rolipram
Sign in to saveAlso known as (±)-rolipram, (R,S)-rolipram, ZK 62711, Rolipramum, 4-(3-(Cyclopentyloxy)-4-methoxyphenyl)-2-pyrrolidinone
Rolipram is a selective phosphodiesterase-4 inhibitor discovered and developed by Schering AG as a potential antidepressant drug in the early 1990s. It served as a prototype molecule for several companies' drug discovery and development efforts. Rolipram was discontinued after clinical trials showed that its therapeutic window was too narrow; it could not be dosed at high enough levels to be effective without causing significant gastrointestinal side effects.
Research
2,485 papers- Vesicle-Encapsulated Rolipram (PDE4 Inhibitor) and Its Anticancer Activity.ACS applied bio materials · 2024
- Rolipram promotes hippocampal regeneration in mice after trimethyltin-induced neurodegeneration.Neuroreport · 2024
- Regulating astrocyte phenotype by Lcn2 inhibition toward ischemic stroke therapy.Biomaterials · 2025
- Rolipram Protects Mice from Gram-negative Bacterium Escherichia coli-induced Inflammation and Septic Shock.Scientific reports · 2020
- Novel Liposomal Rolipram Formulation for Clinical Application to Reduce Emesis.Drug design, development and therapy · 2022
via PubMed
Wikidata facts
- Mass
- 275.152144
Show 3 more facts
- chemical formula
- C₁₆H₂₁NO₃
- Commons category
- Rolipram
- canonical SMILES
- COC1=C(C=C(C=C1)C2CC(=O)NC2)OC3CCCC3
via Wikidata · CC0
~2 min read
Article
2 sectionsContents
- See also
- References
Rolipram is a selective phosphodiesterase-4 inhibitor discovered and developed by Schering AG as a potential antidepressant drug in the early 1990s. It served as a prototype molecule for several companies' drug discovery and development efforts. Rolipram was discontinued after clinical trials showed that its therapeutic window was too narrow; it could not be dosed at high enough levels to be effective without causing significant gastrointestinal side effects.
Rolipram has several activities that make it a continuing focus for research. The etiology of many neurodegenerative diseases involves misfolded and clumped proteins which accumulate in the brain. Cells have a mechanism to dispose of such proteins called the proteasome. However, in Alzheimer's disease and some other conditions the activity of these proteasomes is impaired leading to a buildup of toxic aggregates. Research in mice suggests that rolipram has the ability to ramp up the activity of proteasomes and reduce the burden of these aggregates. Preliminary evidence suggests that this can improve spatial memory in mice engineered to have aggregate build-up. Rolipram continues to be used in research as a well-characterized PDE4 inhibitor. It has been used in studies to understand whether PDE4 inhibition could be useful in autoimmune diseases, Alzheimer's disease, cognitive enhancement, spinal cord injury, and respiratory diseases like asthma and COPD.