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Research Article

Spray coating of foley urinary catheter by chlorhexidine-loadedpoly(ε-caprolactone) nanospheres: effect of lyoprotectants, characteristics, and antibacterial activity evaluation

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Pages 402-409 | Received 21 Dec 2017, Accepted 30 Jun 2018, Published online: 22 Oct 2018

References

  • Abdelwahed W, Degobert G, Fessi H. 2006. A pilot study of freeze drying of poly(epsilon-caprolactone) nanocapsules stabilized by poly(vinyl alcohol): formulation and process optimization. Int J Pharm. 309:178–188.
  • Anderson JM, Shive MS. 2012. Biodegradation and biocompatibility of PLA and PLGA microspheres. Adv Drug Deliv Rev. 64:72–82.
  • Balagopal S, Arjunkumar R. 2013. Chlorhexidine: the gold standard antiplaque agent. J Pharm Sci Res. 5:270–274.
  • Chartpitak T, Tulakarnwong S, Riansuwan K, Kiratisin P, Nasongkla N. 2018. Vancomycin-impregnated polymer on Schanz pin for prolonged release and antibacterial application. J Drug Deliv Sci Tech. 47:223–229.
  • Díaz Blanco C, Ortner A, Dimitrov R, Navarro A, Mendoza E, Tzanov T. 2014. Building an antifouling zwitterionic coating on urinary catheters using an enzymatically triggered bottom-up approach. ACS Appl Mater Interfaces. 6:11385–11393.
  • Dwivedi A, Mazumder A, Nasongkla N. 2018. Layer-by-layer nanocoating of antibacterial niosome on orthopedic implant. Int J Pharm. 547(1–2):235–243.
  • Eawsakul K, Chinavinijkul P, Saeeng R, Chairoungdua A, Tuchinda P, Nasongkla N. 2017. Preparation and characterizations of RSPP050-loaded polymeric micelles using poly(ethylene glycol)-b-poly(ε-caprolactone) and poly(ethylene glycol)-b-poly(D,L-lactide)). Chem Pharm Bull. 65:530–537.
  • Fernandes MM, Ivanova K, Hoyo J, Pérez-Rafael S, Francesko A, Tzanov T. 2017. Nanotransformation of vancomycin overcomes the intrinsic resistance of gram-negative bacteria. ACS Appl Mater Interfaces. 9:15022–15030.
  • Fisher LE, Hook AL, Ashraf W, Yousef A, Barrett DA, Scurr DJ, Chen X, Smith EF, Fay M, Parmenter CDJ, et al. 2015. Biomaterial modification of urinary catheters with antimicrobials to give long-term broadspectrum antibiofilm activity. J Control Rel. 202:57–64.
  • Fonte P, Reis S, Sarmento B. 2016. Facts and evidences on the lyophilization of polymeric nanoparticles for drug delivery. J Control Rel. 225:75–86.
  • Garner SJ, Nobbs AH, McNally LM, Barbour ME. 2015. An antifungal coating for dental silicones composed of chlorhexidine nanoparticles. J Dentistry. 43:362–372.
  • Honary S, Zahir F. 2013. Effect of zeta potential on the properties of nano-drug delivery systems-a review (Part 1). Trop J Pharma Res. 12:255–264.
  • Jordan RP, Malic S, Waters MGJ, Stickler DJ, Williams DW. 2015. Development of an antimicrobial urinary catheter to inhibit urinary catheter encrustation. Microbiol Discov. 3:1.
  • Kamaly N, Yameen B, Wu J, Farokhzad OC. 2016. Degradable controlled-release polymers and polymeric nanoparticles: mechanisms of controlling drug release. Chem Rev. 116:2602–2663.
  • Kettel MJ, Heine E, Schaefer K, Moeller M. 2017. Chlorhexidine loaded cyclodextrin containing PMMA nanogels as antimicrobial coating and delivery systems. Macromol Biosci. 17.
  • Lboutounne H, Chaulet J-F, Ploton C, Falson F, Pirot F. 2002. Sustained ex vivo skin antiseptic activity of chlorhexidine in poly(epsilon-caprolactone) nanocapsule encapsulated form and as a digluconate. J Control Rel. 82:319–334.
  • Lboutounne H, Faivre V, Falson F, Pirot F. 2004. Characterization of transport of chlorhexidine-loaded nanocapsules through hairless and wistar rat skin. Skin Pharmacol Physiol. 17:176–182.
