478
Views
23
CrossRef citations to date
0
Altmetric
Research Article

In vitro and in vivo assessment of vitamin A encapsulation in a liposome–protein delivery system

, , , &
Pages 142-152 | Received 22 Apr 2018, Accepted 14 Jul 2018, Published online: 06 Sep 2018

References

  • Alizadeh, F., et al., 2014. Retinoids and their biological effects against cancer. International immunopharmacology, 18 (1), 43–49.
  • Altucci, L. and Gronemeyer, H., 2001. The promise of retinoids to fight against cancer. Nature reviews cancer, 1 (3), 181–193.
  • Antimisiaris, S.G., 2010. Preparation of DRV liposomes. Methods in molecular biology (Clifton, NJ), 605, 51–75.
  • Chiavaro, E., et al., 2011. Differential scanning calorimetry thermal properties and oxidative stability indices of microwave heated extra virgin olive oils. Journal of the science of food and agriculture, 91 (2), 198–206.
  • Cortesi, R., et al., 1994. Liposome-associated retinoids: production, characterization and antiproliferative activity on neoplastic cells. European journal of pharmaceutical sciences, 2 (4), 281–291.
  • Da Silva Malheiros, P., Daroit, D.J., and Brandelli, A., 2010. Food applications of liposome-encapsulated antimicrobial peptides. Trends in food science and technology, 21 (6), 284–292.
  • De Luca, L.M., 1991. Retinoids and their receptors in differentiation, embryogenesis, and neoplasia. FASEB journal, 5 (14), 2924–2933.
  • Dwiecki, K., et al., 2007. Spectroscopic studies of D-alpha-tocopherol concentration-induced transformation in egg phosphatidylcholine vesicles. Cellular & molecular biology letters, 12 (1), 51–69.
  • Edwards, K.A., and Baeumner, A.J., 2006. Analysis of liposomes. Talanta, 68 (5), 1432–1441.
  • Ensign, L.M., Cone, R., and Hanes, J., 2012. Oral drug delivery with polymeric nanoparticles: the gastrointestinal mucus barriers. Advanced drug delivery reviews, 64 (6), 557–570.
  • Florence, A.T., 1997. The oral absorption of micro- and nanoparticulates: neither exceptional nor unusual. Pharmaceutical research, 14 (3), 259–266.
  • Gao, S.Q., et al., 2012. A microparticle/hydrogel combination drug-delivery system for sustained release of retinoids. Investigative ophthalmology & visual science, 53 (10), 6314–6323.
  • Gershanik, T. and Benita, S., 2000. Self-dispersing lipid formulations for improving oral absorption of lipophilic drugs. European journal of pharmaceutics and biopharmaceutics, 50 (1), 179–188.
  • Ghatnur, S.M., et al., 2012. Engineering liposomes of leaf extract of seabuckthorn (SBT) by supercritical carbon dioxide (SCCO2)-mediated process. Journal of liposome research, 22 (3), 215–223.
  • Gortzi, O., et al., 2006. Reevaluation of antimicrobial and antioxidant activity of Thymus spp. extracts before and after encapsulation in liposomes. Journal of food protection, 69 (12), 2998–3005.
  • Gortzi, O., et al., 2015. Development and evaluation of a phospholipid-sterol-protein membrane resembling system. Food biophysics, 10 (3), 300–308.
  • Guidelines for Breeding and Care of Laboratory Animals 1993. World Health Organization.
  • Guillén, J., 2014. Laboratory animals: regulations and recommendations for global collaborative research. San Deigo: Academic Press.
  • Hong, J.Y., et al., 2006. A new self-emulsifying formulation of itraconazole with improved dissolution and oral absorption. Journal of controlled release, 110 (2), 332–338.
  • Hsieh, Y.F., et al., 2002. Properties of liposomes prepared with various lipids. Journal of food science, 67 (8), 2808–2813.
  • Hu, S., et al., 2013. Integrity and stability of oral liposomes containing bile salts studied in simulated and ex vivo gastrointestinal media. International journal of pharmaceutics, 441 (1–2), 693–700.
