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Recent Patents on Nanotechnology

Editor-in-Chief

ISSN (Print): 1872-2105
ISSN (Online): 2212-4020

Research Article

Prospective Study on Microencapsulation of Oils and Its Application in Foodstuffs

Author(s): Tayane de Jesus Freitas, Larissa Santos Assunção, Vanessa de Lima Silva, Tainara Santos Oliveira, Ismara Santos Rocha Conceição, Bruna Aparecida Souza Machado, Itaciara Larroza Nunes, Deborah Murowaniecki Otero and Camila Duarte Ferreira Ribeiro*

Volume 16, Issue 3, 2022

Published on: 22 April, 2021

Page: [219 - 234] Pages: 16

DOI: 10.2174/1872210515666210422123001

Price: $65

Abstract

Background: Edible oils have gained the interest of several industrial sectors for the different health benefits they offer, such as the supply of bioactive compounds and essential fatty acids. Microencapsulation is one of the techniques that has been adopted by industries to minimize the degradation of oils, facilitating their processing.

Objective: To evaluate the intellectual property related to patent documents referring to microencapsulated oils used in foods.

Methods: This prospective study investigated the dynamics of patents filed in the Espacenet and National Institute of Industrial Property (INPI) databases, and it mapped technological developments in microencapsulation in comparison with scientific literature.

Results: The years 2015 and 2018 showed the greatest growth in the number of patents filed in the Espacenet and INPI databases, respectively, with China leading the domains of origin, inventors, and owners of microencapsulation technology. The largest number of applications of microcapsules were observed in the food industry, and the foods containing microencapsulated oils were powdered seasonings, dairy products, rice flour, nutritional formulae, pasta, nutritional supplements, and bread. The increase in oxidative stabilities of oils was the most cited objective to microencapsulate oils. Spray drying was the most widely used microencapsulation technique, and maltodextrin, gum arabic, and modified starch were the most widely used wall materials.

Conclusion: Microencapsulation of oils has been expanding over the years and increasing the possibilities of the use of microcapsules, but further investments and development of policies and incentive programs to boost this technology need to be made in less developed countries. For future perspectives, the microencapsulation technique is already a worldwide trend in the food industry, enabling the development of new products to facilitate their insertion in the consumer market.

Keywords: Bioactive compounds, microencapsulated oil, microcapsules, food industry, patent application, technological prospection.

