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A Non-invasive Way to Isolate and Phenotype Cells from the Conjunctiva
Published on: July 5, 2017
Inverse relationship between microRNA-155 and -184 expression with increasing conjunctival inflammation during ocular
Tamsyn Derrick1, Anna R Last2, Sarah E Burr3,4
1Faculty of Infectious and Tropical Diseases, London School of Hygiene and Tropical Medicine, London, United Kingdom. tamsyn.derrick@lshtm.ac.uk.
Background:
Trachoma, a preventable blinding eye disease, is initiated by ocular infection with Chlamydia trachomatis (Ct). We previously showed that microRNAs (miR) -147b and miR-1285 were up-regulated in inflammatory trachomatous scarring. During the initial stage of disease, follicular trachoma with current Ct infection, the differential expression of miR has not yet been investigated.
Methods:
Conjunctival samples were collected from 163 children aged 1-9 years old living in a trachoma-endemic region of Guinea Bissau, West Africa. Small RNA sequencing (RNAseq) was carried out on samples from five children with follicular trachoma and current Ct infection and five children with healthy conjunctivae and no Ct infection. Small RNAseq was also carried out on human epithelial cell lines infected with ocular Ct strains A2497 and isogenic plasmid-free A2497 in vitro. Results were validated by quantitative PCR (qPCR) in 163 clinical samples.
Results:
Differential expression of RNAseq data identified 12 miR with changes in relative expression during follicular trachoma, of which 9 were confirmed as differentially expressed by qPCR (miR-155, miR-150, miR-142, miR-181b, miR-181a, miR-342, miR-132, miR-4728 and miR-184). MiR-155 and miR-184 expression had a direct relationship with the degree of clinical inflammation. MiR-155 was up-regulated (OR = 2.533 ((95 % CI = 1.291-4.971); P = 0.0069) and miR-184 was down-regulated (OR = 0.416 ((95 % CI = 0.300-0.578); P = 1.61*10(-7)) as the severity of clinical inflammation increased. Differential miR expression was not detected in HEp-2 or HCjE epithelial cells 48 h post infection with Ct in vitro. HCjE cells, a conjunctival epithelial cell line, had a markedly different miR background expression compared to HEp-2 cells.
Conclusions:
In follicular trachoma, expression of miR-155 and miR-184 is correlated with the severity of inflammation. This likely reflects host regulation of the immune response and a prolonged period of wound healing following the clearance of Ct. Prolonged healing may be associated with subsequent development of scarring trachoma.
Insights
MicroRNA (miR)-155 and miR-184 expression correlates with inflammation severity in follicular trachoma. This finding suggests a role in immune response regulation and prolonged healing, potentially leading to scarring.
Area of Science:
- Ophthalmology
- Microbiology
- Molecular Biology
Background:
- Trachoma is a preventable blinding eye disease caused by Chlamydia trachomatis (Ct).
- Previous research identified up-regulated microRNAs (miRs) in scarring trachoma.
- Differential miR expression in early-stage follicular trachoma remains uninvestigated.
Purpose of the Study:
- To investigate differential microRNA expression during the initial follicular stage of trachoma.
- To correlate microRNA expression with clinical inflammation severity in children with active Chlamydia trachomatis infection.
Main Methods:
- Small RNA sequencing (RNAseq) and quantitative PCR (qPCR) were used to analyze conjunctival samples from children in Guinea Bissau.
- Samples were from children with follicular trachoma and active Ct infection, and healthy controls.
- In vitro experiments used human epithelial cell lines infected with ocular Ct strains.
Main Results:
- Nine differentially expressed miRs were confirmed by qPCR, including miR-155 and miR-184.
- miR-155 expression increased, while miR-184 expression decreased with greater clinical inflammation.
- No differential miR expression was observed in epithelial cell lines 48 hours post-Ct infection in vitro.
Conclusions:
- Follicular trachoma shows a correlation between miR-155 and miR-184 expression levels and inflammation severity.
- These miRs likely modulate the host immune response and influence wound healing post-Ct infection.
- Altered miR expression may contribute to the progression from active infection to scarring trachoma.
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