医学
血液透析
电气导管
狭窄
动静脉瘘
外科
血液透析通路
血栓形成
不利影响
瘘管
血管通路
随机对照试验
医源性损伤
重症监护医学
缺血
临床试验
内科学
假性动脉瘤
作者
Matteo Tozzi,Jan De Letter,Dainis Krievins,Janis Jushinskis,Annick D’Haeninck,Kestutis Rucinskas,Marius Miglinas,Tomas Baltrūnas,Sigi Nauwelaers,Frederick J. Schoen,Renu Virmani,An S De Vriese,Frans Moll,Frank Vermassen
标识
DOI:10.1177/11297298251395823
摘要
Background: Xeltis’ aXess hemodialysis (HD) conduit is a novel arteriovenous graft (AVG) made of bioabsorbable polymer, replaced by body-own tissue, through endogenous tissue restoration (ETR). Methods: An ongoing prospective, single-arm, multi-center first-in-human (FIH) study evaluates safety and performance in hemodialysis patients unsuitable for arteriovenous fistula (AVF) creation. Primary and secondary 12-months outcomes are reported. Results: The aXess conduit was implanted in 20 patients. Freedom from device-related serious adverse events (SAEs) was 100% at 6 months and 95% at 12 months, with no access-related infections. Two unrelated deaths occurred. Primary and secondary patency rates were 80% and 100% at 6 months, 39% and 100% at 12 months. Access-related interventions occurred in 61% of patients, mainly for thrombosis and stenosis (71%), and pseudoaneurysms (29%). Histology showed remodeling at 6 months; the polymer was almost resorbed at 15 months. Conclusions: This bioengineered conduit shows favorable safety and performance for 1 year. However, long-term validation in a pivotal trial is warranted. Trial Registration: First-in-Human (FIH) Study of the Xeltis Hemodialysis Access Graft (aXess-FIH) ( https://www.clinicaltrials.gov ); Unique identifier: NCT04898153.
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