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Next-generation DNA methylation sequencing: loci and regions differentially methylated in adolescents with chronic postsurgical pain.

Journal articles  - Journal Article
Vijayarajan, SAL; Krolick, KN; Zhang, X; Martin, LJ; Glynn, S; Cole, K; Garcia, V; Ji, H; Ramamurthi, RJ; Einhorn, LM; Monitto, CL; Ganesh, A ...
Published in: Neurobiol Pain
2026

DNA methylation (DNAm) may link environmental exposures to pain susceptibility. We examined preoperative DNAm patterns (using next-generation enzymatic-methylation sequencing) associated with chronic postsurgical pain (CPSP), a major biopsychosocial problem in adolescents undergoing musculoskeletal surgeries, recruited across six sites (n = 166; 15.5 (IQR 14.3-16.8) years; 51% male). Pain and functional measures were followed longitudinally. CPSP was defined as pain>3/10 beyond two months post-surgery. We identified 289 differentially methylated loci (DML; HB p < 0.1) that satisfied robustness criteria after bootstrapping, and 20 regions (DMR) (FDR p < 0.05) associated with CPSP. Using CPSP-specific background, DMLs, annotated to 57 genes, were enriched for biological processes (Cellular response to cAMP (p = 0.001), neuronal action potential (p = 0.01), sodium ion transmembrane transport (p = 0.03), potassium ion transmembrane transport (P = 0.035) and regulation of postsynaptic membrane potential (P = 0.041)), molecular functions (Intracellular camp-activated cation channel activity (p = 0.001), cAMP binding (p = 0.003), voltage-gated sodium channel activity (p = 0.01), and voltage-gated potassium channel activity (p = 0.02)), and cellular components (HCN channel complex (p = 0.002), presynaptic active zone membrane (p = 0.006), and postsynaptic membrane (p = 0.049)). DMRs did not enrich gene pathways but showed transcription factor motif enrichment for stress response (TGF-β/SMAD), neuronal differentiation/plasticity (NR4A/TEAD), inflammation/immunity (STATs), and circadian signaling (RORA/RORB/NPAS2). Study findings suggest potential DNAm signatures associated with CPSP and generate hypotheses regarding their possible role in CPSP development.

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Published In

Neurobiol Pain

DOI

EISSN

2452-073X

Publication Date

2026

Volume

20

Start / End Page

100229

Location

United States
 

Citation

APA
Chicago
ICMJE
MLA
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Vijayarajan, S. A. L., Krolick, K. N., Zhang, X., Martin, L. J., Glynn, S., Cole, K., … Chidambaran, V. (2026). Next-generation DNA methylation sequencing: loci and regions differentially methylated in adolescents with chronic postsurgical pain. Neurobiol Pain, 20, 100229. https://doi.org/10.1016/j.ynpai.2026.100229
Vijayarajan, Siva Athitya Lakshamana, Kristen N. Krolick, Xue Zhang, Lisa J. Martin, Susan Glynn, Kristi Cole, Victor Garcia, et al. “Next-generation DNA methylation sequencing: loci and regions differentially methylated in adolescents with chronic postsurgical pain.Neurobiol Pain 20 (2026): 100229. https://doi.org/10.1016/j.ynpai.2026.100229.
Vijayarajan SAL, Krolick KN, Zhang X, Martin LJ, Glynn S, Cole K, et al. Next-generation DNA methylation sequencing: loci and regions differentially methylated in adolescents with chronic postsurgical pain. Neurobiol Pain. 2026;20:100229.
Vijayarajan, Siva Athitya Lakshamana, et al. “Next-generation DNA methylation sequencing: loci and regions differentially methylated in adolescents with chronic postsurgical pain.Neurobiol Pain, vol. 20, 2026, p. 100229. Pubmed, doi:10.1016/j.ynpai.2026.100229.
Vijayarajan SAL, Krolick KN, Zhang X, Martin LJ, Glynn S, Cole K, Garcia V, Ji H, Ramamurthi RJ, Einhorn LM, Monitto CL, Ganesh A, Chidambaran V. Next-generation DNA methylation sequencing: loci and regions differentially methylated in adolescents with chronic postsurgical pain. Neurobiol Pain. 2026;20:100229.
Journal cover image

Published In

Neurobiol Pain

DOI

EISSN

2452-073X

Publication Date

2026

Volume

20

Start / End Page

100229

Location

United States