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1.
Methods Mol Biol ; 2808: 1-7, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38743358

RESUMO

We have adopted a real-time assay based on a dual-split reporter to assess cell-cell fusion mediated by the measles virus (MeV) membrane fusion machinery. This reporter system is comprised of two expression vectors, each encoding a segment of Renilla luciferase fused to a segment of GFP. To regain function, the two segments need to associate, which is dependent on cell-cell fusion between effector cells expressing the MeV fusion machinery and target cells expressing the corresponding MeV receptor. By measuring reconstituted luciferase activity, we can follow the kinetics of cell-cell fusion and quantify the extent of fusion. This assay lends itself to the study of the MeV fusion machinery comprised of the attachment and fusion glycoproteins, the matrix protein, and the MeV receptors. Moreover, entry inhibitors targeting attachment or fusion can be readily screened using this assay. Finally, this assay can be easily adopted to study the entry of other members of the Paramyxoviridae, as we have demonstrated for the henipaviruses.


Assuntos
Fusão Celular , Vírus do Sarampo , Internalização do Vírus , Vírus do Sarampo/genética , Vírus do Sarampo/fisiologia , Humanos , Animais , Fusão Celular/métodos , Genes Reporter , Proteínas de Fluorescência Verde/genética , Proteínas de Fluorescência Verde/metabolismo , Chlorocebus aethiops , Linhagem Celular , Células Vero , Luciferases de Renilla/genética , Luciferases de Renilla/metabolismo
2.
Methods Mol Biol ; 2808: 9-17, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38743359

RESUMO

Protein-fragment complementation assays (PCAs) are powerful tools to investigate protein-protein interactions in a cellular context. These are especially useful to study unstable proteins and weak interactions that may not resist protein isolation or purification. The PCA based on the reconstitution of the Gaussia princeps luciferase (split-luc) is a sensitive approach allowing the mapping of protein-protein interactions and the semiquantitative measurement of binding affinity. Here, we describe the split-luc protocol we used to map the viral interactome of measles virus polymerase complex.


Assuntos
Vírus do Sarampo , Ligação Proteica , Mapeamento de Interação de Proteínas , Mapeamento de Interação de Proteínas/métodos , Humanos , Luciferases/metabolismo , Luciferases/genética , Proteínas Virais/metabolismo , RNA Polimerase Dependente de RNA/metabolismo
3.
Methods Mol Biol ; 2808: 19-33, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38743360

RESUMO

Morbilliviruses such as measles virus (MeV) are responsible for major morbidity and mortality worldwide, despite the availability of an effective vaccine and global vaccination campaigns. MeV belongs to the mononegavirus order of viral pathogens that store their genetic information in non-segmented negative polarity RNA genomes. Genome replication and viral gene expression are carried out by a virus-encoded RNA-dependent RNA polymerase (RdRP) complex that has no immediate host cell analog. To better understand the organization and regulation of the viral RdRP and mechanistically characterize antiviral candidates, biochemical RdRP assays have been developed that employ purified recombinant polymerase complexes and synthetic RNA templates to monitor the initiation of RNA synthesis and RNA elongation in vitro. In this article, we will discuss strategies for the efficient expression and preparation of mononegavirus polymerase complexes, provide detailed protocols for the execution and optimization of RdRP assays, evaluate alternative options for the choice of template and detection system, and describe the application of the assay for the characterization of inhibitor candidates. Although MeV RdRP assays are the focus of this article, the general strategies and experimental approaches are readily transferable to related viruses in the mononegavirus order.


