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Selective Priming of Tumor Blood Vessels by Radiation Therapy Enhances Nanodrug Delivery

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  • معلومة اضافية
    • Contributors:
      Department of Radiation Oncology; Department of RBrigham and Women’s Hospital, Dana-Farber Cancer Institute, and Harvard Medical School; iLM - Formation, élaboration de nanomatériaux et cristaux (iLM - FENNEC); Institut Lumière Matière Villeurbanne (ILM); Université Claude Bernard Lyon 1 (UCBL); Université de Lyon-Université de Lyon-Centre National de la Recherche Scientifique (CNRS)-Université Claude Bernard Lyon 1 (UCBL); Université de Lyon-Université de Lyon-Centre National de la Recherche Scientifique (CNRS); Institute of Macromolecular Chemistry of the Czech Academy of Sciences (IMC / CAS); Czech Academy of Sciences Prague (CAS); Nanomedicine Science and Technology Center and Department of Physics; Northeastern University Boston; Experimental Molecular Imaging; University Hospital and Helmholtz Institute for Biomedical Engineering; Division of Medical Physics & Engineering; University of Texas Southwestern Medical Center; iLM - Spectrométrie des biomolécules et agrégats (iLM - SPECTROBIO); Institute for Advanced Biosciences / Institut pour l'Avancée des Biosciences (Grenoble) (IAB); Centre Hospitalier Universitaire CHU Grenoble (CHUGA)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Etablissement français du sang - Auvergne-Rhône-Alpes (EFS)-Centre National de la Recherche Scientifique (CNRS)-Université Grenoble Alpes 2016-2019 (UGA 2016-2019 ); Lurie Family Imaging Center; Dana-Farber Cancer Institute and Harvard Medical School; LA-ICP-MS Department; Department of Earth and Environment Boston; Boston University Boston (BU)-Boston University Boston (BU); ANR-11-IDEX-0007,Avenir L.S.E.,PROJET AVENIR LYON SAINT-ETIENNE(2011)
    • بيانات النشر:
      HAL CCSD
      Nature Publishing Group
    • الموضوع:
      2019
    • Collection:
      Université de Lyon: HAL
    • نبذة مختصرة :
      International audience ; Effective drug delivery is restricted by pathophysiological barriers in solid tumors. In human pancreatic adenocarcinoma, poorly-permeable blood vessels limit the intratumoral permeation and penetration of chemo or nanotherapeutic drugs. New and clinically viable strategies are urgently sought to breach the neoplastic barriers that prevent effective drug delivery. Here, we present an original idea to boost drug delivery by selectively knocking down the tumor vascular barrier in a human pancreatic cancer model. Clinical radiation activates the tumor endothelial-targeted gold nanoparticles to induce a physical vascular damage due to the high photoelectric interactions. Active modulation of these tumor neovessels lead to distinct changes in tumor vascular permeability. Noninvasive MRI and fluorescence studies, using a short-circulating nanocarrier with MR-sensitive gadolinium and a long-circulating nanocarrier with fluorescence-sensitive nearinfrared dye, demonstrate more than two-fold increase in nanodrug delivery, post tumor vascular modulation. Functional changes in altered tumor blood vessels and its downstream parameters, particularly, changes in Ktrans (permeability), Kep (flux rate), and Ve (extracellular interstitial volume), reflect changes that relate to augmented drug delivery. The proposed dual-targeted therapy effectively invades the tumor vascular barrier and improve nanodrug delivery in a human pancreatic tumor model and it may also be applied to other nonresectable, intransigent tumors that barely respond to standard drug therapies.
    • Relation:
      hal-02516030; https://hal.science/hal-02516030; https://hal.science/hal-02516030/document; https://hal.science/hal-02516030/file/s41598-019-50538-w.pdf
    • الرقم المعرف:
      10.1038/s41598-019-50538-w
    • الدخول الالكتروني :
      https://doi.org/10.1038/s41598-019-50538-w
      https://hal.science/hal-02516030
      https://hal.science/hal-02516030/document
      https://hal.science/hal-02516030/file/s41598-019-50538-w.pdf
    • Rights:
      info:eu-repo/semantics/OpenAccess
    • الرقم المعرف:
      edsbas.24B9A101