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K. Portion of spore surface.
A significant surface contamination occurring during CIP was evidenced, depending on the spore surface properties.
This resistance to shear was not related to spore surface properties.
This study reports on the effect of cultivation pH on spore surface hydrophobicity.
This finding suggests that chemical action plays the major role during CIP, whose efficacy is significantly governed by the spore surface chemistry.
This study indicates that the major mechanism of spore neutralization by the synergism of Cl2 and rapid heat is chlorine reacting with the spore surface.
By using propidium monoazide, which is a photoreactive DNA-binding dye, the presence of non-negligible amounts of amplifiable DNA at the spore surface was highlighted.
Endospores of the Gram-positive bacterium, Bacillus subtilis, have been used successfully for delivery of antigens where the immunogen is expressed on the spore surface.
The spore surface protein CotB, previously used for the display of heterologous antigens, was engineered to express eighteen histidine residues within the spore coat.
Overall, this study shows that plasma treatment has a fungicidal effect on A. flavus and A. parasiticus spores associated with alterations in spore surface morphology and loss of spore integrity.
Most of the resulting spores were more resistant than the reference spores produced at optimum conditions What remains open, however, is whether a correlation exists between spore surface hydrophobicity and spore resistance.
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