Graphical Abstract
[1]
Liu J, Cheng J, Tan S, Qian K, Mei T, Wang L. Lobster oil seasoning powder and preparation method thereof. CN Patent 110638022 (A), 2020.
[2]
Chen L. Preparation method of DHA powder applied in milk and soy milk. CN Patent 106798309 (A), 2017.
[3]
Junjie C, Juwu H, Hua X. Method for preparing nutritional food replenisher containing intelligence-benefiting factors. CN Patent 101744287 (A), 2010.
[4]
Richards NSPS, Mattanna P, Silva PV. Microencapsulation process of yeast oil, yeast oil, use and food composition. BR Patent 102015030882-5 A2A23P 10/30, 2015.
[5]
Wang Z, Liu D, Cheng C, et al. Nasogastric inter-meal nutritive meal package suitable for cerebral apoplexy patients and preparation method thereof. CN Patent 107692195 (A), 2018.
[6]
Wang Z, Liu D, Qiu J, et al. Set of daily three-meal nutritional composition for nasal feeding of stroke patients and preparation method thereof. CN Patent 107373640 (A), 2017.
[7]
Gao P, Xiao M. Formula dietotherapy food for emaciated and poor absorption function groups and preparation method. CN Patent 106509867 (A), 2017.
[8]
Sugimoto K, Tooyama M. Method for producing noodle by adding fat or oil thereto. JP Patent S60110257 (A), 1985.
[9]
Plummer NT. Nutritional supplement. GB Patent 2324457 (A), 1998.
[10]
Rokuta S, Kasanuki T, Nakamura T, Sogo Y, Kato T, Yoshioka T. Process for producing breads having an internal cavity. DE Patent 3426450 (A1), 1985.
[11]
Bakry AM, Abbas S, Ali B, et al. Microencapsulation of oils: A comprehensive review of benefits, techniques, and applications. Compr Rev Food Sci Food Saf 2016; 15(1): 143-82.
[http://dx.doi.org/10.1111/1541-4337.12179] [PMID: 33371581]
[12]
Ferreira CD, Nunes IL. Oil nanoencapsulation: Development, application, and incorporation into the food market. Nanoscale Res Lett 2019; 14(1): 9.
[http://dx.doi.org/10.1186/s11671-018-2829-2] [PMID: 30617711]
[13]
Timilsena YP, Wang B, Adhikari R, et al. Advances in microencapsulation of Polyunsaturated Fatty Acids (PUFAs)-rich plant oils using complex coacervation: A review. Food Hydrocoll 2017; 69: 369-81.
[http://dx.doi.org/10.1016/j.foodhyd.2017.03.007]
[14]
Corrêa-Filho LC, Moldão-Martins M, Alves VD. Advances in the application of microcapsules as carriers of functional compounds for food products. Appl Sci (Basel) 2019; 9(3)
[http://dx.doi.org/10.3390/app9030571]
[15]
Aghbashlo M, Mobli H, Madadlou A, et al. Fish oil microencapsulation as influenced by spray dryer operational variables. Int J Food Sci Technol 2013; 48(8): 1707-13.
[http://dx.doi.org/10.1111/ijfs.12141]
[16]
Fang Z, Bhandari B. Encapsulation of polyphenols - A review. Trends Food Sci Technol 2010; 21: 510-23.
[http://dx.doi.org/10.1016/j.tifs.2010.08.003]
[17]
Gharsallaoui A, Roudaut G, Chambin O, et al. Applications of spray-drying in microencapsulation of food ingredients: An overview. Food Res Int 2007; 40: 1107-21.
[http://dx.doi.org/10.1016/j.foodres.2007.07.004]
[18]
Domínguez R, Pateiro M, Agregán R, Lorenzo JM. Effect of the partial replacement of pork backfat by microencapsulated fish oil or mixed fish and olive oil on the quality of frankfurter type sausage. J Food Sci Technol 2017; 54(1): 26-37.
[http://dx.doi.org/10.1007/s13197-016-2405-7] [PMID: 28242900]
[19]
Goyal A, Sharma V, Sihag MK, Singh AK, Arora S, Sabikhi L. Fortification of dahi (Indian yoghurt) with omega-3 fatty acids using microencapsulated flaxseed oil microcapsules. J Food Sci Technol 2016; 53(5): 2422-33.
