Debs R J, Düzgüneş N, Brunette E N, Fendly B, Patton J, Philip R
Cancer Research Institute, University of California, San Francisco 94143-0128.
J Immunol. 1989 Aug 15;143(4):1192-7.
Cell-associated TNF-alpha, either bound to its receptor on monocyte membranes or expressed as an integral membrane protein, can exert potent tumor cytolytic activity. We assessed the interaction of TNF with the lipid bilayer membrane system, liposomes, and the effects of membrane association on TNF bioactivity. High levels of TNF can be encapsulated within liposomes. At neutral pH, TNF binds to the surface of preformed liposomes (liposome-associated TNF), but does not partition into the lipid bilayer. TNF appears to bind to negatively charged phospholipid head groups of the outer membrane leaflet. Free TNF, liposome-associated TNF, and liposome-encapsulated TNF display comparable abilities to activate human peripheral blood monocytes and to lyse tumor cells. However, liposome-encapsulated TNF, as well as TNF bound to the outer surface of preformed liposomes, retains bioactivity in the presence of anti-TNF antibodies that neutralize free TNF. The interaction of liposomal TNF with cell surface TNF receptors thus appears to be preserved in the presence of neutralizing antibodies.
与细胞相关的肿瘤坏死因子-α(TNF-α),要么与单核细胞膜上的受体结合,要么作为一种整合膜蛋白表达,均可发挥强大的肿瘤细胞溶解活性。我们评估了TNF与脂质双分子层膜系统(脂质体)的相互作用,以及膜结合对TNF生物活性的影响。高水平的TNF可被包裹在脂质体内。在中性pH值下,TNF与预先形成的脂质体表面结合(脂质体相关TNF),但不会分配到脂质双分子层中。TNF似乎与外膜小叶带负电荷的磷脂头部基团结合。游离TNF、脂质体相关TNF和脂质体包裹的TNF在激活人外周血单核细胞和裂解肿瘤细胞方面表现出相当的能力。然而,脂质体包裹的TNF以及与预先形成的脂质体外表面结合的TNF,在存在中和游离TNF的抗TNF抗体的情况下仍保留生物活性。因此,在存在中和抗体的情况下,脂质体TNF与细胞表面TNF受体的相互作用似乎得以保留。