TY - JOUR
T1 - The 8 year thicket of triazine dendrimers
T2 - strategies, targets and applications
AU - Simanek, Eric E.
AU - Abdou, Hanan
AU - Lalwani, Sanjiv
AU - Lim, Jongdoo
AU - Mintzer, Meredith
AU - Venditto, Vincent J.
AU - Vittur, Brandon
PY - 2010/5/8
Y1 - 2010/5/8
N2 - This manuscript focuses on the routes, methods and reagents used to synthesize triazinebased dendrimers. Our pursuit of macromolecular architectures for drug delivery-dendrimers based on triazines-has been an ongoing effort for 8 years. To date, we have produced complex dendrimers with diverse peripheries as proof-of-concept, less complex molecules tailored for specific applications including DNA and RNA delivery and drugdecorated dendrimers for potential therapeutic applications including infectious disease and cancer. These syntheses have been executed at scales that range from high milligrams to over a kilogram. The routes, reagents and diversity displayed by a target anchors it in time. Early targets derive from convergent synthetic routes while later targets are prepared using divergent syntheses. The core of early dendrimers was a simple diamine, including piperazine, yielding the so-called bow-tie structures, middle period targets boast either a trispiperazinyltriazine core or a 'super-core' with six piperazine groups. Later targets return to the trispiperazinyltriazine core. The choice of linking diamine has also changed. Over time, p-aminobenzylamine was replaced by piperazine and then by aminomethylpiperidine with more exotic diamines sprinkled in throughout. Peripheral group choice has undergone similar variations: from AB2 to AB4 to, more recently, AB3. The diversity communicated by these groups yields dendrimers ranging from those with a common surface to examples where two groups were presented to those where four orthogonally reactive groups appear. Over time, these groups have grown in complexity from protected amines to tags for biodistribution and drugs like paclitaxel. Herein, strategies adopted and lessons learned are reviewed, intuitions relayed and future directions forecast. This journal is
AB - This manuscript focuses on the routes, methods and reagents used to synthesize triazinebased dendrimers. Our pursuit of macromolecular architectures for drug delivery-dendrimers based on triazines-has been an ongoing effort for 8 years. To date, we have produced complex dendrimers with diverse peripheries as proof-of-concept, less complex molecules tailored for specific applications including DNA and RNA delivery and drugdecorated dendrimers for potential therapeutic applications including infectious disease and cancer. These syntheses have been executed at scales that range from high milligrams to over a kilogram. The routes, reagents and diversity displayed by a target anchors it in time. Early targets derive from convergent synthetic routes while later targets are prepared using divergent syntheses. The core of early dendrimers was a simple diamine, including piperazine, yielding the so-called bow-tie structures, middle period targets boast either a trispiperazinyltriazine core or a 'super-core' with six piperazine groups. Later targets return to the trispiperazinyltriazine core. The choice of linking diamine has also changed. Over time, p-aminobenzylamine was replaced by piperazine and then by aminomethylpiperidine with more exotic diamines sprinkled in throughout. Peripheral group choice has undergone similar variations: from AB2 to AB4 to, more recently, AB3. The diversity communicated by these groups yields dendrimers ranging from those with a common surface to examples where two groups were presented to those where four orthogonally reactive groups appear. Over time, these groups have grown in complexity from protected amines to tags for biodistribution and drugs like paclitaxel. Herein, strategies adopted and lessons learned are reviewed, intuitions relayed and future directions forecast. This journal is
KW - Dendrimers
KW - Drug delivery
KW - Melamine
KW - Polymer
KW - Synthesis
KW - Triazine
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U2 - 10.1098/rspa.2009.0108
DO - 10.1098/rspa.2009.0108
M3 - Review article
AN - SCOPUS:77952029410
SN - 1364-5021
VL - 466
SP - 1445
EP - 1468
JO - Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences
JF - Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences
IS - 2117
ER -