Literature DB >> 31353530

α-Amylase inhibition of xanthones from Garcinia mangostana pericarps and their possible use for the treatment of diabetes with molecular docking studies.

Sabrin Ragab Mohamed Ibrahim1,2, Gamal Abdallah Mohamed3,4, Maan Talaat Abdullah Khayat5, Sahar Ahmed1,6, Hany Abo-Haded7.   

Abstract

Chromatographic separation of the methanol extract of Garcinia mangostana (mangosteen, Guttiferae) dried pericarps led to the isolation and structural characterization of a new xanthone, namely garcimangostin A (5), together with garcixanthone A (1), gartanin (2), normangostin (3), and garcinone C (4). Their structural characterization was achieved using various NMR spectroscopic tools as well as HRMS. Their α-amylase inhibitory (AAI) potential was assessed. It is noteworthy that 5 had the most potent inhibitory effect with % inhibition 94.1 compared to acarbose (96.7%). Moreover, the molecular modeling studies were estimated. The observed scoring results correlated to those results of the AAI assay. Interestingly, 5 was completely fitting with acarbose structure and a superimposition of acarbose complexed structure with 5 in the enzyme binding site was observed. The AAI activity of 5 could be attributed to the xanthone moiety insertion in the active site of the enzyme via H-bonds network and pi-pi interactions. PRACTICAL APPLICATIONS: Garcinia mangostana is a widely consumed fruit for its unique pleasant aroma and sweet taste. Also, it contains valuable nutritious compounds that are advantageous for human body. It is used as various traditional medicines for treating several ailments such as skin infection, hyperkeratosis, eczema, wounds, psoriasis, amebic dysentery, cholera, diarrhea, and suppuration. The findings of this work can demonstrate the significant AAI potential of G. mangostana xanthones. Therefore, mangosteen as a functional food could help in lowering the postprandial glucose absorption and identifying lead compounds from α-amylase inhibition for the treatment and/or prevention of diabetes and obesity.
© 2019 Wiley Periodicals, Inc.

Entities:  

Keywords:  zzm321990Garcinia mangostanazzm321990; Guttiferae; garcimangostin A; molecular docking; xanthone; α-amylase inhibitory

Year:  2019        PMID: 31353530     DOI: 10.1111/jfbc.12844

Source DB:  PubMed          Journal:  J Food Biochem        ISSN: 0145-8884            Impact factor:   2.720


  4 in total

Review 1.  Phytoconstituents and Pharmacological Activities of Indian Camphorweed (Pluchea indica): A Multi-Potential Medicinal Plant of Nutritional and Ethnomedicinal Importance.

Authors:  Sabrin R M Ibrahim; Alaa A Bagalagel; Reem M Diri; Ahmad O Noor; Hussain T Bakhsh; Gamal A Mohamed
Journal:  Molecules       Date:  2022-04-07       Impact factor: 4.927

2.  Gartanin is a novel NEDDylation inhibitor for induction of Skp2 degradation, FBXW2 expression, and autophagy.

Authors:  Victor Pham; Raymond Rendon; Vinh X Le; Matthew Tippin; Dong-Jun Fu; Thanh H Le; Marvin Miller; Ericka Agredano; Jose Cedano; Xiaolin Zi
Journal:  Mol Carcinog       Date:  2019-11-29       Impact factor: 4.784

Review 3.  Naturally Occurring Isocoumarins Derivatives from Endophytic Fungi: Sources, Isolation, Structural Characterization, Biosynthesis, and Biological Activities.

Authors:  Ahmad Omar Noor; Diena Mohammedallam Almasri; Alaa Abdullah Bagalagel; Hossam Mohamed Abdallah; Shaimaa Gamal Abdallah Mohamed; Gamal Abdallah Mohamed; Sabrin Ragab Mohamed Ibrahim
Journal:  Molecules       Date:  2020-01-17       Impact factor: 4.411

4.  New Alpha-Amylase Inhibitory Metabolites from Pericarps of Garcinia mangostana.

Authors:  Nabil Abdulhafiz Alhakamy; Gamal Abdallah Mohamed; Usama Ahmed Fahmy; Basma Ghazi Eid; Osama Abdelhakim Aly Ahmed; Mohammed Wanees Al-Rabia; Amgad Ibrahim Mansour Khedr; Mohammed Zahid Nasrullah; Sabrin Ragab Mohamed Ibrahim
Journal:  Life (Basel)       Date:  2022-03-07
  4 in total

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