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Identification of Mediators of T-cell Receptor Signaling via the Screening of Chemical Inhibitor Libraries
Published on: January 22, 2019
Frentizole derivatives with mTOR inhibiting and senomorphic properties
Zofia Chrienova1, David Rysanek2, Josef Novak2
1Department of Chemistry, Faculty of Science, University of Hradec Kralove, Rokitanskeho 62, 500 03 Hradec Kralove, Czech Republic.
Abstract:
Frentizole is immunosuppressive drug with low acute toxicity and lifespan-prolonging effect. Recently, frentizole´s potential to disrupt toxic amyloid β (Aβ) - Aβ-binding alcohol dehydrogenase (ABAD) interaction in mitochondria in Alzheimer´s brains has been revealed. Another broadly studied drug with anti-aging and immunosuppressive properties is an mTOR inhibitor - rapamycin. Since we do not yet precisely know what is behind the lifespan-prolonging effect of rapamycin and frentizole, whether it is the ability to inhibit the mTOR signaling pathway, reduction in mitochondrial toxicity, immunosuppressive effect, or a combination of all of them, we have decided within our previous work to dock the entire in-house library of almost 240 Aβ-ABAD modulators into the FKBP-rapamycin-binding (FRB) domain of mTOR in order to interlink mTOR-centric and mitochondrial free radical-centric theories of aging and thus to increase the chances of success. Based on the results of the docking study, molecular dynamic simulation and MM-PBSA calculations, we have selected nine frentizole-like compounds (1 - 9). Subsequently, we have determined their real physical-chemical properties (logP, logD, pKa and solubility in water and buffer), cytotoxic/cytostatic, mTOR inhibitory, and in vitro anti-senescence (senolytic and senomorphic) effects. Finally, the three best candidates (4, 8, and 9) have been forwarded for in vivo safety studies to assess their acute toxicity and pharmacokinetic properties. Based on obtained results, only compound 4 demonstrated the best results within in vitro testing, the ability to cross the blood-brain barrier and the lowest acute toxicity (LD50 in male mice 559 mg/kg; LD50 in female mice 575 mg/kg).
Insights
Researchers identified a novel compound, compound 4, that shows promise in anti-aging and Alzheimer's disease research. This compound exhibits low toxicity, crosses the blood-brain barrier, and possesses immunosuppressive and anti-senescence properties.
Area of Science:
- Pharmacology
- Gerontology
- Neuroscience
Background:
- Frentizole and rapamycin are known for immunosuppressive and lifespan-extending effects.
- Their mechanisms, including mTOR inhibition and mitochondrial effects, are not fully understood.
- Amyloid-beta (Aβ) and ABAD interactions in Alzheimer's disease mitochondria are a potential therapeutic target.
Purpose of the Study:
- To explore the link between mTOR-centric and mitochondrial aging theories.
- To identify novel compounds with potential therapeutic benefits for aging and neurodegenerative diseases.
- To evaluate frentizole-like compounds for mTOR inhibitory and anti-senescence activities.
Main Methods:
- Docking of Aβ-ABAD modulators to the mTOR FRB domain.
- Molecular dynamics simulations and MM-PBSA calculations.
- In vitro assessment of physical-chemical properties, cytotoxicity, mTOR inhibition, and anti-senescence effects.
- In vivo safety and pharmacokinetic studies of lead candidates.
Main Results:
- Nine frentizole-like compounds were selected based on computational studies.
- Compound 4 demonstrated significant in vitro anti-senescence effects.
- Compound 4 showed the ability to cross the blood-brain barrier and exhibited low acute toxicity (LD50 > 550 mg/kg).
Conclusions:
- Compound 4 is a promising candidate for further development.
- The study successfully linked mTOR and mitochondrial aging pathways.
- Compound 4 warrants further investigation for its therapeutic potential in aging and Alzheimer's disease.
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