Assuntos
Vírus do Sarampo , RNA Polimerase Dependente de RNA , Replicação Viral , Vírus do Sarampo/genética , RNA Polimerase Dependente de RNA/metabolismo , RNA Polimerase Dependente de RNA/genética , RNA Viral/genética , Mononegavirais/genética , Animais , Proteínas Virais/metabolismo , Proteínas Virais/genética , Humanos
4.
Methods Mol Biol ; 2808: 129-140, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38743367

RESUMO

Many negative-sense single-stranded RNA viruses within the order Mononegavirales harm humans. A common feature shared among cells infected by these viruses is the formation of subcellular membraneless structures called biomolecular condensates, also known as inclusion bodies (IBs), that form through a process called liquid-liquid phase separation (LLPS). Like many other membraneless organelles, viral IBs enrich a specific subset of viral and host proteins involved in the formation of viral particles. Elucidation of the properties and regulation of these IBs as they mature throughout the viral replication process are important for our understanding of viral replication, which may also lead to the development of alternative antiviral treatments. The protocol outlined in this chapter aims to characterize the intrinsic properties of LLPS within the measles virus (MeV, a member of Mononegavirales) IBs by using an imaging approach that fluorescently tags an IB-associated host protein. This method uses common laboratory techniques and is generalizable to any host factors as well as other viral systems.


Assuntos
Recuperação de Fluorescência Após Fotodegradação , Corpos de Inclusão Viral , Vírus do Sarampo , Humanos , Corpos de Inclusão Viral/metabolismo , Recuperação de Fluorescência Após Fotodegradação/métodos , Vírus do Sarampo/fisiologia , Vírus do Sarampo/metabolismo , Replicação Viral , Corpos de Inclusão/metabolismo , Animais , Interações Hospedeiro-Patógeno , Separação de Fases
5.
Methods Mol Biol ; 2808: 89-103, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38743364

RESUMO

The study of virus-host interactions is essential to achieve a comprehensive understanding of the viral replication process. The commonly used methods are yeast two-hybrid approach and transient expression of a single tagged viral protein in host cells followed by affinity purification of interacting cellular proteins and mass spectrometry analysis (AP-MS). However, by these approaches, virus-host protein-protein interactions are detected in the absence of a real infection, not always correctly compartmentalized, and for the yeast two-hybrid approach performed in a heterologous system. Thus, some of the detected protein-protein interactions may be artificial. Here we describe a new strategy based on recombinant viruses expressing tagged viral proteins to capture both direct and indirect protein partners during the infection (AP-MS in viral context). This way, virus-host protein-protein interacting co-complexes can be purified directly from infected cells for further characterization.


Assuntos
Interações Hospedeiro-Patógeno , Vírus do Sarampo , Genética Reversa , Proteínas Virais , Vírus do Sarampo/genética , Humanos , Interações Hospedeiro-Patógeno/genética , Genética Reversa/métodos , Proteínas Virais/metabolismo , Proteínas Virais/genética , Técnicas do Sistema de Duplo-Híbrido , Replicação Viral , Espectrometria de Massas , Mapeamento de Interação de Proteínas/métodos , Sarampo/virologia , Sarampo/metabolismo , Animais , Ligação Proteica
6.
Methods Mol Biol ; 2808: 105-120, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38743365

RESUMO

Measles is a highly infectious disease that continues to spread mainly in developing countries, often resulting in child mortality. Despite the existence of effective vaccines, no specific antivirals are available as targeted therapy to combat measles virus (MeV). The implementation of genome-wide siRNA screens can provide a powerful platform to discover host factors that mediate MeV infection and replication, which could be essential to develop novel therapeutic strategies against this disease. Here, we describe a human genome-wide siRNA screen for MeV.


Assuntos
Vírus do Sarampo , RNA Interferente Pequeno , Humanos , RNA Interferente Pequeno/genética , Vírus do Sarampo/genética , Vírus do Sarampo/fisiologia , Interações Hospedeiro-Patógeno/genética , Replicação Viral/genética , Genoma Humano , Interferência de RNA
7.
Methods Mol Biol ; 2808: 121-127, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38743366

RESUMO

During the infection of a host cell by an infectious agent, a series of gene expression changes occurs as a consequence of host-pathogen interactions. Unraveling this complex interplay is the key for understanding of microbial virulence and host response pathways, thus providing the basis for new molecular insights into the mechanisms of pathogenesis and the corresponding immune response. Dual RNA sequencing (dual RNA-seq) has been developed to simultaneously determine pathogen and host transcriptomes enabling both differential and coexpression analyses between the two partners as well as genome characterization in the case of RNA viruses. Here, we provide a detailed laboratory protocol and bioinformatics analysis guidelines for dual RNA-seq experiments focusing on - but not restricted to - measles virus (MeV) as a pathogen of interest. The application of dual RNA-seq technologies in MeV-infected patients can potentially provide valuable information on the structure of the viral RNA genome and on cellular innate immune responses and drive the discovery of new targets for antiviral therapy.


