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1.
Nat Commun ; 15(1): 4841, 2024 Jun 06.
Article in English | MEDLINE | ID: mdl-38844783

ABSTRACT

Kaposi sarcoma associated herpesvirus (KSHV) is associated with around 1% of all human tumors, including the B cell malignancy primary effusion lymphoma (PEL), in which co-infection with the Epstein Barr virus (EBV) can almost always be found in malignant cells. Here, we demonstrate that KSHV/EBV co-infection of mice with reconstituted human immune systems (humanized mice) leads to IgM responses against both latent and lytic KSHV antigens, and expansion of central and effector memory CD4+ and CD8+ T cells. Among these, KSHV/EBV dual-infection allows for the priming of CD8+ T cells that are specific for the lytic KSHV antigen K6 and able to kill KSHV/EBV infected B cells. This suggests that K6 may represent a vaccine antigen for the control of KSHV and its associated pathologies in high seroprevalence regions, such as Sub-Saharan Africa.


Subject(s)
B-Lymphocytes , CD8-Positive T-Lymphocytes , Herpesvirus 8, Human , Animals , Herpesvirus 8, Human/immunology , Humans , B-Lymphocytes/immunology , Mice , CD8-Positive T-Lymphocytes/immunology , Epstein-Barr Virus Infections/immunology , Epstein-Barr Virus Infections/virology , Coinfection/immunology , Coinfection/virology , CD4-Positive T-Lymphocytes/immunology , Herpesvirus 4, Human/immunology , Herpesviridae Infections/immunology , Herpesviridae Infections/virology , Immunoglobulin M/immunology , Antigens, Viral/immunology , Mice, SCID , Lymphoma, Primary Effusion/immunology , Lymphoma, Primary Effusion/virology , Antibodies, Viral/immunology
2.
Vopr Virusol ; 69(2): 134-150, 2024 May 06.
Article in Russian | MEDLINE | ID: mdl-38843020

ABSTRACT

INTRODUCTION: SARS-CoV-2 infection causes immune disorders that create conditions for the reactivation of human herpesviruses (HHVs). However, the estimates of the HHVs effect on the course and outcome of COVID-19 are ambiguous. Аim - to study the possible relationship between the HHV reactivation and the adverse outcome of COVID-19. MATERIALS AND METHODS: Postmortem samples from the brain, liver, spleen, lymph nodes and lungs were obtained from 59 patients treated at the Moscow Infectious Diseases Hospital No.1 in 2021-2023. The group 1 comprised 39 patients with fatal COVID-19; group 2 (comparison group) included 20 patients not infected with SARS-CoV-2 who died from various somatic diseases. HHV DNA and SARS-CoV-2 RNA were determined by PCR. RESULTS: HHV DNA was found in autopsy samples from all patients. In group 1, EBV was most often detected in lymph nodes (94%), HHV-6 in liver (68%), CMV in lymph nodes (18%), HSV in brain (16%), VZV in lung and spleen (3% each). The detection rates of HHVs in both groups was similar. Important differences were found in viral load. In patients with COVID-19, the number of samples containing more than 1,000 copies of HHV DNA per 100,000 cells was 52.4%, in the comparison group - 16.6% (p < 0.002). An association has been established between the reactivation of HSV and HHV-6 and the severity of lung damage. Reactivation of EBV correlated with increased levels of liver enzymes. CONCLUSION: Reactivation of HHVs in patients with fatal COVID-19 was associated with severe lung and liver damages, which indicates a link between HHV reactivation and COVID-19 deaths.


Subject(s)
Autopsy , COVID-19 , DNA, Viral , Herpesviridae Infections , Herpesviridae , SARS-CoV-2 , Humans , COVID-19/virology , COVID-19/mortality , COVID-19/diagnosis , COVID-19/pathology , Female , Male , DNA, Viral/genetics , SARS-CoV-2/genetics , SARS-CoV-2/isolation & purification , Middle Aged , Aged , Herpesviridae/genetics , Herpesviridae/isolation & purification , Herpesviridae Infections/virology , Herpesviridae Infections/mortality , Adult , Lung/virology , Lung/pathology , Virus Activation , Herpesvirus 6, Human/genetics , Herpesvirus 6, Human/isolation & purification , Moscow , Viral Load , Lymph Nodes/virology , Lymph Nodes/pathology , Aged, 80 and over , Spleen/virology , Spleen/pathology
3.
J Med Virol ; 96(5): e29654, 2024 May.
Article in English | MEDLINE | ID: mdl-38727099

ABSTRACT

Human Herpesvirus 8 (HHV-8) has been classified by sequence analysis of open reading frame (ORF) K1, ORF K15, and variable sequence loci within the central constant region. The purpose of this study was to examine the molecular epidemiology of HHV-8 in an Irish population. This retrospective study included 30 patients who had HHV-8 DNA detected in plasma. Nested end-point PCR was used to characterise four regions of the HHV-8 genome, K1, T0.7 (K12), ORF 75, and K15. Sequencing data were obtained for 23 specimens from 19 patients. Phylogenetic analysis of ORF K1 demonstrated that subtypes A, B, C and F were present in 37%, 11%, 47% and 5%, respectively. For T0.7 and ORF 75, sequencing data were obtained for 12 patients. For T0.7, subtypes A/C, J, B, R and Q were present in 58%, 17%, 8%, 8%, and 8%, respectively. For ORF 75, subtypes A, B, C and D were present in 58%, 8%, 25%, and 8%, respectively. K15 sequences were determined for 13 patients. 69% had the P allele and 31% had the M allele. The data generated by this study demonstrate that a broad variety of HHV-8 subtypes are represented in patients exhibiting HHV-8-related disease in Ireland, a low prevalence country. The predominance of C and A K1 subtypes was as expected for a Western European population. The 31% prevalence for K15 subtype M was higher than expected for a Western European population. This may represent the changing and evolving epidemiology in Ireland due to altered migration patterns.


