Keyphrases
In Silico Study
100%
Interleukin-17 (IL-17)
100%
Acorus Calamus
100%
Molecular Insight
100%
Anti-rheumatoid Arthritis
100%
Binding Affinity
28%
Calamus
28%
Molecular Docking
14%
Binding Energy
14%
Inflammation
14%
Strong Interaction
14%
Therapeutic Effect
14%
Ethanolic Extract
14%
Inflammatory Cytokines
14%
Therapeutic Intervention
14%
Molecular Interactions
14%
Intervention Targets
14%
LC-MS Analysis
14%
Potential Therapeutics
14%
Rhizome Extracts
14%
Toxicity Profile
14%
Terpenoid Compounds
14%
Methotrexate
14%
Drug Toxicity
14%
Toxicity Analysis
14%
Natural Ligands
14%
Novel Treatments
14%
Drug-likeness Analysis
14%
ADME Profile
14%
Molecular Binding
14%
ADME Analysis
14%
Interaction Affinity
14%
Associated Disorders
14%
Medicine and Dentistry
In Silico
100%
Interleukin 17
100%
Rheumatoid Arthritis
100%
Acorus
100%
Inflammatory Arthritis
100%
Binding Affinity
28%
Absorption Distribution Metabolism Excretion
28%
Docking (Molecular)
14%
Inflammatory Cytokine
14%
Binding Energy
14%
Therapy Effect
14%
Methotrexate
14%
Disease
14%
Terpenoid
14%
Pharmacology, Toxicology and Pharmaceutical Science
Interleukin 17
100%
Rheumatoid Arthritis
100%
Acorus Calamus
100%
Inflammatory Arthritis
100%
Absorption Distribution Metabolism Excretion
28%
Inflammation
14%
Cytokine
14%
Terpenoid
14%
Therapeutic Effect
14%
Molecular Docking Simulations
14%
Methotrexate
14%
Biochemistry, Genetics and Molecular Biology
In Silico Study
100%
Interleukin 17
100%
Acorus Calamus
100%
Binding Affinity
28%
Docking (Molecular)
14%
Binding Energy
14%
Proinflammatory Cytokine
14%
Molecular Interaction
14%
Methotrexate
14%