Neuropathic pain affects the quality of life of many Americans. Non-pharmacological strategies such as bioactive compounds in foods are being explored as therapeutics but can also serve as tools to better understand pain mechanisms. The previous study reported that ginger root extract supplementation palliated pain-spectrum behaviors in animals with neuropathic pain via the microbiota-gut-brain axis. The proposed study is primarily designed to use ginger supplementation for a better understanding of the role of microbiota-gut-brain interactions in sciatica states in a randomized, double-blinded, and placebo-controlled trial. Eighty participants with sciatica will be randomized to receive placebo (2000 mg starch daily) or ginger (2000 mg daily) for 8 weeks. This study will evaluate the effects of ginger supplementation on gut function measured as gut microbiota composition using 16S rRNA sequencing analysis, intestinal permeability based on plasma lipopolysaccharide binding protein and fecal zonulin using ELISA, and fecal metabolites using LC-MS/MS analysis (SA 1); on neuroinflammation in whole blood mRNA using nCounter® Neuroinflammation Panels analysis (SA 2); and on pain-associated outcomes and brain neuroplasticity by assessing functional (resting state-fMRI) and structural (Diffusion Tensor Imaging) connectivity (SA 3).
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
TRIPLE
Enrollment
80
Texas Tech University Health Sciences Center
Lubbock, Texas, United States
NOT_YET_RECRUITINGTexas Tech University Health Sciences Center
Lubbock, Texas, United States
RECRUITINGplasma lipopolysaccharide binding protein (LBP)
Intestinal permeability biomarker
Time frame: baseline and after 8 weeks
fecal zonulin
intestinal permeability marker
Time frame: baseline and after 8 weeks
brief pain inventory (BPI)
pain assessment
Time frame: baseline and after 8 weeks
SF-MPQ
pain assessment
Time frame: baseline and after 8 weeks
fecal metabolites using LC-MS/MS analysis
Untargeted fecal metabolites will be assessed using LC-MS/MS analysis and the combination of retention time and mass signature provides great specificity for each metabolite identification.
Time frame: baseline and after 8 weeks
gut microbiome using 16S rRNA amplicon sequencing
Fecal gut microbiome composition is a collection of microorganisms that live in the human digestive tract.
Time frame: baseline and after 8 weeks
neuroinflammation genes
Whole blood neuroinflammation gene profiles will be analyzed using nCounter® Neuroinflammation Panel to evaluate pathways, processes, and cell types that are involved in neuroinflammation.
Time frame: baseline and after 8 weeks
structural connectivity using resting state-fMRI
Resting state-fMRI connectivity in brain will be examined between the left and right amygdala seed regions and the broader bilateral mPFC, defined using the probabilistic Harvard-Oxford Subcortical Structural Atlas in FSL.
Time frame: baseline and after 8 weeks
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