Multimodal Magnetic Core–Shell Nanoparticles for Effective Stem-Cell Differentiation and Imaging†
Birju Shah
Department of Chemistry & Chemical Biology, Institute for Advanced Materials, Devices and Nanotechnology (IAMDN), Rutgers, The State University of New Jersey, Piscataway, NJ 08854 (USA) http://rutchem.rutgers.edu/∼kbleeweb/
Search for more papers by this authorPerry T. Yin
Department of Biomedical Engineering, Rutgers, The State, University of New Jersey, Piscataway, NJ 08854 (USA)
Search for more papers by this authorShraboni Ghoshal
Department of Chemistry & Chemical Biology, Institute for Advanced Materials, Devices and Nanotechnology (IAMDN), Rutgers, The State University of New Jersey, Piscataway, NJ 08854 (USA) http://rutchem.rutgers.edu/∼kbleeweb/
Search for more papers by this authorCorresponding Author
Prof. Ki-Bum Lee
Department of Chemistry & Chemical Biology, Institute for Advanced Materials, Devices and Nanotechnology (IAMDN), Rutgers, The State University of New Jersey, Piscataway, NJ 08854 (USA) http://rutchem.rutgers.edu/∼kbleeweb/
Department of Chemistry & Chemical Biology, Institute for Advanced Materials, Devices and Nanotechnology (IAMDN), Rutgers, The State University of New Jersey, Piscataway, NJ 08854 (USA) http://rutchem.rutgers.edu/∼kbleeweb/Search for more papers by this authorBirju Shah
Department of Chemistry & Chemical Biology, Institute for Advanced Materials, Devices and Nanotechnology (IAMDN), Rutgers, The State University of New Jersey, Piscataway, NJ 08854 (USA) http://rutchem.rutgers.edu/∼kbleeweb/
Search for more papers by this authorPerry T. Yin
Department of Biomedical Engineering, Rutgers, The State, University of New Jersey, Piscataway, NJ 08854 (USA)
Search for more papers by this authorShraboni Ghoshal
Department of Chemistry & Chemical Biology, Institute for Advanced Materials, Devices and Nanotechnology (IAMDN), Rutgers, The State University of New Jersey, Piscataway, NJ 08854 (USA) http://rutchem.rutgers.edu/∼kbleeweb/
Search for more papers by this authorCorresponding Author
Prof. Ki-Bum Lee
Department of Chemistry & Chemical Biology, Institute for Advanced Materials, Devices and Nanotechnology (IAMDN), Rutgers, The State University of New Jersey, Piscataway, NJ 08854 (USA) http://rutchem.rutgers.edu/∼kbleeweb/
Department of Chemistry & Chemical Biology, Institute for Advanced Materials, Devices and Nanotechnology (IAMDN), Rutgers, The State University of New Jersey, Piscataway, NJ 08854 (USA) http://rutchem.rutgers.edu/∼kbleeweb/Search for more papers by this authorThis work was financially supported by the NIH Director’s Innovator Award [(1DP20D006462-01), K.B.L.] and a N.J. Commission on Spinal Cord grant [(09-3085-SCR-E-0), K.B.L.]. P.T.Y. would like to acknowledge NIH Biotechnology Training Grant for support. We would like to thank Prasad Subramaniam and Nicholas Pasquale for their useful comments on the manuscript.
Graphical Abstract
Special delivery! The title system, composed of a highly magnetic core surrounded by a thin uniform gold shell, has been synthesized and applied to the magnetically facilitated delivery of genetic material (siRNA or plasmid DNA) into neural stem cells (NSCs) for controlling their neural differentiation in a spatiotemporally controlled, biocompatible manner.
Supporting Information
As a service to our authors and readers, this journal provides supporting information supplied by the authors. Such materials are peer reviewed and may be re-organized for online delivery, but are not copy-edited or typeset. Technical support issues arising from supporting information (other than missing files) should be addressed to the authors.
Filename | Description |
---|---|
anie_201302245_sm_miscellaneous_information.pdf1.2 MB | miscellaneous_information |
Please note: The publisher is not responsible for the content or functionality of any supporting information supplied by the authors. Any queries (other than missing content) should be directed to the corresponding author for the article.
References
- 1
- 1aE. Fuchs, T. Tumbar, G. Guasch, Cell 2004, 116, 769;
- 1bT. Reya, S. J. Morrison, M. F. Clarke, I. L. Weissman, Nature 2001, 414, 105;
- 1cJ. M. Gimble, A. J. Katz, B. A. Bunnell, Circ. Res. 2007, 100, 1249;
- 1dG. C. Gurtner, S. Werner, Y. Barrandon, M. T. Longaker, Nature 2008, 453, 314;
- 1eC. E. Murry, G. Keller, Cell 2008, 132, 661.
- 2
- 2aU. Lakshmipathy, B. Pelacho, K. Sudo, J. L. Linehan, E. Coucouvanis, D. S. Kaufman, C. M. Verfaillie, Stem Cells 2004, 22, 531;
- 2bA. Solanki, J. D. Kim, K.-B. Lee, Nanomedicine 2008, 3, 567;
- 2cL. Ferreira, J. M. Karp, L. Nobre, R. Langer, Cell Stem Cell 2008, 3, 136.
- 3
- 3aX. Y. Zhang, V. F. La Russa, L. Bao, J. Kolls, P. Schwarzenberger, J. Reiser, Mol. Ther. 2002, 5, 555;
- 3bY. Ma, A. Ramezani, R. Lewis, R. G. Hawley, J. A. Thomson, Stem Cells 2003, 21, 111.