  • Lee MK, Kim MY, Kim S, Lee J. 2009. Cryoprotectants for freeze drying of drug nano-suspensions: effect of freezing rate. J Pharm Sci. 98:4808–4817.
  • Lemarchand C, Couvreur P, Besnard M, Costantini D, Gref R. 2003. Novel polyester-polysaccharide nanoparticles. Pharma Res. 20:1284–1292.
  • Li X, Li P, Saravanan R, Basu A, Mishra B, Lim SH, Su X, Tambyah PA, Leong SSJ. 2014. Antimicrobial functionalization of silicone surfaces with engineered short peptides having broad spectrum antimicrobial and salt-resistant properties. Acta Biomaterialia. 10:258–266.
  • Molpeceres J, Aberturas M, Chacon M, Berges L, Guzman M. 1997. Stability of cyclosporine-loaded poly-X-caprolactone nanoparticles. J Microencapsul. 14:777–787.
  • Nakashima A, Izumi T, Ohya K, Kondo K, Niwa T. 2017. Design of highly dispersible PLGA microparticles in aqueous fluid for the development of long-acting release injectables. Chem Pharm Bull. 65:157–165.
  • Phuengkham H, Teeranachaideekul V, Chulasiri M, Nasongkla N. 2016. Preparation and optimization of chlorophene-loaded nanospheres as controlled release antimicrobial delivery systems. Pharma Develop Technol. 21:8–13.
  • Phuengkham H, Nasongkla N. 2015. Development of antibacterial coating on silicone surface via chlorhexidine-loaded nanospheres. J Mater Scie: Mater Med. 26:1–11.
  • Raman N, Lee M-R, Palecek SP, Lynn DM. 2014. Polymer multilayers loaded with antifungal β-peptides kill planktonic Candida albicans and reduce formation of fungal biofilms on the surfaces of flexible catheter tubes. J Control Rel. 191:54–62.
  • Rossi S, Marciello M, Sandri G, Ferrari F, Bonferoni MC, Papetti A, Caramella C, Dacarro C, Grisoli P. 2007. Wound dressings based on chitosans and hyaluronic acid for the release of chlorhexidine diacetate in skin ulcer therapy. Pharma Develop Technol. 12:415–422.
  • Saez A, Guzman M, Molpeceres J, Aberturas M. 2000. Freeze-drying of polycaprolactone and poly (D, L-lactic-glycolic) nanoparticles induce minor particle size changes affecting the oral pharmacokinetics of loaded drugs. Eur J Pharma Biopharma. 50:379–387.
  • Sarıgöl E, Bozdağ Pehlivan S, Ekizoğlu M, Sağıroğlu M, Çalış S. 2017. Design and evaluation of gamma-sterilized vancomycin hydrochloride-loaded poly (ɛ-caprolactone) microspheres for the treatment of biofilm-based medical device-related osteomyelitis. Pharma Develop Technol. 22:706–714.
  • Schaffazick SR, Pohlmann AR, Dalla-Costa T, Guterres SS. 2003. Freeze-drying polymeric colloidal suspensions: nanocapsules, nanospheres and nanodispersion. A comparative study. Eur J Pharma Biopharma. 56:501–505.
  • Soto SM. 2014. Importance of biofilms in urinary tract infections: new therapeutic approaches. Adv Biol. 2014:1.
  • Tambunlertchai S, Srisang S, Nasongkla N. 2017. Development of antimicrobial coating by later-by-layer dip coating of chlorhexidine-loaded micelles. J Mater Sci: Mater Med. 28:90.
  • Thallinger B, Argirova M, Lesseva M, Ludwig R, Sygmund C, Schlick A, Nyanhongo GS, Guebitz GM. 2014. Preventing microbial colonisation of catheters: antimicrobial and antibiofilm activities of cellobiose dehydrogenase. Int J Antimicrob Agents. 44:402–408.
  • Vasilev K, Cook J, Griesser HJ. 2009. Antibacterial surfaces for biomedical devices. Exp Rev Medi Dev. 6:553–567.
  • Zelenková T, Fissore D, Marchisio DL, Barresi AA. 2014. Size control in production and freeze-drying of poly-ε-caprolactone nanoparticles. J Pharm Sci. 103:1839–1850.

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