Klegerman Melvin E, Huang Shaoling, Parikh Devang, Martinez Janet, Demos Sasha M, Onyuksel Hayat A, McPherson David D
Division of Cardiology, Department of Internal Medicine, University of Texas Health Science Center - Houston, 6431 Fannin Street, MSB 1.246, Houston, TX 77030, USA.
Biochim Biophys Acta. 2007 Jul;1768(7):1703-16. doi: 10.1016/j.bbamem.2007.04.007. Epub 2007 Apr 14.
Immunoliposomes, directed to clinically relevant cell-surface molecules with antibodies, antibody fragments or peptides, are used for site-specific diagnostic evaluation or delivery of therapeutic agents. We have developed intrinsically echogenic liposomes (ELIP) covalently linked to fibrin(ogen)-specific antibodies and Fab fragments for ultrasonic imaging of atherosclerotic plaques. In order to determine the effect of liposomal conjugation on the molecular dynamics of fibrinogen binding, we studied the thermodynamic characteristics of unconjugated and ELIP-conjugated antibody molecules. Utilizing radioimmunoassay and enzyme-linked immunosorbent assay protocols, binding affinities were derived from data obtained at three temperatures. The thermodynamic functions DeltaH(o) , DeltaG(o) and DeltaS(o) were determined from van't Hoff plots and equations of state. The resultant functions indicated that both specific and nonspecific associations of antibody molecules with fibrinogen occurred through a variety of molecular interactions, including hydrophophic, ionic and hydrogen bonding mechanisms. ELIP conjugation of antibodies and Fab fragments introduced a characteristic change in both DeltaH(o) and DeltaS(o) of association, which corresponded to a variable contribution to binding by phospholipid gel-liquid crystal phase transitions. These observations suggest that a reciprocal energy transduction, affecting the strength of antibody-antigen binding, may be a singular characteristic of immunoliposomes, having utility for optimization and further development of the technology.
免疫脂质体通过抗体、抗体片段或肽靶向临床相关的细胞表面分子,用于位点特异性诊断评估或治疗药物递送。我们已经开发了与纤维蛋白(原)特异性抗体和Fab片段共价连接的本征回声脂质体(ELIP),用于动脉粥样硬化斑块的超声成像。为了确定脂质体偶联对纤维蛋白原结合分子动力学的影响,我们研究了未偶联和ELIP偶联抗体分子的热力学特性。利用放射免疫测定和酶联免疫吸附测定方案,结合亲和力来自于在三个温度下获得的数据。从范特霍夫图和状态方程确定热力学函数ΔH(o)、ΔG(o)和ΔS(o)。所得函数表明,抗体分子与纤维蛋白原的特异性和非特异性结合均通过多种分子相互作用发生,包括疏水、离子和氢键机制。抗体和Fab片段的ELIP偶联在结合的ΔH(o)和ΔS(o)中引入了特征性变化,这对应于磷脂凝胶-液晶相变对结合的可变贡献。这些观察结果表明,影响抗体-抗原结合强度的相互能量转换可能是免疫脂质体的一个独特特征,对该技术的优化和进一步发展具有实用性。