4.2 Article

UPLC-ESI-TOF-MS Analysis of the Effect of Dendrimers Core Lengths on Their Molecular Profiles and Purity

Journal

JOURNAL OF NANOMATERIALS
Volume 2022, Issue -, Pages -

Publisher

HINDAWI LTD
DOI: 10.1155/2022/6825524

Keywords

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Funding

  1. King Abdulaziz City for Science and Technology and its National Science, Technology, and Innovation Plan [13-NAN34-05]

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The effect of core length on the physicochemical properties and purity of PAMAM dendrimers was studied. Increasing the core length significantly changed the morphology of the dendrimers and improved their purity.
The effect of core length of Polyamidoamine (PAMAM) dendrimers on their physicochemical properties and hence their purity was studied by ultraperformance liquid chromatography-electrospray ionization-time of flight-mass spectrometry (UPLC-ESI-TOF-MS). Seven consecutive generations G(n) = (G(0-6)) of both Ethylenediamine core (C-2) and Diaminobutane core (C-4) dendrimers were tested. The separation and detection of each generation of dendrimers (covering a molar mass range of 517-58,076 Da and a radius range of 15-67 angstrom) were performed within 10 min. Increasing the length of the core by the C2H4 group significantly changed the morphological characteristics of the dendrimers. For example, the general morphology of C-4 dendrimers becomes less compact than C-2 dendrimers. This facilitates the influx of impurities from the inner nanocavities of these molecules, even at higher generations, during the UPLC run providing C-4 dendrimers of higher purity than C-2 dendrimers. These results reveal that the toxicity found by some researchers due to the application of dendrimers may be mostly due to leakage of the encapsulated starting materials, which can be eliminated by using optimized dendritic molecules.12

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