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Longitudinal Spatial Frequency Domain Imaging Study

Spatial Frequency Domain Imaging, Comparison of a Novel Method to Quantify Skin Fibrosis With Currently Used Methods in Scleroderma

Status
Active, not recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05672992
Acronym
SFDI
Enrollment
78
Registered
2023-01-05
Start date
2023-02-10
Completion date
2028-09-30
Last updated
2026-01-14

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Systemic Scleroderma

Keywords

Spatial frequency domain imaging (SFDI), modified Rodnan skin score (mRSS), Skin biopsy, Skin fibrosis, Scleroderma skin patient reported outcome (SSPRO), Durometry, Ultrasound

Brief summary

Scleroderma (SSc) is an autoimmune disease characterized by fibrosis (or collagen deposition) of the skin and internal organs. The extent of skin fibrosis is an important predictor of internal organ complications and increased mortality. Currently imprecise and subjective methods that varies amongst different doctors for the same patient are available to quantify skin fibrosis in patients, by pinching their skin and assessing how thick it is; this is the method used to determine the modified Rodnan skin score (mRSS). Skin thickness and the amount of fibrosis can change over time due to disease progression or in response to therapy. In this research, longitudinal measurements will be taken to determine if spatial frequency domain imaging (SFDI) can detect changes in skin thickness that occur over time in response to therapy or from disease progression in scleroderma patients. This study will compare SFDI with other clinical outcome assessments of skin thickness and fibrosis in scleroderma patients including mRSS, skin biopsy histology, scleroderma skin patient reported outcome (SSPRO), ultrasound, and durometry (durometer measures skin hardness). SFDI information will also be compared with capillaroscopy (allows for non-invasive imaging of the nailfold capillaries) if available from the electronic medical record. If SFDI correlates well with other clinical outcome assessments, it may be used in the future as a rapid, non-invasive tool for monitoring disease activity in scleroderma patients.

Detailed description

The overall objective of this study is to determine if a light emitting diode (LED) -based SFDI instrument can be used to detect changes in skin thickness over time in SSc patients. Number of subjects: 60 patients with scleroderma and 32 control subjects without scleroderma Study procedures: All subjects will have 6 areas of the body, right and left fingers, hands, and forearms, measured with an LED-based SFDI instrument every 3 months for the first 12 months and then every 6 months through 36 months. The right and left upper arms of subjects may be measured with the SFDI instrument if subjects are able to comfortably extend their arms. All subjects will have the option to have blood collected for serum at baseline, 12 months, 24 months, and 36 months to investigate serum biomarkers of fibrosis. An optional skin biopsy will be collected from all subjects at baseline, 12 months, 24 months, and 36 months to evaluate histopathological skin changes. Skin biopsies will not be collected from pregnant or lactating subjects, from subjects with a history of an allergic reaction to a local anesthetic, or from subjects who are deemed by the study doctor to be at high risk of small tissue calcification. Scleroderma subjects will be asked to complete the SSPRO questionnaire at baseline and every 3 months for the first 12 months and then every 6 months through 36 months. Scleroderma subjects will have a mRSS performed at baseline and every 3 months for the first 12 months and then every 6 months through 36 months. All subjects will have durometry and ultrasound performed on the right and left forearms at baseline and every 3 months for the first 12 months and then every 6 months through 36 months. Secondary Objectives: * Assess how SFDI measurements correlate with other clinical measurements of skin thickness such as durometry, ultrasound, and mRSS * Assess how SFDI measurements correlate with clinical biochemical and histopathological assessments of skin changes in SSc.

Interventions

SFDI is a method using near-infrared (NIR) light to generate wide field images (\>10 x 10 cm) of tissue optical properties (absorption and scattering coefficients) at sub-surface depths of 1-10 mm. With SFDI the tissue surface (skin) is illuminated by a rapid sequence of sinusoidal light patterns of varying spatial frequency and at different optical wavelengths. Collected camera images are then processed to yield maps of sub-surface optical properties.

Sponsors

Boston University
Lead SponsorOTHER
Scleroderma Clinical Trials Consortium (SCTC)
CollaboratorUNKNOWN
Fibrosis ARC: Connecting Tissues and Investigators (FCTI ARC)
CollaboratorUNKNOWN

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
OTHER
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

Participants must meet at least one of the following: * Have SSc as defined by the American College of Rheumatology (SSc subjects only) * Suspected of having SSc based on clinical symptoms as determined by their physician (SSc subjects only) * Defined as a healthy control (does not have SSc or another known disease that in the opinion of the investigator could confound the results)

Exclusion criteria

* Diagnosis of skin malignancy within the previous 2 years, excluding adequately treated squamous cell skin cancer, basal cell carcinoma, and carcinoma in situ. * Presence of wounds or skin rashes at the site of Spatial frequency domain imaging (SFDI) measurement or skin biopsy * Presence of other co-morbid illnesses with an estimated median life expectancy \< 5 years.

Design outcomes

Primary

MeasureTime frameDescription
36 months SFDI measurements of skin thickness36 monthsSFDI measurements will be obtained on the right and left fingers, hands, and upper arms and forearms
12 months SFDI measurements of skin thickness12 monthsSFDI measurements will be obtained on the right and left fingers, hands, and upper arms and forearms
18 months SFDI measurements of skin thickness18 monthsSFDI measurements will be obtained on the right and left fingers, hands, and upper arms and forearms
24 months SFDI measurements of skin thickness24 monthsSFDI measurements will be obtained on the right and left fingers, hands, and upper arms and forearms
30 months SFDI measurements of skin thickness30 monthsSFDI measurements will be obtained on the right and left fingers, hands, and upper arms and forearms
Baseline SFDI measurements of skin thicknessbaselineSFDI measurements will be obtained on the right and left fingers, hands, and upper arms and forearms
6 months SFDI measurements of skin thickness6 monthsSFDI measurements will be obtained on the right and left fingers, hands, and upper arms and forearms

Secondary

MeasureTime frameDescription
Serum fibrosis biomarkers, Pro-inflammatory cytokines involved in immune cell migrationbaseline and every 12 months up to 36 monthsAssessed from serum
Serum fibrosis biomarkers, Matricellular proteinsbaseline and every 12 months up to 36 monthsAssessed from serum
histopathological assessments of skin collagen contentbaseline and every 12 months up to 36 monthsAssessed from skin biopsy samples
Serum fibrosis biomarkers, Chemokines that promote fibrosisbaseline and every 12 months up to 36 monthsAssessed from serum

Countries

United States

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026