  • Junghans, A., et al., 2011. Probing protein-membrane interactions using solid supported membranes. Langmuir: the ACS journal of surfaces and colloids, 27 (6), 2709–2716.
  • Kane, M.A., et al., 2005. Quantification of endogenous retinoic acid in limited biological samples by LC/MS/MS. The biochemical journal, 388 (Pt 1), 363–369.
  • Kane, M.A., Folias, A.E., and Napoli, J.L., 2008. HPLC/UV quantitation of retinal, retinol, and retinyl esters in serum and tissues. Analytical biochemistry, 378 (1), 71–79.
  • Kim, Y.K. and Quadro, L., 2010. Reverse-phase high-performance liquid chromatography (HPLC) analysis of retinol and retinyl esters in mouse serum and tissues. Methods in molecular biology, 652, 263–275
  • Ko, S, Lee, S.C., 2010. Effect of nanoliposomes on the stabilization of incorporated retinol. African journal of biotechnology, 15 (3–4), 157–161.
  • Kontopidis, G., Holt, C., and Sawyer, L., 2002. The ligand-binding site of bovine beta-lactoglobulin: evidence for a function? Journal of molecular biology, 318 (4), 1043–1055.
  • Kostomitsopoulos, N.A.Α., et al., 2017. Legal framework on the protection, health and welfare of animals used for experimental and educational purposes. Journal of the hellenic veterinary medical society, 58 (3), 270–274.
  • Koynova, R. and Caffrey, M., 1998. Phases and phase transitions of the phosphatidylcholines. Biochimica Et Biophysica Acta, 1376 (1), 91–145.
  • Lee, S.C., Kim, J.J., and Lee, K.E., 2005a. Effect of B-sitosterol in liposome bilayer on the stabilization of incorporated retinol. Food science and biotechnology, 14, 604–607.
  • Lee, S.C., et al., 2005b. The effect of cholesterol in the liposome bilayer on the stabilization of incorporated retinol. Journal of liposome research, 15 (3–4), 157–166.
  • Lefèvre, T. and Subirade, M., 2000. Interaction of beta-lactoglobulin with phospholipid bilayers: a molecular level elucidation as revealed by infrared spectroscopy. International journal of biological macromolecules, 28 (1), 59–67.
  • Lefèvre, T., and Subirade, M., 2001. Conformational rearrangement of β-lactoglobulin upon interaction with an anionic membrane. Biochimica Et Biophysica Acta - Protein Structure and Molecular Enzymology, 1549 (1), 37–50.
  • Li, X., et al., 2011. Novel mucus-penetrating liposomes as a potential oral drug delivery system: preparation, in vitro characterization, and enhanced cellular uptake. International journal of nanomedicine, 6, 3151–3162.
  • Liolios, C.C., et al., 2009. Liposomal incorporation of carvacrol and thymol isolated from the essential oil of Origanum dictamnus L. and in vitro antimicrobial activity. Food chemistry, 112 (1), 77–83.
  • Liu, W., et al., 2015. Behaviour of liposomes loaded with bovine serum albumin during in vitro digestion. Food chemistry, 175, 16–24.
  • Loveday, S.M., and Singh, H., 2008. Recent advances in technologies for vitamin A protection in foods. Trends in food science and technology, 19 (12), 657–668.
  • Manolescu, D.C., Sima, A., and Bhat, P.V., 2010. All-trans retinoic acid lowers serum retinol-binding protein 4 concentrations and increases insulin sensitivity in diabetic mice. The journal of nutrition, 140 (2), 311–316.
  • Mozafari, M.R., et al., 2008. Encapsulation of food ingredients using nanoliposome technology. International journal of food properties, 11 (4), 833–844.
  • Mozafari, M.R., et al., 2002. Formation and characterisation of non-toxic anionic liposomes for delivery of therapeutic agents to the pulmonary airways. Cellular & molecular biology letters, 7 (2), 243–244.
  • Nacka, F., et al., 2001. Incorporation of alpha-tocopherol in marine lipid-based liposomes: in vitro and in vivo studies. Lipids, 36 (12), 1313–1320.
  • Neunert, G., et al., 2010. Partition of tocopheryl glucopyranoside into liposome membranes studied by fluorescence methods. Biophysical chemistry, 146 (2–3), 92–97.
