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◆ The ocular surface2026-09-23

Species-specific tear proteomic signatures in humans and rabbits: A DIA mass spectrometry comparative study.

Sunay Kamalasanan, Saleh Ahmed, Victoria Clifton, Steven Safille, Tae Jin Lee, Shruti Sharma, Sreekala P V Shenoy, Patrick Michael McNutt, Ashok Sharma

一句话结论 · In one sentence

Human and rabbit tears share a conserved core proteome while exhibiting distinct species-associated proteomic profiles. Rabbit-enriched proteins warrant further functional investigation to determine their roles in tear film stability and evaluate their potential for future therapeutic strategies aimed at reducing excessive tear evaporation.

原始摘要(英文原文)· Original abstract
PURPOSE: Rabbits exhibit an exceptionally low blink frequency and a markedly prolonged tear breakup time compared with humans. These physiological differences suggest the presence of specialized tear-stabilizing mechanisms that may be reflected in the molecular composition of rabbit tear fluid. This exploratory study compared human and rabbit tear proteomes to identify shared and species-associated differences potentially relevant to tear film stability and ocular surface homeostasis. METHODS: Basal tears were collected from 10 healthy human subjects and 10 healthy New Zealand White rabbits using Schirmer strips. Tear proteins were analyzed by liquid chromatography-tandem mass spectrometry. Orthologous proteins were mapped using `biomaRt` package to enable comparative cross-species analysis. RESULTS: A total of 5,270 human and 3,876 rabbit proteins were detected across the cohorts, of which 4,481 and 3,514, respectively, were detected in at least 5 of 10 samples. Ortholog mapping identified 2,267 human-rabbit ortholog pairs, while 2,214 human and 1,181 rabbit proteins remained unmatched. Human tears were enriched in proteins associated with mucosal immunity and antimicrobial defense, including lysozyme C, lactotransferrin, lipocalin-1, lacritin, and immunoglobulins. In contrast, rabbit tears showed enrichment of proteins associated with lipid handling, antioxidant defense, and epithelial maintenance, including lipocalin-related proteins, lipophilins, uteroglobin, glutathione S-transferases, peroxiredoxin-6, and several uncharacterized proteins with predicted lipophilin/secretoglobin-like features. CONCLUSIONS: Human and rabbit tears share a conserved core proteome while exhibiting distinct species-associated proteomic profiles. Rabbit-enriched proteins warrant further functional investigation to determine their roles in tear film stability and evaluate their potential for future therapeutic strategies aimed at reducing excessive tear evaporation.
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Species-specific tear proteomic signatures in humans and rabbits: A DIA mass spectrometry comparative study. — 科研速览 Science Skim