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. (2012). The impact of Pleurotus ostreatus on organic matter transformation processes. Water Sci. Technol. , 66 (12), 2660–2673. DOI: 10.2166/WST.2012.502. 8. Paul, A., Stosser, R., Zehl, A., Zwirnmann, E., Vogt, R., & Steinberg, C. E. W. (2006). Nature and abundance of organic radicals in natural organic matter: Effect of pH and irradiation. Environ. Sci. Technol ., 40 , 5897–5903. 9. Man, D., Słota, R., Mele, G., & Li, J. (2008). Fluidity of liposome membranes doped with metalloporphyrins: ESR study. Z. Naturforsch. C , 65 , 440–444. 10. Polewski, K

and enzyme linked immunosorbent assay, Int. J. Trop. Med. Hyg. 44 (1991) 79-82. A. C. Allison and G. Gregoriadis, Vaccine: recent trends and progress, Immunol. Today 11 (1990) 427-429. G. Gregoriadis, B. McCormack, M. Obrenovic, R. Saffie, B. Zadi and Y. Perrie, Vaccine entrapment in liposomes, Methods 19 (1999) 156-162; DOI: 10.1006/meth.1999.0841. Y. Fujii, Y. Aramaki, T. Hara, K. Yachi, H. Kikuchi and S. Tsuchiya, Enhancement of systemic and mucosal immune responses following oral administration of liposomes, Immunol. Lett. 36 (1993) 65-69; DOI: 10

, Y. Maitani, K. Takayama and T. Nagai, The relationship between the rigidity of the liposomal membrane and the absorption of insulin after nasal administration of liposomes modified with an enhancer containing insulin in rabbits, Drug Dev. Ind. Pharm. 25 (1999) 1099-1105; DOI: 10.1081/DDC-100102275. S. L. Law, K. J. Huang and H. Y. Chou, Preparation of desmopressin-containing liposomes for intranasal delivery, J. Control. Rel. 70 (2001) 375-382; DOI: 10.1016/S0168-3659(00)00369-2. K. Iwanaga, S. Matsumoto, K. Morimoto, M. Kakemi, S. Yamashita and T. Kimura

References [1] Balgavy P., Devinsky F. Cut-off effects in biological activities of surfactants. Adv Colloid Interface Sci. 1996;66:23-63. [2] Bukovsky M., Mlynarčik D., Ondračkova V. Immunomodulatory activity of amphiphilic antimicrobials on mouse macrophages.Int J Immunopharmacol. 1996;18(6/l):423-426. [3] de la Maza A., PARRA JL. Solubilizing effectscaused by the nonionic surfactant dodecylmaltoside in phosphatidylcholine liposomes. Biophys J. 1997; 72:1668-1675. [4] Gallova J., Szalayova S. The Effect of Stobadine on the Copper-Induced Peroxidation of Egg Yolk

amodiaquine with lipid model membranes. Chem. Phys. Lipids. 2015;186:68–78. [5] Basso, L.G.M., Rodrigues, R.Z., Naal, R.M.Z.G., Costa-Filho, A.J. Effects of the antimalarial drug primaquine on the dynamic structure of lipid model membranes. Biochim. Biophys. Acta -Biomembr. 2011;1808:55–64. [6] Chen, J., Cheng, D., Li, J., Wang, Y., Guo, J., Chen, Z., Cai, B., Yang, T. Influence of lipid composition on the phase transition temperature of liposomes composed of both DPPC and HSPC. Drug Dev. Ind. Pharm. 2013;39:197–204. [7] Chu, C.S., White, N.J. Management of relapsing

compound. Chemosphere. 2013;92/4:445-450. DOI: 10.1016/j.chemosphere.2013.01.048. [9] Filip Z, Kubat J. Microbial utilization and transformation of humic substances extracted from soils of long-term field experiments. Eur J Soil Biol. 2001;37:167-174. DOI: 10.1016/S1164-5563(01)01080-9. [10] Man D. Fluidity of liposome membranes doped with organic tin compounds: ESR study. J Liposome Res. 2008;182:225-234. DOI: 10.1080/08982100802309461. [11] Shimshick EJ, McConnell HM. Lateral phase separation in phospholipid membranes. Biochemistry. 1973;12:2351-2360. https

cavity of mice with M. vogae infection within the period of 5 weeks. In addition we evaluated capacity of these cells for ex vivo phagocytosis of inorganic particles and liposomes, either non-opsonized or opsonized, to assess impact of infection. Material and Methods Animals and Infection ICR mice (male, 6 – 8-weeks old) were obtained from the own breeding at Animal Unit of the Institute of Parasitology, Slovak Academy of Sciences. Animals were housed under the pathogen-free conditions in a room with 12 hr light/dark cycle, temperature 22 ± 2 ºC. Food and water

. Wall and D. D. Von Hoff, Water soluble 20( S )-glycinate ester of 10,11-methylenedioxycamptothecins are highly active against human breast cancer xenografts, Cancer Res. 59 (1999) 3424--3428. S. Anabousi, M. Laue, C. M. Lehr, U. Bakowsky and C. Ehrhardt, Assessing transferrin modification of liposomes by atomic force microscopy and transmission electron microscopy, Eur. J. Pharm. Biopharm. 60 (2005) 295--303; DOI: 10.1016/j.ejpb.2004.12.009. S. A. Abraham, D. N. Waterhouse, L. D. Mayer, P. R. Cullis, T. D. Madden and M. B. Bally, The liposomal formulation of

References [1] Armstrong CL, Marquardt D, Dies H, et al. The observation of highly ordered domains in membranes with cholesterol. PLoS ONE 2013;8:e66162. [2] Balgavý P, Devínsky F. Cut-off effects in biological activities of surfactants. Adv Colloid Interface Sci. 1996;66:23-63 [3] Balgavý P, Dubničková M, Uhríková D, et al. Bilayer thickness in unilamellar extruded egg yolk phosphatidylcholine liposomes: a small-angle neutron scattering study. Acta Phys Slov. 1998;48:509–533. [4] Balgavý P, Dubničková M, Kučerka N, et al. Bilayer thickness and lipid

, Candiotti KA, Onel E, Morren M, Ludbrook GL. The pharmacokinetics and pharmacodynamics of liposome bupivacaine administered via a single epidural injection to healthy volunteers. Reg Anesth Pain Med 2012; 37:616-622 54. Tsuchiya H, Ueno T, Mizogami M, Takakura K. Local anesthetics structure-dependently interact with anionic phospholipid membranes to modify the fluidity. Chem Biol Interact 2010; 183:19-24 55. Shikanov A, Domb AJ, Weiniger CF. Long acting local anesthetic-polymer formulation to prolong the effect of analgesia. J Control Release 2007; 117: 97-103 56