Diatomite nanoparticles are considered a valid alternative to the synthetic porous silica ones for nano‐based drug delivery systems. In article number 1800247, Luca De Stefano, Claudia Tortiglione, and co‐workers explore the in vivo toxicity of hybrid diatomite nanovectors (DNPs) in a living model organism, the cnidarian freshwater polyp Hydra. The long‐term effects of DNPs on Hydra, based on multiple toxicity endpoints (morphology, growth rate, apoptosis, genetic analysis), demonstrate the in vivo biosafety of this naturally derived material

In Vivo Toxicity: In Vivo Toxicity Assessment of Hybrid Diatomite Nanovectors Using Hydra vulgaris as a Model System (Adv. Biosys. 4/2019) / Terracciano, Monica; Stefano, Luca; Tortiglione, Claudia; Tino, Angela; Rea, Ilaria. - In: ADVANCED BIOSYSTEMS. - ISSN 2366-7478. - 3:4(2019), p. 1970042. [10.1002/adbi.201970042]

In Vivo Toxicity: In Vivo Toxicity Assessment of Hybrid Diatomite Nanovectors Using Hydra vulgaris as a Model System (Adv. Biosys. 4/2019)

Terracciano, Monica;
2019

Abstract

Diatomite nanoparticles are considered a valid alternative to the synthetic porous silica ones for nano‐based drug delivery systems. In article number 1800247, Luca De Stefano, Claudia Tortiglione, and co‐workers explore the in vivo toxicity of hybrid diatomite nanovectors (DNPs) in a living model organism, the cnidarian freshwater polyp Hydra. The long‐term effects of DNPs on Hydra, based on multiple toxicity endpoints (morphology, growth rate, apoptosis, genetic analysis), demonstrate the in vivo biosafety of this naturally derived material
2019
In Vivo Toxicity: In Vivo Toxicity Assessment of Hybrid Diatomite Nanovectors Using Hydra vulgaris as a Model System (Adv. Biosys. 4/2019) / Terracciano, Monica; Stefano, Luca; Tortiglione, Claudia; Tino, Angela; Rea, Ilaria. - In: ADVANCED BIOSYSTEMS. - ISSN 2366-7478. - 3:4(2019), p. 1970042. [10.1002/adbi.201970042]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/793445
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