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首页> 外文期刊>Journal of molecular modeling >Computational design of a CNT carrier for a high affinity bispecific anti-HER2 antibody based on trastuzumab and pertuzumab Fabs
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Computational design of a CNT carrier for a high affinity bispecific anti-HER2 antibody based on trastuzumab and pertuzumab Fabs

机译:基于曲妥珠单抗和帕妥珠单抗Fabs的高亲和力双特异性抗HER2抗体的CNT载体的计算设计

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This is a preliminary cross multidisciplinary theoretical-computational approach for the design of a drug delivery system based on immunoconjugated carbon nanotube against HER2- overexpressing cancer cells. This drug delivery system allows the release of an encapsulated cytotoxic cocktail in a controlled manner under pulsed radio frequency (RF) irradiation. Our effort is focused on the computational aided design of a high affinity bispecific anti-HER2 antibody and an opening mechanism of the carbon nanotube (CNT) based cytotoxic carrier for controlling multiple drug release. We study the main interactions between the antibody and the antigen by a computational scanning mutagenesis approach of trastuzumab and pertuzumab fragment antigen binding (Fab) structures in order to enhance their binding affinity. Then, each Fab fragments is joined by a polypeptide linker which should be stable enough to avoid the "open form" of antibody. On the other hand, we also conjugate the engineered antibody to functionalized CNTs (f-CNTs), which encapsulate the inhibitors of the HER2/PI3K/Akt/mTOR signaling pathway. We take advantage of the fact that f-CNT converts the RF radiation absorption into heat release. A pulsed laser at 13.45 MHz increments the temperature around 40 C for triggering the nano-caps destabilization, which allows the switching of the opening mechanism of the drug carrier. Nano-caps will be a dual pH/temperature responsive in order to take advantage of lysosome characteristic (acidic pH) and heat release from the carrier. Nano-caps are functionalized with organic amide moieties, which hydrolyze quickly at an acidic pH into primary amines, and protonated amines generate repulsion interactions with other charged species, which trigger the cytotoxics release. [Figure not available: see fulltext.]
机译:这是一种初步的跨学科理论计算方法,用于设计基于免疫共轭碳纳米管的抗HER2过表达癌细胞的药物递送系统。该药物递送系统允许在脉冲射频(RF)辐射下以受控方式释放封装的细胞毒性混合物。我们的工作集中在高亲和力双特异性抗HER2抗体的计算辅助设计以及基于碳纳米管(CNT)的细胞毒性载体的开放机制上,以控制多种药物的释放。我们通过曲妥珠单抗和帕妥珠单抗片段抗原结合(Fab)结构的计算扫描诱变方法研究抗体和抗原之间的主要相互作用,以增强它们的结合亲和力。然后,每个Fab片段通过多肽接头连接,该多肽接头应足够稳定以避免抗体的“开放形式”。另一方面,我们也将工程抗体与功能化的CNT(f-CNT)缀合,后者封装了HER2 / PI3K / Akt / mTOR信号通路的抑制剂。我们利用f-CNT将RF辐射吸收转化为热量释放这一事实。 13.45 MHz的脉冲激光使温度升高约40°C,从而触发纳米帽的去稳定作用,从而允许切换药物载体的打开机制。纳米帽将具有双重pH /温度响应特性,以便利用溶酶体特性(酸性pH)和从载体释放的热量。纳米帽被有机酰胺部分官能化,后者在酸性pH下迅速水解成伯胺,质子化的胺与其他带电物质产生排斥相互作用,从而触发细胞毒性物质的释放。 [图不可用:请参见全文。]

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