2020
DOI: 10.3390/biom10040642
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The Role of Branch Cell Symmetry and Other Critical Nanoscale Design Parameters in the Determination of Dendrimer Encapsulation Properties

Abstract: This article reviews progress over the past three decades related to the role of dendrimer-based, branch cell symmetry in the development of advanced drug delivery systems, aqueous based compatibilizers/solubilizers/excipients and nano-metal cluster catalysts. Historically, it begins with early unreported work by the Tomalia Group (i.e., The Dow Chemical Co.) revealing that all known dendrimer family types may be divided into two major symmetry categories; namely: Category I: symmetrical branch cell dendrimers… Show more

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Cited by 49 publications
(44 citation statements)
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References 181 publications
(289 reference statements)
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“…Overcoming these issues, polymeric nanoparticles introduce control over the molecular architecture, allow precise tuning of drug release, and provide enhanced functionalization capabilities. Dendrimers, for instance, are highly branched and symmetric synthetic nanoparticles whose size, shape, and composition can be accurately controlled (Tomalia et al, 2020). Some interesting properties of dendrimers are size monodispersity, high drug payloads, diverse surface functionalization capability and molecular stability, which make them attractive drug carrier candidates.…”
Section: Properties Of Nanomaterials For Drug Deliverymentioning
confidence: 99%
“…Overcoming these issues, polymeric nanoparticles introduce control over the molecular architecture, allow precise tuning of drug release, and provide enhanced functionalization capabilities. Dendrimers, for instance, are highly branched and symmetric synthetic nanoparticles whose size, shape, and composition can be accurately controlled (Tomalia et al, 2020). Some interesting properties of dendrimers are size monodispersity, high drug payloads, diverse surface functionalization capability and molecular stability, which make them attractive drug carrier candidates.…”
Section: Properties Of Nanomaterials For Drug Deliverymentioning
confidence: 99%
“…The Z-shape folding thus provides for a packing with no internal or external voids leading to a solvent-free structure. The absence of internal voids is contrary to the common belief that all generations of PAMAMdendrimers have internal voids 25 .…”
mentioning
confidence: 62%
“…In this direction, in a recent tutorial review, Tomalia et al. analyzed the architectural components of branches of dendrimers in the development of drug delivery systems based on dendrimer encapsulation properties [ 94 , 95 ]. Several ‘nano-periodic’ property patterns were analyzed related to the generation of dendrimers such as congestion, surface chemistry, size, shape, flexibility and container properties.…”
Section: Discussionmentioning
confidence: 99%
“…Compared to linear polymers, dendrimers, which are artificial discrete macromolecules, are highly tunable branched spherical macromaterials [ 9 ] constructed with a well-defined and controlled size, shape, molecular weight, and highly monodispersed properties, which provide a high degree of surface functionality [ 10 ]. As shown in Fig.…”
Section: Introductionmentioning
confidence: 99%