Taming the storm: potential anti-inflammatory compounds targeting SARS-CoV-2 MPro

被引:0
|
作者
Anton, Debora Bublitz [1 ]
de Lima, Jeferson Camargo [1 ]
Dahmer, Bruno Rampanelli [1 ]
Camini, Ana Micaela [1 ]
Goettert, Marcia Ines [2 ]
Timmers, Luis Fernando Saraiva Macedo [1 ,3 ]
机构
[1] Univ Vale Taquari Univates, Biotechnol Grad Program, Lajeado, Brazil
[2] Eberhard Karls Univ Tubingen, Inst Pharmaceut Sci, Dept Pharmaceut & Med Chem, D-72076 Tubingen, Germany
[3] Univ Vale Taquari Univates, Med Sci Grad Program, BR-95914014 Lajeado, Brazil
关键词
COVID-19; SARS-CoV-2; MPro; Antiviral; Anti-inflammatory; ACUTE LUNG INJURY; NF-KAPPA-B; CORONAVIRUS DISEASE 2019; MAIN PROTEASE; TNF-ALPHA; SCUTELLARIA-BAICALENSIS; SIGNALING PATHWAY; COVID-19; SEVERITY; HEME OXYGENASE-1; INHIBITION;
D O I
10.1007/s10787-024-01525-9
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
In severe COVID-19 cases, an exacerbated inflammatory response triggers a cytokine storm that can worsen the prognosis. Compounds with both antiviral and anti-inflammatory activities show promise as candidates for COVID-19 therapy, as they potentially act against the SARS-CoV-2 infection regardless of the disease stage. One of the most attractive drug targets among coronaviruses is the main protease (MPro). This enzyme is crucial for cleaving polyproteins into non-structural proteins required for viral replication. The aim of this review was to identify SARS-CoV-2 MPro inhibitors with both antiviral and anti-inflammatory properties. The interactions of the compounds within the SARS-CoV-2 MPro binding site were analyzed through molecular docking when data from crystallographic structures were unavailable. 18 compounds were selected and classified into five different superclasses. Five of them exhibit high potency against MPro: GC-376, baicalein, naringenin, heparin, and carmofur, with IC50 values below 0.2 mu M. The MPro inhibitors selected have the potential to alleviate lung edema and decrease cytokine release. These molecules mainly target three critical inflammatory pathways: NF-kappa B, JAK/STAT, and MAPK, all previously associated with COVID-19 pathogenesis. The structures of the compounds occupy the S1/S2 substrate binding subsite of the MPro. They interact with residues from the catalytic dyad (His41 and Cys145) and/or with the oxyanion hole (Gly143, Ser144, and Cys145), which are pivotal for substrate recognition. The MPro SARS-CoV-2 inhibitors with potential anti-inflammatory activities present here could be optimized for maximum efficacy and safety and be explored as potential treatment of both mild and severe COVID-19.
引用
收藏
页码:3007 / 3035
页数:29
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