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DEVELOPMENT OF PROLONGED-RELEASE SYSTEMS WITH MAGNOLOL BASED ON SILICA SBA-15

Stefanache, Alina, Tomoiaga, Alina M., Peptu, Catalina A., Spac, Adrian, Ochiuz, Lacramioara

First published: 2015-06-20https://doi.org/10.5593/sgem2015/b61/s24.008View metrics

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Publication details

Title
DEVELOPMENT OF PROLONGED-RELEASE SYSTEMS WITH MAGNOLOL BASED ON SILICA SBA-15
Authors
Stefanache, Alina, Tomoiaga, Alina M., Peptu, Catalina A., Spac, Adrian, Ochiuz, Lacramioara
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 15th International Multidisciplinary Scientific GeoConference SGEM2015, NANO, BIO AND GREEN TECHNOLOGIES FOR A SUSTAINABLE FUTURE
Publisher
Stef92 Technology
Year
2015
Pages
53-60
ISSN
1314-2704
ISBN
978-619-7105-42-1
Language
en
Publication type
Conference Paper
Keywords
References24
  1. Chen Y.-H., et all. Liu P. -L., Magnolol: A multifunctional compound isolated from the Chinese medicinal plant Magnolia officinalis, Eur. J. Integrat. Med., 2011, 3, e317.

  2. Lee Y.-J., Lee Y.M., Lee C.-K., Jung J.K., Han S.B., Hong J.T., Therapeutic applications of compounds in Magnolia family, Pharmacol. & Therap., 2011, 130, 157.

  3. Wang L., Waltenberger B., at.all, Atanasov A.G., Natural product agonists of peroxisome proliferator-activated receptor gamma (PPAR- ): a review, Biochem. Pharmacol., 2014, DOI: 10.1016/j.bcp.2014.07.018

  4. Tsai, T.H., et.all., Chen, C.F., Pharmacokinetic and pharmacodynamic studies of magnolol after oral administration in rats, Pharm. Pharmacol. Comm. 1996. 2, 191.

  5. Lu, J., Liong, M., Li, Z.X., Zink, J.J., Tamanoi, F., Biocompatibility, Biodistribution, and Drug-Delivery Efficiency of Mesoporous Silica Nanoparticles for Cancer Therapy in Animals, Small, 2010, 6, 1794.

  6. Vallet-Regi, M., Balas, F., Arcos, D., Mesoporous Materials for Drug Delivery , Angew. Chem. Int. Ed., 2007, 46, pp.7548.

  7. Rosenholm, J.M., Linden, M., Towards establishing structure –activity relationships for mesoporous silica in drug delivery applications, J. Control. Rel., 2008, 128, 157.

  8. Ferrari M, Cancer nanotechnology: opportunities and challenges, Nat. Rev. Cancer, 2005, 5, pp. 161.

  9. Zhao D., Huo Q., Feng J., Chemlka B.F., Stucky G.D., Nonionic Triblock and Star Diblock Copolymer and Oligomeric Surfactant Syntheses of Highly Ordered, Hydrothermally Stable, Mesoporous Silica Structures, J. Am. Chem. Soc., 1998, 120, pp. 6024 - 6036;

  10. Zhao D., Feng J., Huo Q., Melosh N., Frederickson G.H., Chmelka B.F., Stucky G.D., Triblock Copolymer Syntheses of Mesoporous Silica with Periodic 50 to 300 Angstrom Pores, Science, 1998, 279, pp. 548 - 552.

  11. Ryoo R., Ko C.H., Kruk M., Antochshuk V., Jaroniec M., Block-Copolymer- Templated Ordered Me soporous Silica: Array of Uniform Mesopores or Mesopore−Micropore Network J. Phys. Chem. B: Chem., 2000, 104, pp. 11465 - 11471.

  12. F. Rouquerol, J. Rouquerol, and K. Sing, Adsorption by powders and porous solids, Acad. Press, 1999. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

  13. Chen Y.-H., et all. Liu P. -L., Magnolol: A multifunctional compound isolated from the Chinese medicinal plant Magnolia officinalis, Eur. J. Integrat. Med., 2011, 3, e317.

  14. Lee Y.-J., Lee Y.M., Lee C.-K., Jung J.K., Han S.B., Hong J.T., Therapeutic applications of compounds in Magnolia family, Pharmacol. & Therap., 2011, 130, 157.

  15. Wang L., Waltenberger B., at.all, Atanasov A.G., Natural product agonists of peroxisome proliferator-activated receptor gamma (PPAR- ): a review, Biochem. Pharmacol., 2014, DOI: 10.1016/j.bcp.2014.07.018

  16. Tsai, T.H., et.all., Chen, C.F., Pharmacokinetic and pharmacodynamic studies of magnolol after oral administration in rats, Pharm. Pharmacol. Comm. 1996. 2, 191.

  17. Lu, J., Liong, M., Li, Z.X., Zink, J.J., Tamanoi, F., Biocompatibility, Biodistribution, and Drug-Delivery Efficiency of Mesoporous Silica Nanoparticles for Cancer Therapy in Animals, Small, 2010, 6, 1794.

  18. Vallet-Regi, M., Balas, F., Arcos, D., Mesoporous Materials for Drug Delivery , Angew. Chem. Int. Ed., 2007, 46, pp.7548.

  19. Rosenholm, J.M., Linden, M., Towards establishing structure –activity relationships for mesoporous silica in drug delivery applications, J. Control. Rel., 2008, 128, 157.

  20. Ferrari M, Cancer nanotechnology: opportunities and challenges, Nat. Rev. Cancer, 2005, 5, pp. 161.

  21. Zhao D., Huo Q., Feng J., Chemlka B.F., Stucky G.D., Nonionic Triblock and Star Diblock Copolymer and Oligomeric Surfactant Syntheses of Highly Ordered, Hydrothermally Stable, Mesoporous Silica Structures, J. Am. Chem. Soc., 1998, 120, pp. 6024 - 6036;

  22. Zhao D., Feng J., Huo Q., Melosh N., Frederickson G.H., Chmelka B.F., Stucky G.D., Triblock Copolymer Syntheses of Mesoporous Silica with Periodic 50 to 300 Angstrom Pores, Science, 1998, 279, pp. 548 - 552.

  23. Ryoo R., Ko C.H., Kruk M., Antochshuk V., Jaroniec M., Block-Copolymer- Templated Ordered Me soporous Silica: Array of Uniform Mesopores or Mesopore−Micropore Network J. Phys. Chem. B: Chem., 2000, 104, pp. 11465 - 11471.

  24. F. Rouquerol, J. Rouquerol, and K. Sing, Adsorption by powders and porous solids, Acad. Press, 1999. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

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Number of times cited according to Crossref: 1

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