An opportunity for acerola pulp (Malpighia emarginata DC) valorization evaluating its performance during the block cryoconcentration by physicochemical, bioactive compounds, HPLC–ESI-MS/MS, and multi-elemental profile analysis

化学 可滴定酸 阿布茨 牙髓(牙) DPPH 多酚 食品科学 色谱法 高效液相色谱法 维生素C 抗氧化剂 有机化学 医学 病理
作者
Karine Marafon,Marina Pereira-Coelho,Isabel Cristina da Silva Haas,Bruna Rafaela da Silva Monteiro Wanderley,Jefferson S. de Gois,Luciano Vitali,Aderval S. Luna,Maria Helena Machado Canella,E. Hernández,Renata Dias de Mello Castanho Amboni,Elane Schwinden Prudêncio
出处
期刊:Food Research International [Elsevier]
卷期号:176: 113793-113793
标识
DOI:10.1016/j.foodres.2023.113793
摘要

The present study evaluated the effect of cryoconcentration of pulp blocks of acerola (Malpighia emarginata DC). The study evaluated cryoconcentration in three stages. The cryoconcentrated samples, the ice fractions, and the initial pulp were evaluated for physicochemical composition, bioactive composition, and multielement profile. The cryoconcentrated sample obtained in the third stage of cryoconcentration showed the best results for the concentration factor, process efficiency, total soluble solids content, red color intensity, and increasing of the macro and micronutrients: Cu, Ca, S, Sr, K, Mn, Na, P, Mg, Fe. All stages presented good performance in the total soluble solids content, increase in the titratable acidity of the concentrates, and progressive increase in the intensity of the red color. Generally, higher levels of total phenolic and antioxidant activity were found for the 2nd and 3rd concentrates. The phenolic activity showed an increase of 166.90% in the 3rd stage concentrate compared to fresh pulp, and the antioxidant activity was 112.10% by the ABTS method and 131.60% by the DPPH method, both in the 3rd stage concentrate. The major individual polyphenols were Ferulic acid, Protocatechuic acid, and Taxifolin, with significant increases in the concentration of the compounds in the 2nd and 3rd stage concentrates. In addition, the contents of potentially toxic metals were below detection limits. During the cryoconcentration process, there was a decrease in the values ​​of vitamin C content, moisture content, density, and elements Cu, Sr, and Zn.
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