Search / Korean Journal of Chemical Engineering
Korean Chemical Engineering Research,
Vol.54, No.3, 285-292, 2016
바이오화학공학에서 3D 바이오프린팅 기술
3D Bioprinting Technology in Biochemical Engineering
삼차원 프린팅(3D printing) 기술은 공학, 제조업, 교육, 예술, 그리고 바이오의학 같은 다양한 분야에 활용되고 있는 혁신적 기술이다. 프린팅 기술, 재료/생화학물질을 포함한 최근 기술의 진보는 생체적합성 물질, 세포, 지지체 성분의 3D 프린팅으로 복잡한 3D 기능성 조직과 장기를 제작할 수 있는 가능성을 보여주고 있다. 3D 바이오프린팅 기술은 신약 개발, 독성 연구를 위한 조직 모델의 제작에도 활용되고 있다. 3D 바이오프린팅 기술은 공학, 생체재료과학, 세포생물학, 생화학, 물리, 의학 같은 분야의 통섭이 필요한 연구 분야이다.
Three-dimensional (3D) printing is driving major innovation in various areas including engineering, manufacturing, art, education and biosciences such as biochemical engineering, tissue engineering and regenerative medicine. Recent advances have enabled 3D printing of biocompatible materials, cells and supporting components into complex 3D functional tissues. Compared with non-biological printing, 3D bioprinting involves additional complexities which require the integration of technologies from the fields of biochemical engineering, biomaterial sciences, cell biology, physics, pharmaceutics and medical science.
[References]
  1. Hull CW, “Apparatus for Production of Three-dimensional Objects by Stereolithography,” U. S. Patent 4575330A(1986).
  2. Shimizu TS, Le Novere N, Levin MD, Beavil AJ, Sutton BJ, Bray D, Nature Cell Biology, 2, 792, 2000
  3. Symes MD, Kitson PJ, Yan J, Richmond CJ, Cooper GJT, Bowman RW, Vilbrandt T, Cronin L, Nature Chemistry, 4, 349, 2012
  4. Nakamura M, Iwanaga S, Henmi C, Arai K, Nishiyama Y, Biofabrication, 2, 014110, 2010
  5. Griffith LG, Naughton G, Science, 295, 1009, 2002
  6. Mikos AG, Temenoff JS, Electron. J. Biotechnol., 3, 114, 2000
  7. Tsang VL, Bhatia SN, Adv. Drug Deliv. Rev., 56(11), 1635, 2004
  8. Derby B, Science, 338(6109), 921, 2012
  9. Starly B, Shirwaiker R, “3D Bioprinting Techniques,” In: Zhang LG, Fisher JP, Lerong KW. (eds.) 3D Bioprinting and Nanotechnology in Tissue Engineering and Regenerative Medicine, Academic Press, 57-77(2015).
  10. Derby B, J. Mater. Chem., 18, 5717, 2008
  11. Okamoto T, Suzuki T, Yamamoto N, Nature Biotechnololy, 18, 438, 2000
  12. Delaney JT, Smith PJ, Schubert, Soft Matters, 5, 4866, 2009
  13. Cui X, Boland T, D'Lima DD, Lotz MK, Drug Deliv., 6(2), 149, 2012
  14. Goldmann T, Gonzalez JS, J. Biochemical Biophysical Methods, 42, 105, 2000
  15. Cui XF, Dean D, Ruggeri ZM, Boland T, Biotechnol. Bioeng., 106(6), 963, 2010
  16. Tekin E, Smith PJ, Schubert, Soft Matters, 4, 703, 2008
  17. Demirci U, Montesano G, Lab on a Chip, 7, 1139, 2007
  18. Kim JD, Choi JS, Kim BS, Choi YC, Cho YW, Polymer, 51(10), 2147, 2010
  19. Saunders RE, Bosworth L, Gough JE, Derby B, Biomaterials, 29, 193, 2008
  20. Murphy SV, Skardal A, Atala A, J. Biomed. Mater. Res. A, 101, 272, 2013
  21. Khalil S, Sun W, Mater. Sci. Eng. C-Biomimetic Supramol. Syst., 27, 469, 2007
  22. Smith CM, Stone AL, Parkhill RL, Stewart RL, Simpkins MW, Kachurin AM, Warren WL, Williams SK, Tissue Eng., 10, 1566, 2004
  23. Jones N, Nature, 487(7405), 22, 2012
  24. Chang CC, Boland ED, Williams SK, Hoying JB, J. Biomed. Mater. Res. B Appl. Biomater., 98, 106, 2011
