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Peptide-based Antibody Alternatives for Biological Sensing in Austere Environments

机译:在严峻环境中用于生物传感的基于肽的抗体替代品

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The most critical component of a biosensor, the biorecognition element, must exhibit high selectivity and strong affinity for a target of interest in operational sensing. Monoclonal antibodies are the current standard reagents for such devices, but their adaptability, manufacturability, and stability greatly limit their effectiveness in fieldable sensors. Peptides have emerged as potential antibody replacements in such applications due to their similar binding performance, extreme chemical and thermal stabilities, and on-demand scalability. In conjunction with modeling capabilities, work at the Army Research Lab focuses on protein catalyzed capture (PCC) agent technology and bacterial display for the discovery of these novel peptide binding reagents. The synthetic, bottom-up PCC agent technology uses an iterative, in situ "click chemistry" approach to produce high performing peptides against specific epitopes translatable to the protein target. Bacterial display allows rapid reagent discovery due to the combination of fast bacterial growth and effective peptide sequence enrichment through multiple rounds of biopanning. Recent advances in both methods are highlighted in regards to the discovery of reagents against Army high priority protein targets for soldier safety, performance, and diagnostics.
机译:生物传感器的最关键组成部分,即生物识别元件,必须对操作传感中的目标物具有高选择性和强亲和力。单克隆抗体是此类设备的当前标准试剂,但是它们的适应性,可制造性和稳定性极大地限制了其在现场传感器中的有效性。由于其相似的结合性能,极高的化学和热稳定性以及按需可扩展性,在这些应用中,肽已成为潜在的抗体替代品。结合建模功能,陆军研究实验室的工作重点在于蛋白质催化捕获(PCC)剂技术和细菌展示,以发现这些新型肽结合剂。合成的,自下而上的PCC剂技术使用一种迭代的原位“点击化学”方法来产生针对可翻译为蛋白质靶标的特定表位的高性能肽。细菌展示允许快速的试剂发现,这是由于细菌快速生长和通过多轮生物淘选而有效的肽序列富集相结合的结果。在针对士兵安全,性能和诊断的针对陆军高优先级蛋白质靶标的试剂的发现方面,突出了这两种方法的最新进展。

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