Novel Alaninamide Derivatives with Drug-like Potential for Development as Antiseizure and Antinociceptive Therapies─In Vitro and In Vivo Characterization.
Marcin JakubiecMichał AbramMirosław ZagajaMarta Andres-MachJoanna Szala-RycajGniewomir LataczEwelina Honkisz-OrzechowskaSzczepan MogilskiMonika KubackaMałgorzata SzafarzKrzysztof PociechaKatarzyna Przejczowska-PomiernyElżbieta WyskaKatarzyna SocałaDorota NieoczymBartłomiej SzulczykPiotr WlaźCameron S MetcalfKaren WilcoxRafał M KamińskiKrzysztof KamińskiPublished in: ACS chemical neuroscience (2024)
In the present study, a series of original alaninamide derivatives have been designed applying a combinatorial chemistry approach, synthesized, and characterized in the in vivo and in vitro assays. The obtained molecules showed potent and broad-spectrum activity in basic seizure models, namely, the maximal electroshock (MES) test, the 6 Hz (32 mA) seizure model, and notably, the 6 Hz (44 mA) model of pharmacoresistant seizures. Most potent compounds 26 and 28 displayed the following pharmacological values: ED 50 = 64.3 mg/kg (MES), ED 50 = 15.6 mg/kg (6 Hz, 32 mA), ED 50 = 29.9 mg/kg (6 Hz, 44 mA), and ED 50 = 34.9 mg/kg (MES), ED 50 = 12.1 mg/kg (6 Hz, 32 mA), ED 50 = 29.5 mg/kg (6 Hz, 44 mA), respectively. Additionally, 26 and 28 were effective in the iv PTZ seizure threshold test and had no influence on the grip strength. Moreover, lead compound 28 was tested in the PTZ-induced kindling model, and then, its influence on glutamate and GABA levels in the hippocampus and cortex was evaluated by the high-performance liquid chromatography (HPLC) method. In addition, 28 revealed potent efficacy in formalin-induced tonic pain, capsaicin-induced pain, and oxaliplatin- and streptozotocin-induced peripheral neuropathy. Pharmacokinetic studies and in vitro ADME-Tox data proved favorable drug-like properties of 28 . The patch-clamp recordings in rat cortical neurons showed that 28 at a concentration of 10 μM significantly inhibited fast sodium currents. Therefore, 28 seems to be an interesting candidate for future preclinical development in epilepsy and pain indications.
Keyphrases
- emergency department
- diabetic rats
- high glucose
- high performance liquid chromatography
- chronic pain
- drug induced
- oxidative stress
- mass spectrometry
- pain management
- neuropathic pain
- endothelial cells
- anti inflammatory
- spinal cord injury
- stem cells
- spinal cord
- tandem mass spectrometry
- metabolic syndrome
- type diabetes
- blood pressure
- mesenchymal stem cells
- adipose tissue
- heart rate
- cell therapy
- high throughput
- high resolution
- blood brain barrier
- brain injury
- insulin resistance
- subarachnoid hemorrhage
- data analysis
- machine learning
- cognitive impairment
- molecular dynamics simulations