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1.
J Virol ; 98(9): e0117724, 2024 Sep 17.
Article in English | MEDLINE | ID: mdl-39194236

ABSTRACT

Human cytomegalovirus (HCMV) is a ubiquitous herpesvirus found in human breast milk that is frequently transmitted from HCMV-seropositive mothers to their infants during the postnatal period. Despite extensive research, the mechanisms underlying HCMV transmission from breast milk and the anatomical location at which virus transfer takes place remain unclear. Breast milk contains many uniquely differentiated macrophages that undergo specific morphological and functional modifications in the mammary gland during lactation. Although the existence of permissive HCMV infection in differentiated macrophages has been well-described, the role of breast milk in this process remains unknown. Herein, we report that exposure of isolated peripheral blood monocytes to breast milk induces their differentiation into macrophages that exhibit an M2 phenotype (CD14highCD163highCD68highCD206high) and promotes a productive and sustained HCMV infection. We also found that breast milk triggers macrophage proliferation and thus sustains a unique population of proliferating, long-lived, and HCMV-susceptible macrophages that are capable of ongoing production of infectious virions. These results suggest a mechanism that explains chronic HCMV shedding into the breast milk of postpartum seropositive mothers. We also found that HCMV virions released from breast milk-induced macrophages generate a productive infection in primary infant tonsil epithelial cells. Collectively, our results suggest that breast milk may facilitate HCMV transmission from mother to infant via the oropharyngeal mucosa. IMPORTANCE: While human cytomegalovirus (HCMV) is frequently detected in the breast milk of HCMV-seropositive women and is often transmitted to infants via breastfeeding, the mechanisms by which this transmission occurs remain unclear. In this study, we modeled HCMV transmission at the oropharyngeal mucosa. We treated human monocytes with breast milk to mimic the lactating mammary gland microenvironment. We found that monocytes differentiated into macrophages with an M2 phenotype, which were highly permissive for HCMV. We also discovered that breast milk induces macrophage proliferation. Thus, exposure to breast milk increased the number of HCMV-susceptible macrophages and supported high levels of infectious HCMV. We found that HCMV virions released from breast milk-induced macrophages could infect primary infant tonsil epithelial cells. Collectively, these findings reveal the dual role of breast milk that induces the differentiation and proliferation of macrophages in the mammary gland and thus facilitates mother-to-child HCMV transmission at the oropharyngeal mucosa.


Subject(s)
Cell Differentiation , Cytomegalovirus Infections , Cytomegalovirus , Macrophages , Milk, Human , Monocytes , Humans , Milk, Human/virology , Macrophages/virology , Cytomegalovirus Infections/virology , Cytomegalovirus Infections/transmission , Cytomegalovirus/physiology , Female , Monocytes/virology , Epithelial Cells/virology , Infectious Disease Transmission, Vertical , Palatine Tonsil/virology , Palatine Tonsil/cytology , Infant , Cell Proliferation
2.
Antiviral Res ; 230: 105971, 2024 10.
Article in English | MEDLINE | ID: mdl-39074588

ABSTRACT

Human cytomegalovirus (CMV) causes serious developmental disabilities in newborns infected in utero following oral acquisition by the mother. Thus, neutralizing antibodies in maternal saliva have potential to prevent maternal infection and, consequently, fetal transmission and disease. Based on standard cell culture models, CMV entry mediators (and hence neutralizing targets) are cell type-dependent: entry into fibroblasts requires glycoprotein B (gB) and a trimeric complex (TC) of glycoproteins H, L, and O, whereas endothelial and epithelial cell entry additionally requires a pentameric complex (PC) of glycoproteins H and L with UL128, UL130, and UL131A. However, as the mediators of mucosal cell entry and the potential impact of cellular differentiation remained unclear, the present studies utilized mutant viruses, neutralizing antibodies, and soluble TC-receptor to determine the entry mediators required for infection of mucocutaneus cell lines and primary tonsil epithelial cells. Entry into undifferentiated cells was largely PC-dependent, but PC-independent entry could be induced by differentiation. TC-independent entry was also observed and varied by cell line and differentiation. Infection of primary tonsil cells from some donors was entirely TC-independent. In contrast, an antibody to gB or disruption of virion attachment using heparin blocked entry into all cells. These findings indicate that CMV entry into the spectrum of cell types encountered in vivo is likely to be more complex than has been suggested by standard cell culture models and may be influenced by the relative abundance of virion envelope glycoprotein complexes as well as by cell type, tissue of origin, and state of differentiation.


Subject(s)
Antibodies, Neutralizing , Cytomegalovirus , Epithelial Cells , Virus Internalization , Humans , Cytomegalovirus/physiology , Epithelial Cells/virology , Antibodies, Neutralizing/immunology , Cell Line , Viral Envelope Proteins/metabolism , Cytomegalovirus Infections/virology , Palatine Tonsil/virology , Palatine Tonsil/cytology , Cells, Cultured , Cell Differentiation , Mucous Membrane/virology , Antibodies, Viral/immunology
3.
Braz J Microbiol ; 55(3): 2893-2900, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39014291

ABSTRACT

Water buffalo (Bubalus bubalis) farming is increasing in many regions of the world due to the species' ability to thrive in environments where bovine cattle would struggle. Despite water buffaloes being known for their resistance to diseases, there is a lack of data about the diversity of the microbiome of the species. In this study, we examined the virome diversity in palatine tonsils collected from animals from the island of Marajó, northern Pará state, Brazil, which harbors the largest bubaline flock in the country. Tonsil fragments from 60 clinically healthy bubalines were randomly selected from a sample of 293 animals. The samples were purified, extracted, and randomly amplified with phi29 DNA polymerase. After amplification, the products were purified and sequenced. Circular DNA viruses were predominant in the tonsils' virome. Sequences of genome segments representative of members of the genera Alphapolyomavirus (including a previously unreported bubaline polyomavirus genome) and Gemycircularvirus were identified, along with other not yet classified circular virus genomes. As the animals were clinically healthy at the time of sampling, such viruses likely constitute part of the normal tonsillar virome of water buffaloes inhabiting the Ilha do Marajó biome.


