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Research Article

Development of hydrophilic gels containing coenzyme Q10-loaded liposomes: characterization, stability and rheology measurements

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Pages 43-54 | Received 13 Apr 2018, Accepted 19 Aug 2018, Published online: 11 Sep 2018

References

  • Kumar S, Rao R, Kumar A, et al. Novel carriers for coenzyme Q10 delivery. Curr Drug Deliv. 2016;13:1184–1204.
  • Shapiro SS, Saliou C. Role of vitamins in skin care. Nutrition. 2001;17:839–844.
  • Brunke RA. Coenzym Q10 (INCI: ubichinon. Euro Cosmetics 2002;4:43–46.
  • Hoppe U, Bergemann J, Diembeck W, et al. Coenzyme Q10, a cutaneous antioxidant and energizer. Biofactors. 1999;9:371–378.
  • Wang J, Wang H, Zhou X, et al. Physicochemical characterization, photo-stability and cytotoxicity of coenzyme Q10-loading nanostructured lipid carrier. J Nanosci Nanotechnol. 2012;12:2136–2148.
  • Korkm E, Gokce EH, Ozer O. Development and evaluation of coenzyme Q10 loaded solid lipid nanoparticle hydrogel for enhanced dermal delivery. Acta Pharm. 2013;63:517–529.
  • Schwarz JC, Baisaeng N, Hoppel M, et al. Ultra-small NLC for improved dermal delivery of coenyzme Q10. Int J Pharm. 2013;447:213–217.
  • Chen S, Liu W, Wan J, et al. Preparation of Coenzyme Q10 nanostructured lipid carriers for epidermal targeting with high-pressure microfluidics technique. Drug Dev Ind Pharm. 2013;39:20–28.
  • Gavin PD, El-Tamimy M, Keah HH, et al. Tocopheryl phosphate mixture (TPM) as a novel lipid-based transdermal drug delivery carrier: formulation and evaluation. Drug Deliv and Transl Res. 2017;7:53–65.
  • Cevc G, Blume G. Hydrocortisone and dexamethasone in very deformable drug carriers have increased biological potency, prolonged effect, and reduced therapeutic dosage. Biochim Biophys Acta. 2004;1663:61–73.
  • Dragicevic-Curic N, Scheglmann D, Albrecht V, et al. Temoporfin-loaded invasomes: development, characterization and in vitro skin penetration studies. J Control Release. 2008;127:59–69.
  • Ahmed TA. Preparation of transfersomes encapsulating sildenafil aimed for transdermal drug delivery: Plackett-Burman design and characterization. J Liposome Res. 2015;25:1–10.
  • Khan MA, Pandit J, Sultana Y, et al. Novel carbopol-based transfersomal gel of 5-fluorouracil for skin cancer treatment: in vitro characterization and in vivo study. Drug Deliv. 2015;22:795–802.
  • Al Shuwaili AH, Rasool BK, Abdulrasool AA. Optimization of elastic transfersomes formulations for transdermal delivery of pentoxifylline. Eur J Pharm Biopharm. 2016;102:101–114.
  • Kamran M, Ahad A, Aqil M, et al. Design, formulation and optimization of novel soft nano-carriers for transdermal olmesartanmedoxomil delivery: In vitro characterization and in vivo pharmacokinetic assessment. Int J Pharm. 2016;505:147–158.
  • Pleguezuelos-Villa M, Mir-Palomo S, Díez-Sales O, et al. A novel ultradeformable liposomes of Naringin for anti-inflammatory therapy. Colloids Surf B Biointerfaces. 2018;162:265–270.
  • Franzé S, Marengo A, Stella B, et al. Hyaluronan-decorated liposomes as drug delivery systems for cutaneous administration. Int J Pharm. 2018;535:333–339.
  • Raschke T, Eckert JDH-J, Kallmayer V, et al. Encapsulation Technologies in Cosmetics. SÖFW-J . 2003;10:62–68.
  • Schreier H, Bouwstra J. Liposomes and niosomes as drug carriers: dermal and transdermal drug delivery. J Control Release. 1994;30:1–15.
  • Thoma K, Jocham UE. Liposome Dermatics: Assessment of Long-Term Stability. In: Braun-Falco O, Korting HC, Maibach HI, editors. Liposome Dermatics, Berlin: Springer-Verlag; 1992, p. 150–166.
  • Arsic I, Vidovic S. Protection of encapsulated vitamin a from UV radiation in aqueous dispersions and gel systems, conference proceedings, International Conference of IFSCC, Budapest, 1997, p. 452–455.
  • Blume G. Liposomes a Dermal System for Active Ingredients, Conference Proceedings of Cosmetic and Household Ingredients, Warsaw, 1999, p. 34–43.
  • Blume G, Teichmüller E, Verma DD, et al. Stability of liposomes containing retinol. Euro Cosmetics 2000;11/12:38–40.
  • Kristl J, Volk B, Gašperlin M, et al. Effect of colloidal carriers on ascorbyl palmitate stability. Eur J Pharm Sci. 2003;19:181–189.
