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In vivo evaluation of a MPC polymer coated continuous flow left ventricular assist system
Authors:Kihara Shin'ichiro  Yamazaki Kenji  Litwak Kenneth N  Litwak Philip  Kameneva Marina V  Ushiyama Hiroyuki  Tokuno Toshimasa  Borzelleca David C  Umezu Mitsuo  Tomioka Jun  Tagusari Osamu  Akimoto Takehide  Koyanagi Hitoshi  Kurosawa Hiromi  Kormos Robert L  Griffith Bartley P
Affiliation:Department of Surgery, McGowan Institute for Regenerative Medicine, University of Pittsburgh, 300 Technology Drive, Pittsburgh, PA 15219, U.S.A. kiharas@msx.upmc.edu
Abstract:The aim of this study was the evaluation of the thrombogenicity and the biocompatibility of the SunMedical EVAHEART left ventricular assist system (LVAS) coated with 2-methacryloyloxyethyl phosphorylcholine (MPC) polymer compared to a diamond-like carbon (DLC) coating. Four calves were implanted with the MPC polymer-coated LVAS. Eight calves were implanted with DLC coated LVAS. The thrombogenicity and biocompatibility of the pumps were evaluated. At explant, 60.0 +/- 37.2% (5-85%) of the pump surface area was still coated with MPC polymer after the duration of 45.0 +/- 32.0 days. In 1 out of 4 MPC and 2 out of 8 DLC coated pumps, there was a very small amount of thrombus around the seal ring; otherwise the blood contacting surfaces were free of thrombus. Major organs were normal except for a few lesions in kidneys from both groups. The MPC polymer coated EVAHEART LVAS seems to have low thrombogenicity and high biocompatibility similar to the DLC coated system. The current study demonstrated that the MPC polymer coating shows great promise for being used as an antithrombogenic substrate for the LVAS due to its ease of application, significant cost benefit, and reduction in anticoagulation therapy in acute postoperative period.
Keywords:Left ventricular assist device  2‐methacryloyloxyethyl phosphorylcholine  Diamond‐like carbon  Biocompatibility—Thrombogenicity  Rotary blood pump
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