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1.
Sci Transl Med ; 16(748): eadj4504, 2024 May 22.
Article de Anglais | MEDLINE | ID: mdl-38776389

RÉSUMÉ

Despite the wide availability of several safe and effective vaccines that prevent severe COVID-19, the persistent emergence of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) variants of concern (VOCs) that can evade vaccine-elicited immunity remains a global health concern. In addition, the emergence of SARS-CoV-2 VOCs that can evade therapeutic monoclonal antibodies underscores the need for additional, variant-resistant treatment strategies. Here, we characterize the antiviral activity of GS-5245, obeldesivir (ODV), an oral prodrug of the parent nucleoside GS-441524, which targets the highly conserved viral RNA-dependent RNA polymerase (RdRp). We show that GS-5245 is broadly potent in vitro against alphacoronavirus HCoV-NL63, SARS-CoV, SARS-CoV-related bat-CoV RsSHC014, Middle East respiratory syndrome coronavirus (MERS-CoV), SARS-CoV-2 WA/1, and the highly transmissible SARS-CoV-2 BA.1 Omicron variant. Moreover, in mouse models of SARS-CoV, SARS-CoV-2 (WA/1 and Omicron B1.1.529), MERS-CoV, and bat-CoV RsSHC014 pathogenesis, we observed a dose-dependent reduction in viral replication, body weight loss, acute lung injury, and pulmonary function with GS-5245 therapy. Last, we demonstrate that a combination of GS-5245 and main protease (Mpro) inhibitor nirmatrelvir improved outcomes in vivo against SARS-CoV-2 compared with the single agents. Together, our data support the clinical evaluation of GS-5245 against coronaviruses that cause or have the potential to cause human disease.


Sujet(s)
Antiviraux , Promédicaments , SARS-CoV-2 , Animaux , SARS-CoV-2/effets des médicaments et des substances chimiques , Promédicaments/pharmacologie , Promédicaments/usage thérapeutique , Antiviraux/pharmacologie , Antiviraux/usage thérapeutique , Humains , Souris , Administration par voie orale , Chlorocebus aethiops , Cellules Vero , Traitements médicamenteux de la COVID-19 , COVID-19/virologie , Réplication virale/effets des médicaments et des substances chimiques , Nucléosides/pharmacologie , Nucléosides/usage thérapeutique , Nucléosides/composition chimique , Infections à coronavirus/traitement médicamenteux , Infections à coronavirus/virologie , Femelle , Modèles animaux de maladie humaine
2.
Science ; 383(6688): eadk6176, 2024 Mar 15.
Article de Anglais | MEDLINE | ID: mdl-38484056

RÉSUMÉ

Obeldesivir (ODV, GS-5245) is an orally administered prodrug of the parent nucleoside of remdesivir (RDV) and is presently in phase 3 trials for COVID-19 treatment. In this work, we show that ODV and its circulating parent nucleoside metabolite, GS-441524, have similar in vitro antiviral activity against filoviruses, including Marburg virus, Ebola virus, and Sudan virus (SUDV). We also report that once-daily oral ODV treatment of cynomolgus monkeys for 10 days beginning 24 hours after SUDV exposure confers 100% protection against lethal infection. Transcriptomics data show that ODV treatment delayed the onset of inflammation and correlated with antigen presentation and lymphocyte activation. Our results offer promise for the further development of ODV to control outbreaks of filovirus disease more rapidly.


Sujet(s)
Alanine , Antiviraux , Ebolavirus , Fièvre hémorragique à virus Ebola , Nucléosides , Promédicaments , Animaux , Administration par voie orale , Ebolavirus/effets des médicaments et des substances chimiques , Fièvre hémorragique à virus Ebola/traitement médicamenteux , Fièvre hémorragique à virus Ebola/prévention et contrôle , Macaca fascicularis , Nucléosides/administration et posologie , Nucléosides/pharmacologie , AMP/administration et posologie , AMP/pharmacologie , Alanine/administration et posologie , Alanine/analogues et dérivés , Alanine/pharmacologie , Promédicaments/administration et posologie , Promédicaments/pharmacologie , Antiviraux/administration et posologie , Antiviraux/pharmacologie
3.
J Med Chem ; 66(17): 11701-11717, 2023 09 14.
Article de Anglais | MEDLINE | ID: mdl-37596939