[http://dx.doi.org/10.1007/s13197-016-2220-1] [PMID: 27407209]
[20]
Venturini LH, Moreira TFM, Silva TBV, et al. Partial substitution of margarine by microencapsulated chia seeds Oil in the formulation of cookies. Food Bioprocess Technol 2019; 12: 77-87.
[http://dx.doi.org/10.1007/s11947-018-2188-0]
[21]
Rutz JK, Borges CD, Zambiazi RC, Crizel-Cardozo MM, Kuck LS, Noreña CP. Microencapsulation of palm oil by complex coacervation for application in food systems. Food Chem 2017; 220: 59-66.
[http://dx.doi.org/10.1016/j.foodchem.2016.09.194] [PMID: 27855936]
[22]
Ganji DD, Peiravi MM, Abbasi M. Evaluation of the heat transfer rate increases in retention pools nuclear waste. Int J Nanodimens 2015; 6(4): 385-98.
[23]
Sheikholeslami M, Nimafar M, Ganji DD. Nanofluid heat transfer between two pipes considering Brownian motion using AGM. Alex Eng J 2017; 56: 277-83.
[http://dx.doi.org/10.1016/j.aej.2017.01.032]
[24]
Peiravi MM, Alinejad J, Ganji DD, et al. 3D optimization of baffle arrangement in a multi-phase nanofluid natural convection based on numerical simulation. Int J Numer Method H 2020; 30(5): 2583-605.
[http://dx.doi.org/10.1108/HFF-01-2019-0012]
[25]
Peiravi MM, Alinejad J, Ganji DD, et al. Numerical study of fins arrangement and nanofluids effects on three-dimensional natural convection in the cubical enclosure. Trans Phenom Nano Micro Scales 2019; 7(2): 97-112.
[26]
Alinejad J, Peiravi MM. Numerical analysis of secondary droplets characteristics due to drop impacting on 3D cylinders considering dynamic contact angle. Meccanica 2020; 55: 1975-2002.
[http://dx.doi.org/10.1007/s11012-020-01240-z]
[27]
Santos FCG, Kalid RA. Technological prospecting: a study of technologies applied to the processing and derivatives of cocoa. Res Soc Dev 2020; 9(3): 56932354.
[28]
Nicholas MHK, Halimah M, Wee TL. Methods for producing water soluble oil palm leaf powder and concentrate. CN Patent 105996023 (A), 2016.
[29]
Gibbs BF, Kermasha S, Alli I, Mulligan CN. Encapsulation in the food industry: a review. Int J Food Sci Nutr 1999; 50(3): 213-24.
[http://dx.doi.org/10.1080/096374899101256] [PMID: 10627837]
[30]
Ré MI. Microencapsulation: In search of intelligent products. Sci Today 2000; 27(162): 24-9.
[31]
Gouin S. Microencapsulation-Industrial appraisal of existing technologies and trends. Trends Food Sci Technol 2004; 15(7-8): 330-47.
[http://dx.doi.org/10.1016/j.tifs.2003.10.005]
[32]
Brasileiro JSL. Brasileiro JSL. Microencapsulation of bioactive compounds: Innovation in different areas. Master Thesis 2011.
[33]
Choi Y, Hong S. Qualitative and quantitative analysis of patent data in nanomedicine for bridging the gap between research activities and practical applications. World Pat Inf 2020; 60: 101943.
[http://dx.doi.org/10.1016/j.wpi.2019.101943]
[34]
Isaev VA, Bentsianov LM, Simonenko SV, Seliverstov VK, Zhukov AGE. Fish oil microcapsules production method. RU Patent 2557526 (C1), 2015.
[35]
Jiang Z, Chen L, Li R. Method for preparing perilla oil powder through composite condensation microencapsulation. CN Patent 103300379 (A), 2013.
[36]
Wahren R, Skjaevestad B. Coated effervescent tablet. US Patent 2013108745 (A1), 2013.
[37]
Casana GV, Gimeno SM, Gimeno SB, Moser M, Casaña GV. Continuous multi-microencapsulation process for improving the stability and storage life of biologically active ingredients. US Patent 2011064817 (A1), 2011.
