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[해외논문] Graphene-Based Materials for Stem Cell Applications 원문보기

Materials, v.8 no.12, 2015년, pp.8674 - 8690  

Kim, Tae-Hyung (School of Integrative Engineering, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul 06974, Korea) ,  Lee, Taek (thkim0512@cau.ac.kr) ,  El-Said, Waleed A. (Interdisciplinary Program of Integrated Biotechnology, Sogang University, 35 Baekbeom-ro, Mapo-gu, Seoul 04107, Korea) ,  Choi, Jeong-Woo (tlee@sogang.ac.kr (T.L.))

Abstract AI-Helper 아이콘AI-Helper

Although graphene and its derivatives have been proven to be suitable for several biomedical applications such as for cancer therapy and biosensing, the use of graphene for stem cell research is a relatively new area that has only recently started to be investigated. For stem cell applications, grap...

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참고문헌 (85)

  1. 1. Geim A.K. Novoselov K.S. The rise of graphene Nat. Mater. 2007 6 183 191 10.1038/nmat1849 17330084 

  2. 2. Li J.H. Niu L.Y. Zheng Z.J. Yan F. Photosensitive graphene transistors Adv. Mater. 2014 26 5239 5273 10.1002/adma.201400349 24715703 

  3. 3. Stankovich S. Dikin D.A. Dommett G.H.B. Kohlhaas K.M. Zimney E.J. Stach E.A. Piner R.D. Nguyen S.T. Ruoff R.S. Graphene-based composite materials Nature 2006 442 282 286 10.1038/nature04969 16855586 

  4. 4. Balandin A.A. Ghosh S. Bao W.Z. Calizo I. Teweldebrhan D. Miao F. Lau C.N. Superior thermal conductivity of single-layer graphene Nano Lett. 2008 8 902 907 10.1021/nl0731872 18284217 

  5. 5. Gomez-Navarro C. Weitz R.T. Bittner A.M. Scolari M. Mews A. Burghard M. Kern K. Electronic transport properties of individual chemically reduced graphene oxide sheets Nano Lett 2007 7 3499 3503 10.1021/nl072090c 17944526 

  6. 6. Lee C. Wei X.D. Kysar J.W. Hone J. Measurement of the elastic properties and intrinsic strength of monolayer graphene Science 2008 321 385 388 10.1126/science.1157996 18635798 

  7. 7. Parlak O. Turner A.P.F. Tiwari A. On/off-switchable zipper-like bioelectronics on a graphene interface Adv. Mater. 2014 26 482 486 10.1002/adma.201303075 24142541 

  8. 8. Stoller M.D. Park S.J. Zhu Y.W. An J.H. Ruoff R.S. Graphene-based ultracapacitors Nano Lett. 2008 8 3498 3502 10.1021/nl802558y 18788793 

  9. 9. Chung C. Kim Y.K. Shin D. Ryoo S.R. Hong B.H. Min D.H. Biomedical applications of graphene and graphene oxide Acc. Chem. Res. 2013 46 2211 2224 10.1021/ar300159f 23480658 

  10. 10. Dong H.Q. Li Y.Y. Yu J.H. Song Y.Y. Cai X.J. Liu J.Q. Zhang J.M. Ewing R.C. Shi D.L. A versatile multicomponent assembly via-cyclodextrin hostguest chemistry on graphene for biomedical applications Small 2013 9 446 456 10.1002/smll.201201003 23047287 

  11. 11. He C. Shi Z.Q. Ma L. Cheng C. Nie C.X. Zhou M. Zhao C.S. Graphene oxide based heparin-mimicking and hemocompatible polymeric hydrogels for versatile biomedical applications J. Mater. Chem. B 2015 3 592 602 10.1039/C4TB01806K 

  12. 12. Lee Y. Bae J.W. Thi T.T.H. Park K.M. Park K.D. Injectable and mechanically robust 4-arm PPO-PEO/graphene oxide composite hydrogels for biomedical applications Chem. Commun. 2015 51 8876 8879 10.1039/C5CC02511G 25925723 

  13. 13. Liu Y. Dang Z.H. Wang Y.Y. Huang J. Li H. Hydroxyapatite/graphene-nanosheet composite coatings deposited by vacuum cold spraying for biomedical applications: Inherited nanostructures and enhanced properties Carbon 2014 67 250 259 10.1016/j.carbon.2013.09.088 

