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Development of a Doxycycline Hydrochloride-Loaded Electrospun Nanofibrous Membrane for GTR/GBR Applications

Published: 01 March 2016 Publication History

Abstract

A drug-loaded membrane was prepared by electrospinning Poly ε-caprolactone PCL with doxycycline hydrochloride DOX 15–25% w/w. Scanning electron microscopy SEM images revealed that fibrous average diameter decreased from 247.16±57.61 nm to 194.43±43.33 nm with the drug proportion increasing from 15% to 20% w/w, while there was no significant difference between 20% and 25% groups. The polymer matrix showed good encapsulation value 58–75% for DOX, and the drug showed an amorphous manner in the polymer matrix. The agar diffusion test revealed that DOX-loaded membranes had an obvious inhibited effect on Aggregatibacter actinomycetemcomitans Aa and Porphyromonas gingivalis Pg, respectively. In vitro release test showed that DOX could persistently be released for a prolonged time more than 28 days, and the DOX level in the eluent steadied at 3–5 μg/mL which was all above the minimum inhibitory concentration MIC of DOX against Aa 0.125 μg/mL and Pg 0.0625 μg/mL. Cytocompatibility, assessed in human periodontal ligament cells hPLCs by MTT-test and the morphology of cells on the surface of DOX-loaded membranes by SEM, indicated that all of the investigated nanofibrous membranes can be used to treat periodontal disease by integrating the GTR/GBR operation and antibiotic therapy. Above all, DOX-loaded nanofibrous membranes could have a persistent inhibited effect on periodontal pathogens to provide a relatively sterile environment for tissue repair and regeneration.

