Nanoparticle binding attenuates the pathobiology of gastric cancer-associated Helicobacter pylori

被引:45
|
作者
Westmeier, Dana [1 ]
Posselt, Gernot [2 ]
Hahlbrock, Angelina [1 ]
Bartfeld, Sina [3 ]
Vallet, Cecilia [4 ]
Abfalter, Carmen [2 ]
Docter, Dominic [1 ]
Knauer, Shirley K. [4 ]
Wessler, Silja [2 ]
Stauber, Roland H. [1 ]
机构
[1] Univ Med Ctr Mainz, Dept Nanobiomed, ENT, Langenbeckstr 1, D-55101 Mainz, Germany
[2] Paris Lodron Univ Salzburg, Dept Mol Biol, A-5020 Salzburg, Austria
[3] Univ Wurzburg, Inst Mol Infect Biol, Res Ctr Infect Dis, Wurzburg, Germany
[4] Univ Duisburg Essen, Ctr Med Biotechnol ZMB, Dept Mol Biol 2, Univ Str 5, D-45117 Essen, Germany
关键词
CAG PATHOGENICITY ISLAND; IV SECRETION; GUT MICROBIOTA; PROTEIN CORONA; CELLS; PHOSPHORYLATION; TOXICITY; ABL; ACTIVATION; PROBIOTICS;
D O I
10.1039/c7nr06573f
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Enteric bacteria may cause severe diseases, including gastric cancer-associated Helicobacter pylori. Their infection paths overlap with the oro-gastrointestinal uptake route for nanoparticles, increasingly occurring during environmental or consumer/medical exposure. By comprehensive independent analytical methods, such as live cell fluorescence, electron as well as atomic force microscopy and elemental analysis, we show that a wide array of nanoparticles (NPs) but not microparticles form complexes with H. pylori and enteric pathogens without the need for specific functionalization. The NP-assembly that occurred rapidly was not influenced by variations in physiological temperature, though affected by the NPs' physico-chemical characteristics. Improved binding was observed for small NPs with a negative surface charge, whereas binding could be reduced by surface 'stealth' modifications. Employing human gastric epithelial cells and 3D-organoid models of the stomach, we show that NP-coating did not inhibit H. pylori's cellular attachment. However, even the assembly of non-bactericidal silica NPs attenuated H. pylori infection by reducing CagA phosphorylation, cytoskeletal rearrangement, and IL-8 secretion. Here we demonstrate that NP binding to enteric bacteria may impact their pathobiology which could be further exploited to rationally modulate the (patho) biology of microbes by nanomaterials.
引用
收藏
页码:1453 / 1463
页数:11
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