[38]
Bustos FM, Pagola BM. Starch esters derivatized and/or converted by thermoplastic extrusion so that they are applied for microencapsulating flavourings and the like applications. MX Patent 2007012037 (A), 2009.
[39]
Zhou D, Wang J, Shi Q, Ge F, Peng Y. Preparation method of Ganoderma lucidum spore oil microencapsulated powder. CN Patent 108236108 (A), 2018.
[40]
Tu X, Du L, Zeng H, et al. Water-soluble nut oil microcapsules rich in Omega-7 and preparation method of water-soluble nut oil microcapsules rich in Omega-7. CN Patent 108741030 (A), 2018.
[41]
Han L, Zhang S, Liu K, et al. Microencapsulated peony seed oil, compound composition and preparation method of microencapsulated peony seed oil. CN Patent 106900885 (A), 2017.
[42]
Liu N, Li C, Zhao P, Li C. Acer truncatum oil microcapsule and preparation method thereof. CN Patent 106262927 (A), 2017.
[43]
Sun X. Production process of composite germ powder. CN Patent 104544080 (A), 2015.
[44]
Wang HC. Microencapsulated oil powder with selective digestibility and phased antioxidant protection. AU Patent 2020100177 (A4), 2020.
[45]
Chang P, Liu B, Kong X. Microcapsule oil and preparation method therefor. WO Patent 2019029370 (A1), 2020.
[46]
Zhang L, Zhao W. Preparation method of water-soluble Euphausia superba oil microcapsule powder. CN Patent 107232636 (A), 2017.
[47]
Lai Z, Zhang L. Microcapsule fat powder of omega-3 enriched meat, egg and milk, and preparation method thereof. US Patent 2016220521 (A1), 2016.
[48]
Huo J, Wang L, Huang J, et al. Novel micro-nanometer grade fish oil/algae oil microcapsule and preparation process thereof. CN Patent 105533691 (A), 2016.
[49]
Head R, Sanguansri L, Augustin MA. Gi track delivery systems. US Patent 2007218125 (A1), 2007.
[50]
Zhang D, Zhai L, Sun T, Xu Y, Wang X, Lin W. Preparation method of groundcherry seed oil microcapsule. CN Patent 106579448 (A), 2017.
[51]
Wang B, Hou J, Ge W, Zhang M, Yue B. Goose fatty liver oil microcapsule. CN Patent 102871142 (A), 2013.
[52]
Huang A. Oral microencapsulated porcupine oil and preparation method thereof. CN Patent 106387916 (A), 2017.
[53]
Zhang T, Zhao C. Method for assisting in extracting wood frog spawn oil by ultrasonic method and preparation method of wood frog spawn oil microcapsules. CN Patent 105919134 (A), 2016.
[54]
Paján Lan HP. Microencapsulation process for producing microcapsules containing EPA and DHA fatty acids from anchoveta fish oil, engraulis ringens, suitable for human consumption, and microcapsules produced using said process. WO Patent 2016133410 (A1), 2016.
[55]
Lin X, Huang J, Zhang C, Zhu F, Liu S. Method for adopting konjac glucomannan as wall material for embedding microalg al oil to prepare microcapsules. CN Patent 105231167 (A), 2016.
[56]
Bakkene G, Nordvi B, Johansen A-G, Gutierrez M. Composition. US Patent 2007128341 (A1), 2007.
[57]
Lu X. Flaxseed oil microcapsule and production method thereof. CN Patent 108782780 (A), 2018.
[58]
Changbao L, Xuehui W, Jian S, et al. Siraitia grosvenorii seed oil microcapsule powder and preparation method thereof. CN Patent 102499373 (A), 2012.
[59]
Tritsch J-C, Yu L-Q, Mazzaro ST. 25-Hydroxy vitamin D3 compositions. US Patent 2010112162 (A1), 2010.
[60]
Soper JC. Method of encapsulating food or flavor particles using warm water fish gelatin, and capsules produced therefrom. US Patent 5603952 (A), 1997.
[61]