- 4D. W. Pack, A. S. Hoffman, S. Pun, P. S. Stayton, Nat. Rev. Drug Discovery 2005, 4, 581.
- 5
- 5aC. Sapet, N. Laurent, A. de Chevigny, L. Le Gourrierec, E. Bertosio, O. Zelphati, C. Beclin, Biotechniques 2011, 50, 187;
- 5bL.-Y. Chien, J.-K. Hsiao, S.-C. Hsu, M. Yao, C.-W. Lu, H.-M. Liu, Y.-C. Chen, C.-S. Yang, D.-M. Huang, Biomaterials 2011, 32, 3275;
- 5cS. I. Jenkins, M. R. Pickard, N. Granger, D. M. Chari, ACS Nano 2011, 5, 6527.
- 6T. Hyeon, Chem. Commun. 2003, 927.
- 7
- 7aJ. K. Park, J. Jung, P. Subramaniam, B. P. Shah, C. Kim, J. K. Lee, J. H. Cho, C. Lee, K. B. Lee, Small 2011, 7, 1647;
- 7bW. S. Seo, J. H. Lee, X. Sun, Y. Suzuki, D. Mann, Z. Liu, M. Terashima, P. C. Yang, M. V. McConnell, D. G. Nishimura, H. Dai, Nat. Mater. 2006, 5, 971.
- 8J. T. Jang, H. Nah, J. H. Lee, S. H. Moon, M. G. Kim, J. Cheon, Angew. Chem. 2009, 121, 1260; Angew. Chem. Int. Ed. 2009, 48, 1234.
- 9
- 9aL. Y. Wang, H. Y. Park, S. I. I. Lim, M. J. Schadt, D. Mott, J. Luo, X. Wang, C. J. Zhong, J. Mater. Chem. 2008, 18, 2629;
- 9bC. Tassa, S. Y. Shaw, R. Weissleder, Acc. Chem. Res. 2011, 44, 842;
- 9cJ. Huang, L. H. Bu, J. Xie, K. Chen, Z. Cheng, X. G. Li, X. Y. Chen, ACS Nano 2010, 4, 7151;
- 9dW. R. Zhao, J. L. Gu, L. X. Zhang, H. R. Chen, J. L. Shi, J. Am. Chem. Soc. 2005, 127, 8916.
- 10S. Laurent, D. Forge, M. Port, A. Roch, C. Robic, L. V. Elst, R. N. Muller, Chem. Rev. 2008, 108, 2064.
- 11
- 11aR. Ghosh Chaudhuri, S. Paria, Chem. Rev. 2012, 112, 2373;
- 11bH. Y. Zhang, M. Y. Lee, M. G. Hogg, J. S. Dordick, S. T. Sharfstein, ACS Nano 2010, 4, 4733.
- 12
- 12aS. Wang, K.-J. Chen, T.-H. Wu, H. Wang, W.-Y. Lin, M. Ohashi, P.-Y. Chiou, H.-R. Tseng, Angew. Chem. 2010, 122, 3865; Angew. Chem. Int. Ed. 2010, 49, 3777;
- 12bY. D. Jin, C. X. Jia, S. W. Huang, M. O’Donnell, X. H. Gao, Nat. Commun. 2010, 1, 1.
- 13C. Xu, J. Xie, D. Ho, C. Wang, N. Kohler, E. G. Walsh, J. R. Morgan, Y. E. Chin, S. Sun, Angew. Chem. 2008, 120, 179; Angew. Chem. Int. Ed. 2008, 47, 173.
- 14Z. Xu, Y. Hou, S. Sun, J. Am. Chem. Soc. 2007, 129, 8698.
- 15S. Guo, Y. Huang, Q. Jiang, Y. Sun, L. Deng, Z. Liang, Q. Du, J. Xing, Y. Zhao, P. C. Wang, A. Dong, X.-J. Liang, ACS Nano 2010, 4, 5505.
- 16
- 16aI. Robinson, L. D. Tung, S. Maenosono, C. Waelti, N. T. K. Thanh, Nanoscale 2010, 2, 2624;
- 16bZ. H. Ban, Y. A. Barnakov, V. O. Golub, C. J. O’Connor, J. Mater. Chem. 2005, 15, 4660.
- 17C. Kim, B. P. Shah, P. Subramaniam, K.-B. Lee, Mol. Pharm. 2011, 8, 1955.
- 18M. R. Pickard, P. Barraud, D. M. Chari, Biomaterials 2011, 32, 2274.
- 19Y. Li, W.-M. Lau, K.-F. So, Y. Tong, J. Shen, Neurochem. Int. 2011, 59, 114.
- 20
- 20aM. Wegner, C. C. Stolt, Trends Neurosci. 2005, 28, 583;
- 20bC. C. Stolt, P. Lommes, E. Sock, M. C. Chaboissier, A. Schedl, M. Wegner, Genes Dev. 2003, 17, 1677;
- 20cA. Solanki, S. Shah, P. T. Yin, K.-B. Lee, Sci. Rep. 2013, 3, 1553.
- 21
- 21aM. A. El-Sayed, Acc. Chem. Res. 2001, 34, 257;
- 21bC. J. Murphy, A. M. Gole, J. W. Stone, P. N. Sisco, A. M. Alkilany, E. C. Goldsmith, S. C. Baxter, Acc. Chem. Res. 2008, 41, 1721.
- 22P. K. Jain, X. H. Huang, I. H. El-Sayed, M. A. El-Sayed, Acc. Chem. Res. 2008, 41, 1578.