Optimizing the Extraction of Anthocyanins from the Skin and Phenolic Compounds from the Seed of Jabuticaba Fruits (Myrciaria jabuticaba (Vell.) O. Berg) with Ternary Mixture Experimental Designs
Total phenolic compounds (TPC) extraction from the seed and total monomeric anthocyanins (TMA) extraction from the skin of “Sabará” jabuticaba were optimized with simplex lattice designs for solvent mixing, and the extraction time was optimized by univariate design. The optimum conditions for the ex...
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Published in | Journal of the Brazilian Chemical Society Vol. 30; no. 7; pp. 1506 - 1515 |
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Abstract | Total phenolic compounds (TPC) extraction from the seed and total monomeric anthocyanins (TMA) extraction from the skin of “Sabará” jabuticaba were optimized with simplex lattice designs for solvent mixing, and the extraction time was optimized by univariate design. The optimum conditions for the extraction method were ethanol:water (60:40 v/v) solvent for TPC (seed) and methanol:water:acetic acid (80:20:0.5 v/v/v) solvent for TMA (skin). For both compound groups, the optimum extraction time was 30 min. The TMA yield for the skin of the “Sabará” variety was 1172.16 mg cyanidin-3-glycoside equivalents per 100 g freeze-dried sample, and for TPC in the seed, it was 86.50 mg gallic acid equivalents per 1 g freeze-dried sample. Both optimized extraction protocols proved to be extremely fast, simple, inexpensive and to have excellent extraction performance. The optimized protocols were compared with two other methods described in the literature and they were also applied to study the TMA contents in skin and the TPC contents in seed of five other varieties of jabuticaba, harvested in 2014 and 2015. |
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AbstractList | Total phenolic compounds (TPC) extraction from the seed and total monomeric anthocyanins (TMA) extraction from the skin of “Sabará” jabuticaba were optimized with simplex lattice designs for solvent mixing, and the extraction time was optimized by univariate design. The optimum conditions for the extraction method were ethanol:water (60:40 v/v) solvent for TPC (seed) and methanol:water:acetic acid (80:20:0.5 v/v/v) solvent for TMA (skin). For both compound groups, the optimum extraction time was 30 min. The TMA yield for the skin of the “Sabará” variety was 1172.16 mg cyanidin-3-glycoside equivalents per 100 g freeze-dried sample, and for TPC in the seed, it was 86.50 mg gallic acid equivalents per 1 g freeze-dried sample. Both optimized extraction protocols proved to be extremely fast, simple, inexpensive and to have excellent extraction performance. The optimized protocols were compared with two other methods described in the literature and they were also applied to study the TMA contents in skin and the TPC contents in seed of five other varieties of jabuticaba, harvested in 2014 and 2015. |
Author | Hermosín‑Gutiérrez, Isidro Colombo, Ronan Teixeira, José Paludo, Michelly Godoy, Helena Ballus, Cristiano |
AuthorAffiliation | Universidade Estadual de Londrina Universidad de Castilla-La Mancha Universidade Federal de Santa Maria Universidade Estadual de Campinas |
AuthorAffiliation_xml | – name: Universidade Estadual de Londrina – name: Universidade Federal de Santa Maria – name: Universidad de Castilla-La Mancha – name: Universidade Estadual de Campinas |
Author_xml | – sequence: 1 givenname: Michelly surname: Paludo fullname: Paludo, Michelly – sequence: 2 givenname: Ronan surname: Colombo fullname: Colombo, Ronan – sequence: 3 givenname: José surname: Teixeira fullname: Teixeira, José – sequence: 4 givenname: Isidro surname: Hermosín‑Gutiérrez fullname: Hermosín‑Gutiérrez, Isidro – sequence: 5 givenname: Cristiano surname: Ballus fullname: Ballus, Cristiano – sequence: 6 givenname: Helena orcidid: 0000-0003-4339-5463 surname: Godoy fullname: Godoy, Helena |
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Keywords | phenolic compounds Myrciaria ssp total monomeric anthocyanins experimental design optimization |
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Title | Optimizing the Extraction of Anthocyanins from the Skin and Phenolic Compounds from the Seed of Jabuticaba Fruits (Myrciaria jabuticaba (Vell.) O. Berg) with Ternary Mixture Experimental Designs |
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