Soper JC. Method of encapsulating food or flavor particles using warm water fish gelatin, and capsules produced therefrom. CA Patent 2208793 (C), 1996.
[62]
Rosenberg M, Rosenberg Y, Frenkel L. Microencapsulation of model oil in wall matrices consisting of SPI and maltodextrins. AIMS Agric Food 2016; 1: 33-51.
[http://dx.doi.org/10.3934/agrfood.2016.1.33]
[63]
Takeungwongtrakul S, Benjakul S. H-Kittikun A. Characteristics and oxidative stability of bread fortified with encapsulated shrimp oil. Ital J Food Sci 2015; 27(4): 476-86.
[64]
González A, Martínez ML, León AE, Ribotta PD. Effects on bread and oil quality after functionalization with microencapsulated chia oil. J Sci Food Agric 2018; 98(13): 4903-10.
[http://dx.doi.org/10.1002/jsfa.9022] [PMID: 29569241]
[65]
Jeyakumari A, Janarthanan G, Chouksey MK, Venkateshwarlu G. Effect of fish oil encapsulates incorporation on the physico-chemical and sensory properties of cookies. J Food Sci Technol 2016; 53(1): 856-63.
[http://dx.doi.org/10.1007/s13197-015-1981-2] [PMID: 26788008]
[66]
Takeungwongtrakul S, Benjakul S. Biscuits fortified with micro-encapsulated shrimp oil: characteristics and storage stability. J Food Sci Technol 2017; 54(5): 1126-36.
[http://dx.doi.org/10.1007/s13197-017-2545-4] [PMID: 28416862]
[67]
Almeida MMC, Francisco CRL, Oliveira A, et al. Textural, color, hygroscopic, lipid oxidation, and sensory properties of cookies containing free and microencapsulated chia oil. Food Bioprocess Technol 2018; 11: 926-39.
[http://dx.doi.org/10.1007/s11947-018-2057-x]
[68]
Lorenzo JM, Munekata PES, Pateiro M, Campagnol PCB, Domínguez R. Healthy Spanish salchichón enriched with encapsulated n-3 long chain fatty acids in konjac glucomannan matrix. Food Res Int 2016; 89(Pt 1): 289-95.
[http://dx.doi.org/10.1016/j.foodres.2016.08.012] [PMID: 28460917]
[69]
Bolger Z, Brunton NP, Monahan FJ. Effect of mode of addition of flaxseed oil on the quality characteristics of chicken sausage containing vitamin E and omega 3 fatty acids at levels to support a health claim. Food Funct 2017; 8(10): 3563-75.
[http://dx.doi.org/10.1039/C7FO00929A] [PMID: 28880330]
[70]
Keenan DF, Resconi VC, Smyth TJ, et al. The effect of partial-fat substitutions with encapsulated and unencapsulated fish oils on the technological and eating quality of beef burgers over storage. Meat Sci 2015; 107: 75-85.
[http://dx.doi.org/10.1016/j.meatsci.2015.04.013] [PMID: 25965966]
[71]
Heck RT, Vendruscolo RG, de Araújo Etchepare M, et al. Is it possible to produce a low-fat burger with a healthy n-6/n-3 PUFA ratio without affecting the technological and sensory properties? Meat Sci 2017; 130: 16-25.
[http://dx.doi.org/10.1016/j.meatsci.2017.03.010] [PMID: 28347883]
[72]
Jiménez-Martín E, Pérez-Palacios T, Carrascal JR, et al. Enrichment of chicken nuggets with microencapsulated omega-3 fish oil: Effect of frozen storage time on oxidative stability and sensory quality. Food Bioprocess Technol 2016; 9: 285-97.
[http://dx.doi.org/10.1007/s11947-015-1621-x]
[73]
Pérez-Palacios T, Ruiz-Carrascal J, Jiménez-Martín E, Solomando JC, Antequera T. Improving the lipid profile of ready-to-cook meat products by addition of omega-3 microcapsules: effect on oxidation and sensory analysis. J Sci Food Agric 2018; 98(14): 5302-12.
[http://dx.doi.org/10.1002/jsfa.9069] [PMID: 29656385]
[74]
Rojas VM, Marconi LFDCB, Guimarães-Inácio A, et al. Formulation of mayonnaises containing PUFAs by the addition of microencapsulated chia seeds, pumpkin seeds and baru oils. Food Chem 2019; 274: 220-7.
