Critical Limb Ischemia (CLI)
Conditions
Keywords
CLTI, toe pressure, limb salvage, endovascular revascularization, theatening
Brief summary
To address the heterogeneity of practices, better understand the outcomes of cricital limb theatening ischemia (CLTI) patients after endovascular interventions, and recognize effective endovascular options for infrapopliteal artery revascularization in CLTI, our prospective registry aims to tackle the critical question of whether intensive toe pressure evaluation, guiding repeat revascularization using predetermined thresholds (\<30 mmHg or decrease \>10% from immediate postoperative assessment), could optimize outcomes in patients with CLTI.
Detailed description
Cricital limb theatening ischemia (CLTI) represents the most advanced stage of peripheral arterial disease (PAD), leading to high mortality rates and limb loss. A primary endovascular strategy is now preferred for most patients with CLTI who have occlusive disease of the tibial arteries. This is especially true for the elderly, diabetic patients, and those without suitable venous conduits for bypass. Patients with CLTI and infra-popliteal occlusive disease do not always respond well to the provided treatment, but the underlying reasons, particularly in those showing good initial results after endovascular revascularization, remain to be determined. The literature strongly supports the use of drug-eluting stents (DES) in treating infrapopliteal arteries. DES are associated with significant improvements in patency, reduced rates of restenosis and reintervention, and better Rutherford-Becker classification and healing of trophic disorders. However, contrary to initial expectations, the SAVAL trial, whose data were made public in December 2023, comparing a DES dedicated to infra-popliteal arteries with percutaneous transluminal angioplasty in patients with CLTI, failed to meet its primary efficacy (increased primary patency and reduced major adverse events rate) and safety objectives at 12 months, despite preliminary data suggesting an advantage in using DES for treating short lesions. A possible explanation is the significant heterogeneity of practices, with less than half of the patients receiving optimal medical treatment and intensive follow-up, highlighting the need for a comprehensive review of treatment strategies in this challenging patient population. The lack of an established objective follow-up protocol for this patient group underscores the need for innovative approaches. Currently, there is no widely available consensus indicator to estimate whether the revascularization provided will be sufficient to prevent amputation. The Delta-Perf study has completed its recruitment and is expected to provide results on foot perfusion analysis in patients with CLTI before and after revascularization and its predictive value on amputation-free survival. However, despite high initial technical success rates for endovascular interventions, early failure of these minimally invasive procedures is common. Current recommendations support duplex scan monitoring and prophylactic reintervention for asymptomatic graft stenosis to promote long-term patency, but monitoring and reintervention strategies after endovascular management have been left to the practitioner's discretion. There are no ongoing studies to determine if the initial improvement observed in the foot is actually maintained, and there is little evidence to support indications for repeated interventions in CLTI. Clinical follow-up alone may be insufficient to detect restenosis, as patients may remain asymptomatic until the target artery is occluded, similar to venous grafts in bypasses. Likewise, measuring the ankle-brachial index (ABI) alone has limited value, given the difficulty in determining the level of restenosis, technical limitations in diabetic patients with calcified vessels, and variability in correlation with the severity of lesions. It is likely that there are subgroups of patients who could benefit more than others from early reintervention. Toe pressure, in this context, offers a measurable, non-invasive, and clinically relevant parameter that can be consistently evaluated even in challenging cases, particularly in heavily calcified patients.
Interventions
This measurement is non-invasive, painless and is also carried out as part of the care in the follow-up of critical limb ischemia. It takes place like a blood pressure measurement except that it is carried out at the level of a toe.
retrospective data
Sponsors
Study design
Eligibility
Inclusion criteria
* Age ≥ 18 years * Rutherford category 4 or 5 * Wounds limited to toes or forefoot with a salvageable limb * Infrapopliteal lesions (infra-popliteal arteries) with \>70% stenosis upon visual assessment during initial angiography
Exclusion criteria
* Previous or planned major amputation of the target limb * Untreated aortoiliac/femoropopliteal stenotic disease limiting flow * History of infrapopliteal bypass on the target limb * Failure of percutaneous transluminal angioplasty of the target limb (technical failure) * Absence of angiographic evidence of a patent artery below the ankle (desert foot) * Lesions located inside or near an arterial aneurysm * Life expectancy \< 1 year * Acute limb ischemia * Septicemia or bacteremia
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Toe pressure with Systolic pressure measurement device | Day 15, Month 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12 | The Systolic pressure measurement device is suitable for the toes, as part of the diagnosis or monitoring of obliterating arteriopathy of the lower limbs, as for the fingers of the hand during assessments relating to arteriovenous fistulas. The Systolic pressure measurement device ingeniously uses photoplethysmography (PPG) associated with a unique algorithm developed and patented by Atys Medical. PPG makes it possible to detect, thanks to a photoelectric cell (sensor), variations in blood flow in skin traffic. The Systolic pressure measurement deviceputs the measurement of digital pressure pressure within the reach of all the stakeholders concerned (angiologists, nephrologists, diabetologists, vascular surgeons, wound and healing services, etc.). |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| Evaluation of the absence of target lesion occlusion. | Day 15, Month 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12 | Evaluation of absence of occlusion of the target lesion by Echo-doppler |
| Evaluation of target lesion revascularization | Day 15, Month 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12 | Evaluation of target lesion revascularization using Echo doppler |
| Evaluation of Survival | Day 15, Month 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12 | Describe if patient is alive or not |
| Evaluation ofthe Wound healing with WiFi classification | Day 15, Month 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12 | It takes into account the patient's foot wound, ischemia and infection. This system can be used to determine the estimated 1-year risk of amputation and the estimated probability of benefit/need for revascularization. It is a useful, standardized tool that can help determine patient risk and the need for intervention. |
| Evaluation of the Wound healing with colorimetry scale | Day 15, Month 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12 | Colorimetry involves analyzing the different colors present in a wound to determine its condition and stage of healing. Each color corresponds to a specific tissue or biological process. |
| Evaluation of major adverse limb events | Day 15, Month 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12 | Evaluation of major amputation or major reinterventions including new bypass surgery, bypass revision, or thrombectomy/thrombolysis related to the target lesion |
Countries
France