Purpose: To present real-world data to evaluate the safety and effectiveness of bivalirudin, a direct thrombin inhibitor, in an unselected group of patients undergoing percutaneous peripheral interventions (PPI).
Methods: Data were extracted from a prospectively collected peripheral vascular registry developed for quality assurance measures at 2 centers. Of 398 consecutive patients (195 men; mean age 69.4+/-11.3 years) who underwent PPI in a 2-year period, 369 (92.7%) received bivalirudin (0.75 mg/kg bolus followed by a 1.75 mg/kg/h infusion) and 29 (7.3%) received unfractionated heparin (UFH). In the bivalirudin sample, critical limb ischemia was present in 28.0% of patients, TASC D lesion in 29.5%, and angiographic thrombus in 7.8% of vessels. Demographic, clinical, procedural, and angiographic variables and in-hospital complications were analyzed. All in-hospital adverse events were independently adjudicated.
Results: Procedural success (<30% residual narrowing) was achieved in 359 (97.3%) patients receiving bivalirudin. Adverse events included stroke (1, 0.3%), acute renal failure (1, 0.3%), major bleeding (3, 0.8%), distal embolization (11, 3.0%), vascular access complications (2, 0.5%), and minor amputation (2, 0.5%).
Conclusion: Bivalirudin had an excellent safety profile in a real-life cohort of patients undergoing PPI, including high-risk patients with critical limb ischemia and TASC D lesions. In-hospital major bleeding and other adverse events were infrequent. A randomized trial of bivalirudin versus UFH is needed to verify these results and establish bivalirudin as a standard anticoagulant in PPI.
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http://dx.doi.org/10.1583/09-2810.1 | DOI Listing |
Sci Total Environ
January 2025
Institute of Plant Nutrition, Resources and Environment, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China. Electronic address:
Composting urban and rural wastes into organic fertilizers for land application is considered the best way to dispose of and recycle waste resources. However, there are some concerns about the long-term effects of applying various organic fertilizers on soils, food safety, and health risks derived from heavy metal(loid)s (HMs). A long-term field experiment was conducted to evaluate the effects of continuous application of chicken manure compost (CM), sewage sludge compost (SSC), and domestic waste compost (DWC) for wheat on the accumulation, transfer, and health risks of HMs.
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