[http://dx.doi.org/10.1016/j.foodchem.2018.09.015] [PMID: 30372930]
[75]
Nasrin TAA, Anal AK. Enhanced oxidative stability of fish oil by encapsulating in culled banana resistant starch-soy protein isolate based microcapsules in functional bakery products. J Food Sci Technol 2015; 52(8): 5120-8.
[http://dx.doi.org/10.1007/s13197-014-1606-1] [PMID: 26243933]
[76]
Fadini AL, Alvim ID, Ribeiro IP, et al. Innovative strategy based on combined microencapsulation technologies for food application and the influence of wall material composition. LWT 2018; 91: 345-52.
[http://dx.doi.org/10.1016/j.lwt.2018.01.071]
[77]
Santhanam AK, Lekshmi M, Chouksey MK, et al. Delivery of omega-3 fatty acids into cake through emulsification of fish oil-in-milk and encapsulation by spray drying with added polymers. Dry Technol 2015; 33: 83-91.
[http://dx.doi.org/10.1080/07373937.2014.934832]
[78]
Farbod F, Kalbasi A, Moini S, Emam-Djomeh Z, Razavi H, Mortazavi A. Effects of storage time on compositional, micro-structural, rheological and sensory properties of low fat Iranian UF-Feta cheese fortified with fish oil or fish oil powder. J Food Sci Technol 2015; 52(3): 1372-82.
[http://dx.doi.org/10.1007/s13197-013-1163-z] [PMID: 25745205]
[79]
Gowda A, Sharma V, Goyal A, Singh AK, Arora S. Process optimization and oxidative stability of omega-3 ice cream fortified with flaxseed oil microcapsules. J Food Sci Technol 2018; 55(5): 1705-15.
[http://dx.doi.org/10.1007/s13197-018-3083-4] [PMID: 29666523]
[80]
Oliveira TS. Microencapsulation and oxidative stability of the oil from nuts -do- Brazil (Rosmarinus officinalis) with vegetable protein concentrates. Master Thesis 2019.
[81]
Hamad AF, Han J-H, Kim B-C, Rather IA. The intertwine of nanotechnology with the food industry. Saudi J Biol Sci 2018; 25(1): 27-30.
[http://dx.doi.org/10.1016/j.sjbs.2017.09.004] [PMID: 29379352]
[82]
Marfil PHM, Paulo BB, Alvim ID, et al. Production and characterization of palm oil microcapsulesobtained by complex coacervation in gelatin/gum arabic. J Food Process Eng 2018; 41(4): e12673.
[83]
Carneiro HCF, Tonon RV, Grosso CRF, et al. Encapsulation efficiency and oxidative stability of flaxseed oil microencapsulated by spray drying using different combinations of wall materials. J Food Eng 2013; 115: 443-51.
[http://dx.doi.org/10.1016/j.jfoodeng.2012.03.033]
[84]
Moreira GEG. Obtaining and characterizing a microencapsulated extract of acerola agroindustrial residue. Master Thesis 2007.
[85]
Encina C, Márquez-Ruiz G, Holgado F, Giménez B, Vergara C, Robert P. Effect of spray-drying with organic solvents on the encapsulation, release and stability of fish oil. Food Chem 2018; 263: 283-91.
[http://dx.doi.org/10.1016/j.foodchem.2018.05.026] [PMID: 29784318]
[86]
de Lima Silva V, Oliveira TS, de Souza CO, et al. Technological prospection of oil nanoparticles: Primary characteristics and profiles. Recent Pat Nanotechnol 2020; 14: 1-13.
[http://dx.doi.org/10.2174/1872210514666200705234030] [PMID: 32628605]
[87]
Du P, Zhang G, Li C, et al. Characteristic of microencapsulated 1,3-dioleoyl-2- palmitoylglycerol and its application in infant formula powder. Int J Food Prop 2018; 21(1): 2355-65.
[http://dx.doi.org/10.1080/10942912.2018.1514633]
[88]
