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Published on: July 24, 2016
Early-Life Colonization by Anelloviruses in Infants
Joanna Kaczorowska1,2, Aurelija Cicilionytė1,2, Anne L Timmerman1,2
1Amsterdam UMC, Laboratory of Experimental Virology, Department of Medical Microbiology and Infection Prevention, Location University of Amsterdam, Meibergdreef 9, 1105 AZ Amsterdam, The Netherlands.
Insights
Anelloviruses colonize humans early in life, with beta- and gammatorqueviruses appearing first. Breastfeeding may contribute to this transmission of anelloviruses.
Area of Science:
- Virology
- Human Microbiome
- Pediatrics
Background:
- Anelloviruses (AVs) are ubiquitous in the human population, likely forming part of a healthy virome.
- AVs infect individuals early in life, but the initial colonizing AVs remain uncharacterized.
- Understanding early AV colonization is crucial for comprehending the human virome.
Purpose of the Study:
- To investigate the initial colonizing anelloviruses (AVs) in infants.
- To determine the prevalence and genera of AVs in young children.
- To explore the potential role of breastfeeding in AV transmission.
Main Methods:
- Screening of 107 infant blood samples for Alpha-, Beta-, and Gammatorquevirus genera.
- Age range of children: 0.4 to 64.8 months.
- Analysis of 63 breast milk samples for AV genera using qPCR.
Main Results:
- AVs were detected in infants as young as 1.2 months, with 100% prevalence between 12-18 months.
- Beta- and Gammatorqueviruses were prevalent in infants up to 12 months.
- Alphatorqueviruses increased in prevalence in children older than 12 months.
- Beta- and Gammatorqueviruses were significantly more common in breast milk (32%) than Alphatorqueviruses (10%).
Conclusions:
- Beta- and Gammatorqueviruses colonize humans during the first months of life.
- Breastfeeding may play a significant role in the early transmission of anelloviruses.
- The findings shed light on the early dynamics of AV colonization in the human virome.
Abstract:
Anelloviruses (AVs) are found in the vast majority of the human population and are most probably part of a healthy virome. These viruses infect humans in the early stage of life, however, the characteristics of the first colonizing AVs are still unknown. We screened a collection of 107 blood samples from children between 0.4 and 64.8 months of age for the presence of three AV genera: the Alpha-, Beta- and Gammatorquevirus. The youngest child that was positive for AV was 1.2 months old, and a peak in prevalence (100% of samples positive) was reached between the twelfth and eighteenth months of life. Intriguingly, the beta- and gammatorqueviruses were detected most at the early stage of life (up to 12 months), whereas alphatorqueviruses, the most common AVs in adults, increased in prevalence in children older than 12 months. To determine whether that order of colonization may be related to oral transmission and unequal presence of AV genera in breast milk, we examined 63 breast milk samples. Thirty-two percent of the breast milk samples were positive in a qPCR detecting beta- and gammatorqueviruses, while alphatorqueviruses were detected in 10% of the samples, and this difference was significant (p = 0.00654). In conclusion, we show that beta- and gammatorqueviruses colonize humans in the first months of life and that breastfeeding could play a role in AV transmission.
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