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Accidental Father-to-Son HIV-1 Transmission During the Seroconversion Period
Ifeanyi Ezeonwumelu1,2, Inês Bártolo1, Francisco Martin1
11 HIV Evolution, Epidemiology and Prevention, Research Institute for Medicines (iMed.ULisboa), Faculdade de Farmácia, Universidade de Lisboa, Lisboa, Portugal .
Insights
Forensic investigation identified the father as the source of HIV-1 transmission to his child. Genetic and antibody analyses confirmed transmission occurred accidentally during the father
Area of Science:
- * Virology
- * Molecular Epidemiology
- * Forensic Science
Background:
- * Human Immunodeficiency Virus type 1 (HIV-1) transmission can occur from parent to child.
- * Forensic investigations require precise identification of HIV transmission sources and timelines.
- * Seroconversion, the period when an infected individual becomes detectable, presents unique challenges in transmission tracing.
Observation:
- * A child was diagnosed with HIV-1, with the father identified as the likely source.
- * Phylogenetic analysis of HIV-1 gag, pol, and env genes from father and child samples.
- * Both father and child exhibited broad and potent HIV-specific neutralizing antibody responses.
Findings:
- * Bayesian and Maximum Likelihood phylogenetic methods consistently indicated father-to-son HIV-1 transmission.
- * Molecular clock analysis estimated the child's infection occurred shortly after the father's, during his seroconversion period.
- * Genetic and serological data corroborated the transmission event and its timing.
Implications:
- * This case highlights the utility of integrated genetic, phylogenetic, and serological data in forensic HIV transmission investigations.
- * Accidental transmission during the unaware seroconversion period underscores the importance of early diagnosis and prevention.
- * Demonstrates the capability to reconstruct HIV transmission events with high confidence for legal and public health purposes.
Abstract:
A 4-year-old child born to an HIV-1 seronegative mother was diagnosed with HIV-1, the main risk factor being transmission from the child's father who was seroconverting at the time of the child's birth. In the context of a forensic investigation, we aimed to identify the source of infection of the child and date of the transmission event. Samples were collected from the father and child at two time points about 4 years after the child's birth. Partial segments of three HIV-1 genes (gag, pol, and env) were sequenced and maximum likelihood (ML) and Bayesian methods were used to determine direction and estimate date of transmission. Neutralizing antibodies were determined using a single cycle assay. Bayesian trees displayed a paraphyletic-monophyletic topology in all three genomic regions, with the father's host label at the root, which is consistent with father-to-son transmission. ML trees found similar topologies in gag and pol and a monophyletic-monophyletic topology in env. Analysis of the time of the most recent common ancestor of each HIV-1 gene population indicated that the child was infected shortly after the father. Consistent with the infection history, both father and son developed broad and potent HIV-specific neutralizing antibody responses. In conclusion, the direction of transmission implicated the father as the source of transmission. Transmission occurred during the seroconversion period when the father was unaware of the infection and was likely accidental. This case shows how genetic, phylogenetic, and serological data can contribute for the forensic investigation of HIV transmission.
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