RÉSUMÉ

Remdesivir 1 is an phosphoramidate prodrug that releases the monophosphate of nucleoside GS-441524 (2) into lung cells, thereby forming the bioactive triphosphate 2-NTP. 2-NTP, an analog of ATP, inhibits the SARS-CoV-2 RNA-dependent RNA polymerase replication and transcription of viral RNA. Strong clinical results for 1 have prompted interest in oral approaches to generate 2-NTP. Here, we describe the discovery of a 5'-isobutyryl ester prodrug of 2 (GS-5245, Obeldesivir, 3) that has low cellular cytotoxicity and 3-7-fold improved oral delivery of 2 in monkeys. Prodrug 3 is cleaved presystemically to provide high systemic exposures of 2 that overcome its less efficient metabolism to 2-NTP, leading to strong SARS-CoV-2 antiviral efficacy in an African green monkey infection model. Exposure-based SARS-CoV-2 efficacy relationships resulted in an estimated clinical dose of 350-400 mg twice daily. Importantly, all SARS-CoV-2 variants remain susceptible to 2, which supports development of 3 as a promising COVID-19 treatment.


Sujet(s)
COVID-19 , Promédicaments , Chlorocebus aethiops , Humains , Animaux , SARS-CoV-2 , Traitements médicamenteux de la COVID-19 , Nucléosides , Promédicaments/pharmacologie , Promédicaments/usage thérapeutique , ARN viral , Antiviraux/pharmacologie , Antiviraux/usage thérapeutique , Furanes
4.
bioRxiv ; 2023 Jun 28.
Article de Anglais | MEDLINE | ID: mdl-37425890

RÉSUMÉ

Despite the wide availability of several safe and effective vaccines that can prevent severe COVID-19 disease, the emergence of SARS-CoV-2 variants of concern (VOC) that can partially evade vaccine immunity remains a global health concern. In addition, the emergence of highly mutated and neutralization-resistant SARS-CoV-2 VOCs such as BA.1 and BA.5 that can partially or fully evade (1) many therapeutic monoclonal antibodies in clinical use underlines the need for additional effective treatment strategies. Here, we characterize the antiviral activity of GS-5245, Obeldesivir (ODV), an oral prodrug of the parent nucleoside GS-441524, which targets the highly conserved RNA-dependent viral RNA polymerase (RdRp). Importantly, we show that GS-5245 is broadly potent in vitro against alphacoronavirus HCoV-NL63, severe acute respiratory syndrome coronavirus (SARS-CoV), SARS-CoV-related Bat-CoV RsSHC014, Middle East Respiratory Syndrome coronavirus (MERS-CoV), SARS-CoV-2 WA/1, and the highly transmissible SARS-CoV-2 BA.1 Omicron variant in vitro and highly effective as antiviral therapy in mouse models of SARS-CoV, SARS-CoV-2 (WA/1), MERS-CoV and Bat-CoV RsSHC014 pathogenesis. In all these models of divergent coronaviruses, we observed protection and/or significant reduction of disease metrics such as weight loss, lung viral replication, acute lung injury, and degradation in pulmonary function in GS-5245-treated mice compared to vehicle controls. Finally, we demonstrate that GS-5245 in combination with the main protease (Mpro) inhibitor nirmatrelvir had increased efficacy in vivo against SARS-CoV-2 compared to each single agent. Altogether, our data supports the continuing clinical evaluation of GS-5245 in humans infected with COVID-19, including as part of a combination antiviral therapy, especially in populations with the most urgent need for more efficacious and durable interventions.

