Laucirica Gregorio, Marmisollé Waldemar A, Azzaroni Omar
Instituto de Investigaciones Fisicoquímica Teóricas y Aplicadas (INIFTA), Departamento de Química, Facultad de Ciencias Exactas, Universidad Nacional de La Plata (UNLP), CONICET. 64 and 113, La Plata, Argentina.
Phys Chem Chem Phys. 2017 Mar 22;19(12):8612-8620. doi: 10.1039/c6cp08793k.
Although not always considered a preponderant interaction, amine-phosphate interactions are omnipresent in multiple chemical and biological systems. This study aims to answer questions that are still pending about their nature and consequences. We focus on the description of the charge state as surface charges constitute directing agents of the interaction of amine groups with either natural or synthetic counterparts. Our results allow us to quantitatively determine the relative affinities of HPO and HPO from the analysis of the influence of phosphates on the zeta-potential of amino-functionalized surfaces in a broad pH range. We show that phosphate anions enhance the protonation of amino groups and, conversely, charged amines induce further proton dissociation of phosphates, yielding a complex dependence of the surface effective charge on the pH and phosphate concentration. We also demonstrate that phosphate-amine interaction is specific and the modulation of surface charge occurs in the physiological phosphate concentration range, emphasizing its biochemical and biotechnological relevance and the importance of considering this veiled association in both in vivo and in vitro studies.
尽管胺 - 磷酸盐相互作用并不总是被视为一种主要的相互作用,但它在多个化学和生物系统中普遍存在。本研究旨在回答关于其性质和后果仍悬而未决的问题。我们关注电荷状态的描述,因为表面电荷构成了胺基与天然或合成对应物相互作用的导向剂。我们的结果使我们能够通过分析磷酸盐在广泛pH范围内对氨基功能化表面的zeta电位的影响,定量确定HPO和HPO的相对亲和力。我们表明,磷酸根阴离子增强了氨基的质子化,相反,带电荷的胺诱导磷酸盐进一步质子解离,导致表面有效电荷对pH和磷酸盐浓度产生复杂的依赖性。我们还证明,磷酸盐 - 胺相互作用具有特异性,并且表面电荷的调节发生在生理磷酸盐浓度范围内,强调了其在生物化学和生物技术方面的相关性,以及在体内和体外研究中考虑这种隐蔽关联的重要性。