Assessment of immune cell profiles among post-menopausal women in the Women’s Health Initiative using DNA methylation-based methods

Author:

Nissen Emily,Reiner Alexander,Liu Simin,Wallace Robert B.,Molinaro Annette M.,Salas Lucas A.,Christensen Brock C.,Wiencke John K.,Koestler Devin C.,Kelsey Karl T.

Abstract

AbstractBackgroundOver the past decade, DNA methylation (DNAm)-based deconvolution methods that leverage cell-specific DNAm markers of immune cell types have been developed to provide accurate estimates of the proportions of leukocytes in peripheral blood. Immune cell phenotyping using DNAm markers, termed immunomethylomics or methylation cytometry, offers a solution for determining the body’s immune cell landscape that does not require fresh blood and is scalable to large sample sizes. Despite significant advances in DNAm-based deconvolution, references at the population level are needed for clinical and research interpretation of these additional immune layers. Here we aim to provide some references for immune populations in a group of multi-ethnic post-menopausal American women.ResultsWe applied DNAm-based deconvolution to a large sample of post-menopausal women enrolled in the Women’s Health Initiative (baseline,N = 58) or the ancillary Long Life Study (WHI-LLS,N = 1237) to determine the reference ranges of 58 immune parameters, including proportions and absolute counts for 19 leukocyte subsets and 20 derived cell ratios. Participants were 50–94 years old at the time of blood draw, andN = 898 (69.3%) self-identified as White. Using linear regression models, we observed significant associations between age at blood draw and absolute counts and proportions of naïve B, memory CD4+, naïve CD4+, naïve CD8+, memory CD8+ memory, neutrophils, and natural killer cells. We also assessed the same immune profiles in a subset of paired longitudinal samples collected 14–18 years apart acrossN = 52 participants. Our results demonstrate high inter-individual variability in rates of change of leukocyte subsets over this time. And, when conducting paired t tests to test the difference in counts and proportions between the baseline visit and LLS visit, there were significant changes in naïve B, memory CD4+, naïve CD4+, naïve CD8+, memory CD8+ cells and neutrophils, similar to the results seen when analyzing the association with age in the entire cohort.ConclusionsHere, we show that derived cell counts largely reflect the immune profile associated with proportions and that these novel methods replicate the known immune profiles associated with age. Further, we demonstrate the value this methylation cytometry approach can add as a potential application in epidemiological studies.

Funder

National Cancer Institute Cancer Center Support Grant P30

Kansas IDeA Network of Biomedical Research Excellence Bioinformatics, supported by the National Institute of General Medical Science award P20

Kansas Institute for Precision Medicine COBRE, supported by the National Institute of General Medical Science award P20

Grant

CDMRP/Department of Defense

National Institute of General Medical Sciences

National Cancer Institute

Publisher

Springer Science and Business Media LLC

Subject

Genetics (clinical),Developmental Biology,Genetics,Molecular Biology

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