169
Views
13
CrossRef citations to date
0
Altmetric
Research Article

Novel method of niosome generation using supercritical carbon dioxide part I: process mechanics

&
Pages 334-346 | Received 07 Feb 2015, Accepted 06 Apr 2015, Published online: 06 May 2015

References

  • Bartle KD, Clifford A, Jafar S, Shilstone G. (1991). Solubilities of solids and liquids of low volatility in supercritical carbon dioxide. J Phys Chem Ref Data 20:713–56
  • Beh CC, Mammucari R, Foster NR. (2012). Lipids-based drug carrier systems by dense gas technology: a review. Chem Eng J 188:1–14
  • Brown DG, Jaffé PR. (2001). Spectrophotometric assay of POE nonionic surfactants and its application to surfactant sorption isotherms. Environ Sci Technol 35:2022–5
  • Castor TP, Chu L. (1994). Methods for making liposomes containing hydrophobic drugs. Patent WO9615774
  • Chang HI, Yeh MK. (2012). Clinical development of liposome-based drugs: formulation, characterization, and therapeutic efficacy. Int J Nanomed 7:49–60
  • Cocero MJ, Martín Á, Mattea F, Varona S. (2009). Encapsulation and co-precipitation processes with supercritical fluids: fundamentals and applications. J Supercrit Fluids 47:546–55
  • Consani KA, Smith RD. (1990). Observations on the solubility of surfactants and related molecules in carbon dioxide at 50 °C. J Supercrit Fluids 3:51–65
  • Coutinho JAP, Kontogeorgis GM, Stenby EH. (1994). Binary interaction parameters for nonpolar systems with cubic equations of state: a theoretical approach 1. CO2/hydrocarbons using SRK equation of state. Fluid Phase Equilib 102:31–60
  • Dandge DK, Heller JP, Wilson KV. (1985). Structure solubility correlations: organic compounds and dense carbon dioxide binary systems. Ind Eng Chem Product Res Dev 24:162–6
  • Debenedetti PG, Tom JW, Sang-Do Y, Gio-Bin L. (1993). Application of supercritical fluids for the production of sustained delivery devices. J Control Release 24:27–44
  • Desai TR, Finlay WH. (2002). Nebulization of niosomal all-trans-retinoic acid: an inexpensive alternative to conventional liposomes. Int J Pharm 241:311–17
  • Everett DH. (1988) Basic principles of colloid science. London: Royal Society of Chemistry
  • Frederiksen L, Anton K, Hoogevest PV, et al. (1997). Preparation of liposomes encapsulating water-soluble compounds using supercritical carbon dioxide. J Pharm Sci 86:921–8
  • Gruber HJ, Schindler H. (1994). External surface and lamellarity of lipid vesicles: a practice-oriented set of assay methods. Biochim Biophys Acta (BBA)-Biomembranes 1189:212–24
  • Hougeir FG, Kircik L. (2012). A review of delivery systems in cosmetics. Dermatol Ther 25:234–7
  • Imura T, Gotoh T, Otake K, et al. (2003). Control of physicochemical properties of liposomes using a supercritical reverse phase evaporation method. Langmuir 19:2021–5
  • Jaubert J, Mutelet F. (2004). VLE predictions with the Peng–Robinson equation of state and temperature dependent kij calculated through a group contribution method. Fluid Phase Equilib 224:285–304
  • Jesorka A, Orwar O. (2008). Liposomes: technologies and analytical applications. Annu Rev Anal Chem 1:801–32
  • Joback KG, Reid RC. (1987). Estimation of pure-component properties from group-contributions. Chem Eng Commun 57:233–43
  • Jung J, Perrut M. (2001). Particle design using supercritical fluids: literature and patent survey. J Supercrit Fluids 20:179–219
  • Kinka R, Gotoh T, Wongtrakul P, et al. (2005). Preparation of niosomes by a supercritical reverse phase evaporation method without using co-solvents – effects of the pressure on the trapping efficiency. Mater Technol 23:241–6
  • Kunastitchai S, Pichert L, Sarisuta N, Müller BW. (2006). Application of aerosol solvent extraction system (ASES) process for preparation of liposomes in a dry and reconstitutable form. Int J Pharm 316:93–101
  • Lasic DD. (1988). The mechanism of vesicle formation. Biochem J 256:1–11
  • Lee BI, Kesler MG. (1975). A generalized thermodynamic correlation based on three-parameter corresponding states. AIChE J 21:510–27
  • Lemmon EW, McLinden MO, Friend DG. (2014). Thermophysical properties of fluid systems. In: Linstrom PJ, Mallard WG, eds. NIST Chemistry WebBook, NIST Standard Reference Database Number 69. Gaithersburg, MD: National Institute of Standards and Technology
  • Lesoin L, Boutin O, Crampon C, Badens E. (2011). CO2/water/surfactant ternary systems and liposome formation using supercritical CO2: a review. Colloids Surf A: Physicochem Eng Aspects 377:1–14
