CAMPR-II Trial: A multicenter hybrid platform trial comparing the effects of a prospective cohort treated with a saline-hydrated allogeneic dual-layer amniotic membrane product or a synthetic, resorbable polymeric wound matrix to a coarsened exact matched retrospective control cohort of patients with hard-to-heal DFUs and VLUs
A multicenter hybrid platform trial comparing the effects of a prospective cohort treated with a saline-hydrated allogeneic dual-layer amniotic membrane product or a synthetic, resorbable polymeric wound matrix to a coarsened exact matched retrospective control cohort of patients with hardto-heal DFUs and VLUs Hybrid prospective platform 2 arm, comparative, randomized multicenter study with a CSM matched retrospective control group Study type Interventional comparative study Study product • IP 1: Membrane Wrap - Hydro™ • IP2: Microlyte® Matrix CSM matched cohort Standard of care: Debridement, maintenance of proper moisture balance, reduction in bacterial burden, offloading and multilayer compression. Prospective patient population Patients with nonhealing venous leg ulcerations or diabetic foot ulcers of at least 4-weeks duration that have failed to show 50% PAR with SOC therapies Control population Patients receiving SOC therapies for hard-to-heal VLUs and/or DFUs Retrospective data to be extracted retrospectively from the US Wound Registry: Demographic information Geographic location Number of wounds Frequency and number of wound care appointments Treatments received Number of infections Amputations Hospitalization Time to complete wound closure PROMs (if available) Study purpose To gather prospective real-world evidence (RWE) in both diabetic foot ulcers and venous leg ulcers increasing the understanding of treatment performance in everyday clinical settings, capturing insights from a more diverse patient population than traditional clinical trials. This information is CAMPR-II Version 1.1 15 April 2026 7 vital for evaluating the effectiveness of innovative wound care strategies in practical, real-life scenarios Primary objective To demonstrate the clinical effectiveness of IP1 and IP2 as an adjunct to standard of care in supporting complete wound closure compared to standard of care alone in venous leg ulcers and diabetic foot ulcers across the continuum of care.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
147
IP 2: Microlyte® is a sterile, single use absorbent polymeric wound matrix composed primarily of bioresorbable polyvinyl alcohol with a polymeric surface coating containing ionic and metallic silver. It has very low amounts of silver, with a maximum of 0.16 mg/in2. It absorbs wound fluid and forms a soft matrix that conforms to the wound surface and maintains a moist, wound-healing environment. The matrix contains silver only to prevent or minimize microbial growth within the matrix. Microlyte® Matrix is cleared by the U.S. Food and Drug Administration (FDA) under 510(k) \[K153756\] as a Class II device for the management of partial- and full-thickness wounds, including diabetic foot ulcers, venous stasis ulcers, pressure ulcers, surgical and traumatic wounds, and first- and second-degree burns and may be used over debrided and grafted partial-thickness wounds. It is fully synthetic and cleared as an antimicrobial barrier. The product is regulated under 21 CFR 878.4020 (dressing, wound,
IP 1: Membrane Wrap - Hydro is a saline-hydrated allogeneic dual-layer amniotic membrane product that meets the criteria for regulation as a human cell, tissue, or cellular or tissue-based product (HCT/P) solely under section 361 of the Public Health Service (PHS) Act and 21 CFR part 1271. The amnion allograft is screened, processed, labeled, and distributed in a manner that prevents transmission of disease and is an allograft derived from donated human birth tissue. Membrane Wrap - Hydro amniotic membrane processing includes cleaning, rinsing, applying sterile mesh, folding to create a dual layer, drying then cutting, followed by hydration with sodium chloride solution 0.9%" and sterilization using irradiation. Membrane Wrap - Hydro™ is intended to serve "as a supportive barrier and provides protective coverage from the surrounding environment to acute and chronic wounds. Membrane Wrap-Hydro may be applied from the onset of the wound and for the duration of the wound.
North Park Podiatry
San Diego, California, United States
RECRUITINGSolutions Medical Research
Coral Gables, Florida, United States
RECRUITINGNAR Medical and Research
Miami, Florida, United States
RECRUITINGNova Medical Services - Research Division LLC
Miami, Florida, United States
RECRUITINGIndiana University Health Methodist Hospital
Indianapolis, Indiana, United States
RECRUITINGSt. Louis Foot and Ankle, LLC
St Louis, Missouri, United States
RECRUITINGHope Vascular and Podiatry
Houston, Texas, United States
RECRUITINGWound Reduction
To demonstrate the clinical effectiveness of IP1 and IP2 as an adjunct to standard of care in supporting wound reduction compared to standard of care alone in venous leg ulcers and diabetic foot ulcers across the continuum of care. Thus, the incidence of index ulcers obtaining complete wound reduction by 12 weeks will be collected.
Time frame: 12 Weeks
Wound Percent Area Reduction
To demonstrate real world utilization and utility of two novel amniotic tissue grafts to support a variety of meaningful clinical outcomes in an at-risk patient population this study will collect wound percent area reduction at 4, 8, 12 weeks, change from baseline in quality of life, based on changes in index wound quality of life Wound-Q, and subject pain scores.
Time frame: Week 4, 8, and 12
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.