4.6 Article

Recovery of Bioactive Ellagitannins by Ultrasound/Microwave-Assisted Extraction from Mexican Rambutan Peel (Nephelium lappaceum L.)

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MOLECULES
卷 27, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/molecules27051592

关键词

rambutan peel; antioxidant; geraniin; emerging technologies

资金

  1. Autonomous University of Coahuila, Mexico
  2. CONACyT

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Rambutan, a tropical fruit from Asia, is extensively produced in Mexico. The peel of Mexican rambutan, which makes up around 45% of the fruit's weight, is usually discarded as waste. However, this study showed that the hybrid technology extraction method yielded the highest polyphenolic content from Mexican rambutan peel. The chemical analysis revealed three major compounds, which exhibited excellent results in biological assays, demonstrating antioxidant and prebiotic activities.
Rambutan (Nephelium lappaceum L.) is a tropical fruit from Asia which has become the main target of many studies involving polyphenolic analysis. Mexico produces over 8 million tons per year of rambutan, generating a huge amount of agro-industrial waste since only the pulp is used and the peel, which comprises around 45% of the fruit's weight, is left behind. This waste can later be used in the recovery of polyphenolic fractions. In this work, emerging technologies such as microwave, ultrasound, and the hybridization of both were tested in the extraction of phenolic compounds from Mexican rambutan peel. The results show that the hybrid technology extraction yielded the highest polyphenolic content (176.38 mg GAE/g of dry rambutan peel). The HPLC/MS/ESI analysis revealed three majoritarian compounds: geraniin, corilagin, and ellagic acid. These compounds explain the excellent results for the biological assays, namely antioxidant activity evaluated by the DPPH, ABTS, and LOI (Lipid oxidation inhibition) assays that exhibited great antioxidant capacity with IC50 values of 0.098, 0.335, and 0.034 mg/mL respectively, as well as prebiotic activity demonstrated by a mu Max (maximum growth) of 0.203 for Lactobacillus paracasei. Lastly, these compounds have shown no hemolytic activity, opening the door for the elaboration of different products in the food, cosmetic, and pharmaceutical industries.

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