  25. Fedorovich NE, Swennen I, Girones J, Moroni L, van Blitterswijk CA, Schacht E, Alblas J, Dhert WJA, Biomacromolecules, 10(7), 1689, 2009
  26. Chang R, Nam J, Sun W, Tissue Eng. Part A, 14, 41, 2008
  27. Jakab K, Damon B, Neagu A, Kachurin A, Forgacs G, Biorheology, 43, 509, 2006
  28. Visser J, Peters B, Burger TJ, Boomstra J, Dhert WJA, Michels FPW, Malda J, Biofabrication, 5, 035007, 2013
  29. Park SA, Lee SH, Kim WD, Bioprocess. Biosyst. Eng., 34(4), 505, 2011
  30. Schuurman W, Levett PA, Pot MW, vam Weeren PR, Dhert WJA, Hutmacher DW, Melchels FPW, Klein TJ, Malda J, Macromol. Biosci., 13, 551, 2013
  31. Smith CM, Christian JJ, Warren WL, Williams SK, Tissue Eng., 13, 373, 2007
  32. Guvendiren M, Lu HD, Burdick JA, Soft Matters, 8, 260, 2012
  33. Mironov V, Kasyanov V, Markwald RR, Curr. Opin. Biotechnol., 22, 667, 2011
  34. Marga FJK, Khatiwala C, Shepherd B, Dorfman S, Hubbard B, Colbert S, Forgacs G, Biofabrication, 4, 022001, 2012
  35. Xu W, Wang X, Yan Y, Zheng W, Xiong Z, Lin F, Wu R, Zhang R, J. Bio, 22, 363, 2007
  36. Xu M, Yan Y, Liu H, Yao R, Wang X, J. Bioact. Compat. Polym., 24(1), 31, 2009
  37. Li S, Xiong Z, Wang X, Yan Y, Liu H, Zhang R, J. Bioact. Compat. Polym., 24, 249, 2009
  38. Shim JH, Kim JY, Park M, Park J, Cho DW, Biofabrication, 3, 034102, 2011
  39. Lee JS, Hong JM, Jung JW, Shim JH, Oh JH, Cho DW, Biofabrication, 6, 024103, 2014
  40. Duan B, Hokaday LA, Kang KH, Butcher JT, J. Biomed. Mater. Res. A, 101, 1255, 2013
  41. Norte C, Marga FS, Niklason LE, Forgacs G, Biomaterials, 30, 5910, 2009
  42. Chang R, Nam J, Sun W, Tissue Eng. Part C Methods, 14, 157, 2008
  43. Xu F, Celli J, Rizvi I, Moon S, Hasan T, Demirci U, Biotechnology J., 6, 204, 2011
  44. Guillemot F, Souquet A, Catros S, Guillotin B, Nanomedicine, 5, 507, 2010
  45. Hopp B, Smausz T, Kresdz N, Barna N, Bor Z, Kolozsdvari L, Chrisey DGB, Szabo A, Nogra A, Tissue Eng., 11, 1817, 2005
  46. Guillotin B, Souquet A, Catros S, Duocastella M, Pippenger B, Bellance S, Bareille R, Remy M, Bordenave L, Amedee J, Guillemot F, Biomaterials, 31, 7250, 2010
  47. Barron J, Wu P, Andouceur H, Ringeisen B, Biomedical Engineering, 6(2), 121, 2005
  48. Schiele NR, Chrisey DB, Corr DT, Tissue Eng. Part C Methods, 17(3), 289, 2011
  49. Schiele NR, Corr DT, Huang Y, Xie Y, Roaf NA, Chrisey DB, Biofabrication, 2(3), 032001, 2010
  50. Keriquel V, Guillemot F, Arnaut I, Guillotin B, Miraux S, Amedee J, Fricain JC, Catros S, Biofabrication, 2, 014101, 2010
  51. Zopf DA, Hollister SJ, Nelson ME, Ohye RG, Green GE, The New England Journal of Medicine, 368, 2043, 2013
  52. Lee YB, Polio S, Lee W, Dai G, Menon L, Carrol RS, Yoo SS, Exp. Neurol., 223, 645, 2010
  53. Lee V, Singh G, Trassati J, Bjornsson C, Xu X, Tran TN, Yoo SS, Dai G, Karande P, Tissue Eng. Part C Methods, 20(6), 473, 2014
  54. Murphy SV, Atala A, Nature Biotechnology, 32(8), 773, 2014
  55. Therriault D, White SR, Lewis JA, Nat. Mater., 2(4), 265, 2003
  56. Kitson PJ, Rosnes MH, Sans V, Cronin L, Lab on a Chip, 12, 3267, 2012
  57. Anderson KB, Lockwood SY, Martin RS, Spence DM, Anal. Chem., 85(12), 5622, 2013
  58. Lee KR, Song KH, Korean J. Chem. Eng., 32(1), 162, 2014
  59. Jeong GT, Korean Chem. Eng. Res., 52(3), 355, 2014