Department of Anesthesia and Perioperative Care, University of California, San Francisco Rm 3C-38, San Francisco General Hospital, 1001 Potrero Ave, San Francisco, CA 94110, USA.
Western Regional Research Center, Agricultural Research Service, United States Department of Agriculture, Albany, CA 94710, USA.
Toxins (Basel). 2018 Feb 15;10(2):84. doi: 10.3390/toxins10020084.
The standard of treatment for botulism, equine antitoxin, is a foreign protein with associated safety issues and a short serum half-life which excludes its use as a prophylactic antitoxin and makes it a less-than-optimal therapeutic. Due to these limitations, a recombinant monoclonal antibody (mAb) product is preferable. It has been shown that combining three mAbs that bind non-overlapping epitopes leads to highly potent botulinum neurotoxin (BoNT) neutralization. Recently, a triple human antibody combination for BoNT/A has demonstrated potent toxin neutralization in mouse models with no serious adverse events when tested in a Phase I clinical trial. However, a triple antibody therapeutic poses unique development and manufacturing challenges. Thus, potentially to streamline development of BoNT antitoxins, we sought to achieve the potency of multiple mAb combinations in a single IgG-based molecule that has a long serum half-life. The design, production, and testing of a single tri-epitopic IgG1-based mAb (TeAb) containing the binding sites of each of the three parental BoNT/A mAbs yielded an antibody of nearly equal potency to the combination. The approach taken here could be applied to the design and creation of other multivalent antibodies that could be used for a variety of applications, including toxin elimination.
肉毒中毒的标准治疗方法是马源性抗毒素,这是一种具有相关安全性问题的外源性蛋白,其血清半衰期较短,因此不能将其用作预防性抗毒素,使其成为不太理想的治疗方法。由于这些限制,重组单克隆抗体 (mAb) 产品是更好的选择。已经表明,结合三种结合非重叠表位的 mAb 可导致高度有效的肉毒神经毒素 (BoNT) 中和。最近,一种用于 BoNT/A 的三个人源抗体组合在小鼠模型中表现出很强的毒素中和作用,并且在 I 期临床试验中测试时没有严重的不良事件。然而,三联抗体治疗方法存在独特的开发和制造挑战。因此,为了简化肉毒抗毒素的开发,我们试图在具有长血清半衰期的单个 IgG 分子中实现多种 mAb 组合的效力。我们设计、生产和测试了一种含有三个亲本 BoNT/A mAb 的结合位点的三价单表位 IgG1 单克隆抗体 (TeAb),得到的抗体与组合的效力几乎相当。这里采用的方法可以应用于设计和创建其他多价抗体,可用于各种应用,包括毒素清除。