Carotid artery stenting with single-layer stents carries a risk of periprocedural cerebral embolization compared to carotid endarterectomy. Dual-layer micromesh stents were designed for improved plaque coverage and sustained embolic protection. This analysis aimed to confirm the Roadsaver dual-layer micromesh stent safety in a real-world carotid artery stenting cohort. ROADSAVER was a prospective, single-arm, multicenter, observational study. Patients with carotid artery stenosis, eligible for elective stenting, were enrolled at 52 sites across 13 European countries. All procedures followed standard practice. The primary outcome was the 30-day major adverse event rate, defined as the cumulative incidence of any death or stroke. All deaths, strokes, and carotid artery revascularizations were independently adjudicated. In total, 1965 patients were analysed (mean age 70.6 ± 8.8 years). Cerebral ischaemia symptoms were present in 49.4% of participants. Radial/ulnar access was used in 26.3% of cases and embolic protection in 63.8%. The 30-day major adverse event incidence was 2.2% (1.6% in asymptomatic and 2.8% in symptomatic patients), with any stroke at 1.9%, any death at 0.8%, and stroke-related death at 0.5%. Predictors of higher 30-day major adverse event risk, identified through multivariable modelling, included residual stenosis ≥ 30%, thromboembolic venous disease, previous myocardial infarction, age ≥ 75 years, family history of atherosclerosis, non-insulin-dependent diabetes mellitus, symptomatic carotid stenosis, and stent length. Dual-layer micromesh carotid artery stenting is safe, with a low 30-day major adverse event incidence in real-world asymptomatic and symptomatic patients, supporting the sustained embolic protection design concept. Level 2, observational study (with dramatic effect).
Purpose: Vessel recoil is a common phenomenon occurring in the tibial vessels following balloon angioplasty. This study examined the occurrence and short-term impact of acute vessel recoil in a subset of patients treated with retrievable scaffold therapy (RST) via the Spur Peripheral Retrievable Scaffold System (Spur). Methods: Patients with tibial disease underwent angiography immediately following RST, and then 15 minutes post-treatment. Vessel recoil was defined as a ≥10% decrease in lumen diameter after 15 minutes. Recoil was further analyzed by late lumen loss method, subsegmental late lumen loss method, and smallest segment to same segment method. Patient and vessel characteristics were evaluated. Functional recoil (acute vessel spasm), defined as no significant change in minimal lumen diameter (MLD) at baseline compared with 15 minutes post-treatment, was also evaluated. Results: Of the 38 patients (40 lesions; 33 men [87%]; mean [SD] age 75.3 [8.2] years; 26 (68.4%) with diabetes mellitus); recoil was noted in 42.5% of vessels. Prior to treatment, 13 lesions (32.5%) were total occlusions, the mean lesion length was 64.7±30.4 mm, and 27.5% (11/40) were moderate or severely calcified. Mean treated lesion length was 97.8±39.6 mm. For lesions evaluable by duplex ultrasound, 86.7% of vessels (26/30) were patent at 6 months. There was no significant difference in patency between lesions with recoil and lesions without recoil (81.8% vs 89.5%); there was a trend toward patency in the non-recoil group. Two lesions had functional recoil (acute vessel spasm) and were patent at 6 months. There was no statistically significant correlation of recoil to comorbidities or lesion characteristics, including calcification, for which there was also no correlation to patency. Conclusion: Vessel recoil was noted in 42.5% of vessels treated with RST, whereas previous published rates with balloon angioplasty demonstrated vessel recoil up to 97%, suggesting that RST may impact vessel recoil. This exploratory study did not demonstrate a correlation between vessel recoil and patency at 6 months. Clinical Impact Retrievable scaffold therapy may replace scoring devices and cutting devices for vessel preparation before definite (drug) therapy. Retrievable scaffold therapy supplements already established vessel preparation strategies in order to follow the concept of leaving nothing behaind. A temporary retrievable scaffold for changing vessel compliance and potentially releasing antiproliferative drugs represents a new interventional concept.
