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Engineered Aurotherapy for the Multimodal Treatment of Glioblastoma.

作者信息

Kim Hyung Shik, Lee Dong Yun

机构信息

Department of Bioengineering, College of Engineering, and BK FOUR Biopharmaceutical Innovation Leader for Education and Research Group, Hanyang University, Seoul, Korea.

Institute of Nano Science and Technology (INST) & Institute for Bioengineering and Biopharmaceutical Research (IBBR), Hanyang University, Seoul, Korea.

出版信息

Brain Tumor Res Treat. 2022 Oct;10(4):215-220. doi: 10.14791/btrt.2022.0032.


DOI:10.14791/btrt.2022.0032
PMID:36347635
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9650121/
Abstract

Glioblastoma multiforme (GBM) is the most aggressive brain tumor, characterized by fatal prognosis and high rates of recurrence. Although there are various treatment strategies such as surgical resection, radiotherapy, and chemotherapy, these traditional approaches still have not improved the survival rates and prolongation. Therefore, there is a pressing requirement for developing novel technologies to combat GBM. Nanoparticle-based GBM therapy can be considered a promising approach to precisely treat tumors with minimal side effects. Among various nanoparticles, gold nanoparticle (AuNP) has been demonstrated to be effective in treating GBM because of its advantages such as easy functionalization due to self-assembled monolayers of thiols, surface plasmon resonance effect on its surface, and relatively low toxicity issues. By using nanoscale (5-100 nm) and facile functionalization with a targeting ligand, AuNP can overcome the obstacles caused by blood-brain barrier, which selectively inhibits AuNP penetration into the brain tumor mass. AuNPs delivered into brain tissue and targeted with GBM have been mostly explored for photothermal therapy and photodynamic therapy, but also investigated in the development of complex therapies including radiotherapy, chemotherapy, and immunotherapy using AuNP-based nanoplatforms. Therefore, the aim of this mini review is to summarize recent works on the AuNPs-based nanoplatforms for treating GBM with a multimodal approach.

摘要

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本文引用的文献

[1]
A novel therapeutic strategy of multimodal nanoconjugates for state-of-the-art brain tumor phototherapy.

J Nanobiotechnology. 2022-1-4

[2]
Correction to Phototheranostics: Active Targeting of Orthotopic Glioma Using Biomimetic Proteolipid Nanoparticles.

ACS Nano. 2021-6-22

[3]
Tumor Heterogeneity in Glioblastomas: From Light Microscopy to Molecular Pathology.

Cancers (Basel). 2021-2-12

[4]
Photothermal Therapy for the Treatment of Glioblastoma: Potential and Preclinical Challenges.

Front Oncol. 2021-1-15

[5]
Porphyrin Immobilized Nanographene Oxide for Enhanced and Targeted Photothermal Therapy of Brain Cancer.

ACS Biomater Sci Eng. 2016-8-8

[6]
The Intratumoral Heterogeneity Reflects the Intertumoral Subtypes of Glioblastoma Multiforme: A Regional Immunohistochemistry Analysis.

Front Oncol. 2020-4-24

[7]
Oral delivery of paclitaxel by polymeric micelles: A comparison of different block length on uptake, permeability and oral bioavailability.

Colloids Surf B Biointerfaces. 2019-10-6

[8]
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Materials (Basel). 2019-3-7

[9]
Combination Glioma Therapy Mediated by a Dual-Targeted Delivery System Constructed Using OMCN-PEG-Pep22/DOX.

Small. 2018-9-14

[10]
Photothermal therapy and photoacoustic imaging via nanotheranostics in fighting cancer.

Chem Soc Rev. 2019-4-1

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