  14. 14. Singh S.K. Singh M.K. Kulkarni P.P. Sonkar V.K. Gracio J.J.A. Dash D. Amine-modified graphene. Thrombo-protective safer alternative to graphene oxide for biomedical applications ACS Nano 2012 6 2731 2740 10.1021/nn300172t 22376049 

  15. 15. Turcheniuk K. Boukherroub R. Szunerits S. Gold-graphene nanocomposites for sensing and biomedical applications J. Mater. Chem. B 2015 3 4301 4324 10.1039/C5TB00511F 

  16. 16. Zhang Y. Nayak T.R. Hong H. Cai W.B. Graphene: A versatile nanoplatform for biomedical applications Nanoscale 2012 4 3833 3842 10.1039/c2nr31040f 22653227 

  17. 17. Xie H. Cao T. Gomes J.V. Neto A.H.C. Rosa V. Two and three-dimensional graphene substrates to magnify osteogenic differentiation of periodontal ligament stem cells Carbon 2015 93 266 275 10.1016/j.carbon.2015.05.071 

  18. 18. Kang S. Park J.B. Lee T.J. Ryu S. Bhang S.H. La W.G. Noh M.K. Hong B.H. Kim B.S. Covalent conjugation of mechanically stiff graphene oxide flakes to three-dimensional collagen scaffolds for osteogenic differentiation of human mesenchymal stem cells Carbon 2015 83 162 172 10.1016/j.carbon.2014.11.029 

  19. 19. Yoon H.H. Bhang S.H. Kim T. Yu T. Hyeon T. Kim B.S. Dual roles of graphene oxide in chondrogenic differentiation of adult stem cells: Cell-adhesion substrate and growth factor-delivery carrier Adv. Funct. Mater. 2014 24 6455 6464 10.1002/adfm.201400793 

  20. 20. Tatavarty R. Ding H. Lu G.J. Taylor R.J. Bi X.H. Synergistic acceleration in the osteogenesis of human mesenchymal stem cells by graphene oxide-calcium phosphate nanocomposites Chem. Commun. 2014 50 8484 8487 10.1039/C4CC02442G 24891127 

  21. 21. Akhavan O. Ghaderi E. Abouei E. Hatamie S. Ghasemi E. Accelerated differentiation of neural stem cells into neurons on ginseng-reduced graphene oxide sheets Carbon 2014 66 395 406 10.1016/j.carbon.2013.09.015 

  22. 22. Ryu S. Kim B.S. Culture of neural cells and stem cells on graphene Tissue Eng. Regen. Med. 2013 10 39 46 10.1007/s13770-013-0384-6 

  23. 23. Kim J. Kim Y.R. Kim Y. Lim K.T. Seonwoo H. Park S. Cho S.P. Hong B.H. Choung P.H. Chung T.D. Graphene-incorporated chitosan substrata for adhesion and differentiation of human mesenchymal stem cells J. Mater. Chem. B 2013 1 933 938 10.1039/c2tb00274d 

  24. 24. Sharma M. Afrin F. Tripathi R.P. Gangenahalli G. Transgene expression study of CXCR4 active mutants potential prospects in up-modulation of homing and engraftment efficiency of hematopoietic stem/progenitor cells Cell Adhes. Migr. 2014 8 384 388 10.4161/cam.29285 25482641 

  25. 25. Shetty P. Thakur A.M. Viswanathan C. Dopaminergic cells, derived from a high efficiency differentiation protocol from umbilical cord derived mesenchymal stem cells, alleviate symptoms in a parkinson's disease rodent model Cell Biol. Int. 2013 37 167 180 10.1002/cbin.10029 23339105 

  26. 26. Parte S. Bhartiya D. Telang J. Daithankar V. Salvi V. Zaveri K. Hinduja I. Detection, characterization, and spontaneous differentiation in vitro of very small embryonic-like putative stem cells in adult mammalian ovary Stem Cells Dev. 2011 20 1451 1464 10.1089/scd.2010.0461 21291304 

  27. 27. Lequeux C. Oni G. Mojallal A. Damour O. Brown S.A. Adipose derived stem cells: Efficiency, toxicity, stability of brdu labeling and effects on self-renewal and adipose differentiation Mol. Cell Biochem. 2011 351 65 75 10.1007/s11010-011-0712-x 21246262 

