Aqueous Humor Analysis Identifies Higher Branched Chain Amino Acid Metabolism as a Marker for Human Leukocyte Antigen-B27 Acute Anterior Uveitis and Disease Activity

Publication date

2019-02-01

Authors

Verhagen, Fleurieke H
Stigter, Edwin CaISNI 0000000389090454
Pras-Raves, Mia LORCID 0000-0002-5624-8094
Burgering, Boudewijn M TORCID 0000-0002-4044-9596ISNI 0000000391409962
Imhof, SaskiaISNI 0000000391274981
Radstake, Timothy R D JISNI 0000000382903168
de Boer, JokeISNI 0000000389203367
Kuiper, JonasISNI 0000000395156202

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Supervisors

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Article

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taverne

Abstract

Purpose: Human leukocyte antigen-B27 (HLA-B27)–positive acute anterior uveitis (AAU) has a higher recurrence rate and shows more anterior chamber cell infiltration compared with HLA-B27–negative patients, suggesting distinct etiologies of these clinically overlapping conditions. To advance our understanding of the biology of AAU, we characterized the metabolic profile of aqueous humor (AqH) of patients with HLA-B27–associated AAU (B27-AAU) and noninfectious idiopathic AAU (idiopathic AAU). Design: Experimental laboratory study. Methods: AqH samples from 2 independent cohorts totaling 30 patients with B27-AAU, 16 patients with idiopathic AAU, and 20 patients with cataracts underwent 2 individual rounds of direct infusion mass spectrometry. Features predicted by direct infusion mass spectrometry that facilitated maximum separation between the disease groups in regression models were validated by liquid chromatography/tandem mass spectrometry–based quantification with appropriate standards. Results: Partial least square-discriminant analysis revealed metabolite profiles that were able to separate patients with B27-AAU from those with iodiopathic AAU. Pathway enrichment analysis, based on metabolites on which separation of the groups in the partial least square-discriminant analysis model was based, demonstrated the involvement of branched-chain amino acid biosynthesis, ascorbate and aldarate metabolism, the tricarboxylic acid cycle, and glycolysis-diverting pathways (eg, serine biosynthesis) across all investigated cohorts. Notably, the metabolite ketoleucine was elevated in B27-AAU across all 3 runs and moderately—but robustly—correlated with anterior chamber cell count (correlation coefficient range 0.41–0.81). Conclusions: These results illustrate metabolic heterogeneity between HLA-B27–positive and HLA-B27–negative AAU, including an increase of branched-chain amino acid biosynthesis, that reflects disease activity in AAU.

Keywords

Taverne, Ophthalmology

Citation

Verhagen, F H, Stigter, E C A, Pras-Raves, M L, Burgering, B M T, Imhof, S M, Radstake, T R D J, de Boer, J H & Kuiper, J J W 2019, 'Aqueous Humor Analysis Identifies Higher Branched Chain Amino Acid Metabolism as a Marker for Human Leukocyte Antigen-B27 Acute Anterior Uveitis and Disease Activity', American Journal of Ophthalmology, vol. 198, pp. 97-110. https://doi.org/10.1016/j.ajo.2018.10.004