5.
Sci Transl Med ; 14(643): eabm3410, 2022 05 04.
Article de Anglais | MEDLINE | ID: mdl-35315683

RÉSUMÉ

The coronavirus disease 2019 (COVID-19) pandemic remains uncontrolled despite the rapid rollout of safe and effective severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) vaccines, underscoring the need to develop highly effective antivirals. In the setting of waning immunity from infection and vaccination, breakthrough infections are becoming increasingly common and treatment options remain limited. In addition, the emergence of SARS-CoV-2 variants of concern, with their potential to escape neutralization by therapeutic monoclonal antibodies, emphasizes the need to develop second-generation oral antivirals targeting highly conserved viral proteins that can be rapidly deployed to outpatients. Here, we demonstrate the in vitro antiviral activity and in vivo therapeutic efficacy of GS-621763, an orally bioavailable prodrug of GS-441524, the parent nucleoside of remdesivir, which targets the highly conserved virus RNA-dependent RNA polymerase. GS-621763 exhibited antiviral activity against SARS-CoV-2 in lung cell lines and two different human primary lung cell culture systems. GS-621763 was also potently antiviral against a genetically unrelated emerging coronavirus, Middle East respiratory syndrome CoV (MERS-CoV). The dose-proportional pharmacokinetic profile observed after oral administration of GS-621763 translated to dose-dependent antiviral activity in mice infected with SARS-CoV-2. Therapeutic GS-621763 administration reduced viral load and lung pathology; treatment also improved pulmonary function in COVID-19 mouse model. A direct comparison of GS-621763 with molnupiravir, an oral nucleoside analog antiviral that has recently received EUA approval, proved both drugs to be similarly efficacious in mice. These data support the exploration of GS-441524 oral prodrugs for the treatment of COVID-19.


Sujet(s)
Traitements médicamenteux de la COVID-19 , Infections à coronavirus , Promédicaments , Adénosine/analogues et dérivés , AMP/analogues et dérivés , Alanine/analogues et dérivés , Animaux , Antiviraux/pharmacologie , Antiviraux/usage thérapeutique , Infections à coronavirus/traitement médicamenteux , Humains , Souris , Nucléosides , Parents , Promédicaments/pharmacologie , Promédicaments/usage thérapeutique , SARS-CoV-2
6.
bioRxiv ; 2021 Sep 17.
Article de Anglais | MEDLINE | ID: mdl-34545367

RÉSUMÉ

The COVID-19 pandemic remains uncontrolled despite the rapid rollout of safe and effective SARS-CoV-2 vaccines, underscoring the need to develop highly effective antivirals. In the setting of waning immunity from infection and vaccination, breakthrough infections are becoming increasingly common and treatment options remain limited. Additionally, the emergence of SARS-CoV-2 variants of concern with their potential to escape therapeutic monoclonal antibodies emphasizes the need to develop second-generation oral antivirals targeting highly conserved viral proteins that can be rapidly deployed to outpatients. Here, we demonstrate the in vitro antiviral activity and in vivo therapeutic efficacy of GS-621763, an orally bioavailable prodrug of GS-441524, the parental nucleoside of remdesivir, which targets the highly conserved RNA-dependent RNA polymerase. GS-621763 exhibited significant antiviral activity in lung cell lines and two different human primary lung cell culture systems. The dose-proportional pharmacokinetic profile observed after oral administration of GS-621763 translated to dose-dependent antiviral activity in mice infected with SARS-CoV-2. Therapeutic GS-621763 significantly reduced viral load, lung pathology, and improved pulmonary function in COVID-19 mouse model. A direct comparison of GS-621763 with molnupiravir, an oral nucleoside analog antiviral currently in human clinical trial, proved both drugs to be similarly efficacious. These data demonstrate that therapy with oral prodrugs of remdesivir can significantly improve outcomes in SARS-CoV-2 infected mice. Thus, GS-621763 supports the exploration of GS-441524 oral prodrugs for the treatment of COVID-19 in humans.

7.
J Med Chem ; 64(8): 5001-5017, 2021 04 22.
Article de Anglais | MEDLINE | ID: mdl-33835812

RÉSUMÉ

A discovery program targeting respiratory syncytial virus (RSV) identified C-nucleoside 4 (RSV A2 EC50 = 530 nM) as a phenotypic screening lead targeting the RSV RNA-dependent RNA polymerase (RdRp). Prodrug exploration resulted in the discovery of remdesivir (1, GS-5734) that is >30-fold more potent than 4 against RSV in HEp-2 and NHBE cells. Metabolism studies in vitro confirmed the rapid formation of the active triphosphate metabolite, 1-NTP, and in vivo studies in cynomolgus and African Green monkeys demonstrated a >10-fold higher lung tissue concentration of 1-NTP following molar normalized IV dosing of 1 compared to that of 4. A once daily 10 mg/kg IV administration of 1 in an African Green monkey RSV model demonstrated a >2-log10 reduction in the peak lung viral load. These early data following the discovery of 1 supported its potential as a novel treatment for RSV prior to its development for Ebola and approval for COVID-19 treatment.


