Raut Sanjeev, Villard Sylvie, Grailly Sabrina, Gilles Jean-Guy G, Granier Claude, Saint-Remy Jean-Marie R, Barrowcliffe Trevor W
Division of Haematology, National Institute for Biological Standards and Control, Blanche Lane, South Mimms, Potters Bar, Hertfordshire, EN6 3QG, UK.
Thromb Haemost. 2003 Sep;90(3):385-97. doi: 10.1160/TH02-09-0086.
Recent studies have shown that inhibitors develop against acidic regions of the FVIII molecule, which contain important functional sites. However, their mechanisms of inhibition are not well understood. In this study, two anti-human FVIII mouse monoclonal antibodies (MAbs), directed towards the exposed acidic regions of the FVIII molecule, were developed, characterised and their mechanisms of inhibition investigated. The two MAbs, F7B4 and F26F6, had inhibitory titres of 32 and 944 BU/mg respectively, had high affinities for the FVIII molecule (K(D) approximately nM range) and recognised sequences V(357)-F(360) on the acidic a1 region and E(724)-L(731) on the acidic a2 region of the FVIII heavy-chain (HC), respectively. F7B4 inhibited the rate of FXa generation by activated FVIII, whilst both antibodies inhibited FVIII activation by thrombin and blocked thrombin cleavage of FVIII. Furthermore, F7B4 and F26F6 inhibited FVIII binding to (a) phospholipids (IC(50): 77 nM and 40 nM respectively), and (b) VWF (IC(50): 93 nM and 267 nM respectively), despite both having HC specificity. Experiments with F(ab')(2) fragments confirmed the above findings. Taken together these data represent novel findings in that anti-acidic HC antibodies can inhibit FVIII function by a variety of mechanisms, in particular by interfering with the binding of FVIII to phospholipids & VWF.
最近的研究表明,针对FVIII分子酸性区域(包含重要功能位点)的抑制剂已经出现。然而,它们的抑制机制尚未完全清楚。在本研究中,开发并表征了两种针对FVIII分子暴露酸性区域的抗人FVIII小鼠单克隆抗体(MAb),并研究了它们的抑制机制。这两种单克隆抗体F7B4和F26F6的抑制效价分别为32和944 BU/mg,对FVIII分子具有高亲和力(K(D)约在纳摩尔范围),分别识别FVIII重链(HC)酸性a1区域的序列V(357)-F(360)和酸性a2区域的E(724)-L(731)。F7B4抑制活化FVIII生成FXa的速率,而两种抗体均抑制凝血酶对FVIII的激活并阻断凝血酶对FVIII的切割。此外,尽管F7B4和F26F6均具有HC特异性,但它们分别抑制FVIII与(a)磷脂(IC(50):分别为77 nM和40 nM)和(b)VWF(IC(50):分别为93 nM和267 nM)的结合。用F(ab')(2)片段进行的实验证实了上述发现。综上所述,这些数据代表了新的发现,即抗酸性HC抗体可通过多种机制抑制FVIII功能,特别是通过干扰FVIII与磷脂和VWF的结合。