词条 | ISRIB |
释义 |
| IUPAC_name = trans-N,N'-(cyclohexane-1,4-diyl)bis(2-(4-chlorophenoxy)acetamide) | image = ISRIB_structure.png | width = 320 | tradename = | pregnancy_AU = | pregnancy_US = | pregnancy_category = | legal_AU = | legal_CA = | legal_UK = | legal_US = | legal_status = | routes_of_administration = | bioavailability = | protein_bound = | metabolism = | excretion = | CAS_number_Ref = {{cascite|correct|??}} | CAS_number = 1597403-47-8 | ATC_prefix = none | ATC_suffix = | PubChem = 1011240 | DrugBank_Ref = {{drugbankcite|correct|drugbank}} | DrugBank = | ChemSpiderID = 30773985 | C=22 | H=24 | Cl=2 | N=2 | O=4 | molecular_weight = 451.34 g/mol | smiles = O=C(COC1=CC=C(Cl)C=C1)N[C@@H]2CC[C@@H](NC(COC3=CC=C(Cl)C=C3)=O)CC2 | StdInChI = 1S/C22H24Cl2N2O4/c23-15-1-9-19(10-2-15)29-13-21(27)25-17-5-7-18(8-6-17)26-22(28)14-30-20-11-3-16(24)4-12-20/h1-4,9-12,17-18H,5-8,13-14H2,(H,25,27)(H,26,28)/t17-,18- | StdInChIKey = HJGMCDHQPXTGAV-IYARVYRRSA-N }}ISRIB, (an acronym for Integrated Stress Response Inhibitor), is an experimental drug which reverses the effects of eIF2α phosphorylation with an IC50 of 5nM. It was discovered by the Walter lab at UCSF through a semi-automated screening of a large library of small molecules.[1] It has also been shown to inhibit eIF2α phosphorylation-induced stress granule(SG) formation.[2] Since eIF2α phosphorylation is known to be involved in memory formation, ISRIB was tested to see whether it would be active in vivo, and was found to readily cross the blood-brain barrier, with a half-life of 8 hours. Subsequent testing in 2013 found ISRIB to produce significant nootropic effects in mice, as measured by enhancement of spatial and fear-associated learning in standard water maze and conditioned environment tests. Testing in 2017 indicated the experimental drug improved the ability of brain-injured mice to learn and form memories on memory tests, thus appearing to reverse impairments from traumatic brain injury.[3][4] See also
References1. ^{{Cite journal|last=Sidrauski|first=Carmela|last2=Acosta-Alvear|first2=Diego|last3=Khoutorsky|first3=Arkady|last4=Vedantham|first4=Punitha|last5=Hearn|first5=Brian R|last6=Li|first6=Han|last7=Gamache|first7=Karine|last8=Gallagher|first8=Ciara M|last9=Ang|first9=Kenny K-H|date=2013-05-28|title=Pharmacological brake-release of mRNA translation enhances cognitive memory|journal=eLife|language=en|volume=2|pages=e00498|doi=10.7554/eLife.00498|pmid=23741617|pmc=3667625|issn=2050-084X}} {{Nootropics}}{{pharm-stub}}2. ^{{Cite journal|last=Sidrauski|first=Carmela|last2=McGeachy|first2=Anna M|last3=Ingolia|first3=Nicholas T|last4=Walter|first4=Peter|date=2015-02-26|title=The small molecule ISRIB reverses the effects of eIF2α phosphorylation on translation and stress granule assembly|journal=eLife|language=en|volume=4|doi=10.7554/eLife.05033|pmid=25719440|pmc=4341466|issn=2050-084X}} 3. ^{{cite news|url=http://www.sciencemag.org/news/2017/07/memory-enhancing-drug-reverses-effects-traumatic-brain-injury-mice|title=Science|last=Cross|first=Ryan|date=July 11, 2017|work=|accessdate=July 12, 2017|agency=United Press International}} 4. ^{{Cite news|url=https://www.washingtonpost.com/news/to-your-health/wp/2017/07/10/brain-damaged-mice-lost-their-memories-and-this-drug-restored-them/|title=New drug restores memories in brain-damaged mice|last=Gallegos|first=Jenna|date=2017-07-10|work=Washington Post|access-date=2018-06-27|language=en-US|issn=0190-8286}} 1 : Nootropics |
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