Second Hospital of Shanxi Medical University
Taiyuan, Shanxi, 030001, China
NCT Number: NCT07595887
Diabetic peripheral neuropathy (DPN) is a common and serious complication of diabetes that causes numbness, pain, and weakness, often starting in the feet. Currently, there is no cure, and early diagnosis is difficult with standard tests alone. This observational study aims to find better ways to detect DPN in its early stages.
The researchers will use high-frequency ultrasound, a painless and non-invasive imaging tool, to measure two things in patients with type 2 diabetes: the cross-sectional area of the sciatic nerve (to look for swelling) and the blood flow velocity in the inferior gluteal artery (a vessel that supplies the nerve).In parallel, a bioinformatics analysis has identified a key target gene, Matrix Metalloproteinase 9(MMP9), which may play a role in nerve damage through a specific signaling pathway. The level of this protein will be measured in the patients' blood.
A total of 120 participants will be grouped by the severity of their nerve damage, assessed by Toronto Clinical Scoring System (TCSS). The study will investigate whether the ultrasound measurements correlate with the clinical scores, nerve conduction studies, and the blood levels of the target protein. The ultimate goal is to combine these ultrasound structure, blood flow function, and molecular markers to build a more accurate tool for the early diagnosis and precise management of DPN, bridging the gap from early warning to mechanism-based care.
Trial opening soon.
Get Notified20 year–75 year
All sexes
Observational
Taiyuan, Shanxi, 030001, China
This study is a prospective, observational, cross-sectional investigation designed to explore the early diagnostic value of high-frequency ultrasound in patients with type 2 diabetic peripheral neuropathy(DPN) by integrating bioinformatics-derived molecular markers. The study aims to validate a "Structure-function-molecule" cascade hypothesis for DPN progression.
Background and Rationale:
DPN is a highly disabling complication of diabetes with no current disease-modifying treatment, underscoring the urgent need for early detection. Prior work by our group found that elevated N/OFQ in DPN rats was associated with reduced limb blood flow, mediated by Membrane Metallo-Endopeptidase(MME). Shifting the focus from vascular to neural mechanisms, the present study employed independent bioinformatics analysis and identified MMP9 as a core target gene linking N/OFQ to DPN-related nerve damage, enriched in the AMPK signaling pathway. This clinical study therefore aims to validate MMP9 as a serum biomarker and examine its correlation with sciatic nerve cross-sectional area and inferior gluteal artery blood flow velocity on ultrasound across DPN severity grades.
Study Design and Participants:
A total of 120 adult patients with type 2 diabetes mellitus, diagnosed according to World Health Organization criteria, will be consecutively recruited from the Endocrinology Department of the Second Hospital of Shanxi Medical University.
Grouping and Assessments:
Participants will be stratified into three distinct severity grades based on the Toronto Clinical Scoring System(TCSS): Grade 1 (0-5 points), Grade 2 (6-9 points), Grade 3 (≥10 points). Each participant will undergo the following integrated assessments:
Standard electrophysiological parameters, including motor nerve conduction velocity(MNCV) and sensory nerve conduction velocity(SNCV) for the lower limbs, will be recorded for correlation.
Outcome Measures and Statistical Analysis:
Statistical analysis will employ ANOVA or Kruskal-Wallis tests for inter-group comparisons. Pearson or Spearman correlation coefficients will quantify the relationships among nerve structure, blood flow, and molecular markers. The combined diagnostic performance will be assessed using receiver operating characteristic (ROC) curves and logistic regression models to calculate the area under the curve (AUC). The study hypothesizes that a multimodal diagnostic model integrating imaging and serum biomarkers will provide superior sensitivity and specificity for early DPN detection compared to single-modality assessments alone.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
This is a purely observational study. No investigational drug, device, or biological product will be administered, and no clinical procedures will be performed outside of standard clinical care for the sole purpose of this research. All participants will receive routine standard-of-care as determined by their treating physicians. The study will only involve non-invasive data collection including clinical assessment, ultrasound imaging, nerve conduction studies, and blood sampling for biomarker analysis, which are all conducted as part of the study assessments, not as interventions.
Time frame: At the time of enrollment
The combined diagnostic performance of the multimodal (ultrasound + serum biomarker) for early DPN detection will be assessed using receiver operating characteristic (ROC) curve analysis and expressed as the area under the curve (AUC).
Time frame: At the time of enrollment
To compare the sciatic nerve cross-sectional area (CSA, in mm²) measured by high-frequency ultrasound among groups with different DPN severity grades defined by TCSS scores.
Time frame: At the time of enrollment
To compare the peak systolic velocity (PSV) of the inferior gluteal artery measured by pulsed-wave Doppler ultrasound among groups with different DPN severity grades.
Time frame: At the time of enrollment
To compare motor nerve conduction velocity (MNCV) and sensory nerve conduction velocity (SNCV) of bilateral common peroneal, tibial sural, and superficial peroneal nerves among groups with different DPN severity grades.
Contact information is provided by the study sponsor or research team.
Second Hospital of Shanxi Medical University
Other
An Observational Study to Explore the Early Diagnostic Value of Ultrasonographic Sciatic Nerve Cross-Sectional Area and Inferior Gluteal Artery Blood Flow Velocity in Patients With Diabetic Peripheral Neuropathy Stratified by Severity: Integrating Bioinformatics-Based Exploration of Neuropathy Mechanisms and Correlation With a DPN Target Gene
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
Published trials that share one or more normalized conditions with this study.
NCT07078565
Diabetes Mellitus, Diabetes Mellitus, Type 2
Lahore, Punjab Province, Pakistan
View Trial DetailsNCT07551726
Diabetic Peripheral Neuropathy (DPN), Electroacupuncture
View Trial DetailsNCT07518433
Diabetic Peripheral Neuropathy (DPN), Neurologic Manifestations
Hangzhou, Zhejiang, China
View Trial DetailsNCT07708233
Diabetic Peripheral Neuropathy (DPN)
Pathumthani, Bangkok, Thailand
View Trial Details