Sujet(s)
AMP/analogues et dérivés , Alanine/analogues et dérivés , Antiviraux/pharmacologie , Promédicaments/pharmacologie , Infections à virus respiratoire syncytial/traitement médicamenteux , Virus respiratoire syncytial humain/effets des médicaments et des substances chimiques , AMP/pharmacologie , Alanine/pharmacologie , Animaux , Antiviraux/composition chimique , Antiviraux/pharmacocinétique , Cellules Caco-2 , Cellules cultivées , Chlorocebus aethiops , Modèles animaux de maladie humaine , Chiens , Évaluation préclinique de médicament/méthodes , Cellules épithéliales/virologie , Humains , Macaca fascicularis , Mâle , Promédicaments/composition chimique , Promédicaments/pharmacocinétique , Rat Sprague-Dawley , Infections à virus respiratoire syncytial/virologie , Relation structure-activité , Distribution tissulaire , Tubercidine/analogues et dérivés , Tubercidine/composition chimique , Charge virale
8.
Org Lett ; 17(3): 580-3, 2015 Feb 06.
Article de Anglais | MEDLINE | ID: mdl-25582814

RÉSUMÉ

The enantioselective synthesis of atropisomeric, tribrominated benzamides and subsequent regioselective transformations to afford derivatized, axially chiral molecules is reported. The enantioenriched tribromides were carried through sequential Pd-catalyzed cross-coupling and lithium-halogen exchange with high regioselectivity and enantioretention. A variety of complexity-generation functional group installations were performed to create a library of homochiral benzamides. The potential utility of these molecules is demonstrated by using a phosphino benzamide derivative as an asymmetric ligand in a Pd-catalyzed allylic alkylation.


Sujet(s)
Benzamides/synthèse chimique , Hydrocarbures bromés/composition chimique , Hydrocarbures bromés/synthèse chimique , Palladium/composition chimique , Alkylation , Benzamides/composition chimique , Catalyse , Techniques de chimie combinatoire , Structure moléculaire , Stéréoisomérie
9.
Nature ; 509(7498): 71-5, 2014 May 01.
Article de Anglais | MEDLINE | ID: mdl-24747399

RÉSUMÉ

One of the most well-recognized stereogenic elements in a chiral molecule is an sp(3)-hybridized carbon atom that is connected to four different substituents. Axes of chirality can also exist about bonds with hindered barriers of rotation; molecules containing such axes are known as atropisomers. Understanding the dynamics of these systems can be useful, for example, in the design of single-atropisomer drugs or molecular switches and motors. For molecules that exhibit a single axis of chirality, rotation about that axis leads to racemization as the system reaches equilibrium. Here we report a two-axis system for which an enantioselective reaction produces four stereoisomers (two enantiomeric pairs): following a catalytic asymmetric transformation, we observe a kinetically controlled product distribution that is perturbed from the system's equilibrium position. As the system undergoes isomerization, one of the diastereomeric pairs drifts spontaneously to a higher enantiomeric ratio. In a compensatory manner, the enantiomeric ratio of the other diastereomeric pair decreases. These observations are made for a class of unsymmetrical amides that exhibits two asymmetric axes--one axis is defined through a benzamide substructure, and the other axis is associated with differentially N,N-disubstituted amides. The stereodynamics of these substrates provides an opportunity to observe a curious interplay of kinetics and thermodynamics intrinsic to a system of stereoisomers that is constrained to a situation of partial equilibrium.