Assuntos
Genoma Viral , Interações Hospedeiro-Patógeno , Vírus do Sarampo , Sarampo , RNA Viral , Humanos , Sarampo/virologia , Sarampo/imunologia , Sarampo/genética , Vírus do Sarampo/genética , Vírus do Sarampo/patogenicidade , RNA Viral/genética , Interações Hospedeiro-Patógeno/genética , Interações Hospedeiro-Patógeno/imunologia , Biologia Computacional/métodos , Análise de Sequência de RNA/métodos , RNA-Seq/métodos , Transcriptoma , Perfilação da Expressão Gênica/métodos , Sequenciamento de Nucleotídeos em Larga Escala/métodos
8.
Methods Mol Biol ; 2808: 167-175, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38743370

RESUMO

Measles virus is one of the most contagious airborne human viruses which keeps causing outbreaks in numerous countries over the world despite the existence of an efficient vaccine. Fusion inhibitory lipopeptides were shown to inhibit viral entry into target cells, and their adequate administration into the respiratory tract may provide a novel preventive approach against airborne infections. Aerosol delivery presents the best administration route to deliver such preventive compounds to the upper and lower respiratory tract. This approach offers a conceptually new strategy to protect the population at risk against infection by respiratory viruses, including measles. It is a noninvasive needle-free approach, which may be used when antiviral protection is required, without any medical assistance. In this chapter, we describe the nebulization approach of lipopeptide compounds in nonhuman primates and the subsequent measles virus challenge.


Assuntos
Aerossóis , Modelos Animais de Doenças , Vírus do Sarampo , Sarampo , Animais , Sarampo/prevenção & controle , Lipopeptídeos/administração & dosagem , Humanos , Sistemas de Liberação de Medicamentos/métodos
9.
Methods Mol Biol ; 2808: 141-152, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38743368

RESUMO

Measles virus (MeV) infection of airway surface epithelial cells provides a site for final amplification before being released back into the environment via coughing and sneezing. Multiple cell lines have served as models of polarized epithelia for MeV infection, such as Caco2 cells (intestinal derived human epithelia) or MDCK cells (kidney derived canine epithelia). In this chapter, we describe the materials and air-liquid interface (ALI) culture conditions for maintaining four different cell lines derived from human airway epithelial cells: 16HBE14o-, Calu-3, H358, and NuLi-1. We provide methods for confirming transepithelial electrical resistance (TER) and preparing samples for microscopy as well as expected results from apical or basolateral MeV delivery. Polarized human airway derived cells serve as tissue culture models for investigating targeted questions about how MeV exits a human host. In addition, these methods are generalizable to studies of other respiratory viruses or the biology of ALI airway epithelial cells.


Assuntos
Técnicas de Cultura de Células , Células Epiteliais , Vírus do Sarampo , Humanos , Vírus do Sarampo/fisiologia , Células Epiteliais/virologia , Células Epiteliais/citologia , Técnicas de Cultura de Células/métodos , Sarampo/virologia , Linhagem Celular , Cães , Animais , Mucosa Respiratória/virologia , Mucosa Respiratória/citologia , Impedância Elétrica
10.
Methods Mol Biol ; 2808: 209-224, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38743373

