Article detail · 2023 · article
Synthesis and Comprehensive in Vivo Activity Profiling of Olean-12-en-28-ol, 3β-Pentacosanoate in Experimental Autoimmune Encephalomyelitis: A Natural Remyelinating and Anti-Inflammatory Agent
Data source split
- YÖKSİSYÖKSİS article record
- YÖKSİS venueAmerican Chemical Society (ACS)
- Catalog match (ISSN)Journal of Natural Products
- OpenAlexOpenAlex enrichment (abstract, citations, topics)
- Semantic Scholarcitation count (not merged with OpenAlex)
Abstract
High Resolution Image Download MS PowerPoint Slide Multiple sclerosis (MS) treatment has received much attention, yet there is still no certain cure. We herein investigate the therapeutic effect of olean-12-en-28-ol, 3β-pentacosanoate (OPCA) on a preclinical model of MS. First, OPCA was synthesized semisynthetically and characterized. Then, the mice with MOG 35–55 -induced experimental autoimmune/allergic encephalomyelitis (EAE) were given OPCA along with a reference drug (FTY720). Biochemical, cellular, and molecular analyses were performed in serum and brain tissues to measure anti-inflammatory and neuroprotective responses. OPCA treatment protected EAE-induced changes in mouse brains maintaining blood–brain barrier integrity and preventing inflammation. Moreover, the protein and mRNA levels of MS-related genes such as HLD-DR1, CCL5, TNF-α, IL6, and TGFB1 were significantly reduced in OPCA-treated mouse brains. Notably, the expression of genes, including PLP, MBP, and MAG, involved in the development and structure of myelin was significantly elevated in OPCA-treated EAE. Furthermore, therapeutic OPCA effects included a substantial reduction in pro-inflammatory cytokines in the serum of treated EAE animals. Lastly, following OPCA treatment, the promoter regions for most inflammatory regulators were hypermethylated. These data support that OPCA is a valuable and appealing candidate for human MS treatment since OPCA not only normalizes the pro- and anti-inflammatory immunological bias but also stimulates remyelination in EAE.
Topics
Citations
OpenAlex cited_by_count. Not a WoS or Scopus citation count; those sources have no separate column here.
29citationsOpenAlex · cited_by_count (cache / database)
61 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).
- 2024 Novel chalcone derivatives of ursolic acid as acetylcholinesterase inhibitors: Synthesis, characterization, biological activity, ADME prediction, molecular docking and molecular dynamics studiesCitations 64 · OpenAlex
- 2024 Novel chalcone derivatives of ursolic acid as acetylcholinesterase inhibitors: Synthesis, characterization, biological activity, ADME prediction, molecular docking and molecular dynamics studiesCitations 64 · OpenAlex
- 2024 Novel chalcone derivatives of ursolic acid as acetylcholinesterase inhibitors: Synthesis, characterization, biological activity, ADME prediction, molecular docking and molecular dynamics studiesCitations 63 · OpenAlex
- 2023 Novel quinazoline–chromene hybrids as anticancer agents: Synthesis, biological activity, molecular docking, dynamics and ADME studiesCitations 57 · OpenAlex
- 2023 Novel quinazoline–chromene hybrids as anticancer agents: Synthesis, biological activity, molecular docking, dynamics and ADME studiesCitations 57 · OpenAlex
- 2023 Novel quinazoline–chromene hybrids as anticancer agents: Synthesis, biological activity, molecular docking, dynamics and ADME studiesCitations 57 · OpenAlex
- 2024 Synthesis of pyrrole-heterocyclic derivatives as anti-Alzheimer and antidiabetic candidates: An in vitro-in silico studyCitations 51 · OpenAlex
- 2024 Synthesis of pyrrole-heterocyclic derivatives as anti-Alzheimer and antidiabetic candidates: An in vitro-in silico studyCitations 49 · OpenAlex
- 2024 New tetrahydro-isoquinoline derivatives as cholinesterase and α-glycosidase inhibitors: Synthesis, characterization, molecular docking & dynamics, ADME prediction, in vitro cytotoxicity and enzyme inhibition studiesCitations 46 · OpenAlex
- 2024 New tetrahydro-isoquinoline derivatives as cholinesterase and α-glycosidase inhibitors: Synthesis, characterization, molecular docking & dynamics, ADME prediction, in vitro cytotoxicity and enzyme inhibition studiesCitations 46 · OpenAlex