2009
DOI: 10.1021/tx900153k
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Effect of Crystal Size and Surface Functionalization on the Cytotoxicity of Silicalite-1 Nanoparticles

Abstract: In this report, we describe the synthesis and characterization of nanocrystalline silicalite (the purely siliceous form of the zeolite, ZSM-5) of defined crystal size and surface functionalization and determine the effect on the type and degree of cytotoxicity induced in two distinct model cell lines. The silicalite materials were characterized by powder X-ray diffraction, dynamic light scattering and zeta potential, solid state NMR, thermal gravimetric analysis, and nitrogen adsorption using the BET method to… Show more

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Cited by 73 publications
(54 citation statements)
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“…In the 30 nm and 500 nm zeolite particles, surface charge had only a small effect on cytotoxicity, but marked differences between positively and negatively charged 150 nm zeolite particles were seen in epithelial (human embryonic kidney cells). 104 This may be due to the fact that 150 nm particles possessed the highest charge densities. Amine-functionalized NPs acted more by disruption of membrane integrity, whereas carboxylfunctionalized ones induced apoptosis to a greater extent.…”
Section: Intracellular Proteinsmentioning
confidence: 99%
“…In the 30 nm and 500 nm zeolite particles, surface charge had only a small effect on cytotoxicity, but marked differences between positively and negatively charged 150 nm zeolite particles were seen in epithelial (human embryonic kidney cells). 104 This may be due to the fact that 150 nm particles possessed the highest charge densities. Amine-functionalized NPs acted more by disruption of membrane integrity, whereas carboxylfunctionalized ones induced apoptosis to a greater extent.…”
Section: Intracellular Proteinsmentioning
confidence: 99%
“…The surface charge seems to possess more complexity related to cytotoxicity compared with other factors such as size [53]. The cytotoxicity of liposomes has been shown to be connected with their charge and size [54].…”
Section: Neurotoxicity Of Nanoliposomes and Nanoliposomes Pre-incubatmentioning
confidence: 99%
“…Furthermore, bone cell proliferation properties [145] have led to zeolites' growing popularity for biomedical applications. Furthermore, previous work demonstrated unfunctionalized, calcined zeolites displayed little toxicity when compared with amine-functionalized zeolites, solidifying their use for biomedical applications [146].…”
Section: Alumina and Zeolitesmentioning
confidence: 99%