The long-term goal of this project is to improve clinical pain and symptoms for older adults with knee osteoarthritis (OA) using home-based nonpharmacological approaches. Knee OA is one of the most common pain conditions among people over 45 years old, and the management of OA pain is challenging because existing pharmacological approaches often produce significant adverse events, and the treatment benefits may decrease over time. Also, knee OA pain is characterized by increased pain-related brain activation, possibly explaining the limited success of existing peripherally based treatments that target the pain locally in the area of the knee. Therefore, innovative nonpharmacological interventions targeting pain-related brain function are needed. Two nonpharmacological pain treatments, transcranial direct current stimulation (tDCS) and mindfulness-based meditation (MBM), have been shown to improve pain-related brain function in older adults with knee OA. The rationale for the proposed research is that because tDCS promotes neuroplasticity, it may potentiate the effect of MBM, which also stimulates adaptive changes in the brain. However, no investigations to date have examined whether remotely supervised tDCS paired with MBM at home can enhance pain-related brain function and reduce OA-related clinical pain and symptoms. Home-based interventions are critical because older adults with knee OA have limited mobility, and recent technological advances have created the potential for home interventions with real-time monitoring through a secure videoconferencing platform. The central hypothesis is that remotely supervised tDCS paired with MBM at home will decrease clinical pain and OA-related clinical symptoms, improve physiopsychological pain processing, and increase participant satisfaction with treatment. This hypothesis will be tested by pursuing the following specific aims: determine the effects of active tDCS paired with active MBM on clinical pain and OA-related clinical symptoms (specific aim 1); determine the effects of active tDCS paired with active MBM on physiopsychological pain processing (specific aim 2); and determine the effects of active tDCS paired with active MBM on participant satisfaction with treatment (specific aim 3). The proposed study will directly investigate the effects of remotely supervised tDCS paired with MBM at home in 200 older adults with symptomatic knee OA using a double-blind, randomized, sham-controlled, phase II parallel group (1:1:1:1 for four groups defined by 2x2 factorial design) design. The proposed research is significant because it is expected to provide valuable insight into an exciting new modality of nonpharmacological pain self-management that is extremely easy, safe, and noninvasive with minimal side effects.

Public Health Relevance

Knee osteoarthritis pain is one of the most common pain conditions among people over 45 years old, and pharmacological interventions do not adequately address this common comorbid condition. The proposed study will determine whether home-based remotely supervised transcranial direct current stimulation paired with mindfulness-based meditation can enhance pain-related brain function and reduce osteoarthritis-related clinical pain and symptoms. This study has the potential to significantly improve pain and symptom management, decrease public health expenditures, and improve the quality of life for older adults.

Agency
National Institute of Health (NIH)
Institute
National Institute of Nursing Research (NINR)
Type
Research Project (R01)
Project #
5R01NR019051-02
Application #
10144506
Study Section
Termination was authorized on 9/28/2020. Clinical Management of Patients in Community-based Settings Study Section (CMPC)
Program Officer
Matocha, Martha F
Project Start
2020-04-14
Project End
2025-01-31
Budget Start
2021-02-01
Budget End
2022-01-31
Support Year
2
Fiscal Year
2021
Total Cost
Indirect Cost
Name
University of Texas Health Science Center Houston
Department
Type
Schools of Nursing
DUNS #
800771594
City
Houston
State
TX
Country
United States
Zip Code
77030