AI Article Synopsis

  • The study focused on the Zingiberaceae family, assessing how thermal treatments (like boiling, frying, and microwaving) affect the composition and antioxidant activity of its rhizome.
  • Key compounds identified in the fresh rhizome included pinobanksin, galangin, and zingerone, with thermal processing generally reducing these active compounds.
  • Interestingly, short boiling and microwave treatments increased some compounds' levels, particularly enhancing the antioxidant activity of the processed rhizomes.

Article Abstract

is a representative of the Zingiberaceae family, which is known for its wide use in the food and pharmaceutical industries also due to its precious pharmacological potential. The major aim of the present study was to evaluate the influence of thermal treatment on the composition of the rhizome of and its antioxidant activity. The fresh rhizome was subjected to various thermal treatment processes-boiling, frying and microwave heating during various time intervals-and their composition and antioxidant activity were determined using chromatographic (HPLC - High Performance Liquid Chromatography and HPLC-MS - High Performance Liquid Chromatography Mass Spectrometry) and spectrophotometric (DPPH and TPC - Total Phenolic Content) methods. Pinobanksin was the main compound found in the extract of the fresh rhizome (537.79 mg/kg), followed by galangin (197.7 mg/kg) and zingerone (185.5 mg/kg). The effect of thermal treatment on the rhizome composition was varied. In general, thermal processing significantly decreased the content of active compounds in the rhizome. However, there were some exceptions-boiling for 4 min significantly increased the content of pinobanksin (1162.4 mg/kg) and galangin (280.7 mg/kg), and microwave processing for 4 min increased the content of pinocembrin (213 mg/kg). It was found that boiling and microwave treatment significantly increased the antioxidant activity of the processed rhizomes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11012154PMC
http://dx.doi.org/10.3390/ijms25073625DOI Listing

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