Effects of caffeine intake on pupillary parameters in humans: a systematic review and meta-analysis.

Manuel Spitschan, Carolin Franziska Reichert, Elias Vincent Hartmann

Journal: Behavioral and brain functions : BBF 2024;20(1):19

PMID: 39103929

Abstract

Caffeine is a widely used drug that broadly affects human cognition and brain function. Caffeine acts as an antagonist to the adenosine receptors in the brain. Previous anecdotal reports have also linked caffeine intake with changes in pupil diameter. By modifying the retinal irradiance, pupil diameter modulates all ocular light exposure relevant for visual (i.e., perception, detection and discrimination of visual stimuli) and non-visual (i.e., circadian) functions. To date, the extent of the influence of caffeine on pupillary outcomes, including pupil diameter, has not been examined in a systematic review. We implemented a systematic review laid out in a pre-registered protocol following PRISMA-P guidelines. We only included original research articles written in English reporting studies with human participants, in which caffeine was administered, and pupil diameter was measured using objective methods. Using broad search strategies, we consulted various databases (PsycINFO, Medline, Embase, Cochrane Library, bioRxiv and medRxiv) and used the Covidence platform to screen, review and extract data from studies. After importing studies identified through database search (n = 517 imported, n = 46 duplicates), we screened the title and abstracts (n = 471), finding 14 studies meeting our eligibility criteria. After full-text review, we excluded seven studies, leaving only a very modest number of included studies (n = 7). Extraction of information revealed that the existing literature on the effect of caffeine on pupil parameters is very heterogeneous, differing in pupil assessment methods, time of day of caffeine administration, dose, and protocol timing and design. The evidence available in the literature does not provide consistent results but studies rated as valid by quality assessment suggest a small effect of caffeine on pupil parameters. We summarize the numeric results as both differences in absolute pupil diameter and in terms of effect sizes. More studies are needed using modern pupil assessment methods, robust study design, and caffeine dose-response methodology.

© 2024. The Author(s).

Address: Centre for Chronobiology, University Psychiatric Clinics Basel (UPK), Basel, Switzerland.; Centre for Chronobiology, University Psychiatric Clinics Basel (UPK), Basel, Switzerland. [email protected].; Transfaculty Research Platform Molecular and Cognitive Neurosciences, University of Basel, Basel, Switzerland. [email protected].; Max Planck Institute for Biological Cybernetics, Translational Sensory & Circadian Neuroscience, Tübingen, Germany. [email protected].; TUM School of Medicine & Health, Technical University of Munich, Munich, Germany. [email protected].; TUM Institute for Advanced Study (TUM-IAS), Technical University of Munich, Garching, Germany. [email protected].
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