Preparation and Characterization of the Magnetic Layered Double Hydroxide - DNA Delivery System

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The purpose of this paper is to prepare and evaluate a gene delivery system resulted from the intercalation of DNA with magnetic layered double hydroxide (MLDH). The structure and property of the MLDH/DNA hybrids were studied using XRD, FTIR and TG characterization. The cytotoxicity and protection effect of MLDH were evaluated by MTT assay and gel electrophoresis assay. MLDH exhibited lower cytotoxicity than other inorganic nanoparticles. Under physiological conditions, MLDH could protect DNA from enzymatic degradation. Our results confirmed that MLDH can be used safely and effectively as non-viral vectors for gene targeting therapy in form of MLDH/DNA composite.

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February 2018

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© 2018 Trans Tech Publications Ltd. All Rights Reserved

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[1] J.H. Choy, S.Y. Kwak, J.S. Park, Y.J. Jeong, J. Portier, Intercalative nanohybrids of nucleoside monophosphates and DNA in layered metal hydroxide, J. Am. Chem . Soc 121 (1999) 1399-400.

DOI: 10.1021/ja981823f

Google Scholar

[2] W. M. Kriven, S. Y. Kwak, M. A. Wallig, J. H. Choy, Bio-resorbable nanoceramics for gene and drug delivery, MRS Bull, 29 (2004) 33-37.

DOI: 10.1557/mrs2004.14

Google Scholar

[3] L. Desigaux, M. B. Belkacem, P. Richard, J. Cellier, P. Léone, L. Cario, Self-Assembly and characterization of layered double hydroxide/DNA hybrids, J. Nano. Lett. 6 (2005) 199-204.

DOI: 10.1021/nl052020a

Google Scholar

[4] J. H. Choy, S. J. Choi, J. M. Oh, T. Park, Clay minerals and layered double hydroxides for novel biological applications, J. Appl. Clay. Sci, 36 (2007) 122-132.

DOI: 10.1016/j.clay.2006.07.007

Google Scholar

[5] M. A. Thyveetil, P. V. Coveney, H. C. Greenwell, J. L. Suter, Computer simulation study of the structural stability and materials properties of DNA-intercalated layered double hydroxides, J. Am. Chem. Soc, 130 (2008) 4742-4756.

DOI: 10.1021/ja077679s

Google Scholar

[6] M. Abdelmoula, F. Trolard, G. Bourrié, J. Génin, Evidence for the Fe(II)-Fe(III) green rust Fougerite, mineral occurrence in a hydromorphic soil and its transformation with depth, hyperfine Interact, 112 (1998) 235-238.

DOI: 10.1016/s0883-2927(00)00043-3

Google Scholar

[7] G. J. Gou, F. J. Bao, J. H. Yang, Patent China, No. 101607088B, (2009).

Google Scholar

[8] G. J. Gou, F. J. Bao, J. H. Yang, Patent China, No. 101607091B, (2009).

Google Scholar

[9] G. J. Gou, Z. Y. Wang, Y. H. Liu, B. Xue, J. Huang, Y. Sun, The supra-molecular assembly characterization and urgent toxic level of Dextran-Magnetic Layered Double Hydroxide– Fluorouracil, drug delivery system, J. Acta. Chimica. Sinica, 70 (2012).

DOI: 10.6023/a1105183

Google Scholar

[10] G. J. Gou, Y. H. Liu, Y. Sun, J. Huang, B. Xue, L. E. Dong, Supra-molecular assembly and magnetic targeted slow-release effect of dextran-magnetic layered double hydroxide-fluorouracil, drug delivery system, J. Acta Pharma Sinica, 46 (2011).

DOI: 10.6023/a1105183

Google Scholar

[11] M. A. Thyveetil, P. V. Coveney, H. C. Greenwell, J. L. Suter, Role of host layer flexibility in DNA guest intercalation revealed by computer simulation of layered nanomaterials, J. Am. Chem. Soc 130 (2008) 12485-12495.

DOI: 10.1021/ja8037068

Google Scholar

[12] G. J. Gou, Y. H. Liu, Y. Sun, J. Huang, B. Xue, Ion Exchange Reaction Kinetics of Magnetic Layered Double Hydroxides with 5- Fluorouracil, J. Chem. J. Chinese. U, 1 (2012) 119-127.

Google Scholar

[13] F. J. Bao, G. J. Gou, S. J. Wang, Z. Y. Wang, R. Wang, Y. X. Jiang, C. J. Zhao, C. C. Hei, Magnetic targeted bio-distribution of Dextran - Magnetic LDH- Fluorouracil transfer model in natural rats, J. Chin Pham, 46 (2011) 128-133.

