Valorization of Citrus peels: GC/MS‐based metabolites profiling, multivariate analysis, and antiaging potential

Author:

El Kady Wafaa M.1ORCID,Ayoub Iriny M.2ORCID,El Mehrate Ahmed K.3,Emad Mohamed3,Tarek Mohamed3,El Gdeily Ahmed3,Mohamed El‐Romisaa3,Medhat Rana3,Mahmoud Omar3,Gad Amira M.3,Danderawy Alaa M.3,Breaka Ola L.3,Mosad Nada E.3,Gemeaha Safaa M.3,Fathallah Noha1

Affiliation:

1. Department of Pharmacognosy and Medicinal Plants, Faculty of Pharmacy Future University in Egypt Cairo Egypt

2. Department of Pharmacognosy, Faculty of Pharmacy Ain Shams University Cairo Egypt

3. Faculty of Pharmacy Future University in Egypt Cairo Egypt

Abstract

AbstractAging and agro‐waste are major challenges. Natural ingredients are preferred in skincare. This study intended to isolate the essential oils (EO) from the leftover peels obtained from three commonly edible Citrus species fruit peels, namely Citrus paradisi (grapefruit), Citrus sinensis (sweet orange), and Citrus deliciosa (mandarin). Gas chromatography/mass spectrometry analysis identified volatile constituents in EO and headspace aroma. Multivariate analysis distinguished between the three species. The antiaging effects of Citrus EO were assessed in vitro and in silico, studying volatile interactions with target enzymes. C. sinensis peels had the highest oil yield, rich in monoterpenes. C. paradisi and C. deliciosa contained sesquiterpenes. Limonene dominated the hydrodistilled EO: 94.50% in C. paradisi, 96.80% in C. sinensis, and 80.66% in C. deliciosa. Unsupervised multivariate analysis of Citrus species revealed that  d‐limonene, γ‐terpinene, and β‐pinene are the key phytochemical markers contributing to their diverse chemical composition. C. paradisi exhibited the highest enzyme inhibitory activity, with IC50 values of 12.82, 27.58, and 18.16 µg/mL for tyrosinase, elastase, and collagenase, respectively. In silico studies showed that the volatiles can inhibit the tested antiaging enzymes. According to these findings, the investigated agro‐waste might slow aging in skin care.

Publisher

Wiley

Subject

Drug Discovery,Pharmaceutical Science

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