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Article

Dual Modification of Cassava Starch Using Physical Treatments for Production of Pickering Stabilizers

by
Giselle Vallim Correa Ramos
1,2,
Marya Eduarda Azelico Rabelo
2,
Samantha Cristina de Pinho
2,
Germán Ayala Valencia
3,
Paulo José do Amaral Sobral
2,4 and
Izabel Cristina Freitas Moraes
1,2,*
1
Postgraduate Program in Materials Science and Engineering, School of Animal Science and Food Engineering (FZEA), University of São Paulo (USP), Av. Duque de Caxias Norte, 225, Pirassununga 13635-900, SP, Brazil
2
Department of Food Engineering, School of Animal Science and Food Engineering (FZEA), University of São Paulo, Av. Duque de Caxias Norte, 225, Pirassununga 13635-900, SP, Brazil
3
Department of Chemical and Food Engineering, Federal University of Santa Catarina, Florianópolis 88040-900, SC, Brazil
4
Food Research Center (FoRC), University of São Paulo, Rua do Lago, 250, Semi-Industrial Building, Block C, São Paulo 05508-080, SP, Brazil
*
Author to whom correspondence should be addressed.
Foods 2024, 13(2), 327; https://doi.org/10.3390/foods13020327
Submission received: 18 December 2023 / Revised: 17 January 2024 / Accepted: 18 January 2024 / Published: 20 January 2024

Abstract

Cassava starch nanoparticles (SNP) were produced using the nanoprecipitation method after modification of starch granules using ultrasound (US) or heat–moisture treatment (HMT). To produce SNP, cassava starches were gelatinized (95 °C/30 min) and precipitated after cooling, using absolute ethanol. SNPs were isolated using centrifugation and lyophilized. The nanoparticles produced from native starch and starches modified using US or HMT, named NSNP, USNP and HSNP, respectively, were characterized in terms of their main physical or functional properties. The SNP showed cluster plate formats, which were smooth for particles produced from native starch (NSNP) and rough for particles from starch modified with US (USNP) or HMT (HSNP), with smaller size ranges presented by HSNP (~63–674 nm) than by USNP (~123–1300 nm) or NSNP (~25–1450 nm). SNP had low surface charge values and a V-type crystalline structure. FTIR and thermal analyses confirmed the reduction of crystallinity. The SNP produced after physical pretreatments (US, HMT) showed an improvement in lipophilicity, with their oil absorption capacity in decreasing order being HSNP > USNP > NSNP, which was confirmed by the significant increase in contact angles from ~68.4° (NSNP) to ~76° (USNP; HSNP). A concentration of SNP higher than 4% may be required to produce stability with 20% oil content. The emulsions produced with HSNP showed stability during the storage (7 days at 20 °C), whereas the emulsions prepared with NSNP exhibited phase separation after preparation. The results suggested that dual physical modifications could be used for the production of starch nanoparticles as stabilizers for Pickering emulsions with stable characteristics.
Keywords: ultrasound; antisolvent precipitation; starch nanoparticles; Pickering emulsion ultrasound; antisolvent precipitation; starch nanoparticles; Pickering emulsion
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MDPI and ACS Style

Ramos, G.V.C.; Rabelo, M.E.A.; Pinho, S.C.d.; Valencia, G.A.; Sobral, P.J.d.A.; Moraes, I.C.F. Dual Modification of Cassava Starch Using Physical Treatments for Production of Pickering Stabilizers. Foods 2024, 13, 327. https://doi.org/10.3390/foods13020327

AMA Style

Ramos GVC, Rabelo MEA, Pinho SCd, Valencia GA, Sobral PJdA, Moraes ICF. Dual Modification of Cassava Starch Using Physical Treatments for Production of Pickering Stabilizers. Foods. 2024; 13(2):327. https://doi.org/10.3390/foods13020327

Chicago/Turabian Style

Ramos, Giselle Vallim Correa, Marya Eduarda Azelico Rabelo, Samantha Cristina de Pinho, Germán Ayala Valencia, Paulo José do Amaral Sobral, and Izabel Cristina Freitas Moraes. 2024. "Dual Modification of Cassava Starch Using Physical Treatments for Production of Pickering Stabilizers" Foods 13, no. 2: 327. https://doi.org/10.3390/foods13020327

APA Style

Ramos, G. V. C., Rabelo, M. E. A., Pinho, S. C. d., Valencia, G. A., Sobral, P. J. d. A., & Moraes, I. C. F. (2024). Dual Modification of Cassava Starch Using Physical Treatments for Production of Pickering Stabilizers. Foods, 13(2), 327. https://doi.org/10.3390/foods13020327

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