4.4 Article

Heparin-Derived Theranostic Nanoprobes Overcome the Blood-Brain Barrier and Target Glioma in Murine Model

期刊

ADVANCED THERAPEUTICS
卷 5, 期 6, 页码 -

出版社

WILEY
DOI: 10.1002/adtp.202200001

关键词

blood-brain barriers; glioma; heparin; nanoparticles; radioimaging

资金

  1. HiLIFE Laboratory Animal Center Core Facility (University of Helsinki, Finland)
  2. European Union's Horizon 2020 Marie Sklodowska-Curie Grant Program [713645]
  3. Academy of Finland [321867, 326461]
  4. K. Albin Johanssons stiftelse
  5. Magnus Ehrnrooth Foundation
  6. Finnish Cancer Foundation
  7. Academy of Finland Flagship Programme, Photonics Research and Innovation (PREIN) [320165]
  8. Academy of Finland (AKA) [321867, 321867] Funding Source: Academy of Finland (AKA)

向作者/读者索取更多资源

The poor permeability of theranostic agents across the blood-brain barrier significantly hampers the development of new treatment modalities for neurological diseases. A new biomimetic nanocarrier coated with heparin has been discovered, which effectively passes the blood-brain barrier and targets glioblastoma. The nanocarrier is labeled with three different imaging modalities, allowing for excellent penetration and distribution in the brain tissues.
The poor permeability of theranostic agents across the blood-brain barrier (BBB) significantly hampers the development of new treatment modalities for neurological diseases. A new biomimetic nanocarrier is discovered using heparin (HP) that effectively passes the BBB and targets glioblastoma. Specifically, HP-coated gold nanoparticles (HP-AuNPs) are designed that are labeled with three different imaging modalities namely, fluorescein (FITC-HP-AuNP), radioisotope (68)Gallium (Ga-68-HP-AuNPs), and MRI active gadolinium (Gd-HP-AuNPs). The systemic infusion of FITC-HP-AuNPs in three different mouse strains (C57BL/6JRj, FVB, and NMRI-nude) displays excellent penetration and reveals uniform distribution of fluorescent particles in the brain parenchyma (69-86%) with some accumulation in neurons (8-18%) and microglia (4-10%). Tail-vein administration of radiolabeled Ga-68-HP-AuNPs in healthy rats also show Ga-68-HP-AuNP inside the brain parenchyma and in areas containing cerebrospinal fluid, such as the lateral ventricles, the cerebellum, and brain stem. Finally, tail-vein administration of Gd-HP-AuNPs (that displays approximate to threefold higher relaxivity than that of commercial Gd-DTPA) in an orthotopic glioblastoma (U87MG xenograft) model in nude mice demonstrates enrichment of T1-contrast at the intracranial tumor with a gradual increase in the contrast in the tumor region between 1 and 3 h. It is believed, the finding offers the untapped potential of HP-derived-NPs to deliver cargo molecules for treating neurological disorders.

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