Subject(s)
Buffaloes , Palatine Tonsil , Phylogeny , Polyomavirus , Animals , Buffaloes/virology , Palatine Tonsil/virology , Brazil , Polyomavirus/genetics , Polyomavirus/isolation & purification , Polyomavirus/classification , Virome , DNA, Viral/genetics , Genome, Viral
4.
Viruses ; 16(7)2024 Jun 26.
Article in English | MEDLINE | ID: mdl-39066187

ABSTRACT

Herpesviruses are significant pathogens of ruminants. In water buffaloes (Bubalus bubalis), however, herpesviruses have not been thoroughly studied. Although bubaline alphaherpesvirus 1 (BuAHV1) and bovine alphaherpesvirus 1 (BoAHV1) have already been recovered from water buffaloes, to date, no reports on the occurrence of bovine alphaherpesvirus 5 (BoAHV5) in these animals have been published. Therefore, the aim of this study was to search for BuAHV1, BoAHV1, and BoAHV5 in palatine tonsils of apparently healthy water buffaloes from the Pará state, Northern Brazil. Tissue samples of tonsils (n = 293) were screened by a nested PCR (nPCR) targeting a region of UL44 (gC coding gene), followed by sequencing, to detect and differentiate between the viral types. Viral genome segments were detected in 18 out of 293 (6.1%) of the palatine tonsil samples. Two animals carried genomes of BoAHV1 only, eleven animals carried BoAHV5 genomes only, and four animals carried BuAHV1 only. Another animal had both BoAHV1 and BoAHV5 genomes in its tonsils. No infectious virus could be recovered from any of the samples. The BuAHV1 sequences identified here were more closely related to BuAHV1 genomes identified in India. Phylogenetic analyses suggested a closer relationship between the recovered BoAHV5 and BuAHV1 genomes. Therefore, evidence is provided here to confirm that not only BoAHV1 and BuAHV1, but also BoAHV5, can infect water buffaloes. This report highlights (i) the first detection of BoAHV5 in water buffaloes and (ii) the occurrence of coinfections with BoAHV1 and BoAHV5 in that species. Such findings and the similarity of BoAHV5 to Indian herpesvirus genomes suggest that the origin of type 5 may be linked to recombinations between bovine and bubaline herpesviruses within bubalines, since the scenario for generation of recombinants in buffaloes is potentially present.


Subject(s)
Alphaherpesvirinae , Buffaloes , Herpesviridae Infections , Palatine Tonsil , Animals , Cattle , Alphaherpesvirinae/genetics , Alphaherpesvirinae/isolation & purification , Alphaherpesvirinae/classification , Brazil , DNA, Viral/genetics , Genome, Viral , Herpesviridae Infections/veterinary , Herpesviridae Infections/virology , Palatine Tonsil/virology , Phylogeny , Polymerase Chain Reaction , Sequence Analysis, DNA
5.
JMIR Res Protoc ; 13: e47446, 2024 Jun 12.
Article in English | MEDLINE | ID: mdl-38865190

ABSTRACT

BACKGROUND: Testing for SARS-CoV-2 is essential to provide early COVID-19 treatment for people at high risk of severe illness and to limit the spread of infection in society. Proper upper respiratory specimen collection is the most critical step in the diagnosis of the SARS-CoV-2 virus in public settings, and throat swabs were the preferred specimens used for mass testing in many countries during the COVID-19 pandemic. However, there is still a discussion about whether throat swabs have a high enough sensitivity for SARS-CoV-2 diagnostic testing, as previous studies have reported a large variability in the sensitivity from 52% to 100%. Many previous studies exploring the diagnostic accuracy of throat swabs lack a detailed description of the sampling technique, which makes it difficult to compare the different diagnostic accuracy results. Some studies perform a throat swab by only collecting specimens from the posterior oropharyngeal wall, while others also include a swab of the palatine tonsils for SARS-CoV-2 testing. However, studies suggest that the palatine tonsils could have a tissue tropism for SARS-CoV-2 that may improve the SARS-CoV-2 detection during sampling. This may explain the variation of sensitivity reported, but no clinical studies have yet explored the differences in sensitivity and patient discomfort whether the palatine tonsils are included during the throat swab or not. OBJECTIVE: The objective of this study is to examine the sensitivity and patient discomfort of a throat swab including the palatine tonsils compared to only swabbing the posterior oropharyngeal wall in molecular testing for SARS-CoV-2. METHODS: We will conduct a randomized controlled study to compare the molecular detection rate of SARS-CoV-2 by a throat swab performed from the posterior oropharyngeal wall and the palatine tonsils (intervention group) or the posterior oropharyngeal wall only (control group). Participants will be randomized in a 1:1 ratio. All participants fill out a baseline questionnaire upon enrollment in the trial, examining their reason for being tested, symptoms, and previous tonsillectomy. A follow-up questionnaire will be sent to participants to explore the development of symptoms after testing. RESULTS: A total of 2315 participants were enrolled in this study between November 10, 2022, and December 22, 2022. The results from the follow-up questionnaire are expected to be completed at the beginning of 2024. CONCLUSIONS: This randomized clinical trial will provide us with information about whether throat swabs including specimens from the palatine tonsils will improve the diagnostic sensitivity for SARS-CoV-2 molecular detection. These results can, therefore, be used to improve future testing recommendations and provide additional information about tissue tropism for SARS-CoV-2. TRIAL REGISTRATION: ClinicalTrials.gov NCT05611203; https://clinicaltrials.gov/study/NCT05611203. INTERNATIONAL REGISTERED REPORT IDENTIFIER (IRRID): DERR1-10.2196/47446.


