Osteoarthritis Clinical Trial
— IBBM-CKJOfficial title:
Identification of Biochemical and Biomechanical Markers for Cartilage Degeneration in the Knee Joint (IBBM-CKJ)
The association between varus malalignment and dynamic knee loading / adduction moment and
progression of knee joint cartilage degeneration in the lateral compartment is unclear and
has not been studied in detail before. There is a need to identify relevant parameters
explaining this cause-effect relationship. It is the purpose of the study to correlate load
changes in knee joints with biomechanical and biochemical alterations in cartilage to
understand the underlying mechanism of load induced cartilage degeneration in patients. This
study will therefore include patients with different stages of knee OA with various
malalignments. Moreover, analyzing changes in cartilage morphology, radiography and MRI and
correlate those findings with alterations in biochemical parameters in cartilage, serum,
urine and synovial fluid will allow us to identify novel biomarkers for the onset and
progression of joint cartilage degeneration in varus malaligned knees.
The following hypotheses will be tested:
1. Knee joint cartilage degeneration progresses from medial to lateral in varus-aligned
knees.
2. External knee adduction moments in patients with isolated medial OA are higher when
compared with patients with OA of the medial and lateral compartment.
3. Morphological and mechanical properties of cartilage show different stages of
degeneration when comparing the mechanically stronger loaded medial with the lateral
compartment of the knee.
4. Histological and biochemical analysis of the cartilage indicate different stages of
degeneration when comparing the mechanically loaded medial with the lesser loaded
lateral compartment of the knee.
5. Synovial fluid analysis, as well as serum biomarkers of cartilage metabolism
demonstrate cartilage degeneration and are related to biomechanical determinants of OA
in the knee.
6. Novel biomarkers (ECM, miRNA, cytokines, mitochondria related, mechanical determinants)
for varus-aligned knees can be identified.
| Status | Not yet recruiting |
| Enrollment | 100 |
| Est. completion date | December 2017 |
| Est. primary completion date | December 2017 |
| Accepts healthy volunteers | No |
| Gender | Both |
| Age group | 18 Years and older |
| Eligibility |
Inclusion Criteria: - End stage medial, bi- or tricompartimental OA with indication to total knee replacement with failure of conservative treatment - No more than mild symptoms of other joints in the lower limbs (VAS= 4) - Age > 18 years - BMI < 35 Written informed consent must be obtained from all patients prior to any study-related procedure. Exclusion Criteria: - BMI = 35 - Post-infectious condition of the affected knee - Valgus- or neutral lower limb axis - Pacemaker or any other medical condition that does not allow MRI scans - Systemic arthritic conditions - Previous surgery of lower extremities and/or low back within the last 6 months - Musculoskeletal or neurological condition severely affecting lower limb function - Contraindications to MRI - Not able to walk independently without a walking aid - Additional infection |
Observational Model: Case-Crossover, Time Perspective: Prospective
| Country | Name | City | State |
|---|---|---|---|
| n/a | |||
| Lead Sponsor | Collaborator |
|---|---|
| Dr. Jan Siewe |
| Type | Measure | Description | Time frame | Safety issue |
|---|---|---|---|---|
| Primary | measurement of Knee joint cartilage degeneration progresses from medial to lateral in varus-aligned knees in mm . | The association between varus malalignment and dynamic knee loading / adduction moment and progression of knee joint cartilage degeneration in the lateral compartment is unclear and has not been studied in detail before. There is a need to identify relevant parameters explaining this cause-effect relationship. It is the purpose of the study to correlate load changes in knee joints with biomechanical and biochemical alterations in cartilage to understand the underlying mechanism of load induced cartilage degeneration in patients. This study will therefore include patients with different stages of knee OA with various malalignments. Moreover, analyzing changes in cartilage morphology, radiography and MRI and correlate those findings with alterations in biochemical parameters in cartilage, serum, urine and synovial fluid will allow us to identify novel biomarkers for the onset and progression of joint cartilage degeneration in varus malaligned knees. | Change from Baseline 12 month | No |
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