  • Lin K, Cox-Stouffer S, Kennedy P, Jackson T. (2003). Expansion of supercritical methane/ethylene jets in a quiescent subcritical environment. AIAA Paper 483:1--14
  • Liu J, Han B, Wang Z, et al. (2002). Solubility of Ls-36 and Ls-45 surfactants in supercritical CO2 and loading water in the CO2/water/surfactant systems. Langmuir 18:3086–9
  • Manosroi A, Chutoprapat R, Abe M, Manosroi J. (2008). Characteristics of niosomes prepared by supercritical carbon dioxide (scCO2) fluid. Int J Pharm 352:248–55
  • Manosroi A, Chutoprapat R, Abe M, Manosroi J. (2010). Characteristics of niosomes entrapped with rice bran bioactive compounds prepared by supercritical carbon dioxide. International Conference on Nanoscience and Nanotechnology (ICONN), 2010
  • McHugh MA, Krukonis VJ. (1994) Supercritical fluid extraction principles and practice. 2nd edn. Boston: Butterworth-Heinemann
  • Meure LA, Knott R, Foster NR, Dehghani F. (2008). The depressurization of an expanded solution into aqueous media for the bulk production of liposomes. Langmuir 25:326–37
  • Nasr M, Mansour S, Mortada ND, Elshamy AA. (2008). Vesicular aceclofenac systems: a comparative study between liposomes and niosomes. J Microencapsul 25:499–512
  • Orbey H, Sandler SI. (1998). Modeling vapor–liquid equilibria: cubic equations of state and their mixing rules. New York: Cambridge University Press
  • Otake K, Imura T, Sakai H, Abe M. (2001). Development of a new preparation method of liposomes using supercritical carbon dioxide. Langmuir 17:3898–901
  • Otake K, Shimomura T, Goto T, et al. (2006). Preparation of liposomes using an improved supercritical reverse phase evaporation method. Langmuir 22:2543–50
  • Panagiotopoulos A, Reid R. (1986). New mixing rule for cubic equations of state for highly polar, asymmetric systems. In: Chao KC, Robinson RL, eds. ACS Symposium Series, Vol. 300. Washington, DC: American Chemical Society, 571–82
  • Peng D, Robinson DB. (1976). A new two-constant equation of state. Ind Eng Chem Fundam 15:59–64
  • Pfohl O, Petkov S, Brunner G. (2000). PE 2000: a powerful tool to correlate phase equilibria. Munich, Germany: Herbert Utz Verlag
  • Pidgeon C, Hunt C.A. (1981). Calculating number and surface area of liposomes in any suspension. J Pharm Sci 70:173–6
  • Privat R, Jaubert J, Mutelet F. (2008). Addition of the sulfhydryl group (–SH) to the PPR78 model (predictive 1978, Peng–Robinson EOS with temperature dependent kij calculated through a group contribution method). J Chem Thermodyn 40:1331–41
  • Santo IE, Campardelli R, Albuquerque EC, et al. (2014). Liposomes preparation using a supercritical fluid assisted continuous process. Chem Eng J 249:153–9
  • Seebald P, Sojka P. (2011). Supercritical and transcritical injection. In: Ashgriz N, ed. Handbook of atomization and sprays. New York (NY): Springer, 255–61
  • Sirignano WA. (1999). Fluid dynamics and transport of droplets and sprays. Cambridge, UK: Cambridge University Press
  • Taylor TM, Weiss J, Davidson PM, Bruce BD. (2005). Liposomal nanocapsules in food science and agriculture. Crit Rev Food Sci Nutr 45:587–605
  • Teberikler L, Koseoglu S, Akgerman A. (2001). Selective extraction of phosphatidylcholine from lecithin by supercritical carbon dioxide/ethanol mixture. J Am Oil Chemists' Soc 78:115–20
  • Tsai WC, Rizvi SSH. (2010). Synthesis of liposomal vesicles using a novel rapid expansion of a supercritical solution (RESS) method. Poster session presented at: IFT Annual Meeting and Food Expo. Chicago, IL
  • Uchegbu IF, Florence AT. (1995). Non-ionic surfactant vesicles (niosomes): physical and pharmaceutical chemistry. Adv Colloid Interface Sci 58:1–55
  • Weber M, Thies MC. (2007). A simplified and generalized model for the rapid expansion of supercritical solutions. J Supercrit Fluids 40:402–19
  • Wen Z, Liu B, Zheng Z, et al. (2010). Preparation of liposomes entrapping essential oil from Atractylodes macrocephala Koidz by modified RESS technique. Chem Eng Res Design 88:1102–7
  • Wu P, Chen TH, Nejad AS, Carter CD. (1996). Injection of supercritical ethylene in nitrogen. J Propul Power 12:770–7
  • Yu Z, Rizvi SSH, Zollweg JA. (1992). Phase equilibria of oleic acid, methyl oleate, and anhydrous milk fat in supercritical carbon dioxide. J Supercrit Fluids 5:114–22

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.