References

[1]
M.C. Bottino, V. Thomas, and G. M. Janowski, "A novel spatially designed and functionally graded electrospun membrane for periodontal regeneration," Acta Biomaterialia, vol. 7, no. 1, pp. 216-224, 2011.
[2]
E. Milella, P. A. Ramires, E. Brescia, G. La Sala, L. Di Paola, and V. Bruno, "Physicochemical, mechanical, and biological properties of commercial membranes for GTR," Journal of Biomedical Materials Research, vol. 58, no. 4, pp. 427-435, 2001.
[3]
J. Behring, R. Junker, X. F. Walboomers, B. Chessnut, and J. A. Jansen, "Toward guided tissue and bone regeneration: morphology, attachment, proliferation, and migration of cells cultured on collagen barrier membranes. A systematic review," Odontology, vol. 96, no. 1, pp. 1-11, 2008.
[4]
G. Greenstein and A. Polson, "The role of local drug delivery in the management of periodontal diseases: a comprehensive review," Journal of Periodontology, vol. 69, no. 5, pp. 507-520, 1998.
[5]
K. Garvin and C. Feschuk, "Polylactide-polyglycolide antibiotic implants," Clinical Orthopaedics and Related Research, no. 437, pp. 105-110, 2005.
[6]
L. Lazzarini, J. T. Mader, and J. H. Calhoun, "Osteomyelitis in long bones," Journal of Bone and Joint Surgery A, vol. 86, no. 10, pp. 2305-2318, 2004.
[7]
D. W.-C. Chen, F.-Y. Lee, J.-Y. Liao, S.-J. Liu, C.-Y. Hsiao, and J.-K. Chen, "Preclinical experiments on the release behavior of biodegradable nanofibrous multipharmaceutical membranes in a model of four-wall intrabony defect," Antimicrobial Agents and Chemotherapy, vol. 57, no. 1, pp. 9-14, 2013.
[8]
S. Nyman, J. Gottlow, T. Karring, and J. Lindhe, "The regenerative potential of the periodontal ligament. An experimental study in the monkey," Journal of Clinical Periodontology, vol. 9, no. 3, pp. 257-265, 1982.
[9]
J. Gottlow, S. Nyman, T. Karring, and J. Lindhe, "New attachment formation as the result of controlled tissue regeneration," Journal of Clinical Periodontology, vol. 11, no. 8, pp. 494-503, 1984.
[10]
S. E. Gilchrist, D. Lange, K. Letchford, H. Bach, L. Fazli, and H. M. Burt, "Fusidic acid and rifampicin co-loaded PLGA nanofibers for the prevention of orthopedic implant associated infections," Journal of Controlled Release, vol. 170, no. 1, pp. 64- 73, 2013.
[11]
N. Bhardwaj and S. C. Kundu, "Electrospinning: a fascinating fiber fabrication technique," Biotechnology Advances, vol. 28, no. 3, pp. 325-347, 2010.
[12]
T. J. Sill and H. A. von Recum, "Electrospinning: applications in drug delivery and tissue engineering," Biomaterials, vol. 29, no. 13, pp. 1989-2006, 2008.
[13]
S. G. Kumbar, L. S. Nair, S. Bhattacharyya, and C. T. Laurencin, "Polymeric nanofibers as novel carriers for the delivery of therapeutic molecules," Journal of Nanoscience and Nanotechnology, vol. 6, no. 9-10, pp. 2591-2607, 2006.
[14]
Y. J. Son, W. J. Kim, and H. S. Yoo, "Therapeutic applications of electrospun nanofibers for drug delivery systems," Archives of Pharmacal Research, vol. 37, no. 1, pp. 69-78, 2014.
[15]
M. Zamani, M. P. Prabhakaran, and S. Ramakrishna, "Advances in drug delivery via electrospun and electrosprayed nanomaterials," International Journal of Nanomedicine, vol. 8, pp. 2997- 3017, 2013.
[16]
E. Luong-Van, L. Grøndahl, K. N. Chua, K. W. Leong, V. Nurcombe, and S.M. Cool, "Controlled release of heparin from poly(¿-caprolactone) electrospun fibers," Biomaterials, vol. 27, no. 9, pp. 2042-2050, 2006.
[17]
J. Chen, B. Zhou, Q. Li et al., "PLLA-PEG-TCH-labeled bioactive molecule nanofibers for tissue engineering.," International journal of nanomedicine, vol. 6, pp. 2533-2542, 2011.
[18]
M. Zamani, M. Morshed, J. Varshosaz, and M. Jannesari, "Controlled release of metronidazole benzoate from poly epsilon-caprolactone electrospun nanofibers for periodontal diseases," European Journal of Pharmaceutics and Biopharmaceutics, vol. 75, no. 2, pp. 179-185, 2010.
[19]
M. Reise, R. Wyrwa, U. Müller et al., "Release of metronidazole from electrospun poly(L-lactide-co-D/L-lactide) fibers for local periodontitis treatment," Dental Materials, vol. 28, no. 2, pp. 179-188, 2012.
[20]
S. Garrett, D. F. Adams, G. Bogle et al., "The effect of locally delivered controlled-release doxycycline or scaling and root planing on periodontal maintenance patients over 9 months," Journal of Periodontology, vol. 71, no. 1, pp. 22-30, 2000.