Subject(s)
DNA, Viral , Herpesviridae Infections , Herpesvirus 8, Human , Molecular Epidemiology , Phylogeny , Sequence Analysis, DNA , Humans , Ireland/epidemiology , Herpesviridae Infections/epidemiology , Herpesviridae Infections/virology , Herpesvirus 8, Human/genetics , Herpesvirus 8, Human/classification , Herpesvirus 8, Human/isolation & purification , Male , Female , Retrospective Studies , Middle Aged , Adult , DNA, Viral/genetics , Aged , Young Adult , Polymerase Chain Reaction , Genotype , Adolescent , Open Reading Frames , Aged, 80 and over , Child , Molecular Sequence Data
4.
Sci Rep ; 14(1): 10651, 2024 05 09.
Article in English | MEDLINE | ID: mdl-38724545

ABSTRACT

Herpesviruses are large double-stranded DNA viruses that cause infections in animals and humans with a characteristic of latent infectious within specific tissues. Bats are natural hosts of variety human-infecting viruses and recently have been described as hosts for herpesviruses in several countries around the world. In this study we collected 140 insectivorous bats in the neighboring urban areas of Wuhan City, Hubei Province in the central China between 2020 and 2021. Nested PCR targeting the dpol gene sequence indicated that a total of 22 individuals (15.7% of the sample) tested positive for herpesvirus with 4 strains belonging to the genus Betaherpesvirus and the remaining 18 strains classified as Gammahersvirus. Furthermore, the herpesvirus prevalence in Rhinolophus pusillus was higher at 26.3%, compared to 8.4% in Myotis davidii. The RP701 strain from R. pusillus was the predominant gammaherpesvirus strain detected in bats, accounting for 94.4% (17/18) of all strains. The variations in γ-herpesviruses genomic sequences was evident in phylogenetic tree, where RP701 strain was clustered together with ruminant γ-herpesviruses, while MD704 strain formed a distinct clade with a hedgehog γ-herpesvirus. Four betaherpesviruses exclusively identified from M. davidii, with nucleotide identities ranging from 79.7 to 82.6% compared to known betaherpesviruses. Our study provided evidence that M. davidii can sever as natural host for ß-herpesviruses, which extended the host species range. In conclusion, we found that bats from central China harbored novel ß-herpesviruses and γ-herpesviruses which were phylogenetically related to ruminant γ-herpesvirus and hedgehog γ-herpesvirus. Our study indicates that bats are natural hosts of ß- and γ-herpesviruses and further studies are needed to determine whether there is cross-species transmission of herpesviruses between bats and other animals, or humans.


Subject(s)
Betaherpesvirinae , Chiroptera , Gammaherpesvirinae , Herpesviridae Infections , Phylogeny , Animals , Chiroptera/virology , China/epidemiology , Gammaherpesvirinae/genetics , Gammaherpesvirinae/isolation & purification , Gammaherpesvirinae/classification , Betaherpesvirinae/genetics , Betaherpesvirinae/isolation & purification , Betaherpesvirinae/classification , Herpesviridae Infections/veterinary , Herpesviridae Infections/virology , Herpesviridae Infections/epidemiology , Genome, Viral , DNA, Viral/genetics
5.
Vet Q ; 44(1): 1-12, 2024 Dec.
Article in English | MEDLINE | ID: mdl-38726839

ABSTRACT

Duck plague (DP) is an acute, contagious and fatal disease, caused by duck enteritis virus (DEV), with worldwide distribution causing several outbreaks and posing severe economic losses. The present study was carried out with a goal of development of a live attenuated cell culture based DP vaccine using an Indian strain of DEV and evaluation of its safety, efficacy along with complete genome analysis. The live attenuated DP vaccine (DPvac/IVRI-19) was developed by serial propagation of a virulent isolate of DEV (DEV/India/IVRI-2016) in the chicken embryo fibroblast (CEF) primary cell culture. Adaptation of DEV in CEF cell culture was indicated by more rapid appearance of cytopathic effects (CPE) and gradual increase of virus titre, which reached up to 107.5 TCID50/mL after 41 passages. The safety, immunogenicity and efficacy of the vaccine were determined by immunization trials in ducklings. The DPvac/IVRI-19 was found to be avirulent and completely safe in the ducklings. Further, the vaccine induced both humoral and cell mediated immune responses and afforded 100% protection against the virulent DEV challenge. A comparison of the whole genome of DPvac/IVRI-19 (MZ911871) and DEV/India/IVRI-2016 (MZ824102) revealed significant number of mutations, which might be associated with viral attenuation. Phylogenetic tree of DEV/India/IVRI-2016 revealed its evolutionary relationship with other DEV isolates, but it formed a separate cluster with certain unique mutations. Thus, with the proven safety and 100% efficacy, the DPvac/IVRI-19 is suitable for large scale production with precisely pure form of vaccine and has potential utility at national and global levels.


