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Theoretical-Cheminformatic Study of Four Indolylphytoquinones, Prospective Anticancer Candidates
Edgar Daniel Moyers-Montoya1, María Jazmín Castañeda-Muñoz2, Daniel Márquez-Olivas3
1Instituto de Ingeniería y Tecnología, Universidad Autónoma de Ciudad Juárez, Ave. Del Charro 450 Norte, Ciudad Juárez 32310, Chihuahua, Mexico.
Abstract:
Background/Objectives: Breast cancer is a disease with a high mortality rate worldwide; consequently, urgent achievements are required to design new greener drugs, leaving natural products and their derivatives as good options. A constant antineoplastic effect has been observed when the phytoproduct contains an indole fragment. Methods: Therefore, the objective of this work was to carry out a thoughtful computational study to perform an appropriate evaluation of four novel molecules of the class of the 3-indolylquinones as phytodrug candidates for antineoplastic activity: thymoquinone (TQ), 2,6-dimethoxy-1,4-benzoquinone (DMQ), 2,3-dimethoxy-5-methyl-1,4-benzoquinone (DMMQ), and 2,5-dihydroxy-1,4-benzoquinone (DHQ). It is important to highlight that the obtained computational results of the target compounds were compared-correlated with the theoretical and experimental literature data previously reported of several indolylquinones: indolylperezone, indolylisoperezone, indolylmenadione, and indolylplumbagin (IE-IH, respectively). Results: The results revealed that the studied structures possibly presented antineoplastic activity, in addition to the fact that the reactivity parameters showed that two of the evaluated compounds have the option to present IC50 values lower than or similar to 25 mg/mL, activity like that of indolylisoperezone; moreover, they show molecular coupling to PARP-1. Finally, the prediction of the calculated physicochemical parameters coincides with the Lipinski and Veber rules, indicating that the adsorption, metabolism, and toxicity parameters are acceptable for the studied compounds, obtaining high drug score values. Conclusions: Finally, a comparison between the proposed molecules and others previously synthesized was appropriately performed, establishing that the synthesis of the studied compounds and the determination of their pharmacological properties in an experimental manner are of interest.
Insights
Novel 3-indolylquinones show potential as greener antineoplastic drugs. Computational studies suggest promising activity and favorable drug-like properties for these natural product derivatives.
Area of Science:
- Medicinal Chemistry
- Computational Chemistry
- Pharmacology
Background:
- Breast cancer poses a significant global health challenge, necessitating the development of novel, greener therapeutic agents.
- Natural products and their derivatives, particularly those containing indole fragments, offer promising avenues for antineoplastic drug discovery.
Purpose of the Study:
- To computationally evaluate four novel 3-indolylquinone molecules as potential phytodrug candidates for antineoplastic activity.
- To compare the computational findings with existing literature data on related indolylquinones.
Main Methods:
- In silico evaluation of thymoquinone (TQ), 2,6-dimethoxy-1,4-benzoquinone (DMQ), 2,3-dimethoxy-5-methyl-1,4-benzoquinone (DMMQ), and 2,5-dihydroxy-1,4-benzoquinone (DHQ).
- Comparative analysis with literature data of indolylperezone, indolylisoperezone, indolylmenadione, and indolylplumbagin.
- Assessment of reactivity parameters, molecular coupling to PARP-1, and physicochemical properties (Lipinski and Veber rules).
Main Results:
- The studied 3-indolylquinones exhibit potential antineoplastic activity.
- Two compounds demonstrated reactivity parameters suggesting IC50 values comparable to or lower than 25 mg/mL, similar to indolylisoperezone.
- Favorable drug-like properties, including acceptable ADMET parameters and high drug scores, were predicted, along with molecular coupling to PARP-1.
Conclusions:
- The novel 3-indolylquinones are promising candidates for further investigation as antineoplastic agents.
- Experimental synthesis and pharmacological evaluation of these compounds are warranted.
- These findings support the exploration of natural product-derived compounds for greener cancer therapies.
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