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2.
Clin Transl Immunology ; 8(11): e01082, 2019.
Article in English | MEDLINE | ID: mdl-31709049

ABSTRACT

OBJECTIVES: Effects of Zika virus (ZIKV) infection on placental development during pregnancy are unclear. METHODS: Full-term placentas from three women, each infected with ZIKV during specific pregnancy trimesters, were harvested for anatomic, immunologic and transcriptomic analysis. RESULTS: In this study, each woman exhibited a unique immune response with raised IL-1RA, IP-10, EGF and RANTES expression and neutrophil numbers during the acute infection phase. Although ZIKV NS3 antigens co-localised to placental Hofbauer cells, the placentas showed no anatomic defects. Transcriptomic analysis of samples from the placentas revealed that infection during trimester 1 caused a disparate cellular response centred on differential eIF2 signalling, mitochondrial dysfunction and oxidative phosphorylation. Despite these, the babies were delivered without any congenital anomalies. CONCLUSION: These findings should translate to improve clinical prenatal screening procedures for virus-infected pregnant patients.

3.
Clin Transl Immunology ; 8(7): e1066, 2019.
Article in English | MEDLINE | ID: mdl-31372218

ABSTRACT

OBJECTIVES: Recent Zika virus (ZIKV) outbreaks challenged existing laboratory diagnostic standards, especially for serology-based methods. Because of the genetic and structural similarity of ZIKV with other flaviviruses, this results in cross-reactive antibodies, which confounds serological interpretations. METHODS: Plasma from Singapore ZIKV patients was screened longitudinally for antibody responses and neutralising capacities against ZIKV. Samples from healthy controls, ZIKV patients and DENV patients were further assessed using ZIKV and DENV peptides of precursor membrane (prM), envelope (E) or non-structural 1 (NS1) viral proteins in a peptide-based ELISA for epitope identification. Identified epitopes were re-validated and diagnostically evaluated using sera of patients with DENV, bacteria or unknown infections from Thailand. RESULTS: Long-lasting ZIKV-neutralising antibodies were elicited during ZIKV infection. Thirteen potential linear B-cell epitopes were identified, and of these, four common flavivirus, three ZIKV-specific and one DENV-specific differential epitopes had more than 50% sensitivity and specificity. Notably, ZIKV-specific peptide 26 on domain I/II of E protein (amino acid residues 271-288) presented 80% sensitivity and 85.7% specificity. Importantly, the differential epitopes also showed significance in differentiating non-flavivirus patient samples. CONCLUSION: Linear B-cell epitope candidates to differentiate between ZIKV and DENV infections were identified, providing the first step towards the design of a much-needed serology-based assay.

4.
EMBO Mol Med ; 11(6)2019 06.
Article in English | MEDLINE | ID: mdl-31015278

ABSTRACT

Currently, there are no commercially available live-attenuated vaccines against chikungunya virus (CHIKV). Here, CHIKVs with mutations in non-structural proteins (nsPs) were investigated for their suitability as attenuated CHIKV vaccines. R532H mutation in nsP1 caused reduced infectivity in mouse tail fibroblasts but an enhanced type-I IFN response compared to WT-CHIKV Adult mice infected with this nsP-mutant exhibited a mild joint phenotype with low-level viremia that rapidly cleared. Mechanistically, ingenuity pathway analyses revealed a tilt in the anti-inflammatory IL-10 versus pro-inflammatory IL-1ß and IL-18 balance during CHIKV nsP-mutant infection that modified acute antiviral and cell signaling canonical pathways. Challenging CHIKV nsP-mutant-infected mice with WT-CHIKV or the closely related O'nyong-nyong virus resulted in no detectable viremia, observable joint inflammation, or damage. Challenged mice showed high antibody titers with efficient neutralizing capacity, indicative of immunological memory. Manipulating molecular processes that govern CHIKV replication could lead to plausible vaccine candidates against alphavirus infection.


Subject(s)
Chikungunya Fever/prevention & control , Chikungunya virus , Mutation , Viral Nonstructural Proteins , Viral Vaccines , Animals , Chikungunya Fever/genetics , Chikungunya Fever/immunology , Chikungunya virus/genetics , Chikungunya virus/immunology , Chlorocebus aethiops , Mice , Vaccines, Attenuated/genetics , Vaccines, Attenuated/immunology , Vero Cells , Viral Nonstructural Proteins/genetics , Viral Nonstructural Proteins/immunology , Viral Vaccines/genetics , Viral Vaccines/immunology
5.
Life Sci Alliance ; 2(1)2019 02.
Article in English | MEDLINE | ID: mdl-30665948

ABSTRACT

Chikungunya virus (CHIKV) has been a worldwide threat since its reemergence in La Reunion Island in 2004. Expression of the interferon-stimulated protein Viperin correlates with viral load burden in patients, and studies in mice have demonstrated its role to limit disease severity against CHIKV infection. Using Viperin -/- mice, we aimed to understand the contribution of Viperin to the T-cell immune response against CHIKV. CD4 T-cell depletion in Viperin -/- mice showed that increased late acute joint inflammation (5-8 d postinfection) was exclusively mediated by T cells. Specifically, CHIKV-infected Viperin -/- mice showed an increased INFγ Th1 profile of CD4 T cells, enhanced INFγ stimulation by APCs, an increased INFγ secretion profile in the joint microenvironment, and increased numbers of inflammatory monocytes in virus-infected joints compared with WT mice. Bone marrow grafting experiments showed that Viperin expression in both hematopoietic and non-hematopoietic cells is instrumental in reducing disease severity associated with a CD4 T-cell response.


Subject(s)
Basic Helix-Loop-Helix Transcription Factors/metabolism , CD4-Positive T-Lymphocytes/immunology , CD4-Positive T-Lymphocytes/metabolism , Chikungunya Fever/virology , Chikungunya virus/pathogenicity , Interferon-gamma/metabolism , Proteins/metabolism , Animals , Antigen-Presenting Cells/metabolism , Arthritis/metabolism , Arthritis/virology , Bone Marrow Transplantation , Chikungunya virus/isolation & purification , Female , Gene Knockout Techniques , HEK293 Cells , Humans , Lymphocyte Depletion , Mice , Mice, Inbred C57BL , Mice, Knockout , Monocytes/metabolism , Proteins/genetics , Viral Load
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