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With these techniques, it is possible to encapsulate multi-enzyme cascades.
Furthermore, it is possible to encapsulate different proteins in the different shells, in order to prepare multifunctional nano-carriers.
Thus, the question arises whether it is possible to encapsulate the complexity of the shape function construction process, while providing a simple interface to the shape function data.
One of the most important applications of this approach is in molecular imaging with radiotracers due to the fact that it is possible to encapsulate radioactive metals for diagnostic purposes [111 113].
Using PLGA, it is possible to encapsulate variety of drugs like hydrophilic or hydrophobic with size ranging from small molecules to macromolecules to deliver them at various targeted locations using different administration routes, including intravenous drug delivery, pulmonary drug delivery, transdermal drug delivery, etc.
The procedure for synthesizing PLGA nano- or microparticles can be modified in their different variables to obtain systems with controlled size, in which it is possible to encapsulate hydrophobic or hydrophilic molecules, with an adequate colloidal stability and the possibility of surface functionalization for targeted delivery.
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The results of this study confirm that it is possible to target drugs encapsulated in magnetic particles by means of an external magnet.
It is possible to found several procedures to encapsulate hydrophilic molecules as proteins or nucleic acids in polymeric nano/microparticles.
Nevertheless, it is possible to implement encryption by encapsulating Modbus/TCP messages under TLS or IPsec tunnels.
For example, it is possible to create custom SPARQL functions that encapsulate specialized code to either carry out pairwise similarity comparisons between a query and database molecules by reconstructing and comparing chemical graphs from InChI, SMILES, or SMARTS annotations.
In Figure 1, it is possible to appreciate three different colors obtained (violet, green and orange) using PAA as an encapsulating agent (PAA-AgNPs) when DMAB concentration is increased (from 0,033 mM to 3.33 mM).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com