ObjectiveThere is a need for improved outcomes in the endovascular treatment of patients suffering from chronic limb threatening ischaemia (CLTI), highly calcified lesions and chronic total occlusions (CTOs). The helical centreline self expanding BioMimics 3D stent might be particularly useful in these high risk subsets, combining flexibility and fracture resistance with radial strength. Herein, the performance of the BioMimics 3D stent was assessed in these high risk subsets.MethodsMIMICS-3D is a prospective, multicentre European real world registry. This is a post hoc analysis, comparing patients with CLTI vs. intermittent claudication, lesions with bilateral calcification vs. those without (peripheral arterial calcium scoring system [PACSS] 3,4 vs. PACSS 0-2), and CTO vs. no CTO. Propensity score matching was performed to reduce the impact of baseline variables. 36 month endpoints were clinically driven target lesion revascularisation (TLR), death, major target limb amputation, and stent patency.ResultsA total of 507 patients were enrolled. At 36 months, patients with CLTI had lower freedom from major amputation than patients with intermittent claudication (92.6% vs. 100%, p < .001). In terms of primary patency, patients with CTO had lower patency rates than those without (63.9% vs. 77.8%, p = .003), but the difference diminished after propensity score matching (70.5% vs. 76.8%, p = .43). Primary patency was not impaired for patients with PACSS 3,4 or patients with CLTI. Freedom from clinically driven TLR was not significantly different among the groups and was 73.8% for CLTI vs. 78.9% for intermittent claudication (p = .15), 77.6% for PACSS 3,4 vs. 78.7% for PACSS 0-2 (p = .55), and 75.6% for CTO vs. 81.0% for no CTO (p = .11)ConclusionsThe outcomes of the Mimics 3D registry suggests that the BioMimics 3D stent is effective in the endovascular treatment of complex femoropopliteal lesions and in CLTI. Future randomised controlled trials should confirm its non-inferiority or superiority compared with existing alternatives
BACKGROUND:Through its helical centreline geometry, the BioMimics 3D vascular stent system is designed for the mobile femoropopliteal region, aiming to improve long-term patency and the risk of stent fractures.METHODS:MIMICS 3D is a prospective, European, multi-centre, observational registry to evaluate the BioMimics 3D stent in a real-world population through 3 years. A propensity-matched comparison was performed to investigate the effect of the additional use of drug-coated balloons (DCB).RESULTS:The MIMICS 3D registry enrolled 507 patients (518 lesion, length 125.9 ± 91.0 mm). At 3 years, the overall survival was 85.2%, freedom from major amputation 98.5%, freedom from clinically driven target lesion revascularisation 78.0%, and primary patency 70.2%. The propensity-matched cohort included 195 patients in each cohort. At 3-year follow-up, there was no statistically significant difference in clinical outcomes, such as overall survival (87.9% in the DCB vs. 85.1% in the no DCB group), freedom from major amputation (99.4% vs. 97.2%), clinically driven TLR (76.4% vs. 80.3%), and primary patency (68.5% vs. 74.4%).CONCLUSION:The MIMICS 3D registry showed good 3-year outcomes of the BioMimics 3D stent in femoropopliteal lesions, demonstrating the safety and performance of this device under real-world conditions, whether used alone or in combination with a DCB.
OBJECTIVES:Paclitaxel-coated balloon angioplasty has been established as the first-line therapy for femoropopliteal artery disease. The primary objectives of the study were to evaluate the performance and the safety of the GORE-DCB Catheter in the treatment of atherosclerotic femoropopliteal lesions in patients with peripheral artery disease for CE-Mark approval. METHODS:Prospective, single-arm, multicenter study with 24 months follow-up. The GORE-DCB Catheter consists of a drug-coated nylon (inner layer)/ePTFE (outer layer) composite balloon. The ePTFE layer is coated with paclitaxel (concentration: 3.5 μg/mm2) and the excipient stearic acid/tromethamine (tris). The primary endpoints were 6-month late lumen loss (LLL) and 30-day of freedom from Major Adverse Events (MAE). RESULTS:Fifty-two subjects were enrolled, 69% men, median age 69 (49-83) years. Acute device success was 100%, the 30-day MAE rate was zero. Study primary endpoint of LLL (-0.17 mm) showed significant superiority compared to the performance goal of uncoated PTA balloon catheters from literature. At 1 and 2 years, primary patency rates were 81.8% and 68.7%, respectively, and freedom from clinically driven target lesion revascularization rates was 87.9% and 83.4%, respectively. CONCLUSION:The study demonstrates that the treatment of lesions in femoropopliteal arteries with the GORE-DCB Catheter is safe and effective.
