3,927
Views
57
CrossRef citations to date
0
Altmetric
Research Article

Nanotransfersomes-loaded thermosensitive in situ gel as a rectal delivery system of tizanidine HCl: preparation, in vitro and in vivo performance

, &
Pages 252-260 | Received 13 Aug 2016, Accepted 03 Oct 2016, Published online: 03 Feb 2017

References

  • Abdelbary G, El-Gendy N. (2008). Niosome-encapsulated gentamicin for ophthalmic controlled delivery. AAPS PharmSciTech 9:740–7
  • Abdelrahman AA, Salem HF, Khallaf RA, Ali AMA. (2015). Modeling, optimization, and in vitro corneal permeation of chitosan-lomefloxacin HCl nanosuspension intended for ophthalmic delivery. J Pharm Innov 10:254–68
  • Aboud HM, Ali AA, El-Menshawe SF, Elbary AA. (2015). Nanotransfersomes of carvedilol for intranasal delivery: formulation, characterization and in vivo evaluation. Drug Deliv 1–11. doi:10.3109/10717544.2015.1013587
  • Al-Mahallawi AM, Khowessah OM, Shoukri RA. (2014). Nano-transfersomal ciprofloxacin loaded vesicles for noninvasive trans-tympanic ototopical delivery: in-vitro optimization, ex-vivo permeation studies, and in-vivo assessment. Int J Pharm 472:304–14
  • Ali MFM, Salem HF, Abdelmohsen HF, Attia SK. (2015). Preparation and clinical evaluation of nano-transferosomes for treatment of erectile dysfunction. Drug Des Dev Ther 9:2431–47
  • Ammar HO, Ghorab M, El-Nahhas SA, Kamel R. (2009). Polymeric matrix system for prolonged delivery of tramadol hydrochloride, part II: biological evaluation. AAPS PharmSciTech 10:1065–70
  • Baldrick P. (2000). Pharmaceutical excipient development: the need for preclinical guidance. Regul Toxicol Pharmacol 32:210–18
  • Bragagni M, Mennini N, Maestrelli F, et al. (2012). Comparative study of liposomes, transfersomes and ethosomes as carriers for improving topical delivery of celecoxib. Drug Deliv 19:354–61
  • Cevc G, Blume G. (2003). Biological activity and characteristics of triamcinolone-acetonide formulated with the self-regulating drug carriers, Transfersomes®. Biochim Biophys Acta 1614:156–64
  • Cevc G, Blume G, Schätzlein A. (1997). Transfersomes-mediated transepidermal delivery improves the regio-specificity and biological activity of corticosteroids in vivo. J Control Release 45:211–26
  • El-Kamel A, El-Khatib M. (2006). Thermally reversible in situ gelling carbamazepine liquid suppository. Drug Deliv 13:143–8
  • El-Leithy ES, Shaker DS, Ghorab MK, Abdel-Rashid RS. (2010). Evaluation of mucoadhesive hydrogels loaded with diclofenac sodium–chitosan microspheres for rectal administration. AAPS Pharmscitech 11:1695–702
  • El-Mahrouk GM, El-Gazayerly ON, Aboelwafa AA, Taha MS. (2014). Chitosan lactate wafer as a platform for the buccal delivery of tizanidine HCl: in vitro and in vivo performance. Int J Pharm 467:100–12
  • El-Maghraby GM, Williams AC, Barry BW. (2000). Estradiol skin delivery from ultradeformable liposomes: refinement of surfactant concentration. Int J Pharm 196:63–74
  • El-Zaafarany GM, Awad GA, Holayel SM, Mortada ND. (2010). Role of edge activators and surface charge in developing ultradeformable vesicles with enhanced skin delivery. Int J Pharm 397:164–72
  • Elhissi AM, Giebultowicz J, Stec AA, et al. (2012). Nebulization of ultradeformable liposomes: the influence of aerosolization mechanism and formulation excipients. Int J Pharm 436:519–26
  • Ghanbarzadeh S, Arami S. (2013). Enhanced transdermal delivery of diclofenac sodium via conventional liposomes, ethosomes, and transfersomes. BioMed Res Int 2013:1–7. doi:10.1155/2013/616810
  • Ghanbarzadeh S, Khorrami A, Arami S. (2015). Nonionic surfactant-based vesicular system for transdermal drug delivery. Drug Deliv 22:1071–7
  • González-Rodríguez M, Arroyo C, Cózar-Bernal M, et al. (2016). Deformability properties of timolol-loaded transfersomes based on the extrusion mechanism. Statistical optimization of the process. Drug Dev Indus Pharm 42:1683–94
  • Gupta A, Aggarwal G, Singla S, Arora R. (2012). Transfersomes: a novel vesicular carrier for enhanced transdermal delivery of sertraline: development, characterization, and performance evaluation. Sci Pharm 80:1061–80
