2,3-Dihydro-1-benzofuran-5-ols as Analogs of .alpha.-Tocopherol That Inhibit in Vitro and ex Vivo Lipid Autoxidation and Protect Mice against Central Nervous System Trauma
摘要:
A series of a-tocopherol analogues was synthesized with potential therapeutic value for such pathological conditions as stroke and trauma. A set of criteria such as the inhibition of in vitro lipid peroxidation, superoxyl radical scavenging, and brain penetration, as measured by ex vivo inhibition of lipid peroxidation, was applied to select the most effective compound. 2,3-Dihydro-2,2,4,6,7-pentamethyl-3-[(4-methylpiperazino)methyl]-1-benzofuran-5-ol hydrochloride (22) was selected because of its superior antioxidant properties and better brain penetration. This compound also protected mice against the effects of head injury. The criteria thus turned out to be useful for the characterization of a neuroprotective analogue of alpha-tocopherol.
2,3-Dihydro-1-benzofuran-5-ols as Analogs of .alpha.-Tocopherol That Inhibit in Vitro and ex Vivo Lipid Autoxidation and Protect Mice against Central Nervous System Trauma
摘要:
A series of a-tocopherol analogues was synthesized with potential therapeutic value for such pathological conditions as stroke and trauma. A set of criteria such as the inhibition of in vitro lipid peroxidation, superoxyl radical scavenging, and brain penetration, as measured by ex vivo inhibition of lipid peroxidation, was applied to select the most effective compound. 2,3-Dihydro-2,2,4,6,7-pentamethyl-3-[(4-methylpiperazino)methyl]-1-benzofuran-5-ol hydrochloride (22) was selected because of its superior antioxidant properties and better brain penetration. This compound also protected mice against the effects of head injury. The criteria thus turned out to be useful for the characterization of a neuroprotective analogue of alpha-tocopherol.
[EN] ARBIDOL ANALOGS WITH IMPROVED INFLUENZA HEMAGGLUTININ POTENCY<br/>[FR] ANALOGUES D'ARBIDOL AYANT UNE PUISSANCE AMÉLIORÉE VIS-À-VIS DE L'HÉMAGGLUTININE D'INFLUENZA
申请人:SCRIPPS RESEARCH INST
公开号:WO2018112128A1
公开(公告)日:2018-06-21
The invention provides a series of analogs of arbidol having enhanced binding activity with respect to influenza hemagglutinin. Accordingly, the invention can provide a method of inhibiting the bioactivity of viral hemagglutinin activity, which is an essential step in the entry of infectious viral particles into host cells. The invention also can provide a method of treatment of influence, comprising administering an effective amount of a compound of formula (A), wherein X is S or O, to a patient afflicted therewith.
Structure-based optimization and synthesis of antiviral drug Arbidol analogues with significantly improved affinity to influenza hemagglutinin
作者:Zoë V.F. Wright、Nicholas C. Wu、Rameshwar U. Kadam、Ian A. Wilson、Dennis W. Wolan
DOI:10.1016/j.bmcl.2017.06.074
日期:2017.8
of a meta-hydroxy group to the thiophenol moiety of Arbidol to replace a structured water molecule in the binding pocket resulted in a dramatic increase in affinity against both H3 (1150-fold) and H1 (98-fold) hemagglutinin subtypes. Our analogues represent novel leads to yield more potent compounds against hemagglutinin that block viral entry.
2,3-Dihydro-1-benzofuran-5-ols as Analogs of .alpha.-Tocopherol That Inhibit in Vitro and ex Vivo Lipid Autoxidation and Protect Mice against Central Nervous System Trauma
作者:J. Martin Grisar、Frank N. Bolkenius、Margaret A. Petty、Joelle Verne
DOI:10.1021/jm00003a008
日期:1995.2
A series of a-tocopherol analogues was synthesized with potential therapeutic value for such pathological conditions as stroke and trauma. A set of criteria such as the inhibition of in vitro lipid peroxidation, superoxyl radical scavenging, and brain penetration, as measured by ex vivo inhibition of lipid peroxidation, was applied to select the most effective compound. 2,3-Dihydro-2,2,4,6,7-pentamethyl-3-[(4-methylpiperazino)methyl]-1-benzofuran-5-ol hydrochloride (22) was selected because of its superior antioxidant properties and better brain penetration. This compound also protected mice against the effects of head injury. The criteria thus turned out to be useful for the characterization of a neuroprotective analogue of alpha-tocopherol.