  28. 28. He H.A. Emmert M.R. Marshall A.G. Ji Y.J. Conrad C.A. Priebe W. Colman H. Lang F.F. Madden T.L. Induced phenotypic differentiation of glioblastoma stem cells revisited-detection of glycomic response based on metabolic labeling Neuro Oncol. 2010 12 119 127 

  29. 29. La Rocca G. Anzalone R. Corrao S. Magno F. Loria T. Lo Iacono M. Di Stefano A. Giannuzzi P. Marasa L. Cappello F. Isolation and characterization of Oct-4+/HLA-G+ mesenchymal stem cells from human umbilical cord matrix: Differentiation potential and detection of new markers Histochem. Cell Biol. 2009 131 267 282 10.1007/s00418-008-0519-3 18836737 

  30. 30. Brenner S. Whiting-Theobald N.L. Malech H.L. Relationship between length of cell culture, cell division, transduction efficiency and engraftment in NOD/SCID mice of human mobilized CD34 + peripheral blood stem cells Blood 2002 100 184A 12070026 

  31. 31. Reubinoff B.E. Pera M.F. Fong C.Y. Trounson A. Bongso A. Embryonic stem cell lines from human blastocysts: Somatic differentiation in vitro Nat. Biotechnol. 2000 18 399 404 10748519 

  32. 32. Lowell S. Jones P. Le Roux I. Dunne J. Watt F.M. Stimulation of human epidermal differentiation by delta-notch signalling at the boundaries of stem-cell clusters Curr. Biol. 2000 10 491 500 10.1016/S0960-9822(00)00451-6 10801437 

  33. 33. Yao X. Peng R. Ding J.D. Cell-material interactions revealed via material techniques of surface patterning Adv. Mater. 2013 25 5257 5286 10.1002/adma.201301762 24038153 

  34. 34. Wang X. Song W. Kawazoe N. Chen G. The osteogenic differentiation of mesenchymal stem cells by controlled cell-cell interaction on micropatterned surfaces J. Biomed. Mater. Res. A 2013 101 3388 3395 10.1002/jbm.a.34645 23554043 

  35. 35. Song W. Kawazoe N. Chen G.P. Dependence of spreading and differentiation of mesenchymal stem cells on micropatterned surface area J. Nanomater. 2011 2011 10.1155/2011/265251 

  36. 36. Tay C.Y. Yu H.Y. Pal M. Leong W.S. Tan N.S. Ng K.W. Leong D.T. Tan L.P. Micropatterned matrix directs differentiation of human mesenchymal stem cells towards myocardial lineage Exp. Cell Res. 2010 316 1159 1168 10.1016/j.yexcr.2010.02.010 20156435 

  37. 37. Solanki A. Shah S. Memoli K.A. Park S.Y. Hong S. Lee K.B. Controlling differentiation of neural stem cells using extracellular matrix protein patterns Small 2010 6 2509 2513 10.1002/smll.201001341 20859950 

  38. 38. Kilian K.A. Bugarija B. Lahn B.T. Mrksich M. Geometric cues for directing the differentiation of mesenchymal stem cells Proc. Natl. Acad. Sci. USA 2010 107 4872 4877 10.1073/pnas.0903269107 20194780 

  39. 39. Gao L. McBeath R. Chen C.S. Stem cell shape regulates a chondrogenic versus myogenic fate through RAC1 and n -cadherin Stem Cells 2010 28 564 572 10.1002/stem.308 20082286 

  40. 40. McBeath R. Pirone D.M. Nelson C.M. Bhadriraju K. Chen C.S. Cell shape, cytoskeletal tension, and rhoa regulate stem cell lineage commitment Dev. Cell 2004 6 483 495 10.1016/S1534-5807(04)00075-9 15068789 

  41. 41. Nayak T.R. Andersen H. Makam V.S. Khaw C. Bae S. Xu X.F. Ee P.L.R. Ahn J.H. Hong B.H. Pastorin G. Graphene for controlled and accelerated osteogenic differentiation of human mesenchymal stem cells ACS Nano 2011 5 4670 4678 10.1021/nn200500h 21528849 

  42. 42. Lee W.C. Lim C.H.Y.X. Shi H. Tang L.A.L. Wang Y. Lim C.T. Loh K.P. Origin of enhanced stem cell growth and differentiation on graphene and graphene oxide ACS Nano 2011 5 7334 7341 10.1021/nn202190c 21793541 

