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MESOSTRUCTURED ALUMINOSILICATES AS CARRIERS FOR DOXYCYCLINE-BASED DRUG DELIVERY SYSTEMS

Mitran, Raul – Augustin, Nastase, Silviu, Bajenaru, Laura, Matei, Cristian, Berger, Daniela

First published: 2014-06-20https://doi.org/10.5593/sgem2014/b61/s24.016View metrics

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Publication details

Title
MESOSTRUCTURED ALUMINOSILICATES AS CARRIERS FOR DOXYCYCLINE-BASED DRUG DELIVERY SYSTEMS
Authors
Mitran, Raul – Augustin, Nastase, Silviu, Bajenaru, Laura, Matei, Cristian, Berger, Daniela
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 14th SGEM GeoConference on NANO, BIO AND GREEN TECHNOLOGIES FOR A SUSTAINABLE FUTURE
Publisher
Stef92 Technology
Year
2014
Pages
Not available yet
ISSN
1314-2704
ISBN
978-619-7105-20-9
Language
en
Publication type
Conference Paper
Keywords
References24
  1. Vallet- Regí, M.; Balas, F.; Arcos, D., Mesoporous Materials for Drug Delivery, Angewandte Chemie International Edition, 46, 40, 7548-7558, 2007.

  2. Tang, F.; Li, L.; Chen, D., Mesoporous Silica Nanoparticles: Synthesis, Biocompatibility and Drug Delivery, Advanced Materials, 24, 12, 1504-1534, 2012.

  3. Sevimli, F.; Yılmaz, A., Surface functionalization of SBA -15 particles for amoxicillin delivery, Microporous and Mesoporous Materials, 158, 0, 281-291, 2012.

  4. Nastase, S.; Bajenaru, L.; Matei, C.; Mitran, R. A.; Berger, D., Ordered mesoporous silica and aluminosilicate-type matrix for amikacin delivery systems, Microporous and Mesoporous Materials, 182, 0, 32-39, 2013.

  5. Injac, R.; Djordjevic-Milic, V.; Srdjenovic, B., Thermostability Testing and Degradation Profiles of Doxycycline in Bulk, Tablets, and Capsules by HPLC, Journal of Chromatographic Science, 45, 9, 623-628, 2007.

  6. Băjenaru, L.; Năstase, S.; Matei, C.; Berger, D., Studies On The Synthesis Of Mesoporous Aluminosilicates As Carries For Drug Delivery Systems, UPB Sci. Bull. Series B, 73, 4, 45 - 50, 2011.

  7. Li, Y.; Zhang, W.; Zhang, L.; Yang, Q.; Wei, Z.; Feng, Z.; Li, C., Direct Synthesis of Al−SBA-15 Mesoporous Materials via Hydrolysis-Controlled Approach, The Journal of Physical Chemistry B, 108, 28, 9739-9744, 2004.

  8. Gallo, J. M. R.; Bisio, C.; Gatti, G.; Marchese, L.; Pastore, H. O., Physicochemical Characterization and Surface Acid Properties of Mesoporous [Al]-SBA-15 Obtained by Direct Synthesis, Langmuir, 26, 8, 5791-5800, 2010.

  9. Shi, L.; Xu, Y.; Zhang, N.; Lin, S.; Li, X.; Guo, P.; Li, X., Direct synthesis of Al- SBA-15 containing aluminosilicate species plugs in an acid-free medium and structural adjustment by hydrothermal post-treatment, Journal of Solid State Chemistry, 203, 281 - 290, 2013.

  10. Maria, G.; Berger, D.; Nastase, S.; Luta, I., Kinetic studies on the irinotecan release based on structural properties of functionalized mesoporous-silica supports, Microporous and Mesoporous Materials, 149, 1, 25-35, 2012.

  11. Kosmidis, K.; Argyrakis, P.; Macheras, P., Fractal kinetics in drug release from finite fractal matrices, The Journal of Chemical Physics, 119, 12, 6373-6377, 2003.

  12. Papadopoulou, V.; Kosmidis, K.; Vlachou, M.; Macheras, P., On the use of the Weibull function for the discernment of drug release mechanisms, International Journal of Pharmaceutics, 309, 1– 2, 44-50, 2006.

  13. Vallet- Regí, M.; Balas, F.; Arcos, D., Mesoporous Materials for Drug Delivery, Angewandte Chemie International Edition, 46, 40, 7548-7558, 2007.

  14. Tang, F.; Li, L.; Chen, D., Mesoporous Silica Nanoparticles: Synthesis, Biocompatibility and Drug Delivery, Advanced Materials, 24, 12, 1504-1534, 2012.

  15. Sevimli, F.; Yılmaz, A., Surface functionalization of SBA -15 particles for amoxicillin delivery, Microporous and Mesoporous Materials, 158, 0, 281-291, 2012.

  16. Nastase, S.; Bajenaru, L.; Matei, C.; Mitran, R. A.; Berger, D., Ordered mesoporous silica and aluminosilicate-type matrix for amikacin delivery systems, Microporous and Mesoporous Materials, 182, 0, 32-39, 2013.

  17. Injac, R.; Djordjevic-Milic, V.; Srdjenovic, B., Thermostability Testing and Degradation Profiles of Doxycycline in Bulk, Tablets, and Capsules by HPLC, Journal of Chromatographic Science, 45, 9, 623-628, 2007.

  18. Băjenaru, L.; Năstase, S.; Matei, C.; Berger, D., Studies On The Synthesis Of Mesoporous Aluminosilicates As Carries For Drug Delivery Systems, UPB Sci. Bull. Series B, 73, 4, 45 - 50, 2011.

  19. Li, Y.; Zhang, W.; Zhang, L.; Yang, Q.; Wei, Z.; Feng, Z.; Li, C., Direct Synthesis of Al−SBA-15 Mesoporous Materials via Hydrolysis-Controlled Approach, The Journal of Physical Chemistry B, 108, 28, 9739-9744, 2004.

  20. Gallo, J. M. R.; Bisio, C.; Gatti, G.; Marchese, L.; Pastore, H. O., Physicochemical Characterization and Surface Acid Properties of Mesoporous [Al]-SBA-15 Obtained by Direct Synthesis, Langmuir, 26, 8, 5791-5800, 2010.

  21. Shi, L.; Xu, Y.; Zhang, N.; Lin, S.; Li, X.; Guo, P.; Li, X., Direct synthesis of Al- SBA-15 containing aluminosilicate species plugs in an acid-free medium and structural adjustment by hydrothermal post-treatment, Journal of Solid State Chemistry, 203, 281 - 290, 2013.

  22. Maria, G.; Berger, D.; Nastase, S.; Luta, I., Kinetic studies on the irinotecan release based on structural properties of functionalized mesoporous-silica supports, Microporous and Mesoporous Materials, 149, 1, 25-35, 2012.

  23. Kosmidis, K.; Argyrakis, P.; Macheras, P., Fractal kinetics in drug release from finite fractal matrices, The Journal of Chemical Physics, 119, 12, 6373-6377, 2003.

  24. Papadopoulou, V.; Kosmidis, K.; Vlachou, M.; Macheras, P., On the use of the Weibull function for the discernment of drug release mechanisms, International Journal of Pharmaceutics, 309, 1– 2, 44-50, 2006.

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Number of times cited according to Crossref: 1

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