T. Ak and ?. Gülçin, Antioxidant and radical scavenging properties of curcumin, Chem Biol Interact, vol.174, pp.27-37, 2008.

I. K. Priyadarsini, The chemistry of curcumin: from extraction to therapeutic agent, Molecules, vol.19, pp.20091-112, 2014.

G. Began, E. Sudharshan, A. Rao, and A. G. , Inhibition of lipoxygenase one by phosphatidylcholine micelles-bound curcumin, Lipids Germany, vol.33, pp.1223-1231, 1998.

M. Chan, H. Huang, M. R. Fenton, and D. Fong, In vivo inhibition of nitric oxide synthase gene expression by curcumin, a cancer preventive natural product with anti-inflammatory properties, Biochem Pharmacol, vol.55, pp.1955-62, 1998.

V. P. Menon and A. R. Sudheer, Antioxidant and anti-inflammatory properties of curcumin-the molecular targets and therapeutic uses of curcumin in health and disease, pp.105-130, 2007.

W. Wongcharoen and A. Phrommintikul, The protective role of curcumin in cardiovascular diseases, Int J Cardiol, vol.133, pp.145-51, 2009.

T. Hamaguchi, K. Ono, and M. Yamada, REVIEW: curcumin and Alzheimer's disease, CNS Neurosci Ther England, vol.16, pp.285-97, 2010.

R. B. Mythri and M. Bharath, Curcumin: a potential neuroprotective agent in Parkinson's disease, Curr Pharm Des Netherlands, vol.18, pp.91-100, 2012.

M. R. Maradana, R. Thomas, O. Sullivan, and B. J. , Targeted delivery of curcumin for treating type 2 diabetes, Mol Nutr Food Res Germany, vol.57, pp.1550-1556, 2013.

A. Sahebkar, Dual effect of curcumin in preventing atherosclerosis: the potential role of pro-oxidant-antioxidant mechanisms, Nat Prod Res

&. Taylor and . Francis, , vol.29, pp.491-493, 2015.

S. Wanninger, V. Lorenz, A. Subhan, and F. T. Edelmann, Metal complexes of curcumin-synthetic strategies, structures, and medicinal applications, Chem Soc Rev

, The Royal Society of Chemistry, vol.44, pp.4986-5002, 2015.

M. López-lázaro, Anticancer and carcinogenic properties of curcumin: considerations for its clinical development as a cancer chemopreventive and chemotherapeutic agent, Mol Nutr Food Res. Wiley Online Library, p.52, 2008.

M. Tuorkey, Curcumin a potent cancer preventive agent: mechanisms of cancer cell killing, Interv Med Appl Sci Akadémiai Kiadó, vol.6, pp.139-185, 2014.

L. Mazzarino, C. L. Dora, I. C. Bellettini, E. Minatti, S. G. Cardoso et al., Curcumin-loaded polymeric and lipid nanocapsules: preparation, characterization and chemical stability evaluation, Lat Am J Pharm, vol.29, pp.933-973, 2010.

P. Anand, A. B. Kunnumakkara, R. A. Newman, and B. B. Aggarwal, Bioavailability of curcumin: problems and promises, Mol Pharm ACS Publications, vol.4, pp.807-825, 2007.

C. Lin, H. Lin, H. Chen, M. Yu, and M. Lee, Stability and characterization of phospholipid-based curcumin-encapsulated microemulsions, Food Chem Elsevier, vol.116, pp.923-931, 2009.

T. A. Ahmed and B. M. Aljaeid, Preparation, characterization, and potential application of chitosan, chitosan derivatives, and chitosan metal nanoparticles in pharmaceutical drug delivery. Drug Des Devel Ther, vol.10, p.483, 2016.

S. A. Agnihotri, N. N. Mallikarjuna, and T. M. Aminabhavi, Recent advances on chitosan-based micro-and nanoparticles in drug delivery, J Control Release Elsevier, vol.100, pp.5-28, 2004.

E. Szyma?ska and K. Winnicka, Stability of chitosan-a challenge for pharmaceutical and biomedical applications, Mar Drugs Multidiscip Digital Publish Inst, vol.13, pp.1819-1865, 2015.

P. Lertsutthiwong, K. Noomun, N. Jongaroonngamsang, P. Rojsitthisak, and U. Nimmannit, Preparation of alginate nanocapsules containing turmeric oil, Carbohydr Polym, vol.74, pp.209-223, 2008.

D. Natrajan, S. Srinivasan, K. Sundar, and A. Ravindran, Formulation of essential oil-loaded chitosan-alginate nanocapsules, J food drug Anal Elsevier, vol.23, pp.560-568, 2015.

S. H. Suhaimi and N. A. Roslic, Effects of formulation parameters on particle size and polydispersity index of Orthosiphon stamineus loaded nanostructured lipid carrier, J Adv Res Appl Sci Eng Technol, vol.1, pp.36-45, 2015.

N. Khayata, W. Abdelwahed, M. F. Chehna, C. Charcosset, and H. Fessi, Preparation of vitamin E loaded nanocapsules by the nanoprecipitation method: from laboratory scale to large scale using a membrane contactor, Int J Pharm, vol.423, pp.419-446, 2012.
URL : https://hal.archives-ouvertes.fr/hal-02002197

M. Fresta, G. Cavallaro, G. Giammona, E. Wehrli, and G. Puglisi, Preparation and characterization of polyethyl-2-cyanoacrylate nanocapsules containing antiepileptic drugs, Biomaterials, vol.17, pp.751-759, 1996.