  43. 43. Talukdar Y. Rashkow J.T. Lalwani G. Kanakia S. Sitharaman B. The effects of graphene nanostructures on mesenchymal stem cells Biomaterials 2014 35 4863 4877 10.1016/j.biomaterials.2014.02.054 24674462 

  44. 44. Kim J. Park S. Kim Y.J. Jeon C.S. Lim K.T. Seonwoo H. Cho S.-P. Chung T.D. Choung P.-H. Choung Y.-H. Monolayer graphene-directed growth and neuronal differentiation of mesenchymal stem cells J. Biomed. Nanotechnol. 2015 11 2024 2033 10.1166/jbn.2015.2137 26554160 

  45. 45. Park S.Y. Park J. Sim S.H. Sung M.G. Kim K.S. Hong B.H. Hong S. Enhanced differentiation of human neural stem cells into neurons on graphene Adv. Mater. 2011 23 H263 H267 10.1002/adma.201101503 21823178 

  46. 46. Shah S. Yin P.T. Uehara T.M. Chueng S.T.D. Yang L.T. Lee K.B. Guiding stem cell differentiation into oligodendrocytes using graphene-nanofiber hybrid scaffolds Adv. Mater. 2014 26 3673 3680 10.1002/adma.201400523 24668911 

  47. 47. Li N. Zhang Q. Gao S. Song Q. Huang R. Wang L. Liu L.W. Dai J.W. Tang M.L. Cheng G.S. Three-dimensional graphene foam as a biocompatible and conductive scaffold for neural stem cells Sci. Rep. 2013 3 10.1038/srep01604 23549373 

  48. 48. Park J. Kim I.Y. Patel M. Moon H.J. Hwang S.J. Jeong B. 2D and 3D hybrid systems for enhancement of chondrogenic differentiation of tonsil-derived mesenchymal stem cells Adv. Funct. Mater. 2015 25 2573 2582 10.1002/adfm.201500299 

  49. 49. Park J. Kim B. Han J. Oh J. Park S. Ryu S. Jung S. Shin J.Y. Lee B.S. Hong B.H. Graphene oxide flakes as a cellular adhesive: Prevention of reactive oxygen species mediated death of implanted cells for cardiac repair ACS Nano 2015 9 4987 4999 10.1021/nn507149w 25919434 

  50. 50. Kim T.H. Lee K.B. Choi J.W. 3D graphene oxide-encapsulated gold nanoparticles to detect neural stem cell differentiation Biomaterials 2013 34 8660 8670 10.1016/j.biomaterials.2013.07.101 23937915 

  51. 51. Menaa F. 2-D graphene and derivatives-based scaffolds in regenerative medicine: Innovative boosters mimicking 3-D cell microenvironment J. Regen. Med. 2013 2 10.4172/2325-9620.1000e107 

  52. 52. Menaa F. Abdelghani A. Menaa B. Graphene nanomaterials as biocompatible and conductive scaffolds for stem cells: Impact for tissue engineering and regenerative medicine J Tissue Eng. Regen. Med. 2014 10.1002/term.1910 24917559 

  53. 53. Nair M. Nancy D. Krishnan A.G. Anjusree G.S. Vadukumpully S. Nair S.V. Graphene oxide nanoflakes incorporated gelatin-hydroxyapatite scaffolds enhance osteogenic differentiation of human mesenchymal stem cells Nanotechnology 2015 26 10.1088/0957-4484/26/16/161001 25824014 

  54. 54. Park J. Park S. Ryu S. Bhang S.H. Kim J. Yoon J.K. Park Y.H. Cho S.P. Lee S. Hong B.H. Graphene-regulated cardiomyogenic differentiation process of mesenchymal stem cells by enhancing the expression of extracellular matrix proteins and cell signaling molecules Adv. Healthc. Mater. 2014 3 176 181 10.1002/adhm.201300177 23949999 

  55. 55. Chaudhuri B. Bhadra D. Mondal B. Pramanik K. Biocompatibility of electrospun graphene oxide poly(epsilon-caprolactone) fibrous scaffolds with human cord blood mesenchymal stem cells derived skeletal myoblast Mater. Lett. 2014 126 109 112 10.1016/j.matlet.2014.04.008 

  56. 56. Shang Y. Zhang D. Liu Y.Y. Liu Y. Simultaneous synthesis of diverse graphene via electrochemical reduction of graphene oxide J. Appl. Electrochem. 2015 45 453 462 10.1007/s10800-015-0818-z 

