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Herbert Juch Liudmila Nikitina Sabine Reimann Martin Gauster Gottfried Dohr Barbara Obermayer-Pietsch 《Nanotoxicology》2018,12(2):90-103
A thorough understanding of nanoparticle bio-distribution at the feto-maternal interface will be a prerequisite for their diagnostic or therapeutic application in women of childbearing age and for teratologic risk assessment. Therefore, the tissue interaction of biocompatible dendritic polyglycerol nanoparticles (dPG-NPs) with first- trimester human placental explants were analyzed and compared to less sophisticated trophoblast-cell based models. First-trimester human placental explants, BeWo cells and primary trophoblast cells from human term placenta were exposed to fluorescence labeled, ~5?nm dPG-NPs, with differently charged surfaces, at concentrations of 1 µM and 10?nM, for 6 and 24?h. Accumulation of dPGs was visualized by fluorescence microscopy. To assess the impact of dPG-NP on trophoblast integrity and endocrine function, LDH, and hCG releases were measured. A dose- and charge-dependent accumulation of dPG-NPs was observed at the early placental barrier and in cell lines, with positive dPG-NP-surface causing deposits even in the mesenchymal core of the placental villi. No signs of plasma membrane damage could be detected. After 24?h we observed a significant reduction of hCG secretion in placental explants, without significant changes in trophoblast apoptosis, at low concentrations of charged dPG-NPs. In conclusion, dPG-NP’s surface charge substantially influences their bio-distribution at the feto-maternal interface, with positive charge facilitating trans-trophoblast passage, and in contrast to more artificial models, the first-trimester placental explant culture model reveals potentially hazardous influences of charged dPG-NPs on early placental physiology. 相似文献
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Barbara Fumić Jasna Jablan Dominik Cinčić Marijana Zovko Končić 《Journal of microencapsulation》2018,35(1):1-12
This work aimed to investigate the potential effect of cyclodextrin encapsulation on intrinsic ability of daidzein (DAD) and genistein (GEN) to inhibit the glycosaminoglycan (GAG) synthesis in fibroblasts originating from patients with mucopolysaccharidosis (MPS), type II and III. DAD or GEN encapsulation with either 2-hydroxypropyl-β-cyclodextrin or sulphobuthylether-β-cyclodextrin were achieved by neat grinding and were characterised by thermal analysis, X-ray powder diffraction, scanning electron microscopy and solubility testing which confirmed the complexes formation with increased solubility with respect to starting compounds. Both isoflavones, as well as their co-ground cyclodextrin complexes reduced GAG levels in the fibroblasts of MPS II and MPS III patients from 54.8–77.5%, in a dose dependent manner, without any significant cytotoxic effect. Cyclodextrin encapsulation did not change the intrinsically high effect of both DAD and GEN on the GAG level reduction in the treated cells, thus could be considered as a part of combination therapies of MPS. 相似文献
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Valentina Becherucci Stefano Ermini Luisa Piccini Silvia Bisin Valentina Gori Francesca Gentile Riccardo Ceccantini Elena De Rienzo Barbara Bindi Paola Pavan Vanessa Cunial Elisa Allegro Francesca Brugnolo Daniela Maggio Daniela Calzolari Erika Maccarelli Silvia Galli Sonia Muricci Marco Berchielli Veronica Tintori Iacopo Sardi Franco Bambi 《Journal of clinical apheresis》2020,35(5):406-412
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Factors impacting attrition of vulnerable women from a longitudinal mental health intervention study
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