Pilot trial testing the effects of exercise on chemotherapy-induced peripheral neurotoxicity (CIPN) and the interoceptive brain system.

Jennifer S Gewandter, Shelli R Kesler, Po-Ju Lin, Ian R Kleckner, Eva Culakova, Richard F Dunne, Karen M Mustian, Kah Poh Loh, Amber S Kleckner, Thushini Manuweera, Kaitlin H Chung, Madalina E Tivarus, Nimish A Mohile

Journal: Supportive care in cancer : official journal of the Multinational Association of Supportive Care in Cancer 2024;32(10):677

PMID: 39304604

Abstract

PURPOSE

Chemotherapy-induced peripheral neurotoxicity (CIPN) is a prevalent, dose-limiting, tough-to-treat toxicity involving numbness, tingling, and pain in the extremities with enigmatic pathophysiology. This randomized controlled pilot study explored the feasibility and preliminary efficacy of exercise during chemotherapy on CIPN and the role of the interoceptive brain system, which processes bodily sensations.

METHODS

Nineteen patients (65 ± 11 years old, 52% women; cancer type: breast, gastrointestinal, multiple myeloma) starting neurotoxic chemotherapy were randomized to 12 weeks of exercise (home-based, individually tailored, moderate intensity, progressive walking, and resistance training) or active control (nutrition education). At pre-, mid-, and post-intervention, we assessed CIPN symptoms (primary clinical outcome: CIPN-20), CIPN signs (tactile sensitivity using monofilaments), and physical function (leg strength). At pre- and post-intervention, we used task-free ("resting") fMRI to assess functional connectivity in the interoceptive brain system, involving the salience and default mode networks.

RESULTS

The study was feasible (74-89% complete data across measures) and acceptable (95% retention). We observed moderate/large beneficial effects of exercise on CIPN symptoms (CIPN-20, 0-100 scale: - 7.9 ± 5.7, effect size [ES] =  - 0.9 at mid-intervention; - 4.8 ± 7.3, ES = - 0.5 at post-intervention), CIPN signs (ES =  - 1.0 and - 0.1), and physical function (ES = 0.4 and 0.3). Patients with worse CIPN after neurotoxic chemotherapy had lower functional connectivity within the default mode network (R = 40-60%) and higher functional connectivity within the salience network (R = 20-40%). Exercise tended to increase hypoconnectivity and decrease hyperconnectivity seen in CIPN (R = 12%).

CONCLUSION

Exercise during neurotoxic chemotherapy is feasible and may attenuate CIPN symptoms and signs, perhaps via changes in interoceptive brain circuitry. Future work should test for replication with larger samples.

TRIAL REGISTRATION

Registered Jan 2017 on ClinicalTrials.gov as NCT03021174.

© 2024. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.

Address: University of Maryland School of Nursing, Baltimore, MD, 21201, USA. [email protected].; University of Maryland School of Nursing, Baltimore, MD, 21201, USA.; University of Rochester Medical Center, 265 Crittenden Blvd, Box CU 420658, Rochester, NY, 14642, USA.; University of Maryland School of Nursing, Baltimore, MD, 21201, USA.; Cornell University, Ithaca, NY, 14853, USA.; University of Texas at Austin, Austin, TX, 78712, USA.
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