Continuous glucose monitoring of postprandial and 24-hour responses in individuals with spinal cord injury

Context/Objective Spinal cord injury (SCI) is associated with autonomic and metabolic alterations that may impair glucose regulation. However, postprandial and 24-h glycemic dynamics in this population remain poorly understood. This study compared 5-h controlled postprandial and 24-h continuous glucose monitoring (CGM)-derived glycemic responses, including free-living monitoring, in individuals with and without SCI.Design Comparative acute experimental study.Setting University-based laboratory setting.Participants Twenty-nine individuals with SCI and 20 individuals without SCI were included in the 5-h analysis. Participants with SCI were wheelchair users at least 1 year post-injury, and all participants had no diagnosis of type 2 diabetes and were not using glucose-lowering medications. The 24-h analysis included 21 individuals with SCI and 16 individuals without SCI who met the 24-h CGM completeness criterion.Interventions Consumption of a standardized mixed meal followed by 5 h of seated rest, defined as the controlled postprandial period. The subsequent 19 h were monitored under free-living conditions.Outcome Measures CGM-derived area under the curve (AUC), mean glucose, glycemic variability indices, and time to peak glucose.Results During the 5-h controlled postprandial period, most CGM-derived outcomes, including AUC, mean glucose, and glycemic variability indices, were comparable between groups. However, the postprandial glucose response over time showed a significant group × time interaction (p < 0.001), and individuals with SCI had a shorter time to peak glucose than individuals without SCI [45 (30–60) vs. 75 (60–138.8) min; p < 0.001]. In the exploratory 24-h analysis, most CGM-derived outcomes were comparable between groups.Conclusion Individuals with SCI had a shorter CGM-derived time to peak glucose following a standardized mixed meal, despite largely comparable overall 5-h glycemic exposure and variability. Further CGM studies are needed to clarify the physiological relevance of postprandial glucose dynamics under both controlled and free-living conditions.

Authors

Institutions

Publication Details

Journal
Journal of Spinal Cord Medicine
Published
2026-09-25
DOI
https://doi.org/10.1080/10790268.2026.2731727
Primary Topic
Spinal Cord Injury Research
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Continuous glucose monitoring of postprandial and 24-hour responses in individuals with spinal cord injury

S. Kim, Ho Jeong Min, Sang Soo Jung, Sae Young Jae et al.
Journal of Spinal Cord Medicine
Spinal Cord Injury Research
article

Continuous glucose monitoring of postprandial and 24-hour responses in individuals with spinal cord injury

S. Kim, Ho Jeong Min, Sang Soo Jung, Sae Young Jae, Hyun Jeong Kim, Tae Gu Choi, Setor K. Kunutsor
article en

Abstract

Context/Objective Spinal cord injury (SCI) is associated with autonomic and metabolic alterations that may impair glucose regulation. However, postprandial and 24-h glycemic dynamics in this population remain poorly understood. This study compared 5-h controlled postprandial and 24-h continuous glucose monitoring (CGM)-derived glycemic responses, including free-living monitoring, in individuals with and without SCI.Design Comparative acute experimental study.Setting University-based laboratory setting.Participants Twenty-nine individuals with SCI and 20 individuals without SCI were included in the 5-h analysis. Participants with SCI were wheelchair users at least 1 year post-injury, and all participants had no diagnosis of type 2 diabetes and were not using glucose-lowering medications. The 24-h analysis included 21 individuals with SCI and 16 individuals without SCI who met the 24-h CGM completeness criterion.Interventions Consumption of a standardized mixed meal followed by 5 h of seated rest, defined as the controlled postprandial period. The subsequent 19 h were monitored under free-living conditions.Outcome Measures CGM-derived area under the curve (AUC), mean glucose, glycemic variability indices, and time to peak glucose.Results During the 5-h controlled postprandial period, most CGM-derived outcomes, including AUC, mean glucose, and glycemic variability indices, were comparable between groups. However, the postprandial glucose response over time showed a significant group × time interaction (p < 0.001), and individuals with SCI had a shorter time to peak glucose than individuals without SCI [45 (30–60) vs. 75 (60–138.8) min; p < 0.001]. In the exploratory 24-h analysis, most CGM-derived outcomes were comparable between groups.Conclusion Individuals with SCI had a shorter CGM-derived time to peak glucose following a standardized mixed meal, despite largely comparable overall 5-h glycemic exposure and variability. Further CGM studies are needed to clarify the physiological relevance of postprandial glucose dynamics under both controlled and free-living conditions.

Journal of Spinal Cord Medicine
University of Seoul (KR), University of Leicester (GB), Leicester General Hospital (GB), University of Manitoba (CA)
Good health and well-being
Openalex Percentile: Top 12%
Spinal Cord Injury Research
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.