RESUMO

The plaque reduction neutralization test (PRNT) and the enzyme-linked immunosorbent assay (ELISA) are both widely used to assess immunity to infectious diseases such as measles, but they use two different measurement principles: ELISA measures the ability of antibodies to bind to virus components, while the PRNT detects the aptitude of antibodies to prevent the infection of a susceptible cell. As a result, detection of measles virus (MV) neutralizing antibodies is the gold standard for assessing immunity to measles. However, the assay is laborious and requires experience and excellent technical skills. In addition, the result is only available after several days. Therefore, the classical PRNT is not suitable for high-throughput testing. By using an immunocolorimetric assay (ICA) to detect MV-infected cells, the standard PRNT has been developed into a focus reduction neutralization test (FRNT). This assay is faster and has improved specificity. The FRNT described here is extremely useful when immunity to measles virus needs to be assessed in patients with a specific medical condition, such as immunocompromised individuals in whom presumed residual immunity needs to be assessed. The FRNT is not generally recommended for use with large numbers of specimens, such as in a seroprevalence study.


Assuntos
Anticorpos Neutralizantes , Anticorpos Antivirais , Vírus do Sarampo , Sarampo , Testes de Neutralização , Testes de Neutralização/métodos , Vírus do Sarampo/imunologia , Sarampo/imunologia , Sarampo/diagnóstico , Sarampo/virologia , Humanos , Anticorpos Neutralizantes/imunologia , Anticorpos Neutralizantes/sangue , Anticorpos Antivirais/imunologia , Chlorocebus aethiops , Animais , Células Vero , Ensaio de Placa Viral/métodos , Ensaio de Imunoadsorção Enzimática/métodos
11.
Methods Mol Biol ; 2808: 247-264, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38743375

RESUMO

Measles IgG avidity assays determine the overall strength of molecular binding between measles-specific IgG antibodies and measles virus antigens. Avidity results can distinguish recent from distant measles virus infections. Individuals who are immunologically naïve to measles virus develop low-avidity antibodies upon measles virus infection or first-time vaccination. Within 4-6 months, antibodies mature to high avidity. Measles avidity assays are most useful in the context of measles elimination. In such settings, avidity and epidemiological and clinical information are used to classify measles breakthrough infections for control and surveillance purposes and to assist in case confirmation when other laboratory results are inconclusive or nonexistent. We present a highly accurate end-titer measles avidity assay that delivers results based on IgG quality (avidity) that are independent of IgG concentration.


Assuntos
Anticorpos Antivirais , Afinidade de Anticorpos , Imunoglobulina G , Vírus do Sarampo , Sarampo , Afinidade de Anticorpos/imunologia , Imunoglobulina G/imunologia , Humanos , Anticorpos Antivirais/imunologia , Vírus do Sarampo/imunologia , Sarampo/imunologia , Sarampo/virologia , Antígenos Virais/imunologia , Ensaio de Imunoadsorção Enzimática/métodos
12.
Methods Mol Biol ; 2808: 225-246, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38743374

RESUMO

There is increasing interest in evaluating antibody responses to multiple antigen targets in a single assay. Immunity to measles and rubella are often evaluated together because immunity is provided through combined vaccines and because routine immunization efforts and surveillance for measles and rubella pathogens are combined in many countries. The multiplex bead assay (MBA) also known as the multiplex immunoassay (MIA) described here combines the measurement of measles- and rubella-specific IgG antibodies in serum quantitatively according to international serum standards and has been successfully utilized in integrated serological surveillance.


Assuntos
Anticorpos Antivirais , Imunoglobulina G , Sarampo , Rubéola (Sarampo Alemão) , Rubéola (Sarampo Alemão)/imunologia , Rubéola (Sarampo Alemão)/epidemiologia , Rubéola (Sarampo Alemão)/diagnóstico , Rubéola (Sarampo Alemão)/sangue , Sarampo/imunologia , Sarampo/epidemiologia , Sarampo/sangue , Sarampo/diagnóstico , Humanos , Anticorpos Antivirais/sangue , Anticorpos Antivirais/imunologia , Imunoglobulina G/sangue , Imunoglobulina G/imunologia , Imunoensaio/métodos , Vírus da Rubéola/imunologia , Vírus do Sarampo/imunologia , Testes Sorológicos/métodos
14.
J Med Virol ; 96(4): e29583, 2024 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-38576266

