Literature DB >> 18005270

Hemolytic evaluation using polyurethane microcapsule suspensions in circulatory support devices: normalized index of hemolysis comparisons of commercial centrifugal blood pumps.

Osamu Maruyama1, Katsuhiro Yamaguchi, Masahiro Nishida, Tomio Onoguchi, Tatsuo Tsutsui, Tomoaki Jikuya, Takashi Yamane.   

Abstract

We have been developing some types of microcapsule suspensions with polyurethane membranes to evaluate the absolute hemolytic characteristics of the centrifugal blood pumps used in circulatory support devices such as artificial hearts. In order to facilitate/realize hemolysis testing on centrifugal blood pumps that have hemolysis levels as low as those of commercial centrifugal blood pumps, we eliminated capsules with diameters less than 72.2 microm, amounting to 15.4% of all capsules in the conventional suspension (crude suspension [CS]), and adjusted the capsule volume ratio to correspond to a hematocrit of 40%. In this way we succeeded in enhancing the sensitivity of the suspension to microcapsule destruction 61 fold. We used this new suspension (fine suspension [FS]) to perform hemolysis tests on four types of commercial pump with mock circulation systems. Under conditions of 500 mm Hg and 11.2 L/min, we successfully determined the hemolytic characteristics (normalized index of hemolysis [NIH]) of some of the centrifugal blood pumps; the results showed some correlation with those of hemolysis tests on bovine blood and suggest that microcapsule suspensions with polyurethane membranes are useful as standard test solutions for the absolute evaluation of centrifugal blood pumps.

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Year:  2007        PMID: 18005270     DOI: 10.1111/j.1525-1594.2007.00503.x

Source DB:  PubMed          Journal:  Artif Organs        ISSN: 0160-564X            Impact factor:   3.094


  1 in total

1.  Application of drag-reducing polymer solutions as test fluids for in vitro evaluation of potential blood damage in blood pumps.

Authors:  Amanda R Daly; Hideo Sobajima; Salim E Olia; Setsuo Takatani; Marina V Kameneva
Journal:  ASAIO J       Date:  2010 Jan-Feb       Impact factor: 2.872

  1 in total

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