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Step-by-step design of new theranostic nanoformulations: Multifunctional nanovectors for radio-chemo-hyperthermic therapy under physical targeting

Academic Article
Publication Date:
2021
abstract:
While investigating the possible synergistic effect of the conventional anticancer therapies, which, taken individually, are often ineffective against critical tumors, such as central nervous system (CNS) ones, the design of a theranostic nanovector able to carry and deliver chemotherapy drugs and magnetic hyperthermic agents to the target radiosensitizers (oxygen) was pursued. Alongside the original formulation of polymeric biodegradable oxygen-loaded nanostructures, their properties were fine-tuned to optimize their ability to conjugate therapeutic doses of drugs (doxorubicin) or antitumoral natural substances (curcumin). Oxygen-loaded nanostructures (diameter = 251 ± 13 nm, ? potential = -29 ± 5 mV) were finally decorated with superparamagnetic iron oxide nanoparticles (SPIONs, diameter = 18 ± 3 nm, ? potential = 14 ± 4 mV), producing stable, effective and non-agglomerating magnetic nanovectors (diameter = 279 ± 17 nm, ? potential = -18 ± 7 mV), which could potentially target the tumoral tissues under magnetic driving and are monitorable either by US or MRI imaging.
Iris type:
01.01 Articolo in rivista
Keywords:
nanostructure; oxygen; SPIONs; magnetic driving; theranostic
List of contributors:
Albertini, Franca; Nasi, Lucia; Casoli, Francesca
Authors of the University:
ALBERTINI FRANCA
CASOLI FRANCESCA
NASI LUCIA
Handle:
https://iris.cnr.it/handle/20.500.14243/396068
Published in:
MOLECULES
Journal
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URL

https://www.mdpi.com/1420-3049/26/15/4591
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