Subject(s)
COVID-19 , Palatine Tonsil , Pharynx , SARS-CoV-2 , Specimen Handling , Adult , Female , Humans , Male , Middle Aged , COVID-19/diagnosis , COVID-19/virology , COVID-19 Nucleic Acid Testing/methods , COVID-19 Testing/methods , Palatine Tonsil/virology , Pharynx/virology , Randomized Controlled Trials as Topic , SARS-CoV-2/isolation & purification , Sensitivity and Specificity , Specimen Handling/methods , Multicenter Studies as Topic
6.
Diagn Cytopathol ; 52(7): E154-E158, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38533980

ABSTRACT

Epstein-Barr virus-positive mucocutaneous ulcer (EBVMCU) is a newly established immunodeficiency-related disease. Herein, we report a case of EBVMCU and focus on its cytological usefulness for diagnosis. An 82-year-old man manifested pharyngalgia, dysphagia, and oral pain. His medical history included rheumatoid arthritis that had been treated with methotrexate. Clinically, peritonsillar abscess was suspected, but since neoplastic lesions, including malignant lymphoma (ML), could not be excluded, a series of cytohistological examination was attempted. Despite some alarming findings (e.g., frequent mitoses), fine-needle aspiration and touch imprint cytology consistently revealed a heterogeneous population of lymphoid and plasmacytoid cells with mild nuclear atypia. The final diagnosis of EBVMCU was established based on the permanent histologic specimen; however, retrospectively, cytology was more representative of the benign nature of the lesion than histology, helping a great deal to differentiate it from ML. Cytology can be a useful tool for the correct diagnosis of EBVMCU.


Subject(s)
Epstein-Barr Virus Infections , Palatine Tonsil , Humans , Male , Palatine Tonsil/pathology , Palatine Tonsil/virology , Epstein-Barr Virus Infections/pathology , Epstein-Barr Virus Infections/diagnosis , Epstein-Barr Virus Infections/complications , Aged, 80 and over , Herpesvirus 4, Human/isolation & purification , Ulcer/pathology , Ulcer/virology , Ulcer/diagnosis , Biopsy, Fine-Needle , Cytodiagnosis/methods , Cytology
7.
J Laryngol Otol ; 136(3): 243-247, 2022 Mar.
Article in English | MEDLINE | ID: mdl-34602108

ABSTRACT

OBJECTIVE: To determine the prevalence of human papillomavirus in paediatric tonsils in Southwestern Ontario, Canada. MATERIALS AND METHODS: Patients aged 0-18 years undergoing tonsillectomy were recruited. Two specimens (left and right tonsils) were collected from each participant. Tonsillar DNA was analysed using quantitative polymerase chain reaction to determine the presence of human papillomavirus subtypes 6, 11, 16 or 18. RESULTS: A total of 102 patients, aged 1-18 years (mean age of 5.7 years), were recruited. Ninety-nine surveys were returned. There were 44 females (44.4 per cent) and 55 males (55.6 per cent). Forty patients (40.4 per cent) were firstborn children and 73 (73.7 per cent) were delivered vaginally. Six mothers (6.1 per cent) and one father (1.0 per cent) had prior known human papillomavirus infection, and one mother (1.0 per cent) had a history of cervical cancer. All tonsil specimens were negative for human papillomavirus subtypes 6, 11, 16 and 18. CONCLUSION: No human papillomavirus subtypes 6, 11, 16 or 18 were found in paediatric tonsil specimens from Southwestern Ontario.


Subject(s)
Alphapapillomavirus/isolation & purification , Palatine Tonsil/virology , Papillomavirus Infections/epidemiology , Sleep Apnea Syndromes/virology , Tonsillitis/virology , Adolescent , Child , Child, Preschool , Cohort Studies , Female , Humans , Infant , Infant, Newborn , Male , Ontario , Prevalence , Sleep Apnea Syndromes/surgery , Tonsillectomy , Tonsillitis/surgery
9.
Viruses ; 13(10)2021 10 11.
Article in English | MEDLINE | ID: mdl-34696473

ABSTRACT

Mother-to-child transmission (MTCT) of HIV-1 may occur during pregnancy, labor, and breastfeeding; however, the molecular mechanism of MTCT of virus remains poorly understood. Infant tonsil mucosal epithelium may sequester HIV-1, serving as a transient reservoir, and may play a critical role in MTCT. Innate immune proteins human beta-defensins 2 (hBD-2) and -3 may inactivate intravesicular virions. To establish delivery of hBD-2 and -3 into vesicles containing HIV-1, we tagged hBDs with the protein transduction domain (PTD) of HIV-1 Tat, which facilitates an efficient translocation of proteins across cell membranes. Our new findings showed that hBD-2 and -3 proteins tagged with PTD efficiently penetrated polarized tonsil epithelial cells by endocytosis and direct penetration. PTD-initiated internalization of hBD-2 and -3 proteins into epithelial cells led to their subsequent penetration of multivesicular bodies (MVB) and vacuoles containing HIV-1. Furthermore, PTD played a role in the fusion of vesicles containing HIV-1 with lysosomes, where virus was inactivated. PTD-initiated internalization of hBD-2 and -3 proteins into ex vivo tonsil tissue explants reduced the spread of virus from epithelial cells to CD4+ T lymphocytes, CD68+ macrophages, and CD1c+ dendritic cells, suggesting that this approach may serve as an antiviral strategy for inactivating intraepithelial HIV-1 and reducing viral MTCT.