  • Dragicevic-Curic N, Winter S, Krajisnik D, et al. Stability evaluation of temoporfin-loaded liposomal gels for topical application. J Liposome Res. 2010;20:38–48.
  • Dragicevic-Curic N, Winter S, Stupar M, et al. Temoporfin-loaded liposomal gels: viscoelastic properties and in vitro skin penetration. Int J Pharm. 2009;373:77–84.
  • Klein RA. The detection of oxidation in liposome preparations. Biochim Biophys Acta. 1970;210:486–486.
  • Zuidam NJ, de Vrueh R, Crommelin DJA. Characterization of liposomes. In: Torchilin V, Weissig V, editors. Liposome: A Practical Approach. Oxford, UK: Oxford University Press; 2003, p. 31–78.
  • Celik B, Sağıroğlu AA, Özdemir S. Design, optimization and characterization of coenzyme Q10- and D-panthenyl triacetateloaded liposomes. Int J Nanomed. 2017;12:4869–4878.
  • Lee WC, Tsai TH. Preparation and characterization of liposomal coenzyme Q10 for in vivo topical application. Int J Pharm. 2010;395:78–83.
  • Grit M, de Smidt JH, Struijke A, et al. Hydrolysis of phosphatidylcholine in aqueous liposome dispersions. Int J Pharm. 1989;50:1–6.
  • Frokjaer S, Hjorth EL, Worts O. Stability testing of liposomes during storage. In: Gregoriadis G, editors. Liposome Technology, Vol. 1, Florida: CRC Press Inc., Boca Raton; 1984, p. 235.
  • Zaharijev J. Dobijanje lipozoma od fosfolipida soje i ispitivanje njihove stabilnosti (Preparation of liposomes from soya phospholipids and investigation of their stability). Master thesis, Faculty of technology and metallurgy, University Belgrade, 1997.
  • Konings AWT. Lipid peroxidation in liposomes. In: Gregoriadis G, editor. Liposome Technology, CRC Press, Boca Raton, Florida; 1984, p. 139–161.
  • Müller RH. Zetapotential-Theorie. In: Müller RH, editor. Zetapotential Und Partikelladung in Der Laberpraxis. Stuttgart: Wissenschaftliche Verlagsgesellschaft mbH; 1996, p. 19–99.
  • Rippke F, Schreiner V, Schwanitz HJ. The acidic milieu of the horny layer: new findings on the physiology and pathophysiology of skin pH. Am J Clin Dermatol. 2002;3:261–272.
  • Bouwstra JA, Gooris GS, Dubbelaar FE, et al. pH, cholesterol sulfate, and fatty acids affect the stratum corneum lipid organization. J Investig Dermatol Symp Proc. 1998;3:69–74.
  • Schmid-Wendtner MH, Korting HC. The pH of the skin surface and its impact on the barrier function. Skin Pharmacol Physiol. 2006;19:296–302.
  • Marriott C. Rheology. In: Aulton ME, Taylor KMG, editors. Aulton's Pharmaceutics: The Design and Manufacture of Medicines. 4th ed. London, UK: Elsevier Ltd.; 2013. p. 94–114.
  • Pena LE, Lee BL, Stearns JF. Structural rheology of a model ointment. Pharm Res. 1994;11:875–881.
  • Florence AT, Attwood D. Physicochemical principles of pharmacy: In Manufacture, Formulation, and Clinical Use. London: Pharmaceutical Press; 2016. p. 313–314.
  • Briceno MI. Rheology of Suspensions and Emulsions. In: Nielloud F, Marti-Mestres G, editors. Pharmaceutical Emulsions and Suspensions. New York: Marcel Dekker, Inc.; 2000; p. 557–607.
  • Carvalho FC, Calixto G, Hatakeyama IN, et al. Rheological, mechanical, and bioadhesive behavior of hydrogels to optimize skin delivery systems. Drug Dev Ind Pharm. 2013;39:1750–1757.
  • Islam MT, Rodríguez-Hornedo N, Ciotti S, et al. Rheological characterization of topical carbomer gels neutralized to different pH. Pharm Res. 2004;21:1192–1199.
  • Brummer R. Rheology Essentials of Cosmetics and Food Emulsions. Berlin Heidelberg: Springer-Verlag; 2006.
  • Tamburić S, Craig DQM. Rheological Evaluation of Polyacrilic Acid Hydrogels. Pharm Sci 1995;1:107–109.
  • Djekic L, Krajišnik D, Mićic Z, et al. Formulation and physicochemical characterization of hydrogels with 18β-glycyrrhetinic acid/phospholipid complex phytosomes. J Drug Deliv Sci Tech.2016;35:81–90.
  • Gooris GS, Kamran M, Kros A, et al. Interactions of dipalmitoylphosphatidylcholine with ceramide-based mixtures. Biochim Biophys Acta. 2018;1860:1272–1281.
  • Lautenschläger H. Strong effects - phospholipids in cosmetics. Kosmetik International 2003;2:38–40.
  • van Hoogevest P, Prusseit B, Wajda R. Phospholipids: natural functional ingredients and actives for cosmetic products. SOFW-Journal. 2013;8:9–14.
  • Rhodes LE. Essential fatty acids. In: Loden M, Maibach HI, editors. Dry Skin and Moisturizers, Chemistry and Function, London, New York: Boca Raton. 2000, 311–332.

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