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Semi-Synthesis of N-Aryl Amide Analogs of Piperine from Piper nigrum and Evaluation of Their Antitrypanosomal, Antimalarial, and Anti-SARS-CoV-2 Main Protease Activities
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Metadata
Document Title
Semi-Synthesis of N-Aryl Amide Analogs of Piperine from Piper nigrum and Evaluation of Their Antitrypanosomal, Antimalarial, and Anti-SARS-CoV-2 Main Protease Activities
Author
Wansri R, Lin ACK, Pengon J, Kamchonwongpaisan S, Srimongkolpithak N, Rattanajak R, Wilasluck P, Deetanya P, Wangkanont K, Hengphasatporn K, Shigeta Y, Liangsakul J, Suroengrit A, Boonyasuppayakorn S, Chuanasa T, De-Eknamkul W, Hannongbua S, Rungrotmongkol T, Chamni S
Name from Authors Collection
Affiliations
Chulalongkorn University; Chulalongkorn University; Chulalongkorn University; National Science & Technology Development Agency - Thailand; National Center Genetic Engineering & Biotechnology (BIOTEC); Chulalongkorn University; Chulalongkorn University; University of Tsukuba; Chulalongkorn University; Chulalongkorn University; Chulalongkorn University; Chulalongkorn University; Chulalongkorn University; Chulalongkorn University
Type
Article
Source Title
MOLECULES
Year
2022
Volume
27
Issue
9
Page
-
Open Access
Green Published, gold
Publisher
MDPI
DOI
10.3390/molecules27092841
Format
Abstract
Piper nigrum, or black pepper, produces piperine, an alkaloid that has diverse pharmacological activities. In this study, N-aryl amide piperine analogs were prepared by semi-synthesis involving the saponification of piperine (1) to yield piperic acid (2) followed by esterification to obtain compounds 3, 4, and 5. The compounds were examined for their antitrypanosomal, antimalarial, and anti-SARS-CoV-2 main protease activities. The new 2,5-dimethoxy-substituted phenyl piperamide 5 exhibited the most robust biological activities with no cytotoxicity against mammalian cell lines, Vero and Vero E6, as compared to the other compounds in this series. Its half-maximal inhibitory concentration (IC50) for antitrypanosomal activity against Trypanosoma brucei rhodesiense was 15.46 +/- 3.09 mu M, and its antimalarial activity against the 3D7 strain of Plasmodium falciparum was 24.55 +/- 1.91 mu M, which were fourfold and fivefold more potent, respectively, than the activities of piperine. Interestingly, compound 5 inhibited the activity of 3C-like main protease (3CL(Pro)) toward anti-SARS-CoV-2 activity at the IC50 of 106.9 +/- 1.2 mu M, which was threefold more potent than the activity of rutin. Docking and molecular dynamic simulation indicated that the potential binding of 5 in the 3CL(pro) active site had the improved binding interaction and stability. Therefore, new aryl amide analogs of piperine 5 should be investigated further as a promising anti-infective agent against human African trypanosomiasis, malaria, and COVID-19.
Industrial Classification
Knowledge Taxonomy Level 1
Knowledge Taxonomy Level 2
Funding Sponsor
Chulalongkorn University grant [GRU 6306433004-1]; National Research Council of Thailand [N35A640038]; Tsukuba Innovation Arena (TIA) collaborative research program, CREST JST, Japan [JP20338388]; AMED, Japan [JP21ae0101047h0001]; 90th Anniversary of the Chulalongkorn University Scholarship; NSTDA's Research Chair Grant [P1850116]
License
CC BY
Rights
Authors
Publication Source
WOS