Fernandes RVB, Guimarães IC, Ferreira CLR, et al. Microencapsulated Rosemary (Rosmarinus officinalis) essential oil as a biopreservative in minas frescal cheese. J Food Process Preserv 2017; 41(1): e12759.
[http://dx.doi.org/10.1111/jfpp.12759]
[89]
Kim YK, Nam MS, Bae HC. Characteristics of gouda cheese supplemented with chili pepper extract microcapsules. Han-gug Chugsan Sigpum Hag-hoeji 2017; 37(6): 833-9.
[PMID: 29725204]
[90]
Dordoni R, Garrido GD, Marinoni L, et al. Enrichment of whole wheat cocoa biscuits with encapsulated grape skin extract. Int J Food Sci 2019; 2019
[http://dx.doi.org/10.1155/2019/9161840]
[91]
Ahmadi N, Nasirpour A, Sheikhzeinodin M, et al. Microencapsulation of ubiquinone using complex coacervation for functional yoghurt. Food Sci Biotechnol 2015; 24(3): 895-904.
[http://dx.doi.org/10.1007/s10068-015-0116-x]
[92]
Comunian TA, Chaves IE, Thomazini M, et al. Development of functional yogurt containing free and encapsulated echium oil, phytosterol and sinapic acid. Food Chem 2017; 237: 948-56.
[http://dx.doi.org/10.1016/j.foodchem.2017.06.071] [PMID: 28764091]
[93]
Chatterjee S, Judeh ZMA. Impact of the type of emulsifier on the physicochemical characteristics of the prepared fish oil-loaded microcapsules. J Microencapsul 2017; 34(4): 366-82.
[http://dx.doi.org/10.1080/02652048.2017.1341561] [PMID: 28659064]
[94]
Secolin VA. Microencapsulation of bioactive compounds from Camellia sinensis in lipid systems by spray drying. Master Thesis 2014.
[95]
Chang C, Varankovich N, Nickerson MT. Microencapsulation of canola oil by lentil protein isolate-based wall materials. Food Chem 2016; 212: 264-73.
[http://dx.doi.org/10.1016/j.foodchem.2016.05.136] [PMID: 27374532]
[96]
Foreign Agricultural Service – FAS. United States Department of Agriculture (USDA). Oilseeds: World Markets and Trade 2020.
[97]
Moreira ACG. Microencapsulation of Essential Oils. Master Thesis 2014.
[98]
Tartaruga IGP. Technological innovations in China: Lessons and perspectives 2017. Available from: http://panoramainternacional.fee.tche.br/article/inovacoes-tecnologicas-na-china-licoes-e-perspectivas/ [Accessed on 30 July 2020].
[99]
Mattanna P. Selection, optimization of production and application of microbial oil in yoghurts. Doctor Thesis 2014.
[100]
StatNano. Nanotechnology Products Database 2020. Available from: https://product.statnano.com/
[101]
Stangierski J, Rezler R, Kawecki K, Peplińska B. Effect of microencapsulated fish oil powder on selected quality characteristics of chicken sausages. J Sci Food Agric 2020; 100(5): 2043-51.
[http://dx.doi.org/10.1002/jsfa.10226] [PMID: 31875966]
[102]
Rahmani-Manglano NE, González-Sánchez I, García-Moreno PJ, Espejo-Carpio FJ, Jacobsen C, Guadix EM. Development of fish oil-loaded microcapsules containing whey protein hydrolysate as film-forming material for fortification of low-fat mayonnaise. Foods 2020; 9(5): E545.
[http://dx.doi.org/10.3390/foods9050545] [PMID: 32365987]
[103]
Beikzadeh S, Shojaee-Aliabadi S, Dadkhodazade E, et al. Comparison of properties of breads enriched with omega-3 oil encapsulated in β-glucan and Saccharomyces cerevisiae yeast cells. Appl Food Biotechnol 2020; 7(1): 11-20.
[104]
Ullah R, Nadeem M, Imran M, et al. Effect of microcapsules of chia oil on Ω-3 fatty acids, antioxidant characteristics and oxidative stability of butter. Lipids Health Dis 2020; 19(1): 10.
[http://dx.doi.org/10.1186/s12944-020-1190-5] [PMID: 31948460]

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