  • Ntimenou, V., et al., 2006. Stability of protein-encapsulating DRV liposomes after freeze-drying: a study with BSA and t-PA. Journal of liposome research, 16 (4), 403–416.
  • Ortiz, A., Aranda, F.J., and Gómez-Fernández, J.C., 1992. Interaction of retinol and retinoic acid with phospholipid membranes. A differential scanning calorimetry study. Biochimica Et Biophysica Acta, 1106 (2), 282–290.
  • Ozpolat, B., Lopez-Berestein, G., and Mehta, K., 2001. ATRA(ouble) in the treatment of acute promyelocytic leukemia. Journal of biological regulators and homeostatic agents, 15 (2), 107–122.
  • Park, S.J., et al., 2011. Encapsulation enhancement and stabilization of insulin in cationic liposomes. International journal of pharmaceutics, 415 (1–2), 267–272.
  • Pentak, D., 2014. Physicochemical properties of liposomes as potential anticancer drugs carriers. Interaction of etoposide and cytarabine with the membrane: spectroscopic studies. Spectrochimica Acta part a: molecular and biomolecular spectroscopy, 122, 451–460.
  • Perrie, Y., Frederik, P.M., and Gregoriadis, G., 2001. Liposome-mediated DNA vaccination: the effect of vesicle composition. Vaccine, 19 (23–24), 3301–3310.
  • Directive 2010/63/EU (2010). The European Parliament and of The Council of 22 September 2010 on the protection of animals used for scientific purposes.
  • Rodas Mendoza, B., et al., 2003. Rapid determination by reversed-phase high-performance liquid chromatography of Vitamins A and E in infant formulas. Journal of chromatography A, 1018 (2), 197–202.
  • Rodríguez-Nogales, J.M. and López, A.D., 2006. A novel approach to develop β-galactosidase entrapped in liposomes in order to prevent an immediate hydrolysis of lactose in milk. International dairy journal, 16 (4), 354–360.
  • Ross, A.C., 2010. Vitamin A. Encyclopedia of human nutrition, 329, 39.
  • Rovoli, M., et al., 2014. β-Lactoglobulin improves liposome's encapsulation properties for vitamin e delivery. Journal of liposome research, 24 (1), 74–81.
  • Samuni, A.M., et al., 1998. Differential scanning calorimetry. A tool to assess physical and chemical alterations in liposomes. Journal of thermal analysis and calorimetry, 51 (1), 37–48.
  • Sauvant, P., et al., 2012. Vitamin A enrichment: caution with encapsulation strategies used for food applications. Food research international, 46 (2), 469–479.
  • Singh, A.K. and Das, J., 1998. Liposome encapsulated vitamin A compounds exhibit greater stability and diminished toxicity. Biophysical chemistry, 73 (1–2), 155–162.
  • Taha, E., Ghorab, D., and Zaghloul, A.A., 2007. Bioavailability assessment of vitamin A self-nanoemulsified drug delivery systems in rats: A comparative study. Medical principles and practice: international journal of the Kuwait University, Health Science Centre, 16 (5), 355–359.
  • Wassef, L., Spiegler, E., and Quadro, L., 2013. Embryonic phenotype, β-carotene and retinoid metabolism upon maternal supplementation of β-carotene in a mouse model of severe vitamin A deficiency. Archives of biochemistry and biophysics, 539 (2), 223–229.
  • World Health Organization, 2009. Global prevalence of vitamin A deficiency in populations at risk 1995–2005. Geneva: World Health Organization.
  • Xu, X., Costa, A., and Burgess, D. J., 2012. Protein encapsulation in unilamellar liposomes: high encapsulation efficiency and a novel technique to assess lipid-protein interaction. Pharmaceutical research, 29, 1919–1931.
  • Zhang, X. and Keiderling, T.A., 2006. Lipid-induced conformational transitions of beta-lactoglobulin. Biochemistry, 45 (27), 8444–8452.
  • Zhang, X., et al., 2012. Mimicking the cell membrane with block copolymer membranes. Journal of polymer science part A: polymer chemistry, 50 (12), 2293–2318.

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.