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The Effect of Sonication on Extravasation and Distribution of Nanoparticles and Dextrans in Tumor Tissue Imaged by Multiphoton Microscopy

Abstract

Ultrasound (US)and systemic administration of microbubbles (MBs)have been shown to improve the delivery of drugs and nanoparticles (NPs)to tumor tissue. A better understanding of the mechanisms is crucial for effective delivery of NPs and drugs. To elucidate the kinetics of extravasation events, and relate it to the vessel diameter and flow, we have performed real-time intravital multiphoton microscopy during US sonication of tumors growing in dorsal window chambers. We studied the effects of four different mechanical index (MI)levels (0.2 to 0.8)while injecting SonoVue or in-house made MBs with NPs in the shell (NPMB). We found that high MI of 0.8 induced a violent extravasation of both NPs and dextrans. Using lower MIs (0.2-0.6), less extravasation was detected and it occurred in vessels with larger diameters compared to sonication at MI 0.8. The rate of extravasation of both NPs and dextrans, and the displacement of NPs and dextrans from the vessel into the tumor tissue, correlated with MI. The observed extravasation events happened within milliseconds to minutes after the US exposure started. Moreover, we have observed a change of blood flow rate and direction with all the MIs tested
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Category

Academic article

Client

  • Research Council of Norway (RCN) / 240316

Language

English

Author(s)

  • Petros Tesfamichael Yemane
  • Andreas Åslund
  • Kristin Grendstad Sæterbø
  • Astrid Bjørkøy
  • Sofie Snipstad
  • Annemieke van Wamel
  • Sigrid Berg
  • Ýrr Asbjørg Mørch
  • Rune Hansen
  • Bjørn Atle Johan Angelsen
  • Catharina de Lange Davies

Affiliation

  • Norwegian University of Science and Technology
  • St. Olavs Hospital, Trondheim University Hospital
  • SINTEF Digital / Health Research
  • SINTEF Industry / Biotechnology and Nanomedicine

Year

2018

Published in

Proceedings - IEEE Ultrasonics Symposium

ISSN

1948-5719

Volume

2018

Issue

October

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