Hepatitis C virus phylogenetic clustering is associated with the social-injecting network in a cohort of people who inject drugs.

It is hypothesized that social networks facilitate transmission of the hepatitis C virus (HCV). We tested for association between HCV phylogeny and reported injecting relationships using longitudinal data from a social network design study. People who inject drugs were recruited from street drug mar...

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Main Authors: Rachel Sacks-Davis, Galina Daraganova, Campbell Aitken, Peter Higgs, Lilly Tracy, Scott Bowden, Rebecca Jenkinson, David Rolls, Philippa Pattison, Garry Robins, Jason Grebely, Alyssa Barry, Margaret Hellard
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3482197?pdf=render
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spelling doaj-1dad44ae99d1416e99c73730e0da24042020-11-25T02:30:16ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01710e4733510.1371/journal.pone.0047335Hepatitis C virus phylogenetic clustering is associated with the social-injecting network in a cohort of people who inject drugs.Rachel Sacks-DavisGalina DaraganovaCampbell AitkenPeter HiggsLilly TracyScott BowdenRebecca JenkinsonDavid RollsPhilippa PattisonGarry RobinsJason GrebelyAlyssa BarryMargaret HellardIt is hypothesized that social networks facilitate transmission of the hepatitis C virus (HCV). We tested for association between HCV phylogeny and reported injecting relationships using longitudinal data from a social network design study. People who inject drugs were recruited from street drug markets in Melbourne, Australia. Interviews and blood tests took place three monthly (during 2005-2008), with participants asked to nominate up to five injecting partners at each interview. The HCV core region of individual isolates was then sequenced and phylogenetic trees were constructed. Genetic clusters were identified using bootstrapping (cut-off: 70%). An adjusted Jaccard similarity coefficient was used to measure the association between the reported injecting relationships and relationships defined by clustering in the phylogenetic analysis (statistical significance assessed using the quadratic assignment procedure). 402 participants consented to participate; 244 HCV infections were observed in 238 individuals. 26 genetic clusters were identified, with 2-7 infections per cluster. Newly acquired infection (AOR = 2.03, 95% CI: 1.04-3.96, p = 0.037, and HCV genotype 3 (vs. genotype 1, AOR = 2.72, 95% CI: 1.48-4.99) were independent predictors of being in a cluster. 54% of participants whose infections were part of a cluster in the phylogenetic analysis reported injecting with at least one other participant in that cluster during the study. Overall, 16% of participants who were infected at study entry and 40% of participants with newly acquired infections had molecular evidence of related infections with at least one injecting partner. Likely transmission clusters identified in phylogenetic analysis correlated with reported injecting relationships (adjusted Jaccard coefficient: 0.300; p<0.001). This is the first study to show that HCV phylogeny is associated with the injecting network, highlighting the importance of the injecting network in HCV transmission.http://europepmc.org/articles/PMC3482197?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Rachel Sacks-Davis
Galina Daraganova
Campbell Aitken
Peter Higgs
Lilly Tracy
Scott Bowden
Rebecca Jenkinson
David Rolls
Philippa Pattison
Garry Robins
Jason Grebely
Alyssa Barry
Margaret Hellard
spellingShingle Rachel Sacks-Davis
Galina Daraganova
Campbell Aitken
Peter Higgs
Lilly Tracy
Scott Bowden
Rebecca Jenkinson
David Rolls
Philippa Pattison
Garry Robins
Jason Grebely
Alyssa Barry
Margaret Hellard
Hepatitis C virus phylogenetic clustering is associated with the social-injecting network in a cohort of people who inject drugs.
PLoS ONE
author_facet Rachel Sacks-Davis
Galina Daraganova
Campbell Aitken
Peter Higgs
Lilly Tracy
Scott Bowden
Rebecca Jenkinson
David Rolls
Philippa Pattison
Garry Robins
Jason Grebely
Alyssa Barry
Margaret Hellard
author_sort Rachel Sacks-Davis
title Hepatitis C virus phylogenetic clustering is associated with the social-injecting network in a cohort of people who inject drugs.
title_short Hepatitis C virus phylogenetic clustering is associated with the social-injecting network in a cohort of people who inject drugs.
title_full Hepatitis C virus phylogenetic clustering is associated with the social-injecting network in a cohort of people who inject drugs.
title_fullStr Hepatitis C virus phylogenetic clustering is associated with the social-injecting network in a cohort of people who inject drugs.
title_full_unstemmed Hepatitis C virus phylogenetic clustering is associated with the social-injecting network in a cohort of people who inject drugs.
title_sort hepatitis c virus phylogenetic clustering is associated with the social-injecting network in a cohort of people who inject drugs.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description It is hypothesized that social networks facilitate transmission of the hepatitis C virus (HCV). We tested for association between HCV phylogeny and reported injecting relationships using longitudinal data from a social network design study. People who inject drugs were recruited from street drug markets in Melbourne, Australia. Interviews and blood tests took place three monthly (during 2005-2008), with participants asked to nominate up to five injecting partners at each interview. The HCV core region of individual isolates was then sequenced and phylogenetic trees were constructed. Genetic clusters were identified using bootstrapping (cut-off: 70%). An adjusted Jaccard similarity coefficient was used to measure the association between the reported injecting relationships and relationships defined by clustering in the phylogenetic analysis (statistical significance assessed using the quadratic assignment procedure). 402 participants consented to participate; 244 HCV infections were observed in 238 individuals. 26 genetic clusters were identified, with 2-7 infections per cluster. Newly acquired infection (AOR = 2.03, 95% CI: 1.04-3.96, p = 0.037, and HCV genotype 3 (vs. genotype 1, AOR = 2.72, 95% CI: 1.48-4.99) were independent predictors of being in a cluster. 54% of participants whose infections were part of a cluster in the phylogenetic analysis reported injecting with at least one other participant in that cluster during the study. Overall, 16% of participants who were infected at study entry and 40% of participants with newly acquired infections had molecular evidence of related infections with at least one injecting partner. Likely transmission clusters identified in phylogenetic analysis correlated with reported injecting relationships (adjusted Jaccard coefficient: 0.300; p<0.001). This is the first study to show that HCV phylogeny is associated with the injecting network, highlighting the importance of the injecting network in HCV transmission.
url http://europepmc.org/articles/PMC3482197?pdf=render
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