病毒学
寨卡病毒
蛋白酵素
黄病毒
登革热病毒
登革热
丙型肝炎病毒
病毒复制
病毒
生物
病毒进入
抗病毒药物
NS2-3蛋白酶
微生物学
酶
生物化学
作者
Barbara Schroeder,Peter Demirel,Christina Fischer,Enaam Masri,Stephanie Kallis,Lisa Redl,Thomas Rudolf,Silke Bergemann,Christoph Arkona,Christoph Nitsche,Ralf Bartenschlager,Jörg Rademann
标识
DOI:10.1021/acsmedchemlett.1c00515
摘要
Viral proteases have been established as drug targets in several viral diseases including human immunodeficiency virus and hepatitis C virus infections due to the essential role of these enzymes in virus replication. In contrast, no antiviral therapy is available to date against flaviviral infections including those by Zika virus (ZIKV), West Nile virus (WNV), or dengue virus (DENV). Numerous potent inhibitors of flaviviral proteases have been reported; however, a huge gap remains between the in vitro and intracellular activities, possibly due to low cellular uptake of the charged compounds. Here, we present an alternative, nanoparticular approach to antivirals. Conjugation of peptidomimetic inhibitors and cell-penetrating peptides to dextran yielded chemically defined nanoparticles that were potent inhibitors of flaviviral proteases. Peptide–dextran conjugates inhibited viral replication and infection in cells at nontoxic, low micromolar or even nanomolar concentrations. Thus, nanoparticular antivirals might be alternative starting points for the development of broad-spectrum antiflaviviral drugs.
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