Abstract Background Retinal screening is mandatory to prevent vision loss and blindness due to diabetic retinopathy (DR). The aim of the study was to determine retinopathy screening rates and potential barriers in a German metropolitan diabetes care center. Methods Between May and October 2019, 265 patients with diabetes mellitus (95% type 2 diabetes; age 62±13.2 years; diabetes duration 11.1±8.5 years, HbA1c 7.4±1.0%) were referred to an ophthalmologist (referral form with order “Fundoscopy in diabetes mellitus, findings requested,” completed documentation form “General practitioner’s/diabetologist’s report to the ophthalmologist” and prepared documentation form “Ophthalmologist’s report”). A structured interview was used to assess the level of compliance with the guidelines and to identify potential barriers to retinopathy screening in a real-world setting, including the quantification of extra payments. Results All patients were interviewed at 7.9±2.5 months after the referral for retinopathy screening had been issued. According to patient reporting, fundoscopy was performed in 191 (75%) patients. Ophthalmological reports were obtained from 119/191 (62%) patients (46% of the entire cohort). 10/119 (8%) patients had been previously diagnosed with DR and 6/119 (5%) with new-onset DR. In 158/191 (83%) of patients, the referral had been accepted by the ophthalmology practice, of which 25,1% made a co-payment of 36.2±37.6 €. Discussion Despite a high screening performance in a real-world setting, complete screening in compliance with German guidelines, including written reporting, was found in less than half of the cohort. The prevalence and incidence of DR are high. Even when referred according to the regulations, one-quarter of patients made a co-payment. Efficient solutions to current barriers can emerge with mutual time-saving information prior to examination and feedback about the implementation of findings into treatment.
Hintergrund Beim diabetischen Fußsyndrom kann es trotz Druckentlastung, Wundbehandlung und ggf. Wiederherstellung der Durchblutung zum Gliedmaßenverlußt kommen. Bei konsequenter Therapie-Umsetzung kann gelegentlich statt einer Amputation die spontane Abstoßung der Gliedmaße abgewartet werden. In dieser Kasuistik wird eine erfolgreiche Behandlung bei Multimorbidität beschrieben.
Hintergrund Im Verlauf der Behandlung des Typ-2-Diabetes kann Insulin indiziert sein. Dabei sollen Intensität und Komplexität der Insulintherapie schrittweise und bedarfsgerecht intensiviert werden. Zur Häufigkeit unterschiedlicher Insulintherapie-Strategien liegen keine systematischen Untersuchungen vor.
Background: The MIMICS-3D study aimed to assess the safety and effectiveness of the BioMimics 3D Vascular Stent System for the treatment of symptomatic femoropopliteal artery disease in a real-world patient population. Patients and methods: Consecutive participants who were scheduled for implantation of the BioMimics 3D stent were enrolled in the prospective, observational, multicenter study. The primary effectiveness outcome was freedom from clinically driven target lesion revascularization at 12 months and the primary safety outcome was a composite of major adverse events comprising death, major target limb amputation, or clinically driven target lesion revascularization at 30 days. Outcomes through 24 months are reported. Results: A total of 507 patients (70 +/- 10 years, 65.5% male sex) were enrolled and treated with the study stent. 24.0% had critical limb-threatening ischemia, lesion length was 127 +/- 92 mm, and 56.8% of lesions were totally occluded. The Kaplan-Meier (KM) estimate of freedom from clinically driven target lesion revascularization at twelve-months was 90.6% (95% CI: 87.9%-93.3%) and the 30-day primary safety outcome occurred in 1.2% (95% CI: 0.5%-2.7%) of participants. At 24 months, clinical improvement was achieved in 86.6% and the KM estimate of freedom from clinically driven target lesion revascularization was 82.8% (95% CI: 79.4%-86.4%). The KM estimate of freedom from loss of primary patency according to PSVR >2.4 was 78.6% (95% CI: 74.7%-82.4%). Survival distribution functions regarding primary patency were lower with long lesions (>150 mm; log-rank p<0.001) but did not differ significantly between participants with or without critical limb-threatening ischemia (log-rank p=0.07). Conclusions: Endovascular treatment of atherosclerotic femoropopliteal lesions with the BioMimics 3D Vascular Stent System is efficacious and safe in a real-world setting.
