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Small ; 16(8): e1906985, 2020 02.
Article in English | MEDLINE | ID: mdl-32003089

ABSTRACT

The blood-brain barrier (BBB) is the most important obstacle to improving the clinical outcomes of diagnosis and therapy of glioblastoma. Thus, the development of a novel nanoplatform that can efficiently traverse the BBB and achieve both precise diagnosis and therapy is of great importance. Herein, an intelligent nanoplatform based on holo-transferrin (holo-Tf) with in situ growth of MnO2 nanocrystals is constructed via a reformative mild biomineralization process. Furthermore, protoporphyrin (ppIX), acting as a sonosensitizer, is then conjugated into holo-Tf to obtain MnO2 @Tf-ppIX nanoparticles (TMP). Because of the functional inheritance of holo-Tf during fabrication, TMP can effectively traverse the BBB for highly specific magnetic resonance (MR) imaging of orthotopic glioblastoma. Clear suppression of tumor growth in a C6 tumor xenograft model is achieved via sonodynamic therapy. Importantly, the experiments also indicate that the TMP nanoplatform has satisfactory biocompatibility and biosafety, which favors potential clinical translation.


Subject(s)
Blood-Brain Barrier , Glioblastoma , Magnetic Resonance Imaging , Nanocomposites , Ultrasonic Therapy , Animals , Blood-Brain Barrier/metabolism , Cell Line, Tumor , Disease Models, Animal , Glioblastoma/diagnostic imaging , Glioblastoma/therapy , Magnetic Resonance Imaging/methods , Manganese Compounds/chemistry , Mice , Mice, Nude , Oxides/chemistry , Ultrasonic Therapy/methods
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