Subject(s)
Cell Polarity/physiology , Epithelial Cells/virology , HIV-1/physiology , Palatine Tonsil/virology , beta-Defensins/metabolism , tat Gene Products, Human Immunodeficiency Virus/metabolism , CD4-Positive T-Lymphocytes , Endocytosis , Epithelium , HIV Infections , Humans , Infectious Disease Transmission, Vertical , Macrophages/virology , Mucous Membrane/virology , Protein Domains , beta-Defensins/genetics , tat Gene Products, Human Immunodeficiency Virus/chemistry
10.
Microbiol Spectr ; 9(2): e0124621, 2021 10 31.
Article in English | MEDLINE | ID: mdl-34668748

ABSTRACT

The adenoviral DNA is prevalent in adenotonsillectomy specimens from pediatric patients, though the virus seems to be in latent state. The tonsils are at the forefront of airway entry point and are the first line of defense against airway viral and bacterial infections. We hypothesized that tonsil microbiota plays a role in human adenovirus (HAdV) latency and reactivation. In this study, we surveyed the presence of HAdV in tonsillectomy samples from 81 patients and found that HAdV DNA was in 85.2% of the tonsil samples. We then determined the microbiota of the samples. Taxonomic profiling showed that Proteobacteria, Firmicutes, Fusobacteriota, and Bacteroidota accounted for approximately 70% of the total phyla in tonsil samples. A correlation analysis showed that the HAdV-positive samples had significantly higher abundance of Neisseria and Bifidobacterium and lower abundance of Streptococcus, Ochrobactrum, and Lactobacillus than that of the HAdV-negative samples. Culture-based isolation followed by 16S rRNA sequencing identified Staphylococcus aureus, Streptococcus pneumoniae, Veillonella, Prevotella, Capnocytophaga sputigena, Pseudomonas aeruginosa, Neisseria, and Moraxella catarrhalis from the samples. Gas chromatography-mass spectrometry (GC-MS) profiling of short-chain fatty acids in bacterial cultures of minced tonsillectomy tissues or representative isolates showed the cultures contained various amounts of short-chain fatty acids (SCFAs). Treatment of isolated tonsil lymphocytes with bacterial lipopolysaccharide (LPS) or with SCFAs promoted HAdV reactivation. The compounds also promoted HAdV reactivation in a xenograft model with implanted tonsil fragments. This study shows a potential interplay between tonsil microbiota and HAdV reactivation that may lead to recurrent virus infection of respiratory tract disease. IMPORTANCE Human adenovirus infection is common among pediatric patients and can be life-threatening among organ transplant recipients. Adenovirus is transmitted by close contact, but it is believed that a majority of invasive events appear to arise from viral reactivation. The human tonsil is a reservoir for virus latency and has a high prevalence of latently infected adenovirus. Also, tonsils are located at the gateway of the respiratory tracts and are commonly exposed to bacterial pathogens. Here, we uncovered adenoviral DNA-positive and -negative samples that appeared to harbor distinct distribution patterns of microorganisms. SCFAs, primary metabolites of microbiota on tonsils, could induce the adenovirus reactivation in tonsil lymphocytes, resulting in adenovirus replication and production of infectious virions. The study suggests that viral-bacterial interaction plays a role in virus reactivation from latency and could be a contributing factor for recurrent viral infection in pediatric patients.


Subject(s)
Adenovirus Infections, Human/virology , Adenoviruses, Human/physiology , Microbiota , Palatine Tonsil/microbiology , Palatine Tonsil/virology , Adenoviruses, Human/genetics , Adenoviruses, Human/isolation & purification , Bacteria/classification , Bacteria/genetics , Bacteria/isolation & purification , Child , Child, Preschool , DNA, Bacterial/genetics , Fatty Acids, Volatile/metabolism , Female , Humans , Infant , Male , Palatine Tonsil/surgery , RNA, Ribosomal, 16S/genetics , Tonsillectomy , Virus Activation , Virus Latency , Virus Replication
11.
Front Immunol ; 12: 691145, 2021.
Article in English | MEDLINE | ID: mdl-34381448

ABSTRACT

Porcine reproductive and respiratory syndrome (PRRS) is considered one of the most relevant diseases of swine. The condition is caused by PRRS virus (PRRSV), an extremely variable virus of the Arteriviridae family. Its heterogeneity can be responsible, at least partially, of the poor cross-protection observed between PRRSV isolates. Neutralizing antibodies (NAs), known to play a role in protection, usually poorly recognize heterologous PRRSV isolates, indicating that most NAs are strain-specific. However, some pigs develop broadly reactive NAs able to recognize a wide range of heterologous isolates. The aim of this study was to determine whether PRRSV isolates that induce broadly reactive NAs as determined in vitro are able to confer a better protection in vivo. For this purpose two in vivo experiments were performed. Initially, 40 pigs were immunized with a PRRSV-1 isolate known to induce broadly reactive NAs and 24 additional pigs were used as controls. On day 70 after immunization, the pigs were divided into eight groups composed by five immunized and three control pigs and exposed to one of the eight different heterologous PRRSV isolates used for the challenge. In the second experiment, the same experimental design was followed but the pigs were immunized with a PRRSV-1 isolate, which is known to generate mostly strain-specific NAs. Virological parameters, specifically viremia and the presence of challenge virus in tonsils, were used to determine protection. In the first experiment, sterilizing immunity was obtained in three groups, prevention of viremia was observed in two additional groups, although the challenge virus was detected occasionally in the tonsils of immunized pigs, and partial protection, understood as a reduction in the frequency of viremia compared with controls, was recorded in the remaining three groups. On the contrary, only partial protection was observed in all groups in the second experiment. The results obtained in this study confirm that PRRSV-1 isolates differ in their ability to induce cross-reactive NAs and, although other components of the immune response might have contributed to protection, pigs with cross-reactive NAs at the time of challenge exhibited better protection, indicating that broadly reactive NAs might play a role in protection against heterologous reinfections.


