View clinical trials related to Vascular Diseases.
Filter by:The The purpose of this study is to determine the safety of PLX-PAD single dose, Intra-muscular injection for the treatment of CLI patients.
Peripheral artery disease (PAD) due to leg artery blockages can result in painful leg muscles, skin ulcers and infection due to poor blood flow. In severe forms, the only treatment may be amputation. Adult stem cells injected into affected legs may cause new blood vessel formation and improve blood flow. The purpose of this study is to determine the feasibility and safety of injecting adult stem cells into the leg muscles of patients with severe PAD, in an attempt to improve blood flow.
The Jetstream System is a commercially available rotating, aspirating, expandable catheter designed to remove atherosclerotic plaque and blood clots in the lower limbs. The purpose of this study is to use intravascular ultrasound (IVUS) during the interventional procedure to measure the amount of plaque and blood clots removed by the Jetstream System.
BALI (Bone marrow Autograft in Limb Ischemia) is a randomized double-blind trial comparing implantation of bone marrow - mononuclear cells versus placebo in patients presenting with critical leg ischemia and no surgical option. The main end point is the survival without major amputation 6 months after implantation. Biological studies are performed on bone marrow mononuclear cells (BM-MNC) to evaluate their angiogenic properties.
The purpose of this study is to compare the different endovascular treatment modalities for the femoropopliteal segment, and to determine technical success, efficacy and patency at mid-term follow-up. Modalities include; Angioplasty/stent (Control group, Guidant), Cryoplasty/stent (Boston Scientific), Laser Angioplasty/stent (Spectranetics), SilverHawk Atherectomy/stent (Fox Hollow), and Viabahn Endograft (WL Gore).
Hypothesis - Rotigaptide will improve endothelial function in the context of endothelial dysfunction. The lining of blood vessels (endothelium) can react to hormones in the blood stream causing the blood vessel muscle to relax (vasodilatation) and allow more blood to flow. The nitric oxide and prostacyclin pathways are well documented in this process. However, evidence points to the existence of a third powerful relaxant called endothelium derived hyperpolarising factor (EDHF) but its identity and mechanism of action have proved elusive. As well as causing blood vessels to relax and more blood to flow, EDHF may be involved in the endothelium signaling, triggering release of a specialised clot dissolving factor called tissue plasminogen activator (t PA). t PA is important to ensure small clots, which are constantly being formed in the circulation, are rapidly dissolved and do not grow large enough to cause heart attacks and strokes. Evidence points towards the requirement for 'gap junctions' in the mediation of EDHF responses. Gap junctions are specialised pores which allow small molecules and charge to pass between cells. They are found between endothelial cells and the underlying muscle of the blood vessel. A drug called Rotigaptide has been developed to cause gap junctions to open. It has been safely administered in healthy volunteers and is now in a Phase II drug trial. By opening gap junctions the investigators hypothesise that it could increase EDHF mediated activity and vasodilatation. It represents a useful tool with which to examine the role of gap junctions in EDHF activity in vivo. Previously the investigators have demonstrated that rotigaptide does not contribute to endothelial function in healthy volunteers. The investigators now wish to examine the effect of rotigaptide in conditions of endothelial dysfunction. By limiting the blood flow to the arm for 20mins the ability of the blood vessel to vasodilate is impaired. By administering an intra-arterial rotigaptide infusion the investigators want to assess any functional preservation.
Peripheral arterial disease (PAD) is a disorder that affects more than 8 million people in the United States. As a result of decreased blood flow to the legs, people with PAD may experience leg pain and difficulty with walking. This study will examine the effectiveness of two exercise programs—a treadmill walking program and an aerobic arm exercise program—at increasing walking distance and decreasing leg pain in people with PAD.
The objective of this clinical investigation is to evaluate the safety and efficacy of the Minnow Medical GRST™ Peripheral Catheter System in the treatment of de novo lesions in the superficial femoral artery (SFA) or the popliteal artery.
The aim of the study is to compare the diagnostic value of this non-invasive vascular imaging tool with the established vascular diagnostic methods for PAD in order to get prognostic data. A higher sensitivity of Fluorescence angiography in order to recognize progression of critical limb ischemia could lead to earlier therapeutic interventions and thereby increase limb salvage. A diagnostic gap would be closed.
The aim of this study is to assess the efficacy and safety of autologous transplantation of bone-marrow cells for therapeutic angiogenesis and vasculogenesis in diabetic patients with non-revascularizable critical limb ischemia.