Subject(s)
Ducks , Fibroblasts , Mardivirus , Poultry Diseases , Vaccines, Attenuated , Viral Vaccines , Animals , Vaccines, Attenuated/immunology , Ducks/virology , Poultry Diseases/prevention & control , Poultry Diseases/virology , Fibroblasts/virology , Chick Embryo , Viral Vaccines/immunology , Mardivirus/immunology , Mardivirus/pathogenicity , Herpesviridae Infections/veterinary , Herpesviridae Infections/prevention & control , Herpesviridae Infections/virology , India
6.
Sci Rep ; 14(1): 11783, 2024 05 23.
Article in English | MEDLINE | ID: mdl-38782944

ABSTRACT

Cyprinid herpesvirus is a causative agent of a destructive disease in common and koi carp (Cyprinus carpio), which leads to substantial global financial losses in aquaculture industries. Among the strains of C. herpesvirus, C. herpesvirus 1 (CyHV-1) and C. herpesvirus 3 (CyHV-3) are known as highly pathogenic to carp fishes in Europe, Asia, and Africa. To date, no effective vaccine has been developed to combat these viruses. This study aimed to develop unique multi-epitope subunit vaccines targeting the CyHV-1 and CyHV-3 using a reverse vaccinology approach. The study began with a comprehensive literature review to identify the most critical proteins, which were then subjected to in silico analyses to predict highly antigenic epitopes. These analyses involved assessing antigenicity, transmembrane topology screening, allergenecity, toxicity, and molecular docking approaches. We constructed two multi-epitope-based vaccines incorporating a suitable adjuvant and appropriate linkers. It revealed that both the vaccines are non-toxic and immunogenic. The tertiary structures of the vaccine proteins were generated, refined, and validated to ensure their suitability. The binding affinity between the vaccine constructs and TLR3 and TLR5 receptors were assessed by molecular docking studies. Molecular dynamics simulations indicated that vaccine construct V1 exhibited greater stability with both TLR3 and TLR5 based on RMSD analysis. Hydrogen bond analysis revealed a stronger binding affinity between the vaccine constructs and TLR5 compared to TLR3. Furthermore, MM-PBSA analysis suggested that both vaccine constructs exhibited a better affinity for TLR5. Considering all aspects, the results suggest that in silico development of CyHV vaccines incorporating multiple epitopes holds promise for management of diseases caused by CyHV-1 and CyHV-3. However, further in vivo trials are highly recommended to validate the efficacies of these vaccines.


Subject(s)
Carps , Fish Diseases , Herpesviridae Infections , Herpesviridae , Molecular Docking Simulation , Vaccines, Subunit , Animals , Vaccines, Subunit/immunology , Carps/virology , Carps/immunology , Herpesviridae/immunology , Fish Diseases/prevention & control , Fish Diseases/immunology , Fish Diseases/virology , Herpesviridae Infections/prevention & control , Herpesviridae Infections/immunology , Herpesviridae Infections/veterinary , Herpesviridae Infections/virology , Viral Vaccines/immunology , Epitopes/immunology , Epitopes/chemistry , Computational Biology/methods , Herpesvirus Vaccines/immunology , Immunoinformatics
7.
Virol J ; 21(1): 115, 2024 May 22.
Article in English | MEDLINE | ID: mdl-38778352

ABSTRACT

BACKGROUND: Feline herpesvirus type 1 (FHV-1) is a life threatening highly contagious virus in cats and typically causes upper respiratory tract infections as well as conjunctival and corneal ulcers. Genetic variability could alter the severity of diseases and clinical signs. Despite regular vaccine practices against FHV-1 in China, new FHV-1 cases still commonly occur. The genetic and phylogenetic characteristics of FHV-1 in Kunshan city of China has not been studied yet. Therefore, this study was planned to investigate the prevalence, molecular characteristics of circulating strains, and phylogenetic analyses of FHV-1. This is the first report of molecular epidemiology and phylogenetic characteristics of FHV-1 from naturally infected cats in Kunshan, China. METHODS: The occulo-nasal swabs were collected from diseased cats showing respiratory distress, conjunctivitis, and corneal ulcers at different veterinary clinics in Kunshan from 2022 to 2023. Clinical data and general information were recorded. Swab samples were processed for preliminary detection of FHV-1. Thymidine kinase (TK), glycoprotein B (gB) and glycoprotein D (gD) genes were sequenced and analyzed to investigate genetic diversity and evolution of FHV-1. RESULTS: The FHV-1 genome was detected in 43 (43/200, 21.5%) samples using RT-PCR targeting the TK gene. Statistical analysis showed a significant correlation between age, vaccination status and living environment (p < 0.05) with FHV-1 positivity, while a non-significant correlation was observed for FHV-1 positivity and sex of cats (p > 0.05). Additionally, eight FHV-1 positive cats were co-infected with feline calicivirus (8/43,18.6%). FHV-1 identified in the present study was confirmed as FHV-1 based on phylogenetic analyses. The sequence analyses revealed that 43 FHV-1 strains identified in the present study did not differ much with reference strains within China and worldwide. A nucleotide homology of 99-100% was determined among gB, TK and gD genes nucleotide sequences when compared with standard strain C-27 and vaccine strains. Amino acid analysis showed some amino acid substitutions in TK, gB and gD protein sequences. A potential N-linked glycosylation site was observed in all TK protein sequences. Phylogenetic analyses revealed minor variations and short evolutionary distance among FHV-1 strains detected in this study. CONCLUSIONS: Our findings indicate that genomes of 43 FHV-1 strains are highly homogenous and antigenically similar, and the degree of variation in major envelope proteins between strains is low. This study demonstrated some useful data about prevalence, genetic characteristics, and evolution of FHV-1 in Kunshan, which may aid in future vaccine development.


