Monascus-Derived Biologically Active Compounds Fermented by Khao Klong Broken Rice (Brown Rice) as Bio-Ingredient for Anti-Aging Potential: Chemical Profiles, Antioxidant, Anti-Collagenase, and Anti-Tyrosinase Activities

This study aimed to optimize pigment production from Monascus purpureus TISTR3090 using Khao Klong broken rice (brown rice) as a solid substrate and to evaluate the antioxidant and anti-aging activities of the resulting pigment extracts. Solid-state fermentation showed a progressive increase in red pigment production, reaching a maximum on day 8 (OD680 = 0.10). The water extract (WAE) exhibited a higher total phenolic content (148.86 mg GAE/g) than the ethanol extract (ETE) and demonstrated stronger antioxidant activities, including DPPH radical inhibition (74.66%) and ABTS scavenging activity (65.53%). In addition, WAE showed superior anti-aging potential, with greater inhibition of tyrosinase (75.29%) and collagenase (32.88%) compared to ETE. The MP extract exhibited the presence of R-NH2 functional groups, identified by FTIR, indicating the primary criterion for fungal red pigment. Gas chromatography–mass spectrometry (GC-MS) analysis identified 25 bioactive compounds, mainly fatty acid methyl esters and aromatic derivatives, which may contribute to the observed bioactivities. Liquid chromatography–mass spectrometry (LC-MS) further confirmed higher levels of gallic acid, chlorogenic acid, epigallocatechin gallate, and oroxylin A in WAE. Thus, Monascus pigments derived from broken brown rice-based fermentation represent a promising natural colorant and functional bioingredient with potential applications in nutraceutical and cosmeceutical industries, warranting further studies on formulation, stability, and in vivo validation.

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Journal
Applied Biosciences
Published
2026-09-28
DOI
https://doi.org/10.3390/applbiosci5040086
Primary Topic
Microbial Metabolism and Applications
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article
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Monascus-Derived Biologically Active Compounds Fermented by Khao Klong Broken Rice (Brown Rice) as Bio-Ingredient for Anti-Aging Potential: Chemical Profiles, Antioxidant, Anti-Collagenase, and Anti-Tyrosinase Activities

Thisakorn Dumrongphuttidecha, Warachate Khobjai, Surachai Techaoei, Wongnapa Nakyai et al.
Applied Biosciences
Microbial Metabolism and Applications
article

Monascus-Derived Biologically Active Compounds Fermented by Khao Klong Broken Rice (Brown Rice) as Bio-Ingredient for Anti-Aging Potential: Chemical Profiles, Antioxidant, Anti-Collagenase, and Anti-Tyrosinase Activities

Thisakorn Dumrongphuttidecha, Warachate Khobjai, Surachai Techaoei, Wongnapa Nakyai, Khemjira Jarmkom
article en

Abstract

This study aimed to optimize pigment production from Monascus purpureus TISTR3090 using Khao Klong broken rice (brown rice) as a solid substrate and to evaluate the antioxidant and anti-aging activities of the resulting pigment extracts. Solid-state fermentation showed a progressive increase in red pigment production, reaching a maximum on day 8 (OD680 = 0.10). The water extract (WAE) exhibited a higher total phenolic content (148.86 mg GAE/g) than the ethanol extract (ETE) and demonstrated stronger antioxidant activities, including DPPH radical inhibition (74.66%) and ABTS scavenging activity (65.53%). In addition, WAE showed superior anti-aging potential, with greater inhibition of tyrosinase (75.29%) and collagenase (32.88%) compared to ETE. The MP extract exhibited the presence of R-NH2 functional groups, identified by FTIR, indicating the primary criterion for fungal red pigment. Gas chromatography–mass spectrometry (GC-MS) analysis identified 25 bioactive compounds, mainly fatty acid methyl esters and aromatic derivatives, which may contribute to the observed bioactivities. Liquid chromatography–mass spectrometry (LC-MS) further confirmed higher levels of gallic acid, chlorogenic acid, epigallocatechin gallate, and oroxylin A in WAE. Thus, Monascus pigments derived from broken brown rice-based fermentation represent a promising natural colorant and functional bioingredient with potential applications in nutraceutical and cosmeceutical industries, warranting further studies on formulation, stability, and in vivo validation.

Applied BiosciencesVol. 5(4)
Rajamangala University of Technology (TH)
Openalex Percentile: Top 17%
Microbial Metabolism and Applications
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Monascus-Derived Biologically Active Compounds Fermented by Khao Klong Broken Rice (Brown Rice) as Bio-Ingredient for Anti-Aging Potential: Chemical Profiles, Antioxidant, Anti-Collagenase, and Anti-Tyrosinase Activities — Thisakorn Dumrongphuttidecha, Warachate Khobjai, et al. · Applied Biosciences (2026) | TGRS Research Map | TGRS