Google Scholar

[14] J. D. Bernal, F. R. S, D. R. Dasgupta, A. L. Mackay, Oriented transformations in iron oxides and hydroxides, Nature, 180 (1957) 645-647.

DOI: 10.1038/180645a0

Google Scholar

[15] J. Y. Kim, S. J. Choi, J. M. Oh, T. Park, J. H. Choy, Anticancer drug-inorganic nanohybrid and its cellular interaction, J. Nanosci Nanotechno, 7 (2007) 3700-3705.

DOI: 10.1166/jnn.2007.061

Google Scholar

[16] J. Min, S. J. Choi, S. T. Kim, J. H. Choy, Cellular uptake mechanism of an inorganic nanovehicle and its drug conjugates: enhanced efficacy due to clathrin-mediated endocytosis, J. Bioconjugate Chem, 17 (2006) 1411-1417.

DOI: 10.1021/bc0601323

Google Scholar

[17] S. Lanone, F. Rogerieux, J. Geys, A. Dupont, E. M. Marechal, J. Boczkowski, G. Lacroix, P. Hoet, Comparative toxicity of 24 manufactured nanoparticles in human alveolar epithelial and macrophage cell lines, J Part. Fibre Toxicol, 6 (2009) 1-12.

DOI: 10.1186/1743-8977-6-14

Google Scholar

[18] X. S. Zhu, L. Zhu, Z. Hua, R. Q. Qi, Y. Li, Y. P. Lang, Comparative toxicity of several metal oxide nanoparticle aqueous suspensions to Zebrafish (Danio rerio) early developmental stage, J Environ Sci Health A Tox Hazard Subst Environ Eng, 43(2008).

DOI: 10.1080/10934520701792779

Google Scholar

[19] S. J. Choi, O. H. Min, J. H. Choy, Safety aspect of inorganic layered nanoparticles: size-dependency in vitro and in vivo, J. Nanosci Nanotechno. 8 (2008) 5297-5301.

DOI: 10.1166/jnn.2008.1143

Google Scholar

[20] Tongamp, William, Q. W. Zhang, S. Fumio, Mechanochemical route for synthesizing nitrate form of layered double hydroxide, J. Powder Technol, 185 (2008) 43-48.

DOI: 10.1016/j.powtec.2007.09.013

Google Scholar

[21] W. L. He, Y. Geng, L. L. Xiao, Y. Y. Wei, X. E. Yang, Availability and toxicity of Fe(II) and Fe(III) in Caco-2 cells, J Zhejiang Univ Sci B, 9 (2008) 707-712.

DOI: 10.1631/jzus.b0820023

Google Scholar

[22] Y. H. Liu, G. J. Gou, Targeting transport and proliferation restraining effect of dextran-magnetic layered double hydroxide-fluorouracil dosing system on colon cancer cells, J Functional Materials and Applications, 2 (2011) 445-450.

Google Scholar

[23] S. J. Choi, J. M. Oh, J. H. Choy, Toxicological effects of inorganic nanoparticels on human lung cacer A549 celles, J. Inorg Biochem, 103 (2009) 463-471.

DOI: 10.1016/j.jinorgbio.2008.12.017

Google Scholar

[24] M. Huang, C. W. Fong, E. Khor, L. Y. Lim, Transfection efficiency of chitosan vectors: effect of polymer molecular weight and degree of deacetylation, J Controlled Release 106 (2005) 391-406.

DOI: 10.1016/j.jconrel.2005.05.004

Google Scholar

[25] J. Zabner, A. J. Fasbender, T. Moninger, K. A. Poellinger, M. J. Welsh, Cellular and molecular barriers to gene transfer by a cationic lipid, J. Biol Chem 270 (1995) 18997-19007.

DOI: 10.1074/jbc.270.32.18997

Google Scholar

[26] A. Li, L. L. Qin, W. R. Wang, R. R. Zhu, Y. C. Yu, H. Liu, S. L. Wang, The use of layered double hydroxides as DNA vaccine delivery vector for enhancement of anti-melanoma immune response, Biomaterials 32 (2011) 469-477.

DOI: 10.1016/j.biomaterials.2010.08.107

Google Scholar

[27] Z. P. Xu, T. L. Walker, K. L. Liu, H. M. Cooper, G. Q. M. Lu, P. F. Bartlett, Layered double hydroxide nanoparticles as cellular delivery vectors of supercoiled plasmid DNA, Int. J. Nanomedicine 2 (2007) 163-174.

Google Scholar