Subject(s)
Cat Diseases , Genetic Variation , Herpesviridae Infections , Molecular Epidemiology , Phylogeny , Varicellovirus , Animals , Cats , China/epidemiology , Cat Diseases/virology , Cat Diseases/epidemiology , Herpesviridae Infections/epidemiology , Herpesviridae Infections/veterinary , Herpesviridae Infections/virology , Varicellovirus/genetics , Varicellovirus/classification , Female , Male , Prevalence
8.
Rev Med Virol ; 34(3): e2550, 2024 May.
Article in English | MEDLINE | ID: mdl-38801246

ABSTRACT

Alzheimer's disease (AD) is a real and current scientific and societal challenge. Alzheimer's disease is characterised by a neurodegenerative neuroinflammatory process, but the etiopathogenetic mechanisms are still unclear. The possible infectious aetiology and potential involvement of Herpes viruses as triggers for the formation of extracellular deposits of amyloid beta (Aß) peptide (amyloid plaques) and intraneuronal aggregates of hyperphosphorylated and misfold could be a possible explanation. In fact, the possible genetic interference of Herpes viruses with the genome of the host neuronal cell or the stimulation of the infection to a continuous immune response with a consequent chronic inflammation could constitute those mechanisms underlying the development of AD, with possible implications in the understanding and management of the disease. Herpes viruses could be significantly involved in the pathogenesis of AD and in particular, their ability to reactivate in particular conditions such as immunocompromise and immunosenescence, could explain the neurological damage characteristic of AD. Our review aims to evaluate the state of the art of knowledge and perspectives regarding the potential relationship between Herpes viruses and AD, in order to be able to identify the possible etiopathogenetic mechanisms and the possible therapeutic implications.


Subject(s)
Alzheimer Disease , Herpesviridae Infections , Herpesviridae , Humans , Alzheimer Disease/virology , Alzheimer Disease/immunology , Herpesviridae/pathogenicity , Herpesviridae/genetics , Herpesviridae/physiology , Herpesviridae Infections/virology , Herpesviridae Infections/immunology , Amyloid beta-Peptides/metabolism , Animals
9.
J Clin Invest ; 134(9)2024 May 01.
Article in English | MEDLINE | ID: mdl-38690731

ABSTRACT

Herpesviruses establish latent infections, and most reactivate frequently, resulting in symptoms and virus shedding in healthy individuals. In immunocompromised patients, reactivating virus can cause severe disease. Persistent EBV has been associated with several malignancies in both immunocompromised and nonimmunocompromised persons. Reactivation and shedding occur with most herpesviruses, despite potent virus-specific antibodies and T cell immunity as measured in the blood. The licensure of therapeutic vaccines to reduce zoster indicates that effective therapeutic vaccines for other herpesviruses should be feasible. However, varicella-zoster virus is different from other human herpesviruses in that it is generally only shed during varicella and zoster. Unlike prophylactic vaccines, in which the correlate of immunity is antibody function, T cell immunity is the correlate of immunity for the only effective therapeutic herpesvirus vaccine-zoster vaccine. While most studies of therapeutic vaccines have measured immunity in the blood, cellular immunity at the site of reactivation is likely critical for an effective therapeutic vaccine for certain viruses. This Review summarizes the status of therapeutic vaccines for herpes simplex virus, cytomegalovirus, and Epstein-Barr virus and proposes approaches for future development.


Subject(s)
Herpesvirus Vaccines , Humans , Herpesvirus Vaccines/immunology , Herpesvirus Vaccines/therapeutic use , Herpesviridae Infections/immunology , Herpesviridae Infections/prevention & control , Herpesviridae Infections/virology , Herpesvirus 4, Human/immunology , Animals , Herpesviridae/immunology , Virus Activation/immunology , Cytomegalovirus/immunology
10.
Viruses ; 16(5)2024 05 08.
Article in English | MEDLINE | ID: mdl-38793621

ABSTRACT

Bovine gammaherpesvirus 4 (BoGHV4) is a member of the Gammaherspivirinae subfamily, Rhadinovirus genus. Its natural host is the bovine, and it is prevalent among the global cattle population. Although the complete genome of BoGHV4 has been successfully sequenced, the functions of most of its genes remain unknown. Currently, only six strains of BoGHV4, all belonging to Genotype 1, have been sequenced. This is the first report of the nearly complete genome of Argentinean BoGHV4 strains isolated from clinical cases of abortion, representing the first BoGHV4 Genotype 2 and 3 genomes described in the literature. Both Argentinean isolates presented the highest nt p-distance values, indicating a greater level of divergence. Overall, the considerable diversity observed in the complete genomes and open reading frames underscores the distinctiveness of both Argentinean isolates compared to the existing BoGHV4 genomes. These findings support previous studies that categorized the Argentinean BoGHV4 strains 07-435 and 10-154 as Genotypes 3 and 2, respectively. The inclusion of these sequences represents a significant expansion to the currently limited pool of BoGHV4 genomes while providing an important basis to increase the knowledge of local isolates.


