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The availability of more lipid droplets upon homogenization, with greater surface area available for interaction with the peptides, led to persistence of the smaller peptide bands and thus slower intestinal digestion when followed by HTST pasteurization but not by UHT processing, in which the denatured proteins may be more accessible to the digestive enzymes.
The team chose to engineer particles at the nanoscale in order to "get more bang for their buck," Hamad-Schifferli says: The smaller the particles, the larger the surface area available for interaction with carbon dioxide molecules.
Smaller particles having the larger surface area available for interaction will give more bactericidal effect than the larger particles and since they easily penetrate into the cell[45, 46].
Several plausible hypotheses were proposed to explain this observation in terms of ligand flexibility and/or entropic penalties, reduced surface area available for interaction, target specific restrictions and size-dependent complexity that reduced the probability of optimal fitting.
Altogether, our results suggest that A. cobbe leaf extract-mediated synthesis of AgNPs seems to be smaller in size, which is having the larger surface area available for interaction with bacteria and it could provide more bactericidal effect than the larger particles.
Briefly, the silicate nanoplatelets were exfoliated in ultrapure (Milli-Q) water using a vortexer to enhance the surface area available for interaction with gelatin.
Similar(54)
Malarkodi et al. [23] suggest that the nanoparticles have large surface area available for interactions which enhances the antibacterial effect than the morphology of the nanoparticles.
It is obvious, therefore, that the binding of particles to the microorganism depends on the surface area available for intraction.
The stability of GFM in aqueous suspension, and consequently the surface area available for bacterial interaction, plays an important role in biological interactions as well as potentially influencing the toxicity of GFM.
The ion-exchange capacities depend much on the surface activity, in particular, specific surface area available for solute surface interaction, which is accessible to solute.
On the other hand, ultrafine particles also have been suggested to be more toxic because of the large surface area available for biologic interactions with lung cells (Utell and Frampton 2000).
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