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Biology subjects

Yeh, S.-L.

Publications and source records attributed to Yeh, S.-L..

2 recordsLinked to original sources

Ion exchange biomaterials to capture daptomycin and prevent resistance evolution in off-target bacterial populations

Daptomycin (DAP), a cyclic anionic lipopeptide antibiotic, is among the last resorts to treat multidrug resistant (vancomycin resistant Enterococcus faecium or methicillin resistant Staphylococcus aureus) Gram-positive bacterial infections. DAP is administered intravenously and biliary excretion results in the introduction of DAP ([~]5-10 % of the intravenous DAP dose) arriving in the gastrointestinal (GI) tract where it drives resistance evolution in off-target populations of Enterococcus faecium bacteria. Previously, we have shown that the oral administration of cholestyramine, an ion exchange biomaterial (IXB) sorbent, prevents DAP treatment from enriching DAP-resistance in populations of E. faecium shed from mice. Here, we engineer the biomaterial-DAP interfacial interactions to uncover the antibiotic removal mechanisms. The IXB-mediated DAP capture from aqueous media was measured in both controlled pH/electrolyte solutions and in simulated intestinal fluid (SIF) to uncover the molecular and colloidal mechanisms of DAP removal from the GI tract. Our findings show that the IXB electrostatically adsorbs the anionic antibiotic via a time-dependent diffusion-controlled process. Unsteady-state diffusion-adsorption mass balance describes the dynamics of adsorption well, and the maximum removal capacity is beyond the electric charge stoichiometric ratio because of DAP self-assembly. This study may open new opportunities for optimizing cholestyramine adjuvant therapy to prevent DAP resistance, as well as designing novel biomaterials to remove off-target antibiotics from the GI tract. TOC O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=137 SRC="FIGDIR/small/495716v1_ufig1.gif" ALT="Figure 1"> View larger version (48K): org.highwire.dtl.DTLVardef@ec034eorg.highwire.dtl.DTLVardef@cd1106org.highwire.dtl.DTLVardef@118dbcborg.highwire.dtl.DTLVardef@106287c_HPS_FORMAT_FIGEXP M_FIG C_FIG

bioengineering↗

Intrinsic neural activity predisposes susceptibility to a body illusion

Susceptibility to the rubber hand illusion (RHI) varies. Thus far, however, there is no consensus as regards how to explain this variation. Previous studies, focused on the role of multisensory integration, have searched for neural correlates of the illusion. Those studies, however, have failed to identify a sufficient set of functionally specific neural correlates. An alternative explanation of the illusion is that it results from demand characteristics, chiefly variability in the disposition to respond to imaginative suggestion: the degree to which intrinsic neural activity allows for a blurring of boundaries between self and external objects. Some evidence suggests that frontal power is one means of tracking neural instantiations of self; therefore, we hypothesized that the higher the frontal power during eyes-closed resting state, the more stable the self. As a corollary, we infer that the more stable the self, the less susceptible are participants to a blurring of boundaries--to feeling that the rubber hand belongs to them. Indeed, we found that frontal amplitude oscillations negatively correlate with susceptibility. Moreover, since and {delta} oscillations seem to be associated in pathological states that allow for a blurring of boundaries between self and external objects, we conjectured that the high frontal power observed in low-RHI participants is modulated by {delta} frequency oscillations. Indeed, we found this to be the case. Based on our findings we propose that the two explanatory frameworks might be complementary: that is, the neural correlates of multisensory integration might be necessary for the RHI, but a sufficient explanation requires investigation of variable intrinsic neural activity that acts to modulate how the brain responds to incompatible sensory stimuli. Highlights~Intrinsic frontal power negatively correlates with susceptibility to the RHI. ~Intrinsic power modulated by {delta} oscillations varies with susceptibility to the RHI. ~Sufficient explanation of RHI requires understanding of intrinsic neural dispositions that regulate the boundary between self and the external world.

neuroscience↗