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Original Article

in vitro/in vivo evaluation of the efficiency of teicoplanin-loaded biodegradable microparticles formulated for implantation to infected bone defects

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Pages 705-717 | Received 19 Sep 2002, Accepted 20 Apr 2003, Published online: 02 Jul 2010

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Read on this site (3)

Sibel Samdancioglu, Sema Calis, Murat Sumnu & A. Atilla Hincal. (2006) Formulation and In Vitro Evaluation of Bisphosphonate Loaded Microspheres for Implantation in Osteolysis. Drug Development and Industrial Pharmacy 32:4, pages 473-481.
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Brian A. Yeagy, Almudena Prudencio, Robert C. Schmeltzer, Kathryn E. Uhrich & Thomas J. Cook. (2006) Characterization and degradation of salicylate-derived poly(anhydride-ester microspheres). Journal of Microencapsulation 23:6, pages 643-653.
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Burcu Sayin, Sema Çaliş, Bülent Atılla, Salıh Marangoz & A. Atılla Hincal. (2006) Implantation of vancomycin microspheres in blend with human/rabbit bone grafts to infected bone defects. Journal of Microencapsulation 23:5, pages 553-566.
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Gang Liu, Si Chen, Jun Fang, Baoshan Xu, Shuang Li, Yonghong Hao, Naif A. Al-Dhabi, Shucai Deng & Veeramuthu Duraipandiyan. (2016) Vancomycin microspheres reduce postoperative spine infection in an in vivo rabbit model. BMC Pharmacology and Toxicology 17:1.
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Marc Shalaby & Waleed S.W. Shalaby. 2015. Encyclopedia of Biomedical Polymers and Polymeric Biomaterials. Encyclopedia of Biomedical Polymers and Polymeric Biomaterials 1076 1087 .
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Noam Emanuel, Yosef Rosenfeld, Or Cohen, Yaakov H. Applbaum, David Segal & Yechezkel Barenholz. (2012) A lipid-and-polymer-based novel local drug delivery system—BonyPid™: From physicochemical aspects to therapy of bacterially infected bones. Journal of Controlled Release 160:2, pages 353-361.
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Gaku TAMAZAWA, Atsuo ITO, Takahiro MIYAI, Tomonori MATSUNO, Kazuki KITAHARA, Yu SOGO, Kaori KIMISHIMA & Tazuko SATOH. (2011) Gatifloxacine-loaded PLGA and β-tricalcium phosphate composite for treating osteomyelitis. Dental Materials Journal 30:3, pages 264-273.
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Tamilvanan Shunmugaperumal. 2010. Biofilm Eradication and Prevention. Biofilm Eradication and Prevention 359 417 .
Kuo-Ti Peng, Chin-Fu Chen, I.-Ming Chu, Yu-Min Li, Wei-Hsiu Hsu, Robert Wen-Wei Hsu & Pey-Jium Chang. (2010) Treatment of osteomyelitis with teicoplanin-encapsulated biodegradable thermosensitive hydrogel nanoparticles. Biomaterials 31:19, pages 5227-5236.
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Zafer Orhan, Erdal Cevher, Ayca Yıldız, Rengin Ahıskalı, Demet Sensoy & Lütfiye Mülazımoğlu. (2009) Biodegradable microspherical implants containing teicoplanin for the treatment of methicillin-resistant Staphylococcus aureus osteomyelitis. Archives of Orthopaedic and Trauma Surgery 130:1, pages 135-142.
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Chiming Yang, David Plackett, David Needham & Helen M. Burt. (2009) PLGA and PHBV Microsphere Formulations and Solid-State Characterization: Possible Implications for Local Delivery of Fusidic Acid for the Treatment and Prevention of Orthopaedic Infections. Pharmaceutical Research 26:7, pages 1644-1656.
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Shunmugaperumal Tamilvanan, Narayanan Venkateshan & Annick Ludwig. (2008) The potential of lipid- and polymer-based drug delivery carriers for eradicating biofilm consortia on device-related nosocomial infections. Journal of Controlled Release 128:1, pages 2-22.
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Dušan Ražem & Branka Katušin-Ražem. (2008) The effects of irradiation on controlled drug delivery/controlled drug release systems. Radiation Physics and Chemistry 77:3, pages 288-344.
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Takahiro Miyai, Atsuo Ito, Gaku Tamazawa, Tomonori Matsuno, Yu Sogo, Chiho Nakamura, Atsushi Yamazaki & Tazuko Satoh. (2008) Antibiotic-loaded poly-ε-caprolactone and porous β-tricalcium phosphate composite for treating osteomyelitis. Biomaterials 29:3, pages 350-358.
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Kevin Garvin & Connie Feschuk. (2005) Polylactide-polyglycolide Antibiotic Implants. Clinical Orthopaedics and Related Research &NA;:437, pages 105-110.
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Gabriela A. Silva, Filipa J. Costa, Nuno M. Neves & Rui L. Reis. 2004. Biomaterials. Biomaterials 283 300 .

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