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Rheocalc 32
Rheocalc 32













Montenegro MA, Nunes IL, Mercadante AZ, Borsarelli CD (2007) Photoprotection of vitamins in skimmed milk by an aqueous soluble lycopene-gum arabic microcapsule. Matioli G, Rodriguez-Amaya DB (2003) Microencapsulação do licopeno com ciclodextrinas. Lobato KBS, Paese K, Forgearini JC, Guterres SS, Jablonski A, Rios AO (2013) Characterisation and stability evaluation of bixin nanocapsules. Liu Y, Liu J, Chen X, Liu Y, Di D (2010) Preparative separation and purification of lycopene from tomato skins extracts by macroporous adsorption resins. Levy J, Bosin E, Feldman B, Giat Y, Miinster A, Danilenko M, Sharoni Y (1995) Lycopene is a more potent inhibitor of human cancer cell-proliferation than either alpha-carotene or beta-carotene. Letchford K, Burt H (2007) A review of the formation and classification of amphiphilic block copolymer nanoparticulate structures: micelles, nanospheres, nanocapsules and polymersomes. Kishore RSK, Kiese S, Fischer S, Pappenberger A, Grauschopf U, Mahler H-C (2011) The degradation of polysorbates 20 and 80 and its potential impact on the stability of biotherapeutics. Kasperczyk J, Hu Y, Jaworskam J, Dobrzynski P, Wei J, Li S (2008) Comparative study of the hydrolytic degradation of glycolide/ l-lactide/epsilon-caprolactone terpolymers initiated by zirconium(IV) acetylacetonate or stannous octoate. Jager E, Venturini CG, Poletto FS, Colome LM, Pohlmann JPU, Bernardi A, Battastini AMO, Guterres SS, Pohlmann AR (2009) Sustained release from lipid-core nanocapsules by varying the core viscosity and the particle surface area. Goula AM, Adamopoulos KG (2012) A new technique for spray-dried encapsulation of lycopene. González-Reza RM, Quintanar-Guerrero D, Flores-Minutti JJ, Gutiérrez-Cortez E, Zambrano-Zaragoza ML (2014) Nanocapsules of β-carotene: thermal degradation kinetics in a scraped surface heat exchanger (SSHE). Trends Food Sci Technol 23:13–27įontana MC, Coradini K, Guterres SS, Pohlmann AR, Beck RCR (2009) Nanoencapsulation as a way to control the release and to increase the photostability of clobetasol propionate: influence of the nanostructured system. Food Hydrocoll 20:137įathi M, Mozafari MR, Mohebbi M (2012) Nanoencapsulation of food ingredients using lipid based delivery systems. Food Chem 156:37–41ĭickinson E (2006) Food emulsions: principles, practices, and techniques, 2nd edition, Julian McClements. CRC Press, Londonĭias MG, Camões MFGFC, Oliveira L (2014) Carotenoid stability in fruits, vegetables and working standards-effect of storage temperature and time. J Exp Nanosci 8:913–924ĭamodaran S (2008) Food chemistry. J Agric Food Chem 55:5123–5130Ĭontri RV, Ribeiro KLF, Fiel LA, Pohlmann AR, Guterres SS (2013) Vegetable oils as core of cationic polymeric nanocapsules: influence on the physicochemical properties. Food Chem 105:1335–1341īramley PM (2000) Is lycopene beneficial to human health? Phytochemistry 54:233–236Ĭhiu YT, Chiu CP, Chien JT, Ho GH, Yang J, Chen BH (2007) Encapsulation of lycopene extract from tomato pulp waste with gelatin and poly(gamma-glutamic acid) as carrier. Despite the lower pH, Lyc content, and color change of the suspension, the nanocapsules showed satisfactory stability, presenting around 50 % Lyc content after 14 days of storage at room temperature (25 ☌).īlanch GP, Ruiz del Castillo ML, del Mar Caja M, Pérez-Méndez M, Sánchez-Cortés S (2007) Stabilization of all- trans-lycopene from tomato by encapsulation using cyclodextrins. The Lyc-LNC formulation presented stable values for the z-average (193 ± 4.7 nm) and zeta potential (−11.5 ± 0.40 mV). The formulation with a Lyc concentration of 85 µg/mL was characterized in terms of size distribution, zeta potential, encapsulation efficiency, pH, viscosity, and color. The organic phase was injected into an aqueous phase containing polysorbate 80, and the suspension was concentrated under reduced pressure. Lyc extract (93.9 %) was obtained from tomatoes, and the organic phase was prepared with polymer (PCL), caprylic/capric triglycerides, sorbitan monostearate, and Lyc in a mixture of acetone and ethanol under magnetic stirring at 40 ☌.

#RHEOCALC 32 SOFTWARE#

RheocalcT software can analyze data, generate multiple plot overlays, print tabular data, run math models and perform other time-saving routines.The objective of this study was to develop lycopene-loaded lipid-core nanocapsules (Lyc-LNCs) by the interfacial deposition of preformed poly(ε-caprolactone) (PCL). Up to twenty comparison data sets can be plotted and saved. When used with the Brookfield DV2T Viscometer, DV3T Rheometer, or DVNext Rheometer, RheocalcT can analyze data, generate multiple plot overlays, print tabular data, run math models and perform other time-saving routines. Cone Plate Wells Brookfield Spindles Cups.DVNext Rheometer with Gel Timer Functionality.













Rheocalc 32