Osteoporotic vertebral compression fractures (OVCFs) are a common and serious complication of osteoporosis, particularly among elderly and postmenopausal patients. OVCFs may result in severe pain, functional impairment, spinal deformity, and reduced quality of life. Conventional conservative treatments, including bed rest, analgesics, and bracing, may provide limited symptom relief. Minimally invasive vertebral augmentation procedures, such as vertebroplasty and kyphoplasty, have been widely used to improve clinical outcomes; however, risks including bone cement leakage and incomplete vertebral restoration remain concerns. The Vessel-X® Bone Filling Container System, manufactured by Central Medical Technologies Inc. (CMT), is a third-generation vesselplasty technology designed for percutaneous vertebral augmentation procedures. The system utilizes an implantable biocompatible polyethylene terephthalate (PET) container with a microporous structure for controlled bone cement delivery. The implant remains within the vertebral body after cement injection and is designed to reduce cement leakage while maintaining vertebral height restoration and pain relief. This post-market clinical study evaluates the safety and clinical effectiveness of the Vessel-X® Bone Filling Container System at two medical centers in Taiwan with a total target enrollment of 146 subjects: Tri-Service General Hospital (TSGH): 86 subjects randomized in a 1:1 ratio to the experimental and control groups. Taoyuan General Hospital, Ministry of Health and Welfare (TYGH): 60 subjects randomized in a 1:1 ratio to the experimental and control groups. The primary objective is to evaluate the safety of the device by assessing the incidence of unanticipated serious adverse device effects (USADEs). Secondary objectives include evaluation of pain reduction measured by the Visual Analogue Scale (VAS), functional recovery assessed by the Oswestry Disability Index (ODI), and radiographic outcomes including vertebral height restoration and kyphotic deformity correction.
Background and Rationale: Osteoporotic vertebral compression fractures (OVCFs) are a common and serious complication of osteoporosis, particularly among elderly and postmenopausal patients. OVCFs may result in severe pain, functional impairment, spinal deformity, and reduced quality of life. Conventional conservative treatments, including bed rest, analgesics, and bracing, may provide limited symptom relief. Minimally invasive vertebral augmentation procedures, such as vertebroplasty and kyphoplasty, have been widely used to improve clinical outcomes; however, risks including bone cement leakage and incomplete vertebral restoration remain concerns. The Vessel-X® Bone Filling Container System, manufactured by Central Medical Technologies Inc. (CMT), is a third-generation vesselplasty technology designed for percutaneous vertebral augmentation procedures. The system utilizes an implantable biocompatible polyethylene terephthalate (PET) container with a microporous structure for controlled bone cement delivery. The implant remains within the vertebral body after cement injection and is designed to reduce cement leakage while maintaining vertebral height restoration and pain relief. This is a prospective, open-label, randomized, parallel-controlled, non-inferiority clinical trial conducted in Taiwan to evaluate the safety and clinical effectiveness of this system (Model: BVFT-UP01-D20, Approved No. 005889) compared with conventional vertebroplasty performed using manual orthopedic surgical instruments (Approved No. 005698), both manufactured by CMT. Both groups will utilize the same radiopaque bone cement ("Tecres" Osteopal V) for the therapeutic procedures. Hypothesis: The study is designed as a non-inferiority trial. The primary hypothesis is that the incidence of unanticipated serious adverse device effects (USADEs) in the Vessel-X® group is not higher than that in the control group. For efficacy, the experimental group is hypothesized to be non-inferior to the control group regarding pain relief, disability improvement, and radiographic parameters, with a pre-specified non-inferiority margin of -15% for the difference in fused effective rates between the two groups. Patient Enrollment and Site Allocation: To achieve the clinical evaluation objectives, a total of up to 146 subjects will be recruited across participating medical centers in Taiwan. The target sample size is allocated specifically as 86 subjects from Tri-Service General Hospital (TSGH) and 60 subjects from Taoyuan General Hospital (TYGH). Subjects at each site will be allocated to the experimental and control groups using a 1:1 randomization scheme. Surgical Procedure Protocol: All surgical procedures will be performed under real-time fluoroscopic (C-arm) guidance using a standard unilateral transpedicular approach: Experimental Group: The Vessel-X® PET biocompatible microporous container will be deployed into the vertebral body, and bone cement will be injected in a controlled manner, allowing partial cement interdigitation through the micropores. The container remains as a permanent implant. Control Group: Conventional vertebroplasty will be performed using CMT's standard manual orthopedic surgical instruments to deliver the bone cement directly. In both groups, fluoroscopic monitoring is maintained throughout the injection, and cement delivery will be discontinued immediately if any cement leakage or breach is observed. Clinical Evaluation Timelines: Subjects will participate in the study for a total duration of 13 months, consisting of a 1-month screening period, the surgical intervention (Day 1), and a 12-month post-operative follow-up period. Follow-up visits are scheduled at Day 8 (8±2 days), Month 1 (31±2 days), Month 3 (91±15 days), Month 6 (181±15 days), Month 9 (271±15 days), and Month 12 (361±15 days). Outcome Assessments: Safety Assessment (Primary Endpoint, ITT Population): Evaluated by the incidence of adverse events, complications, bone cement leakage, and new-onset neurological deficits. Efficacy Assessment (Secondary Endpoints, PP \& FAS Populations): Evaluated by changes from baseline to each follow-up timepoint in Visual Analogue Scale (VAS) scores for pain, Oswestry Disability Index (ODI) scores for functional disability, and radiographic parameters (anterior vertebral height, midline vertebral height, and kyphotic Cobb's angle)
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
SINGLE
Enrollment
146
Model: BVFT-UP01-D20 (TFDA No. 005889, GMP0106), manufactured by Central Medical Technologies Inc. (marketed since Aug 2017). An EO-sterilized, single-use, implantable kit for percutaneous vertebral augmentation (store \<= 25°C, shelf-life: 5 years). The kit includes: 1. Vessel-X® Bone Filling Container (Model: BVFX-D20): An implantable, microporous PET container to enclose cement and minimize leakage. 2. Front-Opening Cement Injection Device with Extension Tube (Model: T-C308, max 20 ml): For controlled hydraulic delivery. 3. Percutaneous Access Tools: Includes 1pc Bone Access Needle (T-N201T), 1pc Guide Pin (T-P602), and 1pc Precision Drill (T-D401). * Intervention Cement: TEKNIMED OPACITY+ Radiopaque Bone Cement (Model: T040320Z; TFDA License No. 026888), used during vertebral augmentation procedures for injection into the affected vertebra to stabilize vertebral compression fractures.
