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@article{1393665, author = {Schubertová, Veronika and MartinezandVeracoechea, F.J. and Vácha, Robert}, article_location = {London}, article_number = {SEP}, doi = {http://dx.doi.org/10.1038/s41598-017-11735-7}, keywords = {RECEPTOR-MEDIATED ENDOCYTOSIS; SHAPE ANISOTROPY; NANOPARTICLES; NEUTRALIZATION; MATTER; VIRUS}, language = {eng}, issn = {2045-2322}, journal = {Scientific Reports}, title = {Design of Multivalent Inhibitors for Preventing Cellular Uptake}, url = {https://www.nature.com/articles/s41598-017-11735-7.pdf}, volume = {7}, year = {2017} }
TY - JOUR ID - 1393665 AU - Schubertová, Veronika - Martinez-Veracoechea, F.J. - Vácha, Robert PY - 2017 TI - Design of Multivalent Inhibitors for Preventing Cellular Uptake JF - Scientific Reports VL - 7 IS - SEP SP - 11689 EP - 11689 PB - Nature Publishing Group SN - 20452322 KW - RECEPTOR-MEDIATED ENDOCYTOSIS KW - SHAPE ANISOTROPY KW - NANOPARTICLES KW - NEUTRALIZATION KW - MATTER KW - VIRUS UR - https://www.nature.com/articles/s41598-017-11735-7.pdf N2 - Cellular entry, the frst crucial step of viral infection, can be inhibited by molecules adsorbed on the virus surface. However, apart from using stronger afnity, little is known about the properties of such inhibitors that could increase their efectiveness. Our simulations showed that multivalent inhibitors can be designed to be much more efcient than their monovalent counterparts. For example, for our particular simulation model, a single multivalent inhibitor spanning 5 to 6 binding sites is enough to prevent the uptake compared to the required 1/3 of all the receptor binding sites needed to be blocked by monovalent inhibitors. Interestingly, multivalent inhibitors are more efcient in inhibiting the uptake not only due to their increased afnity but mainly due to the co-localization of the inhibited receptor binding sites at the virion’s surface. Furthermore, we show that Janus-like inhibitors do not induce virus aggregation. Our fndings may be generalized to other uptake processes including bacteria and drug-delivery. ER -
SCHUBERTOVÁ, Veronika, F.J. MARTINEZ-VERACOECHEA a Robert VÁCHA. Design of Multivalent Inhibitors for Preventing Cellular Uptake. \textit{Scientific Reports}. London: Nature Publishing Group, 2017, roč.~7, SEP, s.~11689-11695. ISSN~2045-2322. Dostupné z: https://dx.doi.org/10.1038/s41598-017-11735-7.
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