RESUMO

The measles virus, also known as the morbillivirus, or MV, is a virus that infects humans. The goal of this research is to assess to adult cases of measles. Eleven patients thought to be confirmed cases of measles were enrolled in the investigation. Following the identification of symptoms of tiredness, fever, and rash in one soldier, the results of 10 more troops from the pertinent military group were assessed. The diagnosis was made based on the presence of serum immunoglobulin M (IgM) and positive polymerase chain reaction (PCR) results. When the control IgM, immunoglobulin G, and PCR findings were evaluated a fortnight after hospitalization, a cluster of 11 incidents was found. It is now necessary to address the issue of the cautious stance towards vaccination or the anti-vaccination sentiment that has grown increasingly popular, particularly in light of the COVID-19 pandemic, for both our nation and the entire world.


Assuntos
Sarampo , Pandemias , Adulto , Humanos , Lactente , Anticorpos Antivirais , Sarampo/diagnóstico , Sarampo/epidemiologia , Sarampo/prevenção & controle , Vírus do Sarampo/genética , Surtos de Doenças , Hospitalização , Hospitais , Imunoglobulina M , Vacina contra Sarampo
15.
Hum Vaccin Immunother ; 20(1): 2338505, 2024 Dec 31.
Artigo em Inglês | MEDLINE | ID: mdl-38599768

RESUMO

The waning of maternal antibodies may cause infants to lose protection against measles before receiving measles-containing vaccine (MCV). The aim of this study is to investigate the changing characteristics and influencing factors of measles antibodies in preterm infants (PT), and to provide scientific basis for optimizing MCV vaccination strategy of the target population. Blood samples were collected from PT and full-term infants (FT) at the chronological age (CA) of 3, 6, and 12 months. Measles antibodies were quantitatively detected by enzyme-linked immunosorbent assay. Demographic and vaccination information were both collected. Kruskal-Wallis rank sum test was used to compare the measles antibodies among different gestation age (GA) groups, and multiple linear regression was performed to identify the correlative factors for the antibodies. Measles antibodies of PT decreased significantly with age increasing before MCV vaccination. The positive rates of antibodies of PT were 10.80% and 3.30% at the age of 3 and 6 months, respectively (p < .001). At 12 months, the measles antibodies and seropositive rate in the infants who received MCV vaccination increased sharply (p < .001). Regression analyzes showed that the younger the GA or the older the age, the lower the antibodies at 3 months(p < .001,p = .018); while the lower measles antibody levels at 3 months and older age predicted the lower antibodies at 6 months(p < .001, p = .029). PT were susceptible to measles due to the low level of maternally derived antibodies before MCV vaccination. More efforts should be considered to protect the vulnerable population during their early postnatal life.


Assuntos
Recém-Nascido Prematuro , Sarampo , Lactente , Humanos , Recém-Nascido , Vacina contra Sarampo , Sarampo/prevenção & controle , Vírus do Sarampo , Anticorpos Antivirais , China/epidemiologia , Vacinação
16.
MMWR Morb Mortal Wkly Rep ; 73(14): 295-300, 2024 Apr 11.
Artigo em Inglês | MEDLINE | ID: mdl-38602886

