Synthesis and Structural Activity Relationship Study of Ursolic Acid Derivatives as Antitubercular Agent.

Eucalyptus tereticornis Ursolic acid anti-tubercular activity in silico docking. in vitro triterpenoid

Journal

Medicinal chemistry (Shariqah (United Arab Emirates))
ISSN: 1875-6638
Titre abrégé: Med Chem
Pays: Netherlands
ID NLM: 101240303

Informations de publication

Date de publication:
07 Nov 2023
Historique:
received: 10 04 2023
revised: 30 09 2023
accepted: 05 10 2023
medline: 10 11 2023
pubmed: 10 11 2023
entrez: 10 11 2023
Statut: aheadofprint

Résumé

The chemical transformation of ursolic acid (UA) into novel C-3 aryl ester derivatives and in vitro and silico assessment of their antitubercular potential. UA is a natural pentacyclic triterpenoid with many pharmacological properties. Semisynthetic UA analogs have demonstrated enhanced anticancer, antimalarial, and antifilarial properties in our previous studies. The C-30 carboxylic group of previously isolated UA was protected, and various C-3 aryl ester derivatives were semi-synthesized. The agar dilution method was used to evaluate the in vitro antitubercular efficacy of Mycobacterium tuberculosis (Mtb) H37Ra. In silico docking studies of the active derivative were carried out against Mtb targets, catalase peroxidase (PDB: 1SJ2), dihydrofolate reductase (PDB: 4M2X), enoyl-ACP reductase (PDB: 4TRO), and cytochrome bc1 oxidase (PDB: 7E1V). The derivative 3-O-(2-amino,3-methyl benzoic acid)-ethyl ursolate (UA-1H) was the most active among the eight derivatives (MIC1 2.5 µg/mL) against Mtb H37Ra. Also, UA-1H demonstrated significant binding affinity in the range of 10.8-11.4 kcal/mol against the antiTb target proteins, which was far better than the positive control Isoniazid, Ethambutol, and co-crystallized ligand (HEM). Moreover, the predicted hit UA-1H showed no inhibition of Cytochrome P450 2D6 (CYP2D6), suggesting its potential for favorable metabolism in Phase I clinical studies. The ursolic acid derivative UA-1H possesses significant in vitro antitubercular potential with favorable in silico pharmacokinetics. Hence, further in vivo assessments are suggested for UA-1H for its possible development into a secure and efficient antitubercular drug.

Sections du résumé

OBJECTIVE OBJECTIVE
The chemical transformation of ursolic acid (UA) into novel C-3 aryl ester derivatives and in vitro and silico assessment of their antitubercular potential.
BACKGROUND BACKGROUND
UA is a natural pentacyclic triterpenoid with many pharmacological properties. Semisynthetic UA analogs have demonstrated enhanced anticancer, antimalarial, and antifilarial properties in our previous studies.
METHOD METHODS
The C-30 carboxylic group of previously isolated UA was protected, and various C-3 aryl ester derivatives were semi-synthesized. The agar dilution method was used to evaluate the in vitro antitubercular efficacy of Mycobacterium tuberculosis (Mtb) H37Ra. In silico docking studies of the active derivative were carried out against Mtb targets, catalase peroxidase (PDB: 1SJ2), dihydrofolate reductase (PDB: 4M2X), enoyl-ACP reductase (PDB: 4TRO), and cytochrome bc1 oxidase (PDB: 7E1V).
RESULTS RESULTS
The derivative 3-O-(2-amino,3-methyl benzoic acid)-ethyl ursolate (UA-1H) was the most active among the eight derivatives (MIC1 2.5 µg/mL) against Mtb H37Ra. Also, UA-1H demonstrated significant binding affinity in the range of 10.8-11.4 kcal/mol against the antiTb target proteins, which was far better than the positive control Isoniazid, Ethambutol, and co-crystallized ligand (HEM). Moreover, the predicted hit UA-1H showed no inhibition of Cytochrome P450 2D6 (CYP2D6), suggesting its potential for favorable metabolism in Phase I clinical studies.
CONCLUSION CONCLUSIONS
The ursolic acid derivative UA-1H possesses significant in vitro antitubercular potential with favorable in silico pharmacokinetics. Hence, further in vivo assessments are suggested for UA-1H for its possible development into a secure and efficient antitubercular drug.

Identifiants

pubmed: 37946341
pii: MC-EPUB-135971
doi: 10.2174/0115734064256660231027042758
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Informations de copyright

Copyright© Bentham Science Publishers; For any queries, please email at epub@benthamscience.net.

Auteurs

Sadhna Vishwakarma (S)

Medicinal Chemistry Department, CSIR-Central Institute of Medicinal and Aromatic Plants (CIMAP), Lucknow 226015, India.

Santosh Kumar Srivastava (SK)

Medicinal Chemistry Department, CSIR-Central Institute of Medicinal and Aromatic Plants (CIMAP), Lucknow 226015, India.

Naveen K Khare (NK)

Department of Chemistry, University of Lucknow, Lucknow-226007, India.

Shiwa Chaubey (S)

Department of Chemistry, University of Lucknow, Lucknow-226007, India.

Vinita Chaturvedi (V)

Division of Biochemistry and Structural Biology, CSIR-Central Drug Research Institute, Lucknow-226031, India.

Priyanka Trivedi (P)

Division of Biochemistry and Structural Biology, CSIR-Central Drug Research Institute, Lucknow-226031, India.

Sana Khan (S)

Metabolic and structural biology department, CSIR-Central Institute of Medicinal and Aromatic Plants (CIMAP), Lucknow-226015, India.

Feroz Khan (F)

Metabolic and structural biology department, CSIR-Central Institute of Medicinal and Aromatic Plants (CIMAP), Lucknow-226015, India.

Classifications MeSH