4.8 Article

Liver-Specific and Echogenic Hyaluronic Acid Nanoparticles Facilitating Liver Cancer Discrimination

期刊

ADVANCED FUNCTIONAL MATERIALS
卷 23, 期 44, 页码 5518-5529

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adfm.201301131

关键词

ultrasound imaging; ultrasound contrast agents; hyaluronic acid (HA); perfluoropentane (PFP); liver-targeting treatments

资金

  1. Fusion Technology Project of MEST [2010-50201]
  2. Regional Technology Innovation Program of the Ministry of Knowledge Economy (MKE) [RTI04-01-01]
  3. National R&D Program for Cancer Control of Ministry for Health and Welfare [1020260]
  4. Intramural Research Program (Theragnosis) of KIST

向作者/读者索取更多资源

With the increasing demand for instant real-time ultrasound (US) imaging of a specific organ, target-specific and long-circulating ultrasound contrast agents are of special interest. A new species of echogenic hyaluronic acid nanoparticles is presented as an ultralong-acting, liver-specific, US contrast agent that is distinct from conventional gas-filled microbubbles. Using an oil-in-water (O/W) emulsification method, bioinert and hydrophobic perfluoropentane (PFP) is encapsulated as an ultrasound gas precursor into hyaluronic acid nanoparticles (HANPs) using hydrophobic interactions. HANPs are formulated by self-assembly, with amphiphilic hyaluronic acid-5-cholanic acid (HA-CA) conjugating in aqueous conditions. The resulting echogenic PFP-encapsulated HANPs (Echo-NPs) show solid nanostructures, differentiated from core-empty conventional microbubbles, and exhibiting outstanding physical properties as an ultrasound contrast agent. They are more stable and robust echogenic solid bodies with an in vivo favorable hydrodynamic size and because PFPs vaporize gradually, their expansion process is very slow in body conditions. After several systemic circulations, echo-NPs generated intense and ultralong echo signals for US imaging at the target site. The echogenic properties of Echo-NPs show a significantly increased half-life and echo persistence, compared with conventional microbubbles. The results clearly show that echo-NPs outperform conventional microbubbles in terms of both physical and echogenic in vitro and in vivo properties.

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