RESUMO

Measles is a highly infectious febrile rash illness and was declared eliminated in the United States in 2000. However, measles importations continue to occur, and U.S. measles elimination status was threatened in 2019 as the result of two prolonged outbreaks among undervaccinated communities in New York and New York City. To assess U.S. measles elimination status after the 2019 outbreaks and to provide context to understand more recent increases in measles cases, CDC analyzed epidemiologic and laboratory surveillance data and the performance of the U.S. measles surveillance system after these outbreaks. During January 1, 2020-March 28, 2024, CDC was notified of 338 confirmed measles cases; 97 (29%) of these cases occurred during the first quarter of 2024, representing a more than seventeenfold increase over the mean number of cases reported during the first quarter of 2020-2023. Among the 338 reported cases, the median patient age was 3 years (range = 0-64 years); 309 (91%) patients were unvaccinated or had unknown vaccination status, and 336 case investigations included information on ≥80% of critical surveillance indicators. During 2020-2023, the longest transmission chain lasted 63 days. As of the end of 2023, because of the absence of sustained measles virus transmission for 12 consecutive months in the presence of a well-performing surveillance system, U.S. measles elimination status was maintained. Risk for widespread U.S. measles transmission remains low because of high population immunity. However, because of the increase in cases during the first quarter of 2024, additional activities are needed to increase U.S. routine measles, mumps, and rubella vaccination coverage, especially among close-knit and undervaccinated communities. These activities include encouraging vaccination before international travel and rapidly investigating suspected measles cases.


Assuntos
Sarampo , Estados Unidos/epidemiologia , Humanos , Lactente , Recém-Nascido , Pré-Escolar , Criança , Adolescente , Adulto Jovem , Adulto , Pessoa de Meia-Idade , Sarampo/epidemiologia , Sarampo/prevenção & controle , Vírus do Sarampo , Vacinação , Cobertura Vacinal , Surtos de Doenças , Cidade de Nova Iorque , Vacina contra Sarampo-Caxumba-Rubéola
17.
Euro Surveill ; 29(16)2024 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-38639092

RESUMO

Since late 2023, the Metropolitan City of Milan and surrounding areas (northern Italy) have been experiencing a resurgence of measles, with most cases detected starting from January 2024. During this brief period, we observed measles in travellers from endemic areas, participants in international events, vaccinees and healthcare workers. Indigenous cases have also been identified. Even though we have not yet identified large and disruptive outbreaks, strengthening surveillance and vaccination activities is pivotal to help limit the impact of measles spread.


Assuntos
Vírus do Sarampo , Sarampo , Humanos , Vírus do Sarampo/genética , Sarampo/epidemiologia , Sarampo/prevenção & controle , Surtos de Doenças , Vacinação , Itália/epidemiologia , Vacina contra Sarampo
18.
J Infect ; 88(5): 106148, 2024 May.
Artigo em Inglês | MEDLINE | ID: mdl-38588959

RESUMO

OBJECTIVES: In this study, we investigated the causes of measles-like illnesses (MLI) in the Uganda national surveillance program in order to inform diagnostic assay selection and vaccination strategies. METHODS: We used metagenomic next-generation sequencing (M-NGS) on the Illumina platform to identify viruses associated with MLI (defined as fever and rash in the presence of either cough, coryza or conjunctivitis) in patient samples that had tested IgM negative for measles between 2010 and 2019. RESULTS: Viral genomes were identified in 87/271 (32%) of samples, of which 44/271 (16%) contained 12 known viral pathogens. Expected viruses included rubella, human parvovirus B19, Epstein Barr virus, human herpesvirus 6B, human cytomegalovirus, varicella zoster virus and measles virus (detected within the seronegative window-period of infection) and the blood-borne hepatitis B virus. We also detected Saffold virus, human parvovirus type 4, the human adenovirus C2 and vaccine-associated poliovirus type 1. CONCLUSIONS: The study highlights the presence of undiagnosed viruses causing MLI in Uganda, including vaccine-preventable illnesses. NGS can be used to monitor common viral infections at a population level, especially in regions where such infections are prevalent, including low and middle income countries to guide vaccination policy and optimize diagnostic assays.


