ACS Appl Mater Interfaces. 2020 Jul 29;12(30):33500-33515. doi: 10.1021/acsami.0c08946. Epub 2020 Jul 14.
Here, we describe a nanoscale reactor strategy with a topical application in the therapeutic decontamination of reactive organophosphates (OPs) as chemical threat agents. It involves functionalization of poly(amidoamine) dendrimer through a combination of its partial PEG shielding and exhaustive conjugation with an OP-reactive α-nucleophile moiety at its peripheral branches. We prepared a 16-member library composed of two α-nucleophile classes (oxime, hydroxamic acid), each varying in its reactor valency (43-176 reactive units per nanoparticle), and linker framework for α-nucleophile tethering. Their mechanism for OP inactivation occurred via nucleophilic catalysis as verified against P-O and P-S bonded OPs including paraoxon-ethyl (POX), malaoxon, and omethoate by H NMR spectroscopy. Screening their reactivity for POX inactivation was performed under pH- and temperature-controlled conditions, which resulted in identifying 13 conjugates, each showing shorter POX half-life up to 2 times as compared to a reference Dekon 139 at pH 10.5, 37 °C. Of these, 10 conjugates were further confirmed for greater efficacy in POX decontamination experiments performed in two skin models, porcine skin and an artificial human microtissue. Finally, a few lead conjugates were selected and demonstrated for their biocompatibility as evident with lack of skin absorption, no inhibition of acetylcholinesterase (AChE), and no cytotoxicity in human neuroblastoma cells. In summary, this study presents a novel nanoreactor library, its screening methods, and identification of potent lead conjugates with potential for therapeutic OP decontamination.
在这里,我们描述了一种纳米级反应器策略,该策略在治疗性清除作为化学威胁剂的反应性有机磷酸酯(OPs)方面具有局部应用。它涉及通过聚(酰胺-胺)树突的部分 PEG 屏蔽及其与外周支链上的 OP 反应性α亲核基团的彻底缀合来对其进行功能化。我们制备了由两个α亲核体类别(肟,羟肟酸)组成的 16 成员库,每个类别在其反应器价数(每个纳米颗粒上有 43-176 个反应性单元)和α亲核体连接框架上有所不同。通过核磁共振光谱法,针对包括对氧磷乙基(POX)、马拉氧磷和氧乐果在内的 P-O 和 P-S 键合 OPs,验证了它们使 OP 失活的机制是通过亲核催化。在 pH 和温度控制条件下对它们对 POX 失活的反应性进行了筛选,结果鉴定出 13 种缀合物,每种缀合物的 POX 半衰期都比 pH 为 10.5、37°C 时的参考 Dekon 139 短 2 倍。其中 10 种缀合物在两种皮肤模型(猪皮和人工人体微组织)中进行的 POX 去污实验中进一步被证实具有更高的功效。最后,选择了一些先导缀合物,并证明了它们的生物相容性,表现为缺乏皮肤吸收、对乙酰胆碱酯酶(AChE)无抑制作用以及对人神经母细胞瘤细胞无细胞毒性。总之,本研究提出了一种新型纳米级反应器库,及其筛选方法,并鉴定了具有治疗性 OP 去污潜力的有效先导缀合物。