Substrate Influence on Enzymatic Activity in Cordyceps militaris for Health Applications

Author:

Trung Nguyen Quang1ORCID,Dat Nguyen Tien2,Anh Ho Ngoc3ORCID,Tung Quach Ngoc3,Nguyen Vu Thi Hanh3,Van Ho Ngoc Bich4,Van Nguyen Minh Nhat5,Minh Truong Ngoc26ORCID

Affiliation:

1. Institute of Environmental Science and Public Health, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet Street, Cau Giay, Hanoi 100000, Vietnam

2. Center for High Technology Research and Development, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet Street, Cau Giay, Hanoi 100000, Vietnam

3. Institute of Biotechnology, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet Street, Cau Giay, Hanoi 100000, Vietnam

4. Archimedes School, 23B Urban Area, Dong Anh, Hanoi 100000, Vietnam

5. Hanoi National University of Education, 136 Xuan Thuy Street, Cau Giay, Hanoi 100000, Vietnam

6. Vicomi Tam An Investment and Commercial Company Limited, 140 Nghia Dung Street, Phuc Xa Ward, Ba Dinh District, Hanoi 111000, Vietnam

Abstract

Cordyceps militaris, well known for its therapeutic potential in managing type-2 diabetes through the inhibition of α-amylase and α-glucosidase enzymes, was the central focus of this research, which investigated the influence of various cultivation substrates on its enzymatic inhibitory properties and bioactive compound content. Previous studies have primarily focused on the general pharmacological benefits of C. militaris but have not thoroughly explored how different substrates affect its bioactive profile and enzyme inhibitory activities. This study aimed to evaluate the impact of substrate selection on the enzyme inhibition activities and the levels of bioactive compounds such as cordycepin and adenosine in C. militaris, demonstrating that substrate selection markedly affects both these enzymes’ inhibition activities and bioactive compound levels. Particularly, C. militaris fruiting bodies grown on Brihaspa atrostigmella showed the highest concentrations of cordycepin (2.932 mg/g) and adenosine (1.062 mg/g). This substrate also exhibited the most potent α-glucosidase inhibition with an IC50 value of 336.4 ± 16.0 µg/mL and the most effective α-amylase inhibition with an IC50 value of 504.6 ± 4.2 µg/mL. Conversely, C. militaris cultivated on the solid residues of Gryllus bimaculatus displayed the strongest xanthine oxidase (XOD) inhibition, with the lowest IC50 value of 415.7 ± 11.2 µg/mL. These findings highlight the critical role of substrate choice in enhancing the medicinal properties of C. militaris, suggesting that optimized cultivation can enhance the bioactive properties for more effective natural therapies for diabetes and other metabolic disorders. This study not only extends the understanding of C. militaris’ pharmacological potential but also illustrates its applicability in developing customized treatment options.

Funder

Vietnam Academy of Science and Technology

Publisher

MDPI AG

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