Ivashchenko Olena, Woźniak Anna, Coy Emerson, Peplinska Barbara, Gapinski Jacek, Jurga Stefan
NanoBioMedical Centre, Adam Mickiewicz University, 61614 Poznan, Poland.
NanoBioMedical Centre, Adam Mickiewicz University, 61614 Poznan, Poland.
Colloids Surf B Biointerfaces. 2017 Apr 1;152:85-94. doi: 10.1016/j.colsurfb.2017.01.009. Epub 2017 Jan 9.
Though the cytotoxic properties of magnetite nanoparticles (NPs) are rather well investigated and known to be dose dependent and rather low, surface functionalization can drastically change their properties. To determine whether the cytotoxicity of magnetite/Ag/antibiotic NPs may be associated, among other things, with iron, silver and antibiotic release, this study investigates the release profiles and cytotoxicity of magnetite/Ag/rifampicin and magnetite/Ag/doxycycline NPs compares it similar profiles from magnetite, magnetite/Ag NPs and antibiotics. It was established that the studied NPs released not only water-soluble substances, such as antibiotics, but also poorly-soluble ones, such as iron and silver. The deposition of silver on the magnetite surface promotes the release of iron by the formation of a galvanic couple. Antibiotic adsorbed on the magnetite/Ag surface plays a dual role in the galvanic corrosion processes: as a corrosion inhibitor for iron oxides and as a corrosion promoter for silver. Magnetite/Ag/rifampicin and magnetite/Ag/doxycycline. NPs were found to have greater cytotoxicity towards the HEK293T cell line than magnetite NPs. These results were attributed to the combined toxic action of the released iron, silver ions and antibiotics. Intensive and simultaneous release of the NP components caused cell stress and suppressed their growth.
尽管磁铁矿纳米颗粒(NPs)的细胞毒性已得到相当充分的研究,且已知其具有剂量依赖性且相当低,但表面功能化可极大地改变其性质。为了确定磁铁矿/银/抗生素纳米颗粒的细胞毒性是否可能与铁、银和抗生素的释放等因素有关,本研究调查了磁铁矿/银/利福平纳米颗粒和磁铁矿/银/强力霉素纳米颗粒的释放曲线和细胞毒性,并将其与磁铁矿、磁铁矿/银纳米颗粒及抗生素的类似曲线进行比较。结果表明,所研究的纳米颗粒不仅释放水溶性物质,如抗生素,还释放难溶性物质,如铁和银。银在磁铁矿表面的沉积通过形成电偶促进了铁的释放。吸附在磁铁矿/银表面的抗生素在电偶腐蚀过程中起双重作用:作为铁氧化物的腐蚀抑制剂和银的腐蚀促进剂。已发现磁铁矿/银/利福平纳米颗粒和磁铁矿/银/强力霉素纳米颗粒对HEK293T细胞系的细胞毒性比磁铁矿纳米颗粒更大。这些结果归因于释放的铁、银离子和抗生素的联合毒性作用。纳米颗粒成分的强烈且同时释放导致细胞应激并抑制其生长。