Assuntos
Sequenciamento de Nucleotídeos em Larga Escala , Sarampo , Humanos , Uganda/epidemiologia , Pré-Escolar , Sarampo/epidemiologia , Sarampo/virologia , Lactente , Criança , Masculino , Feminino , Adolescente , Vírus/isolamento & purificação , Vírus/genética , Vírus/classificação , Genoma Viral , Adulto , Adulto Jovem , Viroses/epidemiologia , Viroses/virologia , Metagenômica , Vírus do Sarampo/genética , Vírus do Sarampo/isolamento & purificação , Vírus do Sarampo/classificação
19.
J Virol ; 98(5): e0169323, 2024 May 14.
Artigo em Inglês | MEDLINE | ID: mdl-38563763

RESUMO

In the early COVID-19 pandemic with urgent need for countermeasures, we aimed at developing a replicating viral vaccine using the highly efficacious measles vaccine as vector, a promising technology with prior clinical proof of concept. Building on our successful pre-clinical development of a measles virus (MV)-based vaccine candidate against the related SARS-CoV, we evaluated several recombinant MV expressing codon-optimized SARS-CoV-2 spike glycoprotein. Candidate V591 expressing a prefusion-stabilized spike through introduction of two proline residues in HR1 hinge loop, together with deleted S1/S2 furin cleavage site and additional inactivation of the endoplasmic reticulum retrieval signal, was the most potent in eliciting neutralizing antibodies in mice. After single immunization, V591 induced similar neutralization titers as observed in sera of convalescent patients. The cellular immune response was confirmed to be Th1 skewed. V591 conferred long-lasting protection against SARS-CoV-2 challenge in a murine model with marked decrease in viral RNA load, absence of detectable infectious virus loads, and reduced lesions in the lungs. V591 was furthermore efficacious in an established non-human primate model of disease (see companion article [S. Nambulli, N. Escriou, L. J. Rennick, M. J. Demers, N. L. Tilston-Lunel et al., J Virol 98:e01762-23, 2024, https://doi.org/10.1128/jvi.01762-23]). Thus, V591 was taken forward into phase I/II clinical trials in August 2020. Unexpected low immunogenicity in humans (O. Launay, C. Artaud, M. Lachâtre, M. Ait-Ahmed, J. Klein et al., eBioMedicine 75:103810, 2022, https://doi.org/10.1016/j.ebiom.2021.103810) revealed that the underlying mechanisms for resistance or sensitivity to pre-existing anti-measles immunity are not yet understood. Different hypotheses are discussed here, which will be important to investigate for further development of the measles-vectored vaccine platform.IMPORTANCESARS-CoV-2 emerged at the end of 2019 and rapidly spread worldwide causing the COVID-19 pandemic that urgently called for vaccines. We developed a vaccine candidate using the highly efficacious measles vaccine as vector, a technology which has proved highly promising in clinical trials for other pathogens. We report here and in the companion article by Nambulli et al. (J Virol 98:e01762-23, 2024, https://doi.org/10.1128/jvi.01762-23) the design, selection, and preclinical efficacy of the V591 vaccine candidate that was moved into clinical development in August 2020, 7 months after the identification of SARS-CoV-2 in Wuhan. These unique in-human trials of a measles vector-based COVID-19 vaccine revealed insufficient immunogenicity, which may be the consequence of previous exposure to the pediatric measles vaccine. The three studies together in mice, primates, and humans provide a unique insight into the measles-vectored vaccine platform, raising potential limitations of surrogate preclinical models and calling for further refinement of the platform.


Assuntos
Anticorpos Neutralizantes , Anticorpos Antivirais , Vacinas contra COVID-19 , COVID-19 , Vírus do Sarampo , SARS-CoV-2 , Glicoproteína da Espícula de Coronavírus , Animais , Glicoproteína da Espícula de Coronavírus/imunologia , Glicoproteína da Espícula de Coronavírus/genética , Camundongos , SARS-CoV-2/imunologia , SARS-CoV-2/genética , COVID-19/prevenção & controle , COVID-19/imunologia , COVID-19/virologia , Vacinas contra COVID-19/imunologia , Humanos , Vírus do Sarampo/imunologia , Vírus do Sarampo/genética , Anticorpos Antivirais/sangue , Anticorpos Antivirais/imunologia , Anticorpos Neutralizantes/imunologia , Anticorpos Neutralizantes/sangue , Modelos Animais de Doenças , Feminino , Vetores Genéticos , Vacina contra Sarampo/imunologia , Vacina contra Sarampo/genética , Camundongos Endogâmicos BALB C
20.
J Virol ; 98(5): e0176223, 2024 May 14.
Artigo em Inglês | MEDLINE | ID: mdl-38563762