Subject(s)
Antibodies, Viral/blood , Broadly Neutralizing Antibodies/blood , Immunoglobulin G/blood , Porcine respiratory and reproductive syndrome virus/immunology , Animals , Cross Protection , Cross Reactions , Palatine Tonsil/virology , Porcine Reproductive and Respiratory Syndrome/blood , Porcine Reproductive and Respiratory Syndrome/immunology , Porcine Reproductive and Respiratory Syndrome/prevention & control , Porcine respiratory and reproductive syndrome virus/genetics , Porcine respiratory and reproductive syndrome virus/isolation & purification , Reinfection/prevention & control , Swine , Vaccination
12.
Int J Mol Sci ; 22(16)2021 Aug 16.
Article in English | MEDLINE | ID: mdl-34445493

ABSTRACT

Classical swine fever (CSF) is a highly contagious disease caused by the classical swine fever virus (CSFV). The live attenuated C-strain vaccine is highly efficacious, initiating protection within several days of delivery. The vaccine strain is detected in the tonsil early after inoculation, yet little is known of the role that tonsillar immune cells might play in initiating protection. Comparing the C-strain vaccine with the pathogenic CSFV Alfort-187 strain, changes in the myeloid cell compartment of the tonsil were observed. CSFV infection led to the emergence of an additional CD163+CD14+ cell population, which showed the highest levels of Alfort-187 and C-strain infection. There was also an increase in both the frequency and activation status (as shown by increased MHC-II expression) of the tonsillar conventional dendritic cells 1 (cDC1) in pigs inoculated with the C-strain. Notably, the activation of cDC1 cells coincided in time with the induction of a local CSFV-specific IFN-γ+ CD8 T cell response in C-strain vaccinated pigs, but not in pigs that received Alfort-187. Moreover, the frequency of CSFV-specific IFN-γ+ CD8 T cells was inversely correlated to the viral load in the tonsils of individual animals. Accordingly, we hypothesise that the activation of cDC1 is key in initiating local CSFV-specific CD8 T cell responses which curtail early virus replication and dissemination.


Subject(s)
CD8-Positive T-Lymphocytes/metabolism , Classical Swine Fever Virus/immunology , Classical Swine Fever/prevention & control , Palatine Tonsil/immunology , Viral Vaccines/administration & dosage , Animals , Antigens, CD/metabolism , Antigens, Differentiation, Myelomonocytic/metabolism , Classical Swine Fever/immunology , Classical Swine Fever/virology , Classical Swine Fever Virus/physiology , Dendritic Cells/metabolism , Interferon-gamma/metabolism , Lipopolysaccharide Receptors/metabolism , Myeloid Cells/metabolism , Palatine Tonsil/cytology , Palatine Tonsil/virology , Receptors, Cell Surface/metabolism , Swine , Vaccines, Attenuated/administration & dosage , Vaccines, Attenuated/immunology , Viral Load , Viral Vaccines/immunology
13.
Am J Pathol ; 191(10): 1774-1786, 2021 10.
Article in English | MEDLINE | ID: mdl-34303699

ABSTRACT

Viruses are the second leading cause of cancer worldwide, and human papillomavirus (HPV)-associated head and neck cancers are increasing in incidence in the United States. HPV preferentially infects the crypts of the tonsils rather than the surface epithelium. The present study sought to characterize the unique microenvironment within the crypts to better understand the viral tropism of HPV to a lymphoid-rich organ. Laser-capture microdissection of distinct anatomic areas (crypts, surface epithelium, and germinal centers) of the tonsil, coupled with transcriptional analysis and multiparameter immunofluorescence staining demonstrated that the tonsillar crypts are enriched with myeloid populations that co-express multiple canonical and noncanonical immune checkpoints, including PD-L1, CTLA-4, HAVCR2 (TIM-3), ADORA2A, IDO1, BTLA, LGALS3, CDH1, CEACAM1, PVR, and C10orf54 (VISTA). The resident monocytes may foster a permissive microenvironment that facilitates HPV infection and persistence. Furthermore, the myeloid populations within HPV-associated tonsil cancers co-express the same immune checkpoints, providing insight into potential novel immunotherapeutic targets for HPV-associated head and neck cancers.