Subject(s)
Abortion, Veterinary , Cattle Diseases , Genome, Viral , Genotype , Herpesviridae Infections , Herpesvirus 4, Bovine , Phylogeny , Whole Genome Sequencing , Animals , Cattle , Herpesvirus 4, Bovine/genetics , Herpesvirus 4, Bovine/isolation & purification , Abortion, Veterinary/virology , Herpesviridae Infections/veterinary , Herpesviridae Infections/virology , Cattle Diseases/virology , Female , Argentina , Open Reading Frames , Pregnancy , Genetic Variation , DNA, Viral/genetics
11.
Res Vet Sci ; 174: 105306, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38761676

ABSTRACT

Bovine alphaherpesvirus 1 (BoAHV-1) is the most important respiratory and reproductive disease-causing pathogen in dairy cattle. Despite BoAHV-1 has become widespread and a major challenge to the dairy industry, little is known about its epidemiology in dairy herds in Ethiopia. A cross-sectional study was conducted from November 2022 to May 2023 to determine the seroprevalence and potential risk factors associated with BoAHV-1 seropositivity in dairy herds in North Shewa, the central highlands of Ethiopia. A total of 511 blood samples were collected from randomly selected cattle herds (n = 142) and examined antibodies against BoAHV-1 using ELISA test. A retrospective survey was also done to gather information related to reproductive disorders. The overall seroprevalence of BoAHV-1 was 61.84% (95% CI: 57.53-65.97) at the animal level and 85.21% (95% CI: 78.28-90.21) at the herd level. Multivariable logistic analysis revealed that the risk of being BoAHV-1 seropositive was nine times higher in cows older than six years (OR = 9.16; 95% CI: 3.09-27.16; P = 0.000), five times higher (OR = 4.51; 95% CI: 1.23-16.53; P = 0.019) in cows with a history of abortion, three times higher (OR = 2.75; 95% CI: 1.72-4.22; P = 0.029) in cows with a history of retained fetal membrane, and three times higher (OR = 2.83; 1.86-9.31; P = 0.03) in animals with clinical signs of ocular and/or nasal discharge. This study demonstrates a significant circulating of BoAHV-1 in the dairy cattle population in study districts. Thus, a comprehensive approach that includes strict farm biosecurity and vaccination should be practiced for effective BoAHV-1 control and prevention and to promote the growing dairy industry in the central highlands of Ethiopia.


Subject(s)
Cattle Diseases , Herpesviridae Infections , Animals , Cattle , Ethiopia/epidemiology , Seroepidemiologic Studies , Cattle Diseases/epidemiology , Cattle Diseases/virology , Cross-Sectional Studies , Female , Herpesviridae Infections/veterinary , Herpesviridae Infections/epidemiology , Herpesviridae Infections/virology , Dairying , Risk Factors , Retrospective Studies , Antibodies, Viral/blood , Herpesvirus 1, Bovine/immunology
12.
Sci Rep ; 14(1): 10169, 2024 05 03.
Article in English | MEDLINE | ID: mdl-38702375

ABSTRACT

Bovine viral diarrhea virus (BVDV) is considered to be the most common agent of severe diarrhea in cattle worldwide, causing fever, diarrhea, ulcers, and abortion. Bovine herpesvirus 1 (BoHV-1) is also a major bovine respiratory disease agent that spreads worldwide and causes extensive damage to the livestock industry. Recombinase polymerase amplification (RPA) is a novel nucleic acid amplification method with the advantages of high efficiency, rapidity and sensitivity, which has been widely used in the diagnosis of infectious diseases. A dual RPA assay was developed for the simultaneous detection of BVDV and BoHV-1. The assay was completed at a constant temperature of 37 °C for 30 min. It was highly sensitive and had no cross-reactivity with other common bovine viruses. The detection rate of BVDV RPA in clinical samples (36.67%) was higher than that of PCR (33.33%), the detection rate of BoHV-1 RPA and PCR were equal. Therefore, the established dual RPA assay for BVDV and BoHV-1 could be a potential candidate for use as an immediate diagnostic.


Subject(s)
Diarrhea Viruses, Bovine Viral , Herpesvirus 1, Bovine , Nucleic Acid Amplification Techniques , Recombinases , Animals , Cattle , Herpesvirus 1, Bovine/genetics , Herpesvirus 1, Bovine/isolation & purification , Nucleic Acid Amplification Techniques/methods , Recombinases/metabolism , Diarrhea Viruses, Bovine Viral/genetics , Diarrhea Viruses, Bovine Viral/isolation & purification , Sensitivity and Specificity , Bovine Virus Diarrhea-Mucosal Disease/virology , Bovine Virus Diarrhea-Mucosal Disease/diagnosis , Herpesviridae Infections/veterinary , Herpesviridae Infections/virology , Herpesviridae Infections/diagnosis , DNA, Viral/genetics
13.
PLoS One ; 19(5): e0303475, 2024.
Article in English | MEDLINE | ID: mdl-38820366

ABSTRACT

INTRODUCTION: Koi herpesvirus disease (KHVD) is attributed to cyprinid herpesvirus-3 (CyHV-3) and predominantly affects common carp and ornamental koi carp (Cyprinus carpio). This viral infection leads to substantial morbidity and mortality among these fish species. This study aimed to confirm the presence of KHVD in the Kurdistan region of Iraq by employing clinical and optimized molecular assays on fish populations experiencing high mortality among common carp in carp farms. METHODOLOGY: The present research was conducted in the Kalar district, situated at the heart of Garmian province in Iraqi Kurdistan. four samples from common carp fish farms were received by our laboratory. These samples specifically displaying clinical signs associated with koi herpesvirus (KHV) infection, were subjected to clinical examinations, and PCR assay in addition to sequence analysis. RESULTS: The results of the current study revealed that the observed clinical signs, particularly gill necrosis, skin lesions, and sunken eyes, closely resembled the clinical signs of KHVD in common carp fish. In addition, PCR, nested PCR, and sequence analysis assay detected appropriate DNA fragments of the CyHV-3 major capsid protein gene confirming the first detection of KHVD in common carp fish in the Kurdistan region of Iraq. CONCLUSION: In this study, the results confirm the detection of KHVD in the Kurdistan region, Iraq, for the first time. This study revealed that CyHV-3 was responsible for KHVD-related signs and symptoms. Based on these results, it is strongly recommended that comprehensive studies be initiated to investigate the prevalence and distribution of CyHV-3.