[21]
T. P. Chaturvedi, R. Srivastava, A. K. Srivastava, V. Gupta, and P. K. Verma, "Doxycycline poly e-caprolactone nanofibers in patients with chronic periodontitis--a clinical evaluation," Journal of Clinical and Diagnostic Research, vol. 7, no. 10, pp. 2339-2342, 2013.
[22]
M. Jannesari, J. Varshosaz, M. Morshed, and M. Zamani, "Composite poly(vinyl alcohol)/poly(vinyl acetate) electrospun nanofibrous mats as a novel wound dressing matrix for controlled release of drugs," International Journal of Nanomedicine, vol. 6, pp. 993-1003, 2011.
[23]
S. Gautam, A. K. Dinda, and N. C. Mishra, "Fabrication and characterization of PCL/gelatin composite nanofibrous scaffold for tissue engineering applications by electrospinning method," Materials Science and Engineering C, vol. 33, no. 3, pp. 1228- 1235, 2013.
[24]
M. C. Bottino, R. A. Arthur, R. A. Waeiss, K. Kamocki, K. S. Gregson, and R. L. Gregory, "Biodegradable nanofibrous drug delivery systems: effects of metronidazole and ciprofloxacin on periodontopathogens and commensal oral bacteria," Clinical Oral Investigations, vol. 18, no. 9, pp. 2151-2158, 2014.
[25]
I. Brook, "Microbiology and management of periodontal infections," General Dentistry, vol. 51, no. 5, pp. 424-428, 2003.
[26]
G. Polimeni, J. M. Albandar, and U. M. E. Wikesjö, "Prognostic factors for alveolar regeneration: effect of space provision," Journal of Clinical Periodontology, vol. 32, no. 9, pp. 951-954, 2005.
[27]
H. Fong, I. Chun, and D. H. Reneker, "Beaded nanofibers formed during electrospinning," Polymer, vol. 40, no. 16, pp. 4585-4592, 1999.
[28]
P. Supaphol, C. Mit-Uppatham, and M. Nithitanakul, "Ultrafine electrospun polyamide-6 fibers: effect of emitting electrode polarity on morphology and average fiber diameter," Journal of Polymer Science B: Polymer Physics, vol. 43, no. 24, pp. 3699- 3712, 2005.
[29]
J. Zeng, L. Yang, Q. Liang et al., "Influence of the drug compatibility with polymer solution on the release kinetics of electro-spun fiber formulation," Journal of Controlled Release, vol. 105, no. 1-2, pp. 43-51, 2005.
[30]
K. Kim, Y. K. Luu, C. Chang et al., "Incorporation and controlled release of a hydrophilic antibiotic using poly(lactide-co-glycolide)-based electrospun nanofibrous scaffolds," Journal of Controlled Release, vol. 98, no. 1, pp. 47-56, 2004.
[31]
Z.-M. Huang, C.-L. He, A. Yang et al., "Encapsulating drugs in biodegradable ultrafine fibers through co-axial electrospinning," Journal of Biomedical Materials Research A, vol. 77, no. 1, pp. 169-179, 2006.
[32]
G. Verreck, I. Chun, J. Rosenblatt et al., "Incorporation of drugs in an amorphous state into electrospun nanofibers composed of a water-insoluble, nonbiodegradable polymer," Journal of Controlled Release, vol. 92, no. 3, pp. 349-360, 2003.
[33]
M. Simsek, M. Çapkin, A. Karakeçili, and M. Gümüsderelio¿lu, "Chitosan and polycaprolactone membranes patterned via electrospinning: effect of underlying chemistry and pattern characteristics on epithelial/fibroblastic cell behavior," Journal of Biomedical Materials Research Part: A, vol. 100, no. 12, pp. 3332-3343, 2012.

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  • (2016)Corrigendum to “Development of a Doxycycline Hydrochloride-Loaded Electrospun Nanofibrous Membrane for GTR/GBR Applications”Journal of Nanomaterials10.1155/2016/67218062016(21)Online publication date: 1-Dec-2016
  1. Development of a Doxycycline Hydrochloride-Loaded Electrospun Nanofibrous Membrane for GTR/GBR Applications

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      cover image Journal of Nanomaterials
      Journal of Nanomaterials  Volume 2016, Issue
      March 2016
      807 pages
      ISSN:1687-4110
      EISSN:1687-4129
      Issue’s Table of Contents

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      Hindawi Limited

      London, United Kingdom

      Publication History

      Published: 01 March 2016

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      • (2016)Corrigendum to “Development of a Doxycycline Hydrochloride-Loaded Electrospun Nanofibrous Membrane for GTR/GBR Applications”Journal of Nanomaterials10.1155/2016/67218062016(21)Online publication date: 1-Dec-2016

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