  57. 57. Hayes W.I. Joseph P. Mughal M.Z. Papakonstantinou P. Production of reduced graphene oxide via hydrothermal reduction in an aqueous sulphuric acid suspension and its electrochemical behaviour J. Solid State Electrochem. 2015 19 361 380 10.1007/s10008-014-2560-6 

  58. 58. Kauppila J. Kunnas P. Damlin P. Viinikanoja A. Kvarnstrom C. Electrochemical reduction of graphene oxide films in aqueous and organic solutions Electrochim. Acta 2013 89 84 89 10.1016/j.electacta.2012.10.153 

  59. 59. Sasidharan A. Panchakarla L.S. Chandran P. Menon D. Nair S. Rao C.N.R. Koyakutty M. Differential nano-bio interactions and toxicity effects of pristine versus functionalized graphene Nanoscale 2011 3 2461 2464 10.1039/c1nr10172b 21562671 

  60. 60. Lv M. Zhang Y.J. Liang L. Wei M. Hu W.B. Li X.M. Huang Q. Effect of graphene oxide on undifferentiated and retinoic acid-differentiated SH-SY5Y cells line Nanoscale 2012 4 3861 3866 10.1039/c2nr30407d 22653613 

  61. 61. Yan L. Wang Y. Xu X. Zeng C. Hou J. Lin M. Xu J. Sun F. Huang X. Dai L. Can graphene oxide cause damage to eyesight? Chem. Res. Toxicol. 2012 25 1265 1270 10.1021/tx300129f 22587431 

  62. 62. Sasidharan A. Panchakarla L.S. Sadanandan A.R. Ashokan A. Chandran P. Girish C.M. Menon D. Nair S.V. Rao C.N.R. Koyakutty M. Hemocompatibility and macrophage response of pristine and functionalized graphene Small 2012 8 1251 1263 10.1002/smll.201102393 22334378 

  63. 63. Wang K. Ruan J. Song H. Zhang J.L. Wo Y. Guo S.W. Cui D.X. Biocompatibility of graphene oxide Nanoscale Res. Lett. 2011 6 1 8 10.1007/s11671-010-9751-6 

  64. 64. Chang Y.L. Yang S.T. Liu J.H. Dong E. Wang Y.W. Cao A.N. Liu Y.F. Wang H.F. In vitro toxicity evaluation of graphene oxide on A549 cells Toxicol. Lett. 2011 200 201 210 10.1016/j.toxlet.2010.11.016 21130147 

  65. 65. Carpio I.E.M. Santos C.M. Wei X. Rodrigues D.F. Toxicity of a polymer-graphene oxide composite against bacterial planktonic cells, biofilms, and mammalian cells Nanoscale 2012 4 4746 4756 10.1039/c2nr30774j 22751735 

  66. 66. Alzhavan O. Ghaderi E. Shahsavar M. Graphene nanogrids for selective and fast osteogenic differentiation of human mesenchymal stem cells Carbon 2013 59 200 211 

  67. 67. Orive G. Anitua E. Pedraz J.L. Emerich D.F. Biomaterials for promoting brain protection, repair and regeneration Nat. Rev. Neurosci. 2009 10 682 692 10.1038/nrn2685 19654582 

  68. 68. Ellis-Behnke R.G. Liang Y.X. You S.W. Tay D.K.C. Zhang S.G. So K.F. Schneider G.E. Nano neuro knitting: Peptide nanofiber scaffold for brain repair and axon regeneration with functional return of vision Proc. Natl. Acad. Sci. USA 2006 103 5054 5059 10.1073/pnas.0600559103 16549776 

  69. 69. Silva G.A. Czeisler C. Niece K.L. Beniash E. Harrington D.A. Kessler J.A. Stupp S.I. Selective differentiation of neural progenitor cells by high-epitope density nanofibers Science 2004 303 1352 1355 10.1126/science.1093783 14739465 

  70. 70. Akhavan O. Ghaderi E. Differentiation of human neural stem cells into neural networks on graphene nanogrids J. Mater. Chem. B 2013 1 6291 6301 10.1039/c3tb21085e 

  71. 71. Yang D.H. Li T. Xu M.H. Gao F. Yang J. Yang Z. Le W.D. Graphene oxide promotes the differentiation of mouse embryonic stem cells to dopamine neurons Nanomedicine 2014 9 2445 2455 10.2217/nnm.13.197 24564300 