Subject(s)
Carps , Fish Diseases , Herpesviridae Infections , Herpesviridae , Animals , Iraq/epidemiology , Carps/virology , Herpesviridae/genetics , Herpesviridae/isolation & purification , Herpesviridae Infections/veterinary , Herpesviridae Infections/epidemiology , Herpesviridae Infections/virology , Fish Diseases/virology , Fish Diseases/epidemiology , Polymerase Chain Reaction , DNA, Viral/genetics
14.
Braz J Microbiol ; 55(2): 1949-1959, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38696038

ABSTRACT

Ovine gammaherpesvirus 2 (OvGHV2) produces sheep-associated malignant catarrhal fever (SA-MCF), a frequently lethal, lymphoproliferative disease that is characterized by widespread vascular lesions. Most studies that evaluated the viral load in tissues of animals with SA-MCF were done in the Northern Hemisphere, with scant information from the Southern part of the globe. This study investigated the viral load of OvGHV2 in the tissues of cattle and an underdeveloped fetus with SA-MCF from three distinct biomes of Brazil. All animals had clinical and histopathological manifestations consistent with SA-MCF. Molecular testing identified the OvGHV2 tegument protein and glycoprotein B genes in the tissues of all animals and the fetus. Viral quantification based on the DNA polymerase gene detected elevated loads of OvGHV2 in tissues with histopathological evidence of SA-MCF and organs with unknown histological data, except for the tissues of the fetus, where the viral load was comparatively reduced. The viral loads detected in multiple organs of cattle from this study with SA-MCF are consistent with those identified in different animal species from the USA and Europe. The detection of a low viral load of OvGHV2 in fetal tissue confirmed transplacental dissemination since elevated viral loads were detected in multiple tissues of the cow with SA-MCF. Furthermore, the elevated viral loads detected in the pulmonary tissues of cattle with interstitial pneumonia indicate that OvGHV2 is an inductor of pulmonary disease in cattle.


Subject(s)
Gammaherpesvirinae , Malignant Catarrh , Viral Load , Animals , Malignant Catarrh/virology , Malignant Catarrh/pathology , Gammaherpesvirinae/isolation & purification , Gammaherpesvirinae/genetics , Cattle , Brazil , Sheep , Female , Sheep Diseases/virology , Sheep Diseases/pathology , DNA, Viral/genetics , Cattle Diseases/virology , Herpesviridae Infections/veterinary , Herpesviridae Infections/virology , Fetus/virology
15.
Virol J ; 21(1): 117, 2024 May 27.
Article in English | MEDLINE | ID: mdl-38802935

ABSTRACT

BACKGROUND: Equine herpesvirus type 1 (EHV-1) is commonly associated with horse abortion. Currently, there are no reported cases of abortion resulting from EHV-1 infection in donkeys. RESULTS: This was the first survey-based study of Chinese donkeys. The presence of EHV-1 was identified by PCR. This survey was conducted in Chabuchar County, North Xinjiang, China, in 2020. A donkey EHV-1 strain (Chabuchar/2020) was successfully isolated in MDBK cells. Seventy-two of 100 donkey sera were able to neutralize the isolated EHV-1. Moreover, the ORF33 sequence of the donkey-origin EHV-1 Chabuchar/2020 strain showed high levels of similarity in both its nucleotide (99.7‒100%) and amino acid (99.5‒100%) sequences, with those of horse EHV-1 strains. EHV-1 Chabuchar/2020 showed significant consistency and was classified within cluster 1 of horse EHV-1 strains. Further, analysis of the expected ORF30 nucleotide sequence revealed that donkey EHV-1 strains contained guanine at position 2254, resulting in a change to aspartic acid at position 752 of the viral DNA polymerase. Therefore, these strains were classified as horse neuropathogenic strains. Lastly, a phylogenetic tree was constructed using the partial ORF68 nucleotide sequences, showing that the identified donkey EHV-1 strain and the EHV-1 strain found in aborted Yili horses in China comprised a novel independent VIII group. CONCLUSION: This study showed the first isolation and identification of EHV-1 as an etiological agent of abortions in donkeys. Further analysis of the ORF33, ORF30, and ORF68 sequences indicated that the donkey EHV-1 contained the neuropathogenic genotype of strains in the VIII group. It is thus important to be aware of EHV-1 infection in the donkey population, even though the virus has only been identified in donkey abortions in China.


