대하여 정리한 후, 이력추적관리, 진위판별입증, 나노법의학 등응용분야에 대하여 연구 사례를 중심으로 설명하였다. 마지막으로 최근에 연구 발표된 스마트폰을 활용한 Avatar DNA 나노하이브리드 시스템을 소개함으로써 4차 산업혁명 시대를 이끌어 나갈 나노-바이오-정보-인지 기술이 접목된 융합시스템 개발 및 그 잠재력에 대하여 전망해 보았다.
With the rapid development trend in multidisciplinary science and convergence technology, digital data storages have been necessary in order to accumulate a huge amount of information with high security. The possibility that biological DNA code system can offer encoding and decoding information has been illustrated by many researchers. In this review, we summarized current issue of info-convergence nanohybrid system, so-called infohybrid. DNAinorganic nanohybrid materials and devices to achieve DNA-based molecular information system are presented. The possible applications focusing on tracking-and-traceability management, authenticity verification, and nano-forensics are also reviewed with four steps of encoding, encrypting, decrypting and decoding. We also highlighted the potential of smart code system with Nano-Bio-Info-Cogno (NBIC) convergence technology through the recently published case study of Avatar DNA nanohybrid system with smart phone.
[References]
  1. Klaus Schwab, “The Fourth Industrial Revolution,” World Economic Forum(2016).
  2. Church GM, Gao Y, Kosuri S, Science, 337(6102), 1628, 2012
  3. Kedes L, Liu ET, Nat. Genet., 42, 917, 2010
  4. Wetterstrand KA, National Human Genome Research Institute(2018).
  5. Pinheiro AV, Han DR, Shih WM, Yan H, Nat. Nanotechnol., 6(12), 763, 2011
  6. Mirkin CA, Letsinger RL, Mucic RC, Storhoff JJ, Nature, 382(6592), 607, 1996
  7. Yang DY, Hartman MR, Derrien TL, Hamada S, An D, Yancey KG, Cheng R, Ma ML, Luo D, Accounts Chem. Res., 47, 1902, 2014
  8. Choy JH, Oh JM, Park M, Sohn KM, Kim JW, Adv. Mater., 16(14), 1181, 2004
  9. Choy JH, Kwak SY, Park JS, Jeong YJ, Portier J, J. Am. Chem. Soc., 121(6), 1399, 1999
  10. AAPG Bull., Yang DY, Campolongo MJ, Tran TNN, Ruiz RCH, Kahn JS, Luo D, Wiley Interdiscip. Rev.: Nanomed. Nanobiotechnol., 2, 648-669(2010).
  11. Roh YH, Ruiz RCH, Peng SM, Lee JB, Luo D, Chem. Soc. Rev., 40, 5730, 2011
  12. Choy JH, Park M, Oh JM, Curr. Nanosci., 2, 275, 2006
  13. Park DH, Choy JH, Eur. J. Inorg. Chem., 5145-5153(2012).
  14. Oh JM, Park DH, Choy JH, Chem. Soc. Rev., 40, 583, 2011
  15. Lim DK, Cui MH, Nam JM, J. Mater. Chem., 21, 9467, 2011
  16. Oh JM, Biswick TT, Choy JH, J. Mater. Chem., 19, 2553, 2009
  17. Shikha S, Salafi T, Cheng JT, Zhang Y, Chem. Soc. Rev., 46, 7054, 2017
  18. Clelland CT, Risca V, Bancroft C, Nature, 399(6736), 533, 1999
  19. Cox JPL, Trends Biotechnol., 19, 247, 2001
  20. Akram F, Haq I, Ali H, Laghari AT, Mol. Biol. Rep., 45, 1479, 2018
  21. Li YG, Cu YTH, Luo D, Nat. Biotechnol., 23, 885, 2005
  22. Blaxter M, Nature, 421, 122, 2003
  23. Paunescu D, Mora CA, Querci L, Heckel R, Puddu M, Hattendorf B, Gunther D, Grass RN, ACS Nano, 9, 9564, 2015
  24. Davis J, Art J., 55, 70, 1996
  25. Gibson DG, Glass JI, Lartigue C, Noskov VN, Chuang RY, Algire MA, Benders GA, Montague MG, Ma L, Moodie MM, Merryman C, Vashee S, Krishnakumar R, Assad-Garcia N, Andrews-Pfannkoch C, Denisova EA, Young L, Qi ZQ, Segall-Shapiro TH, Calvey CH, Parmar PP, Hu, Science, 329(5987), 52, 2010