Background: The MIMICS-3D study aimed to assess the safety and effectiveness of the BioMimics 3D Vascular Stent System for the treatment of symptomatic femoropopliteal artery disease in a real-world patient population. Patients and methods: Consecutive participants who were scheduled for implantation of the BioMimics 3D stent were enrolled in the prospective, observational, multicenter study. The primary effectiveness outcome was freedom from clinically driven target lesion revascularization at 12 months and the primary safety outcome was a composite of major adverse events comprising death, major target limb amputation, or clinically driven target lesion revascularization at 30 days. Outcomes through 24 months are reported. Results: A total of 507 patients (70±10 years, 65.5% male sex) were enrolled and treated with the study stent. 24.0% had critical limb-threatening ischemia, lesion length was 127±92 mm, and 56.8% of lesions were totally occluded. The Kaplan-Meier (KM) estimate of freedom from clinically driven target lesion revascularization at twelve-months was 90.6% (95% CI: 87.9%-93.3%) and the 30-day primary safety outcome occurred in 1.2% (95% CI: 0.5%-2.7%) of participants. At 24 months, clinical improvement was achieved in 86.6% and the KM estimate of freedom from clinically driven target lesion revascularization was 82.8% (95% CI: 79.4%-86.4%). The KM estimate of freedom from loss of primary patency according to PSVR >2.4 was 78.6% (95% CI: 74.7%-82.4%). Survival distribution functions regarding primary patency were lower with long lesions (>150 mm; log-rank p<0.001) but did not differ significantly between participants with or without critical limb-threatening ischemia (log-rank p=0.07). Conclusions: Endovascular treatment of atherosclerotic femoropopliteal lesions with the BioMimics 3D Vascular Stent System is efficacious and safe in a real-world setting.
Vaccine-induced immune thrombotic thrombocytopenia (VITT) is a rare side effect of two adenoviral vector vaccines, ChAdOx1 nCoV-19 (AstraZeneca) and Ad26.COV2.S (Johnson & Johnson/Janssen); it is caused by platelet-activating immunoglobulin G (IgG) that recognizes platelet factor 4 (PF4), as shown by positive testing by PF4/heparin-enzyme-linked immunosorbent assay (PF4-H-ELISA) in combination with PF4-enhanced washed platelet activation assays (PF4-PAA).[1] [2] [3] Clinical presentation is heterogeneous,[4] with some patients presenting without overt thrombosis (VITT with isolated thrombocytopenia) or with severe headache.[3] [5] [6] Few data exist regarding long-term decline in PF4-dependent antibodies[7]; in addition, there is uncertainty about timing and safety of subsequent booster vaccination after an episode of VITT.
The aim of this observational study was to follow-up patients with bedtime basal insulin (NPH insulin) added to metformin. In 285 patients with type 2 diabetes, a therapy with bedtime basal insulin added to metformin was started due to failure to achieve a glycaemic goal. Up until July 2019, 272 patients (95.4%) were followed-up (59.5 y, 92.6 kg, diabetes duration 6.6 y, HbA1c 8.4%/68.6 mmol/mol). HbA1c decreased by −1.2% and bodyweight by −1.7 kg after a duration of 31.7 ± 29.1 (range 2–133) months. Severe hypoglycaemia did not occur. In 144/272 patients (52.9%), the therapeutic goal for HbA1c was achieved over 32.7 months. In 69/272 patients (25.4%), the HbA1c target was achieved over 25.0 months (afterwards, therapy with basal insulin was discontinued because HbA1c was under target). In 36/272 patients (13.2%), the HbA1c goal was achieved until the submission of this manuscript (mean duration of treatment 57.4 ± 28.2 (range 13–121) months). Over 90% of patients with type 2 diabetes and failure of metformin reached their HbA1c goal with additional basal insulin at bedtime over several years in association with a reduction of bodyweight and without any event of severe hypoglycaemia.
Retrograde tibioperoneal access is a safe option for recanalization of complex CTOs after a failed antegrade approach. Complications at the puncture site were rare.
