De Novo Development of a Universal Biosensing Platform by Rapid Direct Native Protein Modification.
Xinyi HuaZhifang WangZiqi WangLinlin ChