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Innovative approach to safely induce controlled lipolysis by superparamagnetic iron oxide nanoparticles-mediated hyperthermic treatment

Authors :
Marinozzi, M
Pandolfi, L
Malatesta, M
Colombo, M
Collico, V
Lievens, P
Tambalo, S
Lasconi, C
Vurro, F
Boschi, F
Mannucci, S
Sbarbati, A
Prosperi, D
Calderan, L
Marinozzi, Maria Rosaria
Pandolfi, Laura
Malatesta, Manuela
Colombo, Miriam
Collico, Veronica
Lievens, Patricia Marie-Jeanne
Tambalo, Stefano
Lasconi, Chiara
Vurro, Federica
Boschi, Federico
Mannucci, Silvia
Sbarbati, Andrea
Prosperi, Davide
Calderan, Laura
Marinozzi, M
Pandolfi, L
Malatesta, M
Colombo, M
Collico, V
Lievens, P
Tambalo, S
Lasconi, C
Vurro, F
Boschi, F
Mannucci, S
Sbarbati, A
Prosperi, D
Calderan, L
Marinozzi, Maria Rosaria
Pandolfi, Laura
Malatesta, Manuela
Colombo, Miriam
Collico, Veronica
Lievens, Patricia Marie-Jeanne
Tambalo, Stefano
Lasconi, Chiara
Vurro, Federica
Boschi, Federico
Mannucci, Silvia
Sbarbati, Andrea
Prosperi, Davide
Calderan, Laura
Publication Year :
2017

Abstract

During last years, evidence has been provided on the involvement of overweight and obesity in the pathogenesis and aggravation of several life-threatening diseases. Here, we demonstrate that, under appropriate administration conditions, polyhedral iron oxide nanoparticles are efficiently and safely taken up by 3T3 cell line-derived adipocytes (3T3 adipocytes) in vitro. Since these nanoparticles proved to effectively produce heat when subjected to alternating magnetic field, 3T3 adipocytes were submitted to superparamagnetic iron oxide nanoparticles-mediated hyperthermia treatment (SMHT), with the aim of modulating their lipid content. Notably, the treatment resulted in a significant delipidation persisting for at least 24 h, and in the absence of cell death, damage or dedifferentiation. Interestingly, transcript expression of adipose triglyceride lipase (ATGL), a key gene involved in canonical lipolysis, was not modulated upon SMHT, suggesting the involvement of a novel/alternative mechanism in the effective lipolysis observed. By applying the same experimental conditions successfully used for 3T3 adipocytes, SMHT was able to induce delipidation also in primary cultures of human adipose-derived adult stem cells. The success of this pioneering approach in vitro opens promising perspectives for the application of SMHT in vivo as an innovative safe and physiologically mild strategy against obesity, potentially useful in association with balanced diet and healthy lifestyle.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1308922572
Document Type :
Electronic Resource