Makale detayı · 2023 · article
Synthesis and Evaluation of Quinazolin-4(3H)-one Derivatives as Multitarget Metabolic Enzyme Inhibitors: A Biochemistry-Oriented Drug Design
Veri kaynağı ayrımı
- YÖKSİSYÖKSİS makale kaydı
- YÖKSİS dergi adıChemistrySelect
- Katalog eşleşmesi (ISSN)ChemistrySelect
- OpenAlexOpenAlex zenginleştirmesi (özet, atıf, konular)
Özet
Abstract In this study, imines bearing quinazolin‐4(3 H )‐one were synthesized and their inhibitory properties were investigated against some metabolic enzymes including Acetylcholinesterase (AChE), Butyrylcholinesterase (BChE), α‐Glycosidase (α‐Gly), and human Carbonic Anhydrase I–II (hCA I–II). All compounds had inhibitory strength with K i values in the range of 38.55±4.08–159.05±10.68 nM and 41.04±6.73–177.12±8.06 nM against hCA I and hCA‐II, respectively in comparison to the standard acetazolamide (AZA) K i =125.15±0.78 nM (for hCA‐I) and K i =148.75±0.92 nM (for hCA‐II). The compounds showed potent inhibitory activity against α ‐Gly enzyme with IC 50 value 0.34–2.28 nM (standard inhibitor acarbose (ACR): 3.18 nM). Also, these analogs had potent inhibitory strength with K i values in the range of 4.20±0.15–26.10±2.36 nM against AChE and 1.22±0.05–16.09±0.88 nM against BChE in comparison to the standard tacrine (TAC) K i =37.62±6.86 nM (for AChE) and K i =26.75±5.79 nM (for BChE). Additionally, the molecular docking and molecular dynamics simulation study was carried out for the determination of ligand‐enzyme interactions. The docking scores of the most active compound were calculated as −7.31, −7.59, −6.66, −6.93 and −7.11 kcal/mol for AChE, BChE, hCA I, hCA II, and α‐Gly, respectively.
Konular
Atıflar
OpenAlex cited_by_count. WoS veya Scopus atıf sayısı değildir; o kaynaklar için ayrı kolon yoktur.
56atıfOpenAlex · cited_by_count (önbellek / veritabanı)
Yerel katalogda bu makaleye atıf yapan 113 yayın (OpenAlex referans eşleşmesi; tam dünya listesi değildir).
- 2024 Novel chalcone derivatives of ursolic acid as acetylcholinesterase inhibitors: Synthesis, characterization, biological activity, ADME prediction, molecular docking and molecular dynamics studiesAtıf 64 · OpenAlex
- 2024 Novel chalcone derivatives of ursolic acid as acetylcholinesterase inhibitors: Synthesis, characterization, biological activity, ADME prediction, molecular docking and molecular dynamics studiesAtıf 64 · OpenAlex
- 2024 Novel chalcone derivatives of ursolic acid as acetylcholinesterase inhibitors: Synthesis, characterization, biological activity, ADME prediction, molecular docking and molecular dynamics studiesAtıf 63 · OpenAlex
- 2023 Novel quinazoline–chromene hybrids as anticancer agents: Synthesis, biological activity, molecular docking, dynamics and ADME studiesAtıf 57 · OpenAlex
- 2023 Novel quinazoline–chromene hybrids as anticancer agents: Synthesis, biological activity, molecular docking, dynamics and ADME studiesAtıf 57 · OpenAlex
- 2023 Novel quinazoline–chromene hybrids as anticancer agents: Synthesis, biological activity, molecular docking, dynamics and ADME studiesAtıf 57 · OpenAlex
- 2024 Synthesis of Sorafenib-Ruthenium Complexes, Investigation of Biological Activities and Applications in Drug Delivery Systems as an Anticancer AgentAtıf 53 · OpenAlex
- 2024 Synthesis of Sorafenib−Ruthenium Complexes, Investigation of Biological Activities and Applications in Drug Delivery Systems as an Anticancer AgentAtıf 53 · OpenAlex
- 2024 Synthesis of Sorafenib−Ruthenium Complexes, Investigation of Biological Activities and Applications in Drug Delivery Systems as an Anticancer AgentAtıf 52 · OpenAlex
- 2024 Synthesis of Sorafenib−Ruthenium Complexes, Investigation of Biological Activities and Applications in Drug Delivery Systems as an Anticancer AgentAtıf 52 · OpenAlex