2016
DOI: 10.1002/jcc.24449
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Thermodynamic compatibility of actives encapsulated into PEG‐PLA nanoparticles: In Silico predictions and experimental verification

Abstract: Achieving optimal solubility of active substances in polymeric carriers is of fundamental importance for a number of industrial applications, including targeted drug delivery within the growing field of nanomedicine. However, its experimental optimization using a trial-and-error approach is cumbersome and time-consuming. Here, an approach based on molecular dynamics (MD) simulations and the Flory-Huggins theory is proposed for rapid prediction of thermodynamic compatibility between active species and copolymer… Show more

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Cited by 12 publications
(22 citation statements)
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References 45 publications
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“…NPs formulated in the CJM demonstrated a minor increase in indomethacin eDL ∼ 3.5% w/w and ∼ 75% w/w. Both batch and CJM methods had an indomethacin effective loading that was in a similar range as previously reported values . As observed in other systems, continuous production improved effective drug loading and encapsulation efficiency of nanotherapeutics .…”
Section: Resultssupporting
confidence: 85%
“…NPs formulated in the CJM demonstrated a minor increase in indomethacin eDL ∼ 3.5% w/w and ∼ 75% w/w. Both batch and CJM methods had an indomethacin effective loading that was in a similar range as previously reported values . As observed in other systems, continuous production improved effective drug loading and encapsulation efficiency of nanotherapeutics .…”
Section: Resultssupporting
confidence: 85%
“…where r AB is the sum of the ratios of the molar volumes of each A and B to D, and χ eff is the effective interaction parameter [204]. This effective interaction parameter is defined using the volume fractions of blocks A (f A ) and B (f B ) and the binary interaction parameters χ AD , χ BD and χ AB related by Equation 9:…”
Section: 13mentioning
confidence: 99%
“…[ 19,20 ] Configurationally biased Monte Carlo (MC) simulations have also been applied for generation of polymer conformations, which were subsequently equilibrated using MD simulations in the ns scale for sampling of the CED (e.g., refs. [6,7]). However, accuracy and reproducibility of such sampling approaches for the calculation of the CED have not yet been critically evaluated.…”
Section: Introductionmentioning
confidence: 99%
“…[ 5 ] In particular, atomistic simulations successfully predicted the thermodynamic drug‐polymer compatibility and provide also a detailed understanding of the underlying intermolecular interactions (e.g., refs. [6–9]).…”
Section: Introductionmentioning
confidence: 99%
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