  72. 72. Pezeshki-Modaress M. Mirzadeh H. Zandi M. Gelatin-gag electrospun nanofibrous scaffold for skin tissue engineering: Fabrication and modeling of process parameters Mater. Sci. Eng. C 2015 48 704 712 10.1016/j.msec.2014.12.023 25579974 

  73. 73. Xue J.J. He M. Liu H. Niu Y.Z. Crawford A. Coates P.D. Chen D.F. Shi R. Zhang L.Q. Drug loaded homogeneous electrospun PCL/gelatin hybrid nanofiber structures for anti-infective tissue regeneration membranes Biomaterials 2014 35 9395 9405 10.1016/j.biomaterials.2014.07.060 25134855 

  74. 74. Sulong A.F. Hassan N.H. Hwei N.M. Lokanathan Y. Naicker A.S. Abdullah S. Yusof M.R. Htwe O. Idrus R.B.H. Haflah N.H.M. Collagen-coated polylactic-glycolic acid (PLGA) seeded with neural-differentiated human mesenchymal stem cells as a potential nerve conduit Adv. Clin. Exp. Med. 2014 23 353 362 10.17219/acem/37125 24979505 

  75. 75. Iafisco M. Quirici N. Foltran I. Rimondini L. Electrospun collagen mimicking the reconstituted extracellular matrix improves osteoblastic differentiation onto titanium surfaces J. Nanosci. Nanotechnol. 2013 13 4720 4726 10.1166/jnn.2013.7195 23901496 

  76. 76. Crowder S.W. Prasai D. Rath R. Balikov D.A. Bae H. Bolotin K.I. Sung H.J. Three-dimensional graphene foams promote osteogenic differentiation of human mesenchymal stem cells Nanoscale 2013 5 4171 4176 10.1039/c3nr00803g 23592029 

  77. 77. Serrano M.C. Patino J. Garcia-Rama C. Ferrer M.L. Fierro J.L.G. Tamayo A. Collazos-Castro J.E. del Monte F. Gutierrez M.C. 3D free-standing porous scaffolds made of graphene oxide as substrates for neural cell growth J. Mater. Chem. B 2014 2 5698 5706 10.1039/C4TB00652F 

  78. 78. Guilak F. Cohen D.M. Estes B.T. Gimble J.M. Liedtke W. Chen C.S. Control of stem cell fate by physical interactions with the extracellular matrix Cell Stem Cell 2009 5 17 26 10.1016/j.stem.2009.06.016 19570510 

  79. 79. Pelham R.J. Wang Y.L. Cell locomotion and focal adhesions are regulated by substrate flexibility Proc. Natl. Acad. Sci. USA 1997 94 13661 13665 10.1073/pnas.94.25.13661 9391082 

  80. 80. Yan C. Sun J.G. Ding J.D. Critical areas of cell adhesion on micropatterned surfaces Biomaterials 2011 32 3931 3938 10.1016/j.biomaterials.2011.01.078 21356556 

  81. 81. Peng R. Yao X. Ding J.D. Effect of cell anisotropy on differentiation of stem cells on micropatterned surfaces through the controlled single cell adhesion Biomaterials 2011 32 8048 8057 10.1016/j.biomaterials.2011.07.035 21810538 

  82. 82. Kim T.H. Shah S. Yang L.T. Yin P.T. Hossain M.K. Conley B. Choi J.W. Lee K.B. Controlling differentiation of adipose-derived stem cells using combinatorial graphene hybrid-pattern arrays ACS Nano 2015 9 3780 3790 10.1021/nn5066028 25840606 

  83. 83. Bajaj P. Rivera J.A. Marchwiany D. Solovyeva V. Bashir R. Graphene-based patterning and differentiation of C2C12 myoblasts Adv. Healthc. Mater. 2014 3 995 1000 10.1002/adhm.201300550 24352858 

  84. 84. Yin P.T. Shah S. Chhowalla M. Lee K.B. Design, synthesis, and characterization of graphene-nanoparticle hybrid materials for bioapplications Chem. Rev. 2015 115 2483 2531 10.1021/cr500537t 25692385 

  85. 85. Solanki A. Chueng S.T.D. Yin P.T. Kappera R. Chhowalla M. Lee K.B. Axonal alignment and enhanced neuronal differentiation of neural stem cells on graphene-nanoparticle hybrid structures Adv. Mater. 2013 25 5477 5482 10.1002/adma.201302219 23824715 

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