Sujet(s)
Benzamides/composition chimique , Benzamides/synthèse chimique , Brome/composition chimique , Carbone/composition chimique , Catalyse , Cinétique , Structure moléculaire , Préparations pharmaceutiques/composition chimique , Rotation , Stéréoisomérie , Thermodynamique
10.
J Am Chem Soc ; 135(8): 2963-6, 2013 Feb 27.
Article de Anglais | MEDLINE | ID: mdl-23410090

RÉSUMÉ

We report the enantioselective synthesis of atropisomeric benzamides employing catalytic electrophilic aromatic substitution reactions involving bromination. The catalyst is a simple tetrapeptide bearing a tertiary amine that may function as a Brønsted base. A series of tri- and dibrominations were accomplished for a range of compounds bearing differential substitution patterns. Tertiary benzamides represent appropriate substrates for the reaction since they exhibit sufficiently high barriers to racemization after ortho functionalization. Mechanism-driven experiments provided some insight into the basis for selectivity. Examination of the observed products at low conversion suggested that the initial catalytic bromination may be regioselective and stereochemistry-determining. A complex between the catalyst and substrate was observed by NMR spectroscopy, revealing a specific association. Finally, the products of these reactions may be subjected to regioselective metal-halogen exchange and trapping with I(2), setting the stage for utility.


Sujet(s)
Benzamides/synthèse chimique , Brome/composition chimique , Peptides/composition chimique , Catalyse , Stéréoisomérie
12.
J Med Chem ; 53(4): 1763-73, 2010 Feb 25.
Article de Anglais | MEDLINE | ID: mdl-20088534

RÉSUMÉ

A century after discovering that the Trypanosoma cruzi parasite is the etiological agent of Chagas disease, treatment is still plagued by limited efficacy, toxicity, and the emergence of drug resistance. The development of inhibitors of the major T. cruzi cysteine protease, cruzain, has been demonstrated to be a promising drug discovery avenue for this neglected disease. Here we establish that a nonpeptidic tetrafluorophenoxymethyl ketone cruzain inhibitor substantially ameliorates symptoms of acute Chagas disease in a mouse model with no apparent toxicity. A high-resolution crystal structure confirmed the mode of inhibition and revealed key binding interactions of this novel inhibitor class. Subsequent structure-guided optimization then resulted in inhibitor analogues with improvements in potency despite minimal or no additions in molecular weight. Evaluation of the analogues in cell culture showed enhanced activity. These results suggest that nonpeptidic tetrafluorophenoxymethyl ketone cruzain inhibitors have the potential to fulfill the urgent need for improved Chagas disease chemotherapy.


Sujet(s)
Maladie de Chagas/traitement médicamenteux , Cétones/synthèse chimique , Protéines de protozoaire/antagonistes et inhibiteurs , Trypanocides/synthèse chimique , Animaux , Bovins , Cellules cultivées , Cysteine endopeptidases , Femelle , Cétones/composition chimique , Cétones/pharmacologie , Macrophages/effets des médicaments et des substances chimiques , Macrophages/parasitologie , Souris , Souris de lignée C3H , Modèles moléculaires , Tests de sensibilité parasitaire , Quinoléines/synthèse chimique , Quinoléines/composition chimique , Quinoléines/pharmacologie , Stéréoisomérie , Relation structure-activité , Triazoles/synthèse chimique , Triazoles/composition chimique , Triazoles/pharmacologie , Trypanocides/composition chimique , Trypanocides/pharmacologie , Trypanosoma cruzi/effets des médicaments et des substances chimiques
13.
J Org Chem ; 74(9): 3606-8, 2009 May 01.
Article de Anglais | MEDLINE | ID: mdl-19351149

RÉSUMÉ

The one-pot preparation of N-sulfinylamine diastereomers proceeds in excellent yields (84-98%) for a diverse set of N-sulfinyl imine addition products. The method is operationally simple and extractive isolation provides analytically pure mixtures of diastereomers as standards for the rapid and accurate determination of N-sulfinylamine diastereomeric purity.


Sujet(s)
Amines/synthèse chimique , Butanes/synthèse chimique , Composés de sulfonium/synthèse chimique , Amines/composition chimique , Butanes/composition chimique , Stéréoisomérie , Spécificité du substrat , Composés de sulfonium/composition chimique
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