Purpose: To describe and compare primary patency rates in patients undergoing endovascular femoropopliteal interventions with standard or interwoven nitinol stents or drug-coated balloons. Methods: A cohort of 1292 patients was treated for symptomatic femoropopliteal occlusive disease classified as Rutherford category ≥1 at a large vascular center between June 2006 and August 2013 using either standard nitinol stents (SNS; n=432), interwoven nitinol stents (INS; n=470), or drug-coated balloons (DCB; n=390). Primary patency rates were assessed by ultrasound or angiographic readings for over 3 years of follow-up. Propensity score–matched pairs were formed to compare each treatment with another using survival analysis. Results: Survival curves of primary patency favored INS compared with SNS in 368 propensity score–matched pairs (p<0.001). Kaplan-Meier estimates at 1, 2, and 3 years were 86.6%, 76.4%, and 68.9%, respectively, in the INS group vs 60.5%, 46.1%, and 42.1%, respectively, in the SNS group. No significant difference (p=0.232) was seen for the comparison of SNS vs DCB in 284 matched pairs over long-term follow-up (primary patency estimates at 1, 2, and 3 years were 79.8%, 53.8%, and 32.9%, respectively, in the DCB group vs 60.5%, 44.8%, and 40.3%, respectively, in the SNS group). Survival curves of primary patency favored INS over DCB in 254 matched pairs (p<0.001). Kaplan-Meier estimates at 1, 2, and 3 years were 79.0%, 51.2%, and 30.1%, respectively, in the DCB group vs 89.0%, 76.9%, and 66.2%, respectively, in the INS group. Conclusion: Propensity score–based analysis of primary patency suggests profound differences in restenosis rates between various treatment modalities for femoropopliteal disease for over 3 years of follow-up.
OBJECTIVES The authors sought to investigate the efficacy of a drug-coated balloon (DCB) for treatment of complex femoropopliteal lesions.BACKGROUND Superiority of DCBs compared with uncoated balloon angioplasty for femoropopliteal interventions has been demonstrated in randomized trials for short lesions. Their performance in complex lesions with higher restenosis rates is unclear.METHODS Patency, target lesion revascularization (TLR) rate, clinical improvement, and safety endpoints of femoropopliteal lesions in 288 limbs (n = 260) treated with the In. Pact Pacific or Admiral DCB (Medtronic, Minneapolis, Minnesota) were retrospectively analyzed for up to 2 years of follow-up. Predictors of restenosis were identified by logistic regression.RESULTS Lesions were de novo in 51.7%, restenosis in 11.1%, and in-stent restenosis in 37.2%. Mean lesion length was 24.0 +/- 10.2 cm, and 65.3% were occluded. Stent implantation was performed in 23.3%. Kaplan Meier estimates of primary patency were 79.2% and 53.7% for all lesions at 1 and 2 years, respectively, whereas freedom from TLR was 85.4% and 68.6%. Primary patency for in-stent restenosis treatment was 76.6% and 48.6%, and freedom from TLR was 83.0% and 58.7% at 1 and 2 years, respectively. Rutherford category improved from a median 3.3 to 1.2 at 1 year, and to 1.1 at 2 years. Major amputation rate was 2.1% at 2 years. No adverse events were thought to be attributable to the coating of the balloon.CONCLUSIONS These results suggest that DCB are safe and effective in delaying rather than preventing restenosis in long, complex lesions and restenosis of the femoropopliteal tract. Further studies are recommended to confirm these results. (C) 2016 by the American College of Cardiology Foundation.
OBJECTIVES Endovascular treatment of the infrarenal abdominal aorta (endovascular repair, EVAR) has emerged as an alternative to open surgery. However, a small subset of patients exists who undergo conversion either in the first 30 postoperative days or later during the course of postoperative surveillance. In the present study, we review our experience with late conversion operations. METHODS Between December 2004 and August 2012, 411 EVARs were performed. During the same time interval, nine patients (males) with a mean age of 71 years (range, 59-79 years) required late open conversion. The median interval between EVAR and the conversion operation was 34 months (range 14-60 months). RESULTS The indications for late conversion included persistent proximal type I endoleak (n = 2), type II endoleak with sac enlargement (n = 1), aneurysm rupture (n = 1), endotension (n = 2), stent-graft thrombosis (n = 1) and stent-graft infection (n = 2). Complete stent-graft explantation was performed in five patients. Eight patients underwent elective conversion. One patient presenting with rupture had an emergency operation. The 30-day mortality rate was 0%. CONCLUSIONS Late open conversion after EVAR can be performed safely and successfully. Complete stent-graft explantation may be our preferred treatment option, but it is not always necessary, except in cases presenting with graft infection.