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1.
iScience ; 25(7): 104660, 2022 Jul 15.
Article in English | MEDLINE | ID: mdl-35845169

ABSTRACT

Bladder infection affects a hundred million people annually, but our understanding of bladder immunity is incomplete. We found type 17 immune response genes among the most up-regulated networks in mouse bladder following uropathogenic Escherichia coli (UPEC) challenge. Intravital imaging revealed submucosal Rorc+ cells responsive to UPEC challenge, and we found increased Il17 and IL22 transcripts in wild-type and Rag2 -/- mice, implicating group 3 innate lymphoid cells (ILC3s) as a source of these cytokines. NCR-positive and negative ILC3 subsets were identified in murine and human bladders, with local proliferation increasing IL17-producing ILC3s post infection. ILC3s made a more limited contribution to bladder IL22, with prominent early induction of IL22 evident in Th17 cells. Single-cell RNA sequencing revealed bladder NCR-negative ILC3s as the source of IL17 and identified putative ILC3-myeloid cell interactions, including via lymphotoxin-ß-LTBR. Altogether, our data provide important insights into the orchestration and execution of type 17 immunity in bladder defense.

2.
Lancet Glob Health ; 9(11): e1561-e1568, 2021 11.
Article in English | MEDLINE | ID: mdl-34678198

ABSTRACT

BACKGROUND: Typhoid fever is a major public health problem in low-resource settings. Vaccination can help curb the disease and might reduce transmission. We have previously reported an interim analysis of the efficacy of typhoid conjugate vaccine (TCV) in Nepali children. Here we report the final results after 2 years of follow-up. METHODS: We did a participant-masked and observer-masked individually randomised trial in Lalitpur, Nepal, in which 20 019 children aged 9 months to younger than 16 years were randomly assigned in a 1:1 ratio to receive a single dose of TCV (Typbar TCV, Bharat Biotech International, India) or capsular group A meningococcal conjugate vaccine (MenA). Participants were followed up until April 9, 2020. The primary outcome was blood culture-confirmed typhoid fever. Cases were captured via passive surveillance and active telephone surveillance followed by medical record review. The trial is registered at ISRCTN registry, ISRCTN43385161 and is ongoing. FINDINGS: From Nov 20, 2017, to April 9, 2018, of 20 119 children screened, 20 019 participants were randomly assigned to receive TCV or MenA vaccine. There were 75 cases of blood culture-confirmed typhoid fever included in the analysis (13 in the TCV group and 62 in the MenA group) over the 2-year period. The protective efficacy of TCV against blood culture-confirmed typhoid fever at 2 years was 79·0% (95% CI 61·9-88·5; p<0·0001). The incidence of typhoid fever was 72 (95% CI 38-123) cases per 100 000 person-years in the TCV group and 342 (95% CI 262-438) cases per 100 000 person-years in the MenA group. Adverse events occurring within the first 7 days post-vaccination were reported previously. INTERPRETATION: The final results of this randomised, controlled trial are in keeping with the results of our published interim analysis. There is no evidence of waning protection over a 2-year period. These findings add further support for the WHO recommendations on control of enteric fever. FUNDING: Bill & Melinda Gates Foundation.


Subject(s)
Typhoid Fever/prevention & control , Typhoid-Paratyphoid Vaccines/immunology , Adolescent , Child , Child, Preschool , Female , Humans , Infant , Male , Nepal/epidemiology , Typhoid Fever/epidemiology , Typhoid-Paratyphoid Vaccines/administration & dosage , Vaccines, Conjugate/administration & dosage , Vaccines, Conjugate/immunology
3.
PLoS Negl Trop Dis ; 12(10): e0006779, 2018 10.
Article in English | MEDLINE | ID: mdl-30307935

ABSTRACT

BACKGROUND: The temporal and spatial change in trends of antimicrobial resistance (AMR) in typhoid have not been systematically studied, and such information will be critical for defining intervention, as well as planning sustainable prevention strategies. METHODOLOGY AND FINDINGS: To identify the phenotypic trends in AMR, 13,833 individual S. Typhi isolates, reported from 1973 to 2018 in 62 publications, were analysed to determine the AMR preponderance over time. Separate analyses of molecular resistance determinants present in over 4,000 isolates reported in 61 publications were also conducted. Multi-drug resistant (MDR) typhoid is in decline in Asia in a setting of high fluoroquinolone resistance while it is on the increase in Africa. Mutations in QRDRs in gyrA (S83F, D87N) and parC (S80I) are the most common mechanisms responsible for fluoroquinolone resistance. Cephalosporin resistant S. Typhi, dubbed extensively drug-resistant (XDR) is a real threat and underscores the urgency in deploying the Vi-conjugate vaccines. CONCLUSION: From these observations, it appears that AMR in S. Typhi will continue to emerge leading to treatment failure, changes in antimicrobial policy and further resistance developing in S. Typhi isolates and other Gram-negative bacteria in endemic regions. The deployment of typhoid conjugate vaccines to control the disease in endemic regions may be the best defence.


Subject(s)
Anti-Bacterial Agents/pharmacology , Drug Resistance, Bacterial , Salmonella typhi/drug effects , Typhoid Fever/microbiology , Genes, Bacterial , Genotype , Global Health , Humans , Phenotype , Salmonella typhi/genetics
5.
Nat Commun ; 5: 4544, 2014 Aug 04.
Article in English | MEDLINE | ID: mdl-25088811

ABSTRACT

Streptococcus agalactiae (Group B Streptococcus, GBS) is a commensal of the digestive and genitourinary tracts of humans that emerged as the leading cause of bacterial neonatal infections in Europe and North America during the 1960s. Due to the lack of epidemiological and genomic data, the reasons for this emergence are unknown. Here we show by comparative genome analysis and phylogenetic reconstruction of 229 isolates that the rise of human GBS infections corresponds to the selection and worldwide dissemination of only a few clones. The parallel expansion of the clones is preceded by the insertion of integrative and conjugative elements conferring tetracycline resistance (TcR). Thus, we propose that the use of tetracycline from 1948 onwards led in humans to the complete replacement of a diverse GBS population by only few TcR clones particularly well adapted to their host, causing the observed emergence of GBS diseases in neonates.


Subject(s)
Anti-Bacterial Agents/pharmacology , Genes, Bacterial , Genome, Bacterial , Streptococcal Infections/epidemiology , Streptococcus agalactiae/genetics , Tetracycline Resistance/drug effects , Tetracycline/pharmacology , Base Sequence , Clone Cells , DNA Transposable Elements , Europe/epidemiology , High-Throughput Nucleotide Sequencing , Humans , Molecular Sequence Data , North America/epidemiology , Phylogeny , Polymorphism, Single Nucleotide , Selection, Genetic , Streptococcal Infections/drug therapy , Streptococcal Infections/microbiology , Streptococcus agalactiae/classification , Streptococcus agalactiae/drug effects , Streptococcus agalactiae/isolation & purification , Tetracycline Resistance/genetics
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