Subject(s)
Alphapapillomavirus/physiology , Myeloid Cells/pathology , Myeloid Cells/virology , Palatine Tonsil/pathology , Palatine Tonsil/virology , Viral Tropism/physiology , Antigens, CD/metabolism , B7 Antigens/metabolism , B7-H1 Antigen/metabolism , Cell Adhesion Molecules/metabolism , Epithelium/pathology , Epithelium/virology , Germinal Center/pathology , Head and Neck Neoplasms/pathology , Head and Neck Neoplasms/virology , Humans , Immune Checkpoint Proteins/metabolism , Laser Capture Microdissection , Monocytes/pathology , Receptors, Virus/metabolism , Transcriptome/genetics
14.
J Virol ; 95(18): e0092121, 2021 08 25.
Article in English | MEDLINE | ID: mdl-34232730

ABSTRACT

Mother-to-child transmission (MTCT) of human immunodeficiency virus type 1 (HIV-1) and human cytomegalovirus (HCMV) may occur during pregnancy, labor, or breastfeeding. These viruses from amniotic fluid, cervicovaginal secretions, and breast milk may simultaneously interact with oropharyngeal and tonsil epithelia; however, the molecular mechanism of HIV-1 and HCMV cotransmission through the oral mucosa and its role in MTCT are poorly understood. To study the molecular mechanism of HIV-1 and HCMV MTCT via oral epithelium, we established polarized infant tonsil epithelial cells and polarized-oriented ex vivo tonsil tissue explants. Using these models, we showed that cell-free HIV-1 and its proteins gp120 and tat induce the disruption of tonsil epithelial tight junctions and increase paracellular permeability, which facilitates HCMV spread within the tonsil mucosa. Inhibition of HIV-1 gp120-induced upregulation of mitogen-activated protein kinase (MAPK) and NF-κB signaling in tonsil epithelial cells, reduces HCMV infection, indicating that HIV-1-activated MAPK and NF-κB signaling may play a critical role in HCMV infection of tonsil epithelium. HCMV infection of tonsil epithelial cells also leads to the disruption of tight junctions and increases paracellular permeability, facilitating HIV-1 paracellular spread into tonsil mucosa. HCMV-promoted paracellular spread of HIV-1 increases its accessibility to tonsil CD4 T lymphocytes, macrophages, and dendritic cells. HIV-1-enhanced HCMV paracellular spread and infection of epithelial cells subsequently leads to the spread of HCMV to tonsil macrophages and dendritic cells. Our findings revealed that HIV-1- and HCMV-induced disruption of infant tonsil epithelial tight junctions promotes MTCT of these viruses through tonsil mucosal epithelium, and therapeutic intervention for both HIV-1 and HCMV infection may substantially reduce their MTCT. IMPORTANCE Most HIV-1 and HCMV MTCT occurs in infancy, and the cotransmission of these viruses may occur via infant oropharyngeal and tonsil epithelia, which are the first biological barriers for viral pathogens. We have shown that HIV-1 and HCMV disrupt epithelial junctions, reducing the barrier functions of epithelia and thus allowing paracellular penetration of both viruses via mucosal epithelia. Subsequently, HCMV infects epithelial cells, macrophages, and dendritic cells, and HIV-1 infects CD4+ lymphocytes, macrophages, and dendritic cells. Infection of these cells in HCMV- and HIV-1-coinfected tonsil tissues is much higher than that by HCMV or HIV-1 infection alone, promoting their MTCT at its initial stages via infant oropharyngeal and tonsil epithelia.


Subject(s)
Coinfection/virology , Cytomegalovirus Infections/virology , Cytomegalovirus/physiology , Epithelium/virology , HIV Infections/virology , HIV-1/physiology , Palatine Tonsil/virology , California/epidemiology , Coinfection/epidemiology , Coinfection/metabolism , Cytomegalovirus Infections/epidemiology , Cytomegalovirus Infections/metabolism , Dendritic Cells/metabolism , Dendritic Cells/virology , Epithelium/metabolism , HIV Infections/epidemiology , HIV Infections/metabolism , Humans , Infant , Macrophages/metabolism , Macrophages/virology , Palatine Tonsil/metabolism , Tight Junctions
15.
PLoS Comput Biol ; 17(6): e1009072, 2021 06.
Article in English | MEDLINE | ID: mdl-34153032

ABSTRACT

Epstein-Barr virus (EBV) is transmitted by saliva and is a major cause of cancer, particularly in people living with HIV/AIDS. Here, we describe the frequency and quantity of EBV detection in the saliva of Ugandan adults with and without HIV-1 infection and use these data to develop a novel mathematical model of EBV infection in the tonsils. Eligible cohort participants were not taking antiviral medications, and those with HIV-1 infection had a CD4 count >200 cells/mm3. Over a 4-week period, participants provided daily oral swabs that we analysed for the presence and quantity of EBV. Compared with HIV-1 uninfected participants, HIV-1 coinfected participants had an increased risk of EBV detection in their saliva (IRR = 1.27, 95% CI = 1.10-1.47) and higher viral loads in positive samples. We used these data to develop a stochastic, mechanistic mathematical model that describes the dynamics of EBV, infected cells, and immune response within the tonsillar epithelium to analyse potential factors that may cause EBV infection to be more severe in HIV-1 coinfected participants. The model, fit using Approximate Bayesian Computation, showed high fidelity to daily oral shedding data and matched key summary statistics. When evaluating how model parameters differed among participants with and without HIV-1 coinfection, results suggest HIV-1 coinfected individuals have higher rates of B cell reactivation, which can seed new infection in the tonsils and lower rates of an EBV-specific immune response. Subsequently, both these traits may explain higher and more frequent EBV detection in the saliva of HIV-1 coinfected individuals.


