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Filter by:A PHASE 2a, MULTI-CENTER, RANDOMIZED, DOUBLE-BLIND, PLACEBO-CONTROLLED DOSE ESCALATING STUDY TO EVALUATE THE SAFETY AND TOLERABILITY OF TOPICALLY APPLIED BISPHOSPHOCIN NU-3 GEL TO CLINICALLY NONINFECTED CHRONIC DIABETIC FOOT ULCERS (cDFU)
To evaluate the efficacy and safety of Cytori Celution System in Hungarian patients with diabetic leg ulcers.
The aim of the study is to improve the quality of nutritional therapy for patients admitted with Acute Severe Ulcerative Colitis (ASUC) treated with high-dose steroids. This study consists of two randomized interventions and one observational part regarding protein, magnesium, and metabolic stress. First an interventional part aims to explore the effect of a high-protein diet during and after admission on different parameters regarding protein turnover.Second the study aims to explore the degree of magnesium depletion in ASUC. In case of magnesium depletion, the study aims to investigate whether oral magnesium supplementation can regain body stores of magnesium. Last the study aims to observe the degree of metabolic stress, including, the degree of insulin resistance, in ASUC during admission and under treatment with high-dose steroids compared to three weeks after discharge.
This study is therefore postulated as a clear alternative that evaluates patients´quality of life, and recognises fecal calprotectin as an inflammatory marker. Longitudinal, prospective, multi-center cohort study to measure the impact that the therapeutic attitude (treatment intensification/de-intensification o escalation/de-escalation) has on the quality of life of patients with UC given a colonoscopy revealing mucosal healing (Mayo 0, Mayo 1); considering as treatment intensification/de-intensification a dose increase or decrease on the same line of treatment, and escalation/de-escalation if there is a change to a new line of treatment.
This clinical study was conducted to evaluate the efficacy and safety of gold-silver cuprous oxide composite nanogels combined with photothermal therapy system in the treatment of severe drug-resistant bacterial keratitis ineffective by traditional antibiotic treatment in human eyes, and to provide translational applications. Based on the clinical evidence, a more effective and safe innovative treatment plan for corneal diseases has been developed.
This study is being conducted to evaluate the safety and effectiveness of using the PXL Platinum 330 System with riboflavin solution for performing corneal collagen crosslinking (CXL) for the treatment of previously untreated corneal ulcers. The PXL Platinum 330 System is a combination product consisting of an ultraviolet A (UV-A) 365 nm wavelength light source (PXL Platinum 330 Illumination System) and riboflavin (Riboflavin 0.23% PESCHKE-L Solution) administered in conjunction with the UV-A light as a photosensitizer. The PXL Platinum 330 System is intended to induce corneal collagen CXL to improve the biomechanical properties of the cornea by strengthening the corneal tissue in the anterior stroma. Corneal collagen CXL is performed by pretreating the cornea with riboflavin ophthalmic solution beginning 40 min before UV-A light exposure to saturate the corneal tissue with the riboflavin photosensitizer. The cornea is then irradiated with UV-A light (365 nm) at an irradiance of 18 mW/cm2 (5 seconds on, 5 seconds off) for 10 min. Exposure of the cornea to this UV-A light regimen after topical administration of riboflavin ophthalmic solution has been shown to induce CXL of the corneal collagen fibrils, with a resultant increase in tensile strength and diameter of the collagen fibrils. Clinically, CXL has been shown to stabilize the corneal curvature in eyes with progressive keratoconus, with no significant change in the refractive index of the cornea. Numerous reports and a few clinical trials have also shown benefit in aiding resolution of infective corneal ulcers.
This study is being conducted to evaluate the safety and effectiveness of using the PXL Platinum 330 System with riboflavin solution for performing corneal collagen crosslinking (CXL) for the treatment of refractory corneal ulcers. The PXL Platinum 330 System is a combination product consisting of an ultraviolet-A (UV-A) 365 nm wavelength light source (PXL Platinum 330 Illumination System) and riboflavin (Peschke Riboflavin 0.25% Transepithelial Solution) administered in conjunction with the UV-A light as a photosensitizer. The PXL Platinum 330 System is intended to induce corneal collagen CXL to improve the biomechanical properties of the cornea by strengthening the corneal tissue in the anterior stroma. Corneal collagen CXL is performed by pretreating the cornea with riboflavin 0.25% ophthalmic solution beginning 40 min before UV-A light exposure to saturate the corneal tissue with the riboflavin photosensitizer. The cornea is then irradiated with UV-A light (365 nm) at an irradiance of 18 mW/cm2 (5 seconds on, 5 seconds off) for 10 min. Exposure of the cornea to this UV-A light regimen after topical administration of riboflavin (0.25%) has been shown to induce CXL of the corneal collagen fibrils, with a resultant increase in tensile strength and diameter of the collagen fibrils. Clinically, CXL has been shown to stabilize the corneal curvature in eyes with progressive keratoconus, with no significant change in the refractive index of the cornea. Numerous reports and a few clinical trials have also shown benefit in aiding resolution of infective corneal ulcers.
The study will examine the effectiveness of a decellularized dermal matrix (i.e., DermGEN™) in improving wound healing, quality of life and associated costs of treatment of DFUs in First Nations people living in the Northwestern Ontario Communities. First Nations people with active diabetic foot (DFU) ulcer attending a wound care clinic located at the Rainy River district office. An interventional, two-arm, randomized, prospective study of (1) standard of care (control) vs. (2) DermGEN™ - a decellularized dermal matrix (treatment) will be used in the treatment and management of DFU. Patients will be randomized to each arm (n=60 per arm) based on power calculations using data from our Pilot study.
Peptic ulcer bleeding is a common emergency for patients who need therapeutic endoscopy. According to international guidelines and Taiwan consensus, the standard therapy included proton pump inhibitor (PPI) and endoscopic therapy. For high-risk peptic ulcers, such as active spurting, oozing bleeding, a nonbleeding visible vessel or ulcers with adherent clots, we apply endoscopic hemostasis with epinephrine injection in combination with either heater probe coagulation, hemoclipping and/or rubber band ligation. Parenteral high-dose PPI is administered after endoscopic hemostasis. Though current standard endoscopic therapy plus PPI infusion are highly effective, 5%-10% of the patients still experience recurrence of bleeding after the initial treatment. It is still an important issue to reduce recurrent peptic ulcer bleeding after standard endoscopic therapy. Tranexamic acid reduces bleeding by inhibiting clot breakdown by inhibiting the degradation of fibrin by plasmin. It is effective to be used topically to reduce bleeding during surgery. However, the effect of application of tranexamic acid orally or intravenously for gastrointestinal bleeding was still controversial, probably because that the route of tranexamic acid use is not precise at the bleeding site. Tranexamic acid has anti-fibrinolytic effects at the bleeding site, so it is possible that use of tranexamic acid locally may have better efficacy than via intravenous or oral route. We propose to investigate the effectiveness and safety when using tranexamic acid locally under endoscopic guidance in patients with peptic ulcer bleeding after standard endoscopic therapy.
The objective of this single-arm feasibility study is to investigate the safety and impact of the topical EPC Silver Wound Gel (EPC-123) in the management of diabetic foot ulcer wounds not progressing under the current standard of care.