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Characterization of polyamidoamino (PAMAM) dendrimers using in-line reversed phase LC electrospray ionization mass spectrometry

机译:串联反相液相色谱电喷雾电离质谱法表征聚酰胺酰胺(PAMAM)树状聚合物

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Generation 3 (G3) PAMAM dendrimers are symmetrical, highly branched polymers widely reported in the scientific literature as therapeutic agents themselves or as carrier scaffolds for various therapeutic agents. A large number of analytical techniques have been applied to study PAMAM dendrimers, but one that has been missing is in-line reversed phase LC electrospray ionization mass spectrometry (RP/LC/ESI/MS). To translate PAMAM dendrimers into therapeutic agents, a better understanding of their purity, stability and structure is required, and in-line RP/LC/ESI/MS is widely applied to all three of these analytical questions. In this study, we developed a robust in-line RP/LC/ESI/MS method for assessing stability, purity and structure of the G3 PAMAM dendrimers, and we also examined the reasons why previous attempts at method development failed. Using the RP/LC/ESI/MS method we uncovered several unique aspects of the chemistry of G3 PAMAM dendrimers. They are interconverted between two isomeric forms by dialysis, and under higher concentration levels there is an inter-molecular displacement reaction resulting, which degrades PAMAM dendrimers. Purification of G3 dendrimers by RP/LC was also previously unreported; so we slightly modified the LC/MS method for isolating individual components from a complex dendrimer mixture. Thus, we have developed a robust, comprehensive method for characterizing PAMAM dendrimers and their degradation.
机译:第3代(G3)PAMAM树状聚合物是对称的,高度支化的聚合物,在科学文献中广泛报道为治疗剂本身或作为各种治疗剂的载体支架。大量分析技术已用于研究PAMAM树状聚合物,但在线反相反相电喷雾电离质谱(RP / LC / ESI / MS)是一种缺失的技术。要将PAMAM树状聚合物转化为治疗剂,需要对它们的纯度,稳定性和结构有更好的了解,并且在线RP / LC / ESI / MS已广泛应用于所有这三个分析问题。在这项研究中,我们开发了一种鲁棒的在线RP / LC / ESI / MS方法,用于评估G3 PAMAM树状聚合物的稳定性,纯度和结构,我们还研究了以前方法开发失败的原因。使用RP / LC / ESI / MS方法,我们发现了G3 PAMAM树状大分子化学的几个独特方面。它们通过透析在两种异构体形式之间相互转化,并且在较高的浓度水平下会发生分子间置换反应,从而降解PAMAM树状聚合物。以前也没有报道过通过RP / LC纯化G3树状大分子。因此我们对LC / MS方法进行了稍加修改,以从复杂的树枝状聚合物混合物中分离出各个组分。因此,我们已经开发了一种强大,全面的方法来表征PAMAM树状聚合物及其降解。

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