K. M. Vårum and O. Smidsrød, Structure-property relationship in chitosans, Polysaccharides: structural diversity functional versatility, pp.625-667, 2005.

N. Rokhati, P. Widjajanti, B. Pramudono, and H. Susanto, Performance comparison of ? -and ?-amylases on chitosan hydrolysis, ISRN Chem Eng, p.186159, 2013.

F. Danhier, N. Lecouturier, B. Vroman, C. Jerome, J. Marchand-brynaert et al., Paclitaxel-loaded PEGylated PLGAbased nanoparticles: in vitro and in vivo evaluation, J Control Release Netherlands, vol.133, pp.11-18, 2009.

R. Thipparaboina, R. B. Chavan, and N. R. Shastri, Nanocrystals for delivery of therapeutic agents. Part Technol Deliv Ther, pp.291-316, 2017.

C. R. Maruyama, M. Guilger, M. Pascoli, N. Bileshy-josé, P. C. Abhilash et al., Nanoparticles based on chitosan as carriers for the combined herbicides imazapic and imazapyr. Sci Rep, Nat Publ Group, vol.6, 2016.

V. Guarino, T. Caputo, R. Altobelli, and A. L. , Degradation properties and metabolic activity of alginate and chitosan polyelectrolytes for drug delivery and tissue engineering applications, 2015.

D. Markovi?, A. Zarubica, N. Stojkovi?, M. Vasi?, M. Caki? et al., Alginates and similar exopolysaccharides in biomedical application and pharmacy: controlled delivery of drugs, Adv Technol, vol.5, pp.39-52, 2016.

E. Fröhlich and E. Roblegg, Models for oral uptake of nanoparticles in consumer products, Toxicology Elsevier, vol.291, pp.10-17, 2012.

H. Ma, X. Qi, Y. Maitani, and T. Nagai, Preparation and characterization of superparamagnetic iron oxide nanoparticles stabilized by alginate

, Int J Pharm [Internet], vol.333, pp.177-86, 2007.

M. Huang, E. Khor, and L. Lim, Uptake and cytotoxicity of chitosan molecules and nanoparticles: effects of molecular weight and degree of deacetylation, Pharm Res United States, vol.21, pp.344-53, 2004.

N. G. Schipper, K. M. Varum, and P. Artursson, Chitosans as absorption enhancers for poorly absorbable drugs. 1: influence of molecular weight and degree of acetylation on drug transport across human intestinal epithelial (Caco-2) cells, Pharm Res United States, vol.13, pp.1686-92, 1996.

C. Prego, M. Fabre, D. Torres, and M. J. Alonso, Efficacy and mechanism of action of chitosan nanocapsules for oral peptide delivery, Pharm Res. United States, vol.23, pp.549-56, 2006.

D. Fischer, Y. Li, B. Ahlemeyer, J. Krieglstein, and T. Kissel, vitro cytotoxicity testing of polycations: influence of polymer structure on cell viability and hemolysis, vol.24, pp.1121-1152, 2003.

A. S. Pasternak and W. M. Miller, Measurement of trans-epithelial electrical resistance in perfusion: potential application for in vitro ocular toxicity testing, Biotechnol Bioeng United States, vol.50, pp.568-79, 1996.

I. M. Van-der-lubben, J. C. Verhoef, G. Borchard, and H. E. Junginger, Chitosan and its derivatives in mucosal drug and vaccine delivery

, Eur J Pharm Sci [Internet], vol.14, pp.201-208, 2001.

M. Amidi, E. Mastrobattista, W. Jiskoot, and W. E. Hennink, Chitosanbased delivery systems for protein therapeutics and antigens, Adv Drug Deliv Rev Netherlands, vol.62, pp.59-82, 2010.

Y. Xiang, Y. Liu, B. Mi, and Y. Leng, Hydrated polyamide membrane and its interaction with alginate: a molecular dynamics study, Langmuir United States, vol.29, pp.11600-11608, 2013.

N. Nafee, M. Schneider, U. F. Schaefer, and C. Lehr, Relevance of the colloidal stability of chitosan/PLGA nanoparticles on their cytotoxicity profile, Int J Pharm Netherlands, vol.381, pp.130-139, 2009.

S. Rodrigues, M. Dionisio, C. R. Lopez, and A. Grenha, Biocompatibility of chitosan carriers with application in drug delivery, J Funct Biomater Switzerland, vol.3, pp.615-656, 2012.

L. Zhao, G. Yang, Y. Shi, C. Su, and J. Chang, Co-delivery of Gefitinib and chloroquine by chitosan nanoparticles for overcoming the drug acquired resistance, J Nanobiotechnology England, vol.13, p.57, 2015.

S. Salatin and K. A. Yari, Overviews on the cellular uptake mechanism of polysaccharide colloidal nanoparticles, J Cell Mol Med England, vol.21, pp.1668-86, 2017.

A. Prokop and J. M. Davidson, Nanovehicular intracellular delivery systems, J Pharm Sci Elsevier, vol.97, pp.3518-90, 2008.

Q. Li, C. Liu, and Y. Yu, Separation of monodisperse alginate nanoparticles and effect of particle size on transport of vitamin E, Carbohydr Polym England, vol.124, pp.274-283, 2015.