Subject(s)
Coinfection/virology , Epstein-Barr Virus Infections/complications , Epstein-Barr Virus Infections/virology , HIV Infections/complications , HIV-1 , Palatine Tonsil/virology , Adolescent , Adult , B-Lymphocytes/immunology , Cohort Studies , Coinfection/immunology , Computational Biology , Epstein-Barr Virus Infections/immunology , Female , HIV Infections/immunology , Herpesvirus 4, Human/immunology , Herpesvirus 4, Human/isolation & purification , Herpesvirus 4, Human/physiology , Humans , Immunity, Cellular , Male , Middle Aged , Models, Biological , Palatine Tonsil/immunology , Saliva/virology , Stochastic Processes , Uganda , Viral Load , Virus Shedding , Young Adult
16.
Am J Otolaryngol ; 42(5): 103063, 2021.
Article in English | MEDLINE | ID: mdl-33887631

ABSTRACT

PURPOSE: To determine the prevalence of oropharyngeal high-risk human papillomavirus (HPV) in patients undergoing tonsillectomy by detection of high-risk HPV in tonsil tissues using the in situ hybridization (ISH) technique. MATERIALS AND METHODS: The patients who underwent tonsillectomy between 2014 and 2018 were examined retrospectively. The pediatric cases and patients who underwent tonsillectomy due to malignancy were excluded. The study included 270 adult cases selected by age and gender randomization. The tonsillar tissue of each case was re-examined by the pathology department, and the presence of high-risk HPV was investigated via the ISH technique. Multiple logistic regression models were used for predictions of different factors. RESULTS: The prevalence of high-risk HPV in the 270 patients (male: 154 [57%]; female: 116 [43%]; mean age: 36.44 ± 12.87 years) was found to be 6.7% (n = 18). The prevalence was found 8.4% in men and 4.3% in women; 8.9% in cases under the age of 40 and 2.9% in cases over the age of 40; and 10.9% in patients who underwent tonsillectomy for infectious indications and 2.3% for non-infectious indications. Multivariate analysis identified that the infectious indications for tonsillectomy were significantly associated with high-risk HPV positivity (OR 5.328; p = 0.009). CONCLUSIONS: The prevalence of oropharyngeal high-risk HPV was found to be 6.7% and higher in younger people and men. Additionally, the HPV positivity was found to be higher in patients who underwent tonsillectomy for infectious indications. To our knowledge, this is the first study that reports the correlation between recurrent tonsil infections and HPV positivity in tonsil tissue.


Subject(s)
Palatine Tonsil/surgery , Palatine Tonsil/virology , Papillomaviridae/isolation & purification , Papillomavirus Infections/epidemiology , Papillomavirus Infections/virology , Tonsillectomy/statistics & numerical data , Tonsillitis/epidemiology , Tonsillitis/virology , Adolescent , Adult , Age Factors , Cross-Sectional Studies , Female , Humans , In Situ Hybridization , Male , Middle Aged , Prevalence , Retrospective Studies , Risk , Sex Factors , Young Adult
17.
BMJ Case Rep ; 14(2)2021 Feb 05.
Article in English | MEDLINE | ID: mdl-33547127

ABSTRACT

Two patients suffering from chronic recurrent tonsillitis were reported. The first patient was confirmed infected with COVID-19, 3 weeks prior to tonsillectomy. The detritus and tonsil specimen were further analysed through real-time PCR (RT-PCR) and revealed amplification of the fragment N and ORF1ab genes of SARS-CoV-2. The second patient had a negative IgM and positive IgG antibody for COVID-19; however, the nasopharyngeal swab indicated negative for SARS-CoV-2. Tonsillectomy was performed 2 weeks after the swab; the tonsil specimen was analysed through RT-PCR and revealed amplification of the N2 and RdRp gene of SARS-CoV-2. According to both results, the presence of the SARS-CoV-2 gene remains to be detected in tonsil and/or detritus after 2-3 weeks after recovery. Hence, it is suggested that it is necessary to use adequate protection when performing tonsillectomy on early recovered patients with COVID-19. Furthermore, tonsillectomy would be more advisable to be performed after the fourth week after recovery from COVID-19.


Subject(s)
COVID-19 Nucleic Acid Testing/methods , COVID-19/complications , COVID-19/diagnosis , Palatine Tonsil/virology , Tonsillitis/complications , Adult , Female , Humans , Male , Palatine Tonsil/surgery , SARS-CoV-2 , Tonsillectomy/methods , Tonsillitis/surgery , Young Adult
18.
mBio ; 12(1)2021 02 02.
Article in English | MEDLINE | ID: mdl-33531399

ABSTRACT

Human bocavirus 1 (HBoV1), a nonenveloped single-stranded DNA parvovirus, causes mild to life-threatening respiratory tract infections, acute otitis media, and encephalitis in young children. HBoV1 often persists in nasopharyngeal secretions for months, hampering diagnosis. It has also been shown to persist in pediatric palatine and adenoid tonsils, which suggests that lymphoid organs are reservoirs for virus spread; however, the tissue site and host cells remain unknown. Our aim was to determine, in healthy nonviremic children with preexisting HBoV1 immunity, the adenotonsillar persistence site(s), host cell types, and virus activity. We discovered that HBoV1 DNA persists in lymphoid germinal centers (GCs), but not in the corresponding tonsillar epithelium, and that the cell types harboring the virus are mainly naive, activated, and memory B cells and monocytes. Both viral DNA strands and both sides of the genome were detected, as well as infrequent mRNA. Moreover, we showed, in B-cell and monocyte cultures and ex vivo tonsillar B cells, that the cellular uptake of HBoV1 occurs via the Fc receptor (FcγRII) through antibody-dependent enhancement (ADE). This resulted in viral mRNA transcription, known to occur exclusively from double-stranded DNA in the nucleus, however, with no detectable productive replication. Confocal imaging with fluorescent virus-like particles moreover disclosed endocytosis. To which extent the active HBoV1 GC persistence has a role in chronic inflammation or B-cell maturation disturbances, and whether the virus can be reactivated, will be interesting topics for forthcoming studies.IMPORTANCE Human bocavirus 1 (HBoV1), a common pediatric respiratory pathogen, can persist in airway secretions for months hampering diagnosis. It also persists in tonsils, providing potential reservoirs for airway shedding, with the exact location, host cell types, and virus activity unknown. Our study provides new insights into tonsillar HBoV1 persistence. We observed HBoV1 persistence exclusively in germinal centers where immune maturation occurs, and the main host cells were B cells and monocytes. In cultured cell lines and primary tonsillar B cells, we showed the virus uptake to be significantly enhanced by HBoV1-specific antibodies, mediated by the cellular IgG receptor, leading to viral mRNA synthesis, but without detectable productive replication. Possible implications of such active viral persistence could be tonsillar inflammation, disturbances in immune maturation, reactivation, or cell death with release of virus DNA, explaining the long-lasting HBoV1 airway shedding.