Subject(s)
Equidae , Herpesviridae Infections , Herpesvirus 1, Equid , Lung , Phylogeny , Animals , Equidae/virology , Herpesvirus 1, Equid/isolation & purification , Herpesvirus 1, Equid/genetics , Herpesvirus 1, Equid/classification , China , Herpesviridae Infections/veterinary , Herpesviridae Infections/virology , Lung/virology , Aborted Fetus/virology , Female , DNA, Viral/genetics , Open Reading Frames , Sequence Analysis, DNA , Pregnancy , Polymerase Chain Reaction
16.
Viruses ; 16(5)2024 05 08.
Article in English | MEDLINE | ID: mdl-38793627

ABSTRACT

Equid herpesvirus 4 (EHV-4) is a common respiratory pathogen in horses. It sporadically induces abortion or neonatal death. Although its contribution in neurological disorders is not clearly demonstrated, there is a strong suspicion of its involvement. Despite preventive treatments using vaccines against EHV-1/EHV-4, the resurgence of alpha-EHV infection still constitutes an important threat to the horse industry. Yet very few studies have been conducted on the search for antiviral molecules against EHV-4. A screening of 42 antiviral compounds was performed in vitro on equine fibroblast cells infected with the EHV-4 405/76 reference strain (VR2230). The formation of cytopathic effects was monitored by real-time cell analysis (RTCA), and the viral load was quantified by quantitative PCR. Aciclovir, the most widely used antiviral against alpha-herpesviruses in vivo, does not appear to be effective against EHV-4 in vitro. Potential antiviral activities were confirmed for eight molecules (idoxuridine, vidarabine, pritelivir, cidofovir, valganciclovir, ganciclovir, aphidicolin, and decitabine). Decitabine demonstrates the highest efficacy against EHV-4 in vitro. Transcriptomic analysis revealed the up-regulation of various genes implicated in interferon (IFN) response, suggesting that decitabine triggers the immune antiviral pathway.


Subject(s)
Antiviral Agents , Decitabine , Herpesvirus 4, Equid , Immunity, Innate , Animals , Antiviral Agents/pharmacology , Horses , Decitabine/pharmacology , Immunity, Innate/drug effects , Herpesvirus 4, Equid/drug effects , Fibroblasts/drug effects , Fibroblasts/virology , Herpesviridae Infections/drug therapy , Herpesviridae Infections/virology , Herpesviridae Infections/veterinary , Herpesviridae Infections/immunology , Horse Diseases/virology , Horse Diseases/drug therapy , Horse Diseases/immunology , Viral Load/drug effects , Cell Line , Virus Replication/drug effects , Drug Evaluation, Preclinical
17.
Viruses ; 16(5)2024 05 08.
Article in English | MEDLINE | ID: mdl-38793630

ABSTRACT

During viral infection, the innate immune system utilizes a variety of specific intracellular sensors to detect virus-derived nucleic acids and activate a series of cellular signaling cascades that produce type I IFNs and proinflammatory cytokines and chemokines. Kaposi's sarcoma-associated herpesvirus (KSHV) is an oncogenic double-stranded DNA virus that has been associated with a variety of human malignancies, including Kaposi's sarcoma, primary effusion lymphoma, and multicentric Castleman disease. Infection with KSHV activates various DNA sensors, including cGAS, STING, IFI16, and DExD/H-box helicases. Activation of these DNA sensors induces the innate immune response to antagonize the virus. To counteract this, KSHV has developed countless strategies to evade or inhibit DNA sensing and facilitate its own infection. This review summarizes the major DNA-triggered sensing signaling pathways and details the current knowledge of DNA-sensing mechanisms involved in KSHV infection, as well as how KSHV evades antiviral signaling pathways to successfully establish latent infection and undergo lytic reactivation.


Subject(s)
DNA, Viral , Herpesvirus 8, Human , Immunity, Innate , Signal Transduction , Herpesvirus 8, Human/genetics , Herpesvirus 8, Human/physiology , Humans , DNA, Viral/metabolism , Herpesviridae Infections/virology , Herpesviridae Infections/metabolism , Sarcoma, Kaposi/virology , Nucleotidyltransferases/metabolism , Host-Pathogen Interactions , Animals , Membrane Proteins/metabolism , Nuclear Proteins , Phosphoproteins
18.
J Gen Virol ; 105(5)2024 May.
Article in English | MEDLINE | ID: mdl-38767608

ABSTRACT

Herpesviruses establish a well-adapted balance with their host's immune system. Despite this co-evolutionary balance, infections can lead to severe disease including neurological disorders in their natural host. In horses, equine herpesvirus 1 (EHV-1) causes respiratory disease, abortions, neonatal foal death and myeloencephalopathy (EHM) in ~10 % of acute infections worldwide. Many aspects of EHM pathogenesis and protection from EHM are still poorly understood. However, it has been shown that the incidence of EHM increases to >70 % in female horses >20 years of age. In this study we used old mares as an experimental equine EHV-1 model of EHM to identify host-specific factors contributing to EHM. Following experimental infection with the neuropathogenic strain EHV-1 Ab4, old mares and yearling horses were studied for 21 days post-infection. Nasal viral shedding and cell-associated viremia were assessed by quantitative PCR. Cytokine/chemokine responses were evaluated in nasal secretions and cerebrospinal fluid (CSF) by Luminex assay and in whole blood by quantitative real-time PCR. EHV-1-specific IgG sub-isotype responses were measured by ELISA. All young horses developed respiratory disease and a bi-phasic fever post-infection, but only 1/9 horses exhibited ataxia. In contrast, respiratory disease was absent in old mares, but all old mares developed EHM that resulted in euthanasia in 6/9 old mares. Old mares also presented significantly decreased nasal viral shedding but higher viremia coinciding with a single fever peak at the onset of viremia. According to clinical disease manifestation, horses were sorted into an EHM group (nine old horses and one young horse) and a non-EHM group (eight young horses) for assessment of host immune responses. Non-EHM horses showed an early upregulation of IFN-α (nasal secretions), IRF7/IRF9, IL-1ß, CXCL10 and TBET (blood) in addition to an IFN-γ upregulation during viremia (blood). In contrast, IFN-α levels in nasal secretions of EHM horses were low and peak levels of IRF7, IRF9, CXCL10 and TGF-ß (blood) coincided with viremia. Moreover, EHM horses showed significantly higher IL-10 levels in nasal secretions, peripheral blood mononuclear cells and CSF and higher serum IgG3/5 antibody titres compared to non-EHM horses. These results suggest that protection from EHM depends on timely induction of type 1 IFN and upregulation cytokines and chemokines that are representative of cellular immunity. In contrast, induction of regulatory or TH-2 type immunity appeared to correlate with an increased risk for EHM. It is likely that future vaccine development for protection from EHM must target shifting this 'at-risk' immunophenotype.