The CMT Manual Orthopedic Surgical Instruments (Model: T-C308; TFDA License No. 005698) are nonimplantable manual surgical instruments intended for conventional vertebroplasty procedures. The device functions as a manual cement delivery system for the injection of TEKNIMED OPACITY+ Radiopaque Bone Cement (Model: T040320Z; TFDA License No. 026888) into the vertebral body to stabilize vertebral compression fractures.
Tri-Service General Hospital, National Defense Medical Univesity
Taipei, Taiwan
RECRUITINGNational Defense Medical University, Taiwan
Taipei, Taiwan
RECRUITINGIncidence of Adverse Events, Serious Adverse Events (SAEs), and Unanticipated Serious Adverse Device Effects (USADEs)
The primary safety endpoint is to evaluate the safety profile of the "Central Medical" Vessel-X® Bone Filling Container System. Safety assessments will analyze the incidence, specific manifestations, severity, and device-causality of all adverse events (AEs), serious adverse events (SAEs), and unanticipated serious adverse device effects (USADEs) following percutaneous vertebroplasty (including bone cement leakage, nerve root injury, vascular injury, or subsequent vertebral collapse). Proportions of abnormal post-operative cases and complication incidence with 95% Confidence Intervals (CI) will be calculated using the Intent-to-Treat (ITT) population.
Time frame: Day 1 (post-op), Day 8 (8±2 days), Month 1 (31±2 days), Month 3 (91±15 days), Month 6 (181±15 days), Month 9 (271±15 days), and Month 12 (361±15 days) post-operatively.
Change From Baseline in Visual Analogue Scale (VAS) Pain Score
Pain intensity will be assessed using the 100-mm Visual Analogue Scale (VAS), where 0 indicates no pain and 100 indicates the worst imaginable pain. Changes from baseline in VAS scores will be compared between the experimental and control groups to evaluate pain relief following treatment.
Time frame: Baseline (within 1 week pre-operatively), Day 1 (post-operatively), Day 8 (8±2 days), Month 1 (31±2 days), Month 3 (91±15 days), Month 6 (181±15 days), Month 9 (271±15 days), and Month 12 (361±15 days) post-operatively.
Change From Baseline in Oswestry Disability Index (ODI) Score
Functional disability will be evaluated using the Oswestry Disability Index (ODI) questionnaire. Changes from baseline in ODI scores will be compared between the experimental and control groups to assess functional recovery following treatment.
Time frame: Baseline (within 1 week pre-operatively), Day 1 (post-operatively), Day 8 (8±2 days), Month 1 (31±2 days), Month 3 (91±15 days), Month 6 (181±15 days), Month 9 (271±15 days), and Month 12 (361±15 days) post-operatively.
Change From Baseline in Radiographic Anterior Vertebral Height
Radiographic assessment of anterior vertebral height (measured in millimeters) will be performed using X-ray, computed tomography (CT), or magnetic resonance imaging (MRI). Changes from baseline will be compared between the experimental and control groups to evaluate vertebral body restoration.
Time frame: Baseline (within 1 week pre-operatively), Day 1 (post-operatively), Day 8 (8±2 days), Month 1 (31±2 days), Month 3 (91±15 days), Month 6 (181±15 days), Month 9 (271±15 days), and Month 12 (361±15 days) post-operatively.
hange From Baseline in Radiographic Mid-Vertebral Height
Radiographic assessment of mid-vertebral height (measured in millimeters) will be performed using X-ray, computed tomography (CT), or magnetic resonance imaging (MRI). Changes from baseline will be compared between the experimental and control groups to evaluate vertebral body restoration.
Time frame: Baseline (within 1 week pre-operatively), Day 1 (post-operatively), Day 8 (8±2 days), Month 1 (31±2 days), Month 3 (91±15 days), Month 6 (181±15 days), Month 9 (271±15 days), and Month 12 (361±15 days) post-operatively.
Change From Baseline in Kyphotic Cobb's Angle
Radiographic assessment of the kyphotic Cobb's angle (measured in degrees) will be performed using sagittal X-ray, computed tomography (CT), or magnetic resonance imaging (MRI) to evaluate spinal alignment correction. Changes from baseline will be compared between the experimental and control groups.
Time frame: Baseline (within 1 week pre-operatively), Day 1 (post-operatively), Day 8 (8±2 days), Month 1 (31±2 days), Month 3 (91±15 days), Month 6 (181±15 days), Month 9 (271±15 days), and Month 12 (361±15 days) post-operatively.
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