Subject(s)
Antibody-Dependent Enhancement , Germinal Center/virology , Human bocavirus/immunology , Palatine Tonsil/virology , Parvoviridae Infections/virology , Adolescent , Adult , Aged , B-Lymphocytes/virology , Child , Child, Preschool , DNA, Viral/analysis , Endosomes/virology , Humans , Infant , Infant, Newborn , Middle Aged , Monocytes/virology , Parvoviridae Infections/immunology , Young Adult
19.
BMC Vet Res ; 17(1): 88, 2021 Feb 22.
Article in English | MEDLINE | ID: mdl-33618723

ABSTRACT

BACKGROUND: Porcine reproductive and respiratory syndrome (PRRS) is a threat to pig production worldwide. Our objective was to understand mechanisms of persistence of PRRS virus (PRRSV) in tonsil. Transcriptome data from tonsil samples collected at 42 days post infection (dpi) were generated by RNA-seq and NanoString on 51 pigs that were selected to contrast the two PRRSV isolates used, NVSL and KS06, high and low tonsil viral level at 42 dpi, and the favorable and unfavorable genotypes at a genetic marker (WUR) for the putative PRRSV resistance gene GBP5. RESULTS: The number of differentially expressed genes (DEGs) differed markedly between models with and without accounting for cell-type enrichments (CE) in the samples that were predicted from the RNA-seq data. This indicates that differences in cell composition in tissues that consist of multiple cell types, such as tonsil, can have a large impact on observed differences in gene expression. Based on both the NanoString and the RNA-seq data, KS06-infected pigs showed greater activation, or less inhibition, of immune response in tonsils at 42 dpi than NVSL-infected pigs, with and without accounting for CE. This suggests that the NVSL virus may be better than the KS06 virus at evading host immune response and persists in tonsils by weakening, or preventing, host immune responses. Pigs with high viral levels showed larger CE of immune cells than low viral level pigs, potentially to trigger stronger immune responses. Presence of high tonsil virus was associated with a stronger immune response, especially innate immune response through interferon signaling, but these differences were not significant when accounting for CE. Genotype at WUR was associated with different effects on immune response in tonsils of pigs during the persistence stage, depending on viral isolate and tonsil viral level. CONCLUSIONS: Results of this study provide insights into the effects of PRRSV isolate, tonsil viral level, and WUR genotype on host immune response and into potential mechanisms of PRRSV persistence in tonsils that could be targeted to improve strategies to reduce viral rebreaks. Finally, to understand transcriptome responses in tissues that consist of multiple cell types, it is important to consider differences in cell composition.


Subject(s)
Palatine Tonsil/immunology , Porcine Reproductive and Respiratory Syndrome/immunology , Porcine respiratory and reproductive syndrome virus/classification , Animals , Genotype , Immunity, Innate/genetics , Palatine Tonsil/cytology , Palatine Tonsil/metabolism , Palatine Tonsil/virology , Porcine respiratory and reproductive syndrome virus/immunology , Porcine respiratory and reproductive syndrome virus/isolation & purification , Sus scrofa , Swine , Transcriptome , Viral Load/veterinary , Viremia/veterinary , Viremia/virology
20.
J Gen Virol ; 102(3)2021 03.
Article in English | MEDLINE | ID: mdl-33433312

ABSTRACT

Epstein-Barr virus (EBV) establishes lifelong latent infection in the majority of healthy individuals, while it is a causative agent for various diseases, including some malignancies. Recent high-throughput sequencing results indicate that there are substantial levels of viral genome heterogeneity among different EBV strains. However, the extent of EBV strain variation among asymptomatically infected individuals remains elusive. Here, we present a streamlined experimental strategy to clone and sequence EBV genomes derived from human tonsillar tissues, which are the reservoirs of asymptomatic EBV infection. Complete EBV genome sequences, including those of repetitive regions, were determined for seven tonsil-derived EBV strains. Phylogenetic analyses based on the whole viral genome sequences of worldwide non-tumour-derived EBV strains revealed that Asian EBV strains could be divided into several distinct subgroups. EBV strains derived from nasopharyngeal carcinoma-endemic areas constitute different subgroups from a subgroup of EBV strains from non-endemic areas, including Japan. The results could be consistent with biased regional distribution of EBV-associated diseases depending on the different EBV strains colonizing different regions in Asian countries.


Subject(s)
Epstein-Barr Virus Infections/virology , Genome, Viral , Herpesvirus 4, Human/genetics , Lymphocytes/virology , Palatine Tonsil/virology , Asymptomatic Infections , Cell Line , Chromosomes, Artificial, Bacterial , Cloning, Molecular , DNA, Viral/genetics , Genes, Viral , Genetic Variation , High-Throughput Nucleotide Sequencing , Humans , Japan , Phylogeny , Repetitive Sequences, Nucleic Acid , Sequence Analysis, DNA , Viral Proteins/chemistry , Viral Proteins/genetics , Virus Latency/genetics , Whole Genome Sequencing
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