RESUMO

Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) emerged at the end of 2019 and is responsible for the largest human pandemic in 100 years. Thirty-four vaccines are currently approved for use worldwide, and approximately 67% of the world population has received a complete primary series of one, yet countries are dealing with new waves of infections, variant viruses continue to emerge, and breakthrough infections are frequent secondary to waning immunity. Here, we evaluate a measles virus (MV)-vectored vaccine expressing a stabilized prefusion SARS-CoV-2 spike (S) protein (MV-ATU3-S2PΔF2A; V591) with demonstrated immunogenicity in mouse models (see companion article [J. Brunet, Z. Choucha, M. Gransagne, H. Tabbal, M.-W. Ku et al., J Virol 98:e01693-23, 2024, https://doi.org/10.1128/jvi.01693-23]) in an established African green monkey model of disease. Animals were vaccinated with V591 or the control vaccine (an equivalent MV-vectored vaccine with an irrelevant antigen) intramuscularly using a prime/boost schedule, followed by challenge with an early pandemic isolate of SARS-CoV-2 at 56 days post-vaccination. Pre-challenge, only V591-vaccinated animals developed S-specific antibodies that had virus-neutralizing activity as well as S-specific T cells. Following the challenge, V591-vaccinated animals had lower infectious virus and viral (v) RNA loads in mucosal secretions and stopped shedding virus in these secretions earlier. vRNA loads were lower in these animals in respiratory and gastrointestinal tract tissues at necropsy. This correlated with a lower disease burden in the lungs as quantified by PET/CT at early and late time points post-challenge and by pathological analysis at necropsy.IMPORTANCESevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is responsible for the largest human pandemic in 100 years. Even though vaccines are currently available, countries are dealing with new waves of infections, variant viruses continue to emerge, breakthrough infections are frequent, and vaccine hesitancy persists. This study uses a safe and effective measles vaccine as a platform for vaccination against SARS-CoV-2. The candidate vaccine was used to vaccinate African green monkeys (AGMs). All vaccinated AGMs developed robust antigen-specific immune responses. After challenge, these AGMs produced less virus in mucosal secretions, for a shorter period, and had a reduced disease burden in the lungs compared to control animals. At necropsy, lower levels of viral RNA were detected in tissue samples from vaccinated animals, and the lungs of these animals lacked the histologic hallmarks of SARS-CoV-2 disease observed exclusively in the control AGMs.


Assuntos
Vacinas contra COVID-19 , COVID-19 , Vírus do Sarampo , SARS-CoV-2 , Glicoproteína da Espícula de Coronavírus , Animais , Glicoproteína da Espícula de Coronavírus/imunologia , Glicoproteína da Espícula de Coronavírus/genética , Chlorocebus aethiops , SARS-CoV-2/imunologia , SARS-CoV-2/genética , COVID-19/prevenção & controle , COVID-19/imunologia , COVID-19/virologia , Vírus do Sarampo/imunologia , Vírus do Sarampo/genética , Vacinas contra COVID-19/imunologia , Humanos , Anticorpos Antivirais/imunologia , Anticorpos Antivirais/sangue , Anticorpos Neutralizantes/imunologia , Anticorpos Neutralizantes/sangue , Vetores Genéticos , Células Vero , Pandemias/prevenção & controle , Feminino , Betacoronavirus/imunologia , Betacoronavirus/genética , Pneumonia Viral/prevenção & controle , Pneumonia Viral/virologia , Pneumonia Viral/imunologia , Infecções por Coronavirus/prevenção & controle , Infecções por Coronavirus/imunologia , Infecções por Coronavirus/virologia , Infecções por Coronavirus/veterinária , Vacinas Virais/imunologia , Vacinas Virais/genética , Vacinas Virais/administração & dosagem , Modelos Animais de Doenças
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