  26. Lerdrup M, Johansen JV, Nat. Struct. Mol. Biol., 23, 349, 2016
  27. Pennisi E, Science, 336(6081), 534, 2012
  28. Kosuri S, Church GM, Nat. Methods, 11, 499, 2014
  29. Church GM, “Methods of Storing Information Using Nucleic Acids,” U.S. Patent No. 9,996,778(2018).
  30. Goldman N, Bertone P, Chen SY, Dessimoz C, LeProust EM, Sipos B, Birney E, Nature, 494(7435), 77, 2013
  31. Kim TW, Kim IY, Park DH, Choy JH, Hwang SJ, Sci. Rep., 6, 21993, 2016
  32. Oh JM, Kwak SY, Choy JH, J. Phys. Chem. Solids, 67, 1028, 2006
  33. Thyveetil MA, Coveney PV, Greenwell HC, Suter JL, J. Am. Chem. Soc., 130(14), 4742, 2008
  34. Paunescu D, Puddu M, Soellner JOB, Stoessel PR, Grass RN, Nat. Protoc., 8, 2440, 2013
  35. Wu PX, Li W, Zhu YJ, Tang YN, Zhu NW, Guo CL, Appl. Clay Sci., 100, 76, 2014
  36. Paunescu D, Mora CA, Puddu M, Krumeich F, Grass RN, J. Mater. Chem. B, 2, 8504, 2014
  37. Han MY, Gao XH, Su JZ, Nie S, Nat. Biotechnol., 19, 631, 2001
  38. Wang G, et al., ACS Nano, 7, 471, 2013
  39. Zhu SJ, Song YB, Zhao XH, Shao JR, Zhang JH, Yang B, Nano Res., 8, 355, 2015
  40. Zhang YH, Zhang LX, Deng RR, Tian J, Zong Y, Jin DY, Liu XG, J. Am. Chem. Soc., 136(13), 4893, 2014
  41. Park DH, Han CJ, Shul YG, Choy JH, Sci. Rep., 4, 4879, 2014
  42. Grass RN, Heckel R, Puddu M, Paunescu D, Stark WJ, Angew. Chem.-Int. Edit., 54, 2552, 2015
  43. Lee J, Bisso PW, Srinivas RL, Kim JJ, Swiston AJ, Doyle PS, Nat. Mater., 13(5), 524, 2014
  44. Nam HM, Song KJ, Ha DG, Kim TS, Sci. Rep., 6, 30885, 2016
  45. You ML, Lin M, Wang SR, Wang XM, Zhang G, Hong Y, Dong YQ, Jin GR, Xu F, Nanoscale, 8, 10096, 2016
  46. Park DH, Kim JE, Oh JM, Shul YG, Choy JH, J. Am. Chem. Soc., 132(47), 16735, 2010
  47. Thomas SW III, Chiechi RC, LaFratta CN, Webb MR, Lee A, Wiley BJ, Zakin MR, Walt DR, Whitesides GM, Proc. Natl. Acad. Sci. USA, 106, 9147, 2009
  48. Hashimoto M, Feng J, York RL, Ellerbee AK, Morrison G, Thomas SW, Mahadevan L, Whitesides GM, J. Am. Chem. Soc., 131(34), 12420, 2009
  49. Palacios MA, Benito-Pena E, Manesse M, Mazzeo AD, Lafratta CN, Whitesides GM, Walt DR, Proc. Natl. Acad. Sci. USA, 108, 16510, 2011
  50. Puddu M, Paunescu D, Stark WJ, Grass RN, ACS Nano, 8, 2677, 2014
  51. Marton M, Jones A, “Sample Tracking Using Molecular Barcodes,” International Application No.: PCT/US2001/048527 (2003).
  52. Choi HC, Whang HK, Kwon SJ, Moon HP, “Coding Method for Identification of Rice Cultivars,” Application No.:10-2001-0034002(2001).
  53. Patil AJ, Li M, Dujardin E, Mann S, Nano Lett., 7, 2660, 2007
  54. Desigaux L, Belkacem MB, Richard P, Cellier J, Leone P, Cario L, Leroux F, Taviot-Gueho C, Pitard B, Nano Lett., 6, 199, 2006
  55. Choy JH, Kwak SY, Jeong YJ, Park JS, Angew. Chem.-Int. Edit., 39, 4042, 2000
  56. Choy JH, Choi SJ, Oh JM, Park T, Appl. Clay Sci., 36, 122, 2007
  57. Oh JM, Park DH, Choi SJ, Choy JH, Recent Pat. Nanotech.,., 6, 200, 2012
  58. Mishra G, Dash B, Pandey S, Appl. Clay Sci., 153, 172, 2018
  59. Oh JM, Choi SJ, Lee GE, Han SH, Choy JH, Adv. Funct. Mater., 19(10), 1617, 2009
  60. Paek SM, Oh JM, Choy JH, Chem. Asian. J., 6, 324, 2011
  61. Park DH, Choi G, Choy JH, Photofunctional Layered Materials, 166, 137, 2015
  62. Park DH, Hwang SJ, Oh JM, Yang JH, Choy JH, Prog. Polym. Sci, 38, 1442, 2013
  63. Kahn D, “The Code Breakers - the Story of Secret Writing,D. Macmillan Pub Co., (1967).
  64. Wheelan SJ, Murillo FM, Boeke JD, Mol. BioSyst., 4, 726, 2008