Lipophilic PAMAM dendrimer: Conceptualization of targeted cosmetics and drug delivery

V. Ansari, Aditya Singh, Tarique Mahmood, Farogh Ahsan, Rufaida Wasim
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Abstract

The structure, properties, synthesis, negligible toxicity, and surface modification of PAMAM (polyamidoamine dendrimers) are all discussed in this review. The properties of supramolecular PAMAM dendrimers in nanopolymer science have shown great progress in delivering medicines. A divergent strategy was used to construct a Generation four (G4.0) PAMAM dendrimer with an ethylenediaminetetraacetic acid core and repeating units of acrylic acid and ethylenediamine. PAMAM dendrimers, have an aminodoamine repeat branching architecture that starts with an ethylene diamine initiator core. A generation [G] is a set of branching steps that follow each other. Drug molecules can be transferred either as covalently bonded to the functional groups on the dendrimer surface or by forming non-covalent complexes with dendrimers. Full generation PAMAM dendrimers are terminated with amine surface [G0, G1, G2, G3, G4], whereas half-generation dendrimers are terminated with carboxylate [G1.5, G2.5, etc]. PAMAM dendrimers appear to have negligible toxicity and immunogenicity, as well as favorable biodistribution-: according to the current study they can improve drug solubility, prevent drug degradation, increase circulation time, and potentially target drugs. According to the characterization study, they exhibit strong lipophilic qualities, allowing them to easily pass the blood-brain barrier. Due to cheaper polydispersity index of dendrimers, they possess greater stability and the void spaces of dendrimers are accessible for drug loading. The existence of a duplet functional group on the dendrimers enables appending vectors, ligands and devices for targed the drug delivery in the body.
亲脂性PAMAM树状大分子:靶向化妆品和药物递送的概念化
本文综述了聚酰胺胺树状大分子(PAMAM)的结构、性质、合成、毒性及表面改性等方面的研究进展。超分子PAMAM树状大分子的特性在纳米聚合物科学中显示出很大的进展。采用发散策略构建了第四代(G4.0) PAMAM树状大分子,其核心为乙二胺四乙酸,重复单元为丙烯酸和乙二胺。PAMAM树状大分子,具有氨基胺重复分支结构,以乙二胺引发核开始。一代[G]是一组相互遵循的分支步骤。药物分子既可以以共价键与树状大分子表面的官能团结合的方式转移,也可以通过与树状大分子形成非共价配合物的方式转移。全代PAMAM树状大分子末端为胺表面[G0, G1, G2, G3, G4],而半代PAMAM树状大分子末端为羧酸盐[G1.5, G2.5等]。PAMAM树状大分子似乎具有可忽略的毒性和免疫原性,以及良好的生物分布-根据目前的研究,它们可以改善药物溶解度,防止药物降解,增加循环时间,并可能靶向药物。根据表征研究,它们表现出强烈的亲脂性,使它们很容易通过血脑屏障。由于树状大分子的多分散性指数较低,它们具有更大的稳定性,并且树状大分子的空隙易于装载药物。树状大分子上的双官能团的存在使得附加载体、配体和装置能够在体内靶向递送药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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