Subject(s)
Cytokines , Herpesviridae Infections , Herpesvirus 1, Equid , Horse Diseases , Animals , Horses , Herpesvirus 1, Equid/immunology , Female , Horse Diseases/virology , Horse Diseases/immunology , Herpesviridae Infections/veterinary , Herpesviridae Infections/immunology , Herpesviridae Infections/virology , Cytokines/blood , Cytokines/immunology , Antibodies, Viral/blood , Virus Shedding , Viremia/immunology , Viremia/veterinary , Immunoglobulin G/blood
19.
Viruses ; 16(4)2024 04 08.
Article in English | MEDLINE | ID: mdl-38675914

ABSTRACT

Understanding the pathophysiology of myalgic encephalomyelitis/chronic fatigue syndrome (ME/CFS) is critical for advancing treatment options. This review explores the novel hypothesis that a herpesvirus infection of endothelial cells (ECs) may underlie ME/CFS symptomatology. We review evidence linking herpesviruses to persistent EC infection and the implications for endothelial dysfunction, encompassing blood flow regulation, coagulation, and cognitive impairment-symptoms consistent with ME/CFS and Long COVID. This paper provides a synthesis of current research on herpesvirus latency and reactivation, detailing the impact on ECs and subsequent systemic complications, including latent modulation and long-term maladaptation. We suggest that the chronicity of ME/CFS symptoms and the multisystemic nature of the disease may be partly attributable to herpesvirus-induced endothelial maladaptation. Our conclusions underscore the necessity for further investigation into the prevalence and load of herpesvirus infection within the ECs of ME/CFS patients. This review offers conceptual advances by proposing an endothelial infection model as a systemic mechanism contributing to ME/CFS, steering future research toward potentially unexplored avenues in understanding and treating this complex syndrome.


Subject(s)
Endothelial Cells , Fatigue Syndrome, Chronic , Herpesviridae Infections , Humans , Endothelial Cells/virology , Fatigue Syndrome, Chronic/virology , Fatigue Syndrome, Chronic/physiopathology , Herpesviridae/physiology , Herpesviridae Infections/virology , Virus Latency , Post-Acute COVID-19 Syndrome/pathology , Post-Acute COVID-19 Syndrome/physiopathology
20.
Viruses ; 16(4)2024 04 16.
Article in English | MEDLINE | ID: mdl-38675960

ABSTRACT

Reactivation and infection with cytomegalovirus (CMV) are frequently observed in recipients of solid organ transplants, bone marrow transplants, and individuals with HIV infection. This presents an increasing risk of allograft rejection, opportunistic infection, graft failure, and patient mortality. Among immunocompromised hosts, interstitial pneumonia is the most critical clinical manifestation of CMV infection. Recent studies have demonstrated the potential therapeutic benefits of exosomes derived from mesenchymal stem cells (MSC-exos) in preclinical models of acute lung injury, including pneumonia, ARDS, and sepsis. However, the role of MSC-exos in the pathogenesis of infectious viral diseases, such as CMV pneumonia, remains unclear. In a mouse model of murine CMV-induced pneumonia, we observed that intravenous administration of mouse MSC (mMSC)-exos reduced lung damage, decreased the hyperinflammatory response, and shifted macrophage polarization from the M1 to the M2 phenotype. Treatment with mMSC-exos also significantly reduced the infiltration of inflammatory cells and pulmonary fibrosis. Furthermore, in vitro studies revealed that mMSC-exos reversed the hyperinflammatory phenotype of bone marrow-derived macrophages infected with murine CMV. Mechanistically, mMSC-exos treatment decreased activation of the NF-κB/NLRP3 signaling pathway both in vivo and in vitro. In summary, our findings indicate that mMSC-exo treatment is effective in severe CMV pneumonia by reducing lung inflammation and fibrosis through the NF-κB/NLRP3 signaling pathway, thus providing promising therapeutic potential for clinical CMV infection.


Subject(s)
Disease Models, Animal , Exosomes , Mesenchymal Stem Cells , Muromegalovirus , NF-kappa B , NLR Family, Pyrin Domain-Containing 3 Protein , Signal Transduction , Animals , Exosomes/metabolism , Mesenchymal Stem Cells/metabolism , Mice , NLR Family, Pyrin Domain-Containing 3 Protein/metabolism , NF-kappa B/metabolism , Muromegalovirus/physiology , Mice, Inbred C57BL , Macrophages/immunology , Cytomegalovirus Infections/therapy , Cytomegalovirus Infections/virology , Lung/virology , Lung/pathology , Pneumonia, Viral/therapy , Pneumonia, Viral/virology , Herpesviridae Infections/therapy , Herpesviridae Infections/virology , Herpesviridae Infections/immunology , Pneumonia/therapy , Pneumonia/virology
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