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Acute effects of the 1-minute sit-to-stand test (STST) on immune-metabolic stress indices

Wiebke Röhr, Rebecca Simon, S. Kirschke, Isabell S. von Loga, David Putrino, Wilhelm Bloch et al. · Scientific Reports · 2026

Researchers had 28 healthy adults do a 1-minute sit-to-stand test and took fingertip blood samples before, right after, and for 45 minutes afterward to track lactate, glucose, and immune cell counts. The single minute of effort pushed lactate above the anaerobic threshold (>4 mmol/L) and significantly raised white blood cell, lymphocyte, and granulocyte counts, with leukocytes returning to baseline within 30 minutes while granulocytes stayed elevated; lactate changes tracked with the immune cell changes.
Takeaway: Use the 1-minute sit-to-stand test as a quick, equipment-free way to generate a genuinely hard anaerobic effort.
Abstract (source)

Characterizing the non-pathological, exercise-induced immune-metabolic stress regulation is important for understanding physiological adaptations and distinguishing them from maladaptive responses. Because such responses are mostly studied with extensive, resource-intensive protocols, simple, standardized tests eliciting measurable immune-metabolic responses are valuable in clinical and non-clinical settings. Established field tests assess functional exercise capacity rather than providing a standardized stimulus for investigating exercise-induced immune regulation. This study examined the effects of the 1-minute sit-to-stand test (STST) on immune-metabolic stress indices and whether it elicits sufficient anaerobic stress to serve as a tool for investigating exercise-induced immunological stress responses. Capillary blood from 28 healthy adults was collected before, immediately after, and during 45 min after exercise to determine lactate, glucose, and blood cell counts; hemoconcentration correction was applied. Lactate increased significantly immediately after the STST, exceeding the anaerobic threshold (> 4 mmol/L). Leukocyte, lymphocyte, and granulocyte counts rose significantly post-exercise; leukocytes returned to baseline by 30 min, whereas granulocytes remained elevated. GLR and SII decreased significantly immediately post-exercise and increased during recovery, together with SIRI. Lactate changes correlated significantly with leukocyte, lymphocyte and granulocyte changes. Therefore, the STST represents a practical, standardized field-based model for immune-metabolic assessment with translational potential for clinical and non-clinical settings.

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