Inhibitory activities of Aruncus dioicus alkaloidal glycosides against protein tyrosine phosphatase 1B and α-glucosidase: A methodical theory-experiment investigation

Author:

Nguyen Phi-Hung123,Bui Thanh Q.4,Tran Thi-Tuyen1,Bui Thi-Thuc12,Do Thi-Thuy3,To Dao-Cuong5ORCID,Tran Manh Hung6,Quy Phan Tu7,Co Nguyen Quang8,Phu Nguyen Vinh9,Ai Nhung Nguyen Thi4ORCID

Affiliation:

1. Institute of Natural Products Chemistry, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Cau Giay, Hanoi 122100, Vietnam

2. Graduate University of Science and Technology, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Cau Giay, Hanoi 122100, Vietnam

3. Institute of Chemistry, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Cau Giay, Hanoi 122100, Vietnam

4. Department of Chemistry, University of Sciences, Hue University, Hue 530000, Vietnam

5. Phenikaa University Nano Institute (PHENA), Phenikaa University, Yen Nghia, Ha Dong, Hanoi 12116, Vietnam

6. School of Medicine and Pharmacy, The University of Danang. Hoa Quy, Ngu Hanh Son, Danang 550000, Vietnam

7. Department of Natural Sciences & Technology, Tay Nguyen University, Buon Ma Thuot, Dak Lak 630000, Vietnam

8. Institute of Biotechnology, Hue University, Hue 530000, Vietnam

9. Faculty of Basic Sciences, University of Medicine and Pharmacy, Hue University, Hue 53000, Vietnam

Abstract

Objective: Aruncus dioicus has been known by the scientific literature and folk experiences for its diverse biological activities, including anti-hyperglycemic effects. Methodology: The aerial parts of the plant collected from Quan Lan Island (Vietnam) were subjected to a methodical theory-experiment investigation for its chemical composition and biological potentials. Results: Firstly, experimental isolation and spectroscopic characterization identified the compositional compounds, ie sambunigrin (1), prunasin (2), uridine (3), and adenosine (4). Secondly, their elucidated structures were predicted with promising bio-chemo-pharmacological potentiality by different computational platforms, ie: docking simulation (docking scores < 10 kcal.mol−1); quantum calculation (dipole moments < 3 Debye); QSARIS model (satisfying Lipinski's rule of five); SwissADME model (satisfying Pires’ interpretations). Finally, the compounds (1-4) were under accumulative purification and in vitro tests against diabetes-related enzymes, ie: protein tyrosine phosphatase 1B (1 with lowest IC50 value 0.39 ± 0.26 μM, 2 with no activity) and α-glucosidase (1 with lowest IC50 value 44.89 ± 0.93 μM, 2 with no activity); also, the inhibitory kinetics based on Lineweaver-Burk and Dixon plot experiments revealed the competitive inhibition mode of 1 against PTP1B ( Ki value 0.49 μM). Conclusions: Altogether, the results obtained suggest that A. dioicus and its bioactive compounds, especially sambunigrin (1), uridine (3), and adenosine (4), could be considered as a natural source for further research and development of anti-diabetic agents.

Funder

Đại học Huế

Vietnam Academy of Science and Technology

Publisher

SAGE Publications

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