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Flavonostilbenes natural hybrids from Rhamnoneuron balansae as potential antitumors targeting ALDH1A1: molecular
Tilal Elsaman1, Iqrar Ahmad2,3, Eyman Mohamed Eltayib4
1Department of Pharmaceutical Chemistry, College of Pharmacy, Jouf University, Sakaka, Al Jouf, Saudi Arabia.
Abstract:
Several studies have linked Cancer stem cells (CSCs) to cancer resistance development to chemotherapy and radiotherapy. ALDH1A1 is a key enzyme that regulates the gene expression of CSCs and creates an immunosuppressive tumor microenvironment. It was reported that quercetin and resveratrol were among the inhibitors of ALDH1A1. In early 2022, it was reported that new 11 flavonostilbenes (rhamnoneuronal D-N) were isolated from Rhamnoneuron balansae as potential antiaging natural products. Rhamnoneuronal H (5) could be envisioned as a natural hybrid of quercetin and resveratrol. It was therefore hypothesized that 5 and its analogous isolates rhamnoneuronal D-G (1-4) and rhamnoneuronal I-N (6-11) would have potential ALDH1A1 inhibitory activity. To this end, all isolates were subjected to molecular docking, MM-GBSA, ADMET, and molecular dynamics simulations studies to assess their potential as new leads for cancer treatment targeting ALDH1A1. In silico findings revealed that natural hybrid 5 has a similar binding affinity, judged by MM-GBSA, to the ALDH1A1 active site when compared to the co-crystalized ligand (-64.71 kcal/mole and -64.12 kcal/mole, respectively). Despite having lesser affinity than that of the co-crystalized ligand, the rest of the flavonostilbenes, except 2-4, displayed better binding affinities (-37.55 kcal/mole to -58.6 kcal/mole) in comparison to either resveratrol (-34.44 kcal/mole) or quercetin (-36.48 kcal/mole). Molecular dynamic simulations showed that the natural hybrids 1, 5-11 are of satisfactory stability up to 100 ns. ADMET outcomes indicate that these hybrids displayed acceptable properties and hence could represent an ideal starting point for the development of potent ALDH1A1 inhibitors for cancer treatment.Communicated by Ramaswamy H. Sarma.
Insights
New natural compounds, rhamnoneuronal D-N, show promise as ALDH1A1 inhibitors, potentially overcoming cancer treatment resistance. These compounds, particularly hybrid 5, exhibit strong binding affinity and stability for cancer therapy development.
Area of Science:
- Biochemistry
- Pharmacology
- Natural Products Chemistry
Background:
- Cancer stem cells (CSCs) are implicated in chemo- and radioresistance.
- ALDH1A1 enzyme activity is crucial for CSCs and creates an immunosuppressive tumor microenvironment.
- Quercetin and resveratrol are known ALDH1A1 inhibitors.
Purpose of the Study:
- To investigate the potential of 11 newly isolated flavonostilbenes (rhamnoneuronal D-N) as ALDH1A1 inhibitors.
- To evaluate rhamnoneuronal H (5), a hybrid of quercetin and resveratrol, and its analogs for cancer treatment applications targeting ALDH1A1.
Main Methods:
- Molecular docking, MM-GBSA, ADMET, and molecular dynamics simulations were employed.
- Binding affinities to the ALDH1A1 active site were assessed.
- Stability and pharmacokinetic properties of the compounds were evaluated.
Main Results:
- Rhamnoneuronal H (5) demonstrated binding affinity comparable to the co-crystallized ligand.
- Most tested flavonostilbenes exhibited superior binding affinities to ALDH1A1 compared to resveratrol and quercetin.
- Molecular dynamics simulations confirmed the stability of hybrids 1, 5-11 up to 100 ns.
- ADMET profiling indicated acceptable properties for further development.
Conclusions:
- The natural hybrids, particularly rhamnoneuronal H (5), show significant potential as ALDH1A1 inhibitors.
- These compounds represent promising leads for developing novel cancer therapeutics targeting ALDH1A1.
- Further development of these flavonostilbenes could lead to effective treatments for overcoming cancer resistance.
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