Department of Chemical Engineering, National Cheng Kung University, Tainan, Taiwan 70101.
Langmuir. 2012 Jan 10;28(1):640-7. doi: 10.1021/la203469b. Epub 2011 Dec 13.
In this study two different series of mixed-charge self-assembled monolayers (SAMs) prepared with -N(+)(CH(3))(3)-terminated alkanethiol and strong dissociated monovalent -SO(3)H acid-terminated or weaker dissociated divalent -PO(3)H(2) acid-terminated alkanethiol in pure ethanol were characterized. The influence of the acidity of the anionic functionality in the mixed-charge SAMs on the surface characteristics and platelet compatibility was investigated. X-ray photoelectron spectroscopy indicated that a nearly equivalent amount of countercharged terminal groups was noted on the surface of -SO(3)H/-N(+)(CH(3))(3) mixed SAMs, while "-N(+)(CH(3))(3) thiol poor" phenomena were found on -PO(3)H(2)/-N(+)(CH(3))(3) mixed SAMs instead. This was caused by the distinct differences in solvation capability between the acidic anionic functional groups and solvent molecules and/or the interactions among the terminal ends of the thiols. This acidity difference also affected other interfacial properties and the platelet compatibility. The mixed SAMs formed from the mixture of -SO(3)H- and -N(+)(CH(3))(3)-terminated thiols showed higher surface hydrophilicity and exhibited the least amount of platelets adhered, but these two mixed SAMs were all fairly negatively surface charged. The structure of the hydration layer near the surfaces was likely affected by the acidity of the anionic functionality, and this would cause such a distinct behavior in platelet compatibility. It was concluded that the hydrophilic surfaces with nearly equal amounts of surface positively and negatively charged components could exhibit better platelet compatibility. This work demonstrated that the nature of the acidic terminal ends of alkanethiol is also a key factor for preparing mixed-charge SAMs with good platelet compatibility.
在这项研究中,使用 -N(+)(CH(3))(3)-端烷硫醇和强离解单价 -SO(3)H 酸端烷硫醇或较弱离解的二价 -PO(3)H(2)酸端烷硫醇在纯乙醇中制备了两种不同系列的混合电荷自组装单层(SAMs)。研究了混合电荷 SAMs 中阴离子官能团的酸度对表面特性和血小板相容性的影响。X 射线光电子能谱表明,在 -SO(3)H/-N(+)(CH(3))(3)混合 SAM 的表面上注意到几乎等量的反电荷端基,而在 -PO(3)H(2)/-N(+)(CH(3))(3)混合 SAM 上则发现了“-N(+)(CH(3))(3)硫醇不足”现象。这是由于酸性阴离子官能团和溶剂分子之间的溶剂化能力以及硫醇末端之间的相互作用存在明显差异所致。这种酸度差异也影响了其他界面性质和血小板相容性。由 -SO(3)H-和 -N(+)(CH(3))(3)-端烷硫醇混合物形成的混合 SAM 显示出更高的表面亲水性,并且表现出粘附的血小板最少,但这两种混合 SAM 都带有相当负的表面电荷。表面附近水合层的结构可能受到阴离子官能团酸度的影响,这会导致血小板相容性产生明显的差异。结论是,具有几乎等量的表面正电荷和负电荷成分的亲水表面可以表现出更好的血小板相容性。这项工作表明,烷硫醇的酸性末端的性质也是制备具有良好血小板相容性的混合电荷 SAM 的关键因素。