  • Hao Y, Zhao F, Li N, et al. (2002). Studies on a high encapsulation of colchicine by a niosome system. Int J Pharm 244:73–80
  • Hosny KM, Hassan AH. (2014). Intranasal in situ gel loaded with saquinavir mesylate nanosized microemulsion: preparation, characterization, and in vivo evaluation. Int J Pharm 475:191–7
  • Huang C, Tokumura T, Machida Y, Nagai T. (1987). Formulation of double-layered suppository for prolonged stay in lower rectum. Yakuzaigaku 47:42–8
  • Jain S, Jain P, Uma Maheshwari R, Jain N. (2003). Transfersomes—a novel vesicular carrier for enhanced transdermal delivery: development, characterization, and performance evaluation. Drug Dev Indus Pharm 29:1013–26
  • Kamel R, Basha M, Abd El-Alim SH. (2013). Development of a novel vesicular system using a binary mixture of sorbitan monostearate and polyethylene glycol fatty acid esters for rectal delivery of rutin. J Liposome Res 23:28–36
  • Khan MA, Pandit J, Sultana Y, et al. (2014). Novel carbopol-based transfersomal gel of 5-fluorouracil for skin cancer treatment: in vitro characterization and in vivo study. Drug Deliv 22:795–802
  • Lim WM, Rajinikanth PS, Mallikarjun C, Kang YB. (2014). Formulation and delivery of itraconazole to the brain using a nanolipid carrier system. Int J Nanomedicine 9:2117
  • Lopes L, Scarpa M, Silva G, et al. (2004). Studies on the encapsulation of diclofenac in small unilamellar liposomes of soya phosphatidylcholine. Colloids Surf B Biointerfaces 39:151–8
  • Mahmood S, Taher M, Mandal UK. (2014). Experimental design and optimization of raloxifene hydrochloride loaded nanotransfersomes for transdermal application. Int J Nanomedicine 9:4331–46
  • Miyazaki S, Suisha F, Kawasaki N, et al. (1998). Thermally reversible xyloglucan gels as vehicles for rectal drug delivery. J Control Release 56:75–83
  • Özgüney I, Kardhiqi A, Yildiz G, Ertan G. (2014). In vitro-in vivo evaluation of in situ gelling and thermosensitive ketoprofen liquid suppositories. Eur J Drug Metab Pharmacokinet 39:283–91
  • Pan W, Yang Z. (2011). Thermoreversible Pluronic® F127-based hydrogel containing liposomes for the controlled delivery of paclitaxel: in vitro drug release, cell cytotoxicity, and uptake studies. Int J Nanomedicine 6:151–66
  • Pendekal MS, Tegginamat PK. (2012). Formulation and evaluation of a bioadhesive patch for buccal delivery of tizanidine. Acta Pharm Sin B 2:318–24
  • Salama HA, Mahmoud AA, Kamel AO, et al. (2012). Brain delivery of olanzapine by intranasal administration of transfersomal vesicles. J Liposome Res 22:336–45
  • Schmolka IR. (1972). Artificial skin. I. Preparation and properties of pluronic F-127 gels for treatment of burns. J Biomed Mater Res 6:571–82
  • Shaji J, Lal M. (2014). Preparation, Optimization and evaluation of transferosomal formulation for enhanced transdermal delivery of a COX-2 Inhibitor. Int J Pharm Pharmaceut Sci 6:467–77
  • Ud Din F, Mustapha O, Kim DW, et al. (2015). Novel dual-reverse thermosensitive solid lipid nanoparticle-loaded hydrogel for rectal administration of flurbiprofen with improved bioavailability and reduced initial burst effect. Eur J Pharm Biopharm 94:64–72
  • Wagstaff AJ, Bryson HM. (1997). Tizanidine. A review of its pharmacology, clinical efficacy and tolerability in the management of spasticity associated with cerebral and spinal disorders. Drugs 53:435–52
  • Yang X, Shah SJ, Wang Z, et al. (2015). Nanoparticle-based topical ophthalmic formulation for sustained release of stereoisomeric dipeptide prodrugs of ganciclovir. Drug Deliv 1–11. doi:10.3109/10717544.2014.996833
  • Yusuf M, Sharma V, Pathak K. (2014). Nanovesicles for transdermal delivery of felodipine: development, characterization, and pharmacokinetics. Int J Pharm Investig 4:119–30
  • Zeisig R, Shimada K, Hirota S, Arndt D. (1996). Effect of sterical stabilization on macrophage uptake in vitro and on thickness of the fixed aqueous layer of liposomes made from alkylphosphocholines. Biochim Biophys Acta 1285:237–45