PLoS ONE (Jan 2019)

Doppler sonography enhances rtPA-induced fibrinolysis in an in vitro clot model of spontaneous intracerebral hemorrhages.

  • Julia Masomi-Bornwasser,
  • Philipp Winter,
  • Axel Neulen,
  • Sven R Kantelhardt,
  • Jochem König,
  • Oliver Kempski,
  • Florian Ringel,
  • Naureen Keric

DOI
https://doi.org/10.1371/journal.pone.0210810
Journal volume & issue
Vol. 14, no. 1
p. e0210810

Abstract

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BackgroundTranscranial Doppler (TCD) was shown to enhance intravascular fibrinolysis by rtPA in ischemic stroke. Studies revealed that catheter-based administration of rtPA induces lysis of intracerebral hemorrhages (ICH). However, it is unknown whether TCD would be suitable to enhance rtPA-induced fibrinolysis in patients with ICH. The aim of this study was to assess the potential of TCD to enhance rtPA-induced fibrinolysis in an in vitro clot system.MethodsReproducible human blood clots of 25 ml were incubated in a water bath at 37°C during treatments. They were weighed before and after 6 different treatments: (I) control (incubation only), (II) rtPA only, (III) one Doppler probe, (IV) two Doppler probes placed vis-à-vis, (V) one probe and rtPA and (VI) two probes and rtPA. To quantify lysis of the blood clots and attenuation of the Doppler through a temporal squama acoustic peak rarefaction pressure (APRP) was measured in the field of the probes. Temperature was assessed to evaluate possible side effects.ResultsClot weight was reduced in all groups. The control group had the highest relative end weight of 70.2%±7.2% compared to all other groups (pConclusionsTCD significantly enhances rtPA-induced lysis of blood clots, and the effect is amplified by using multiple probes. Our results indicate that bitemporal TCD insonation of hematomas could be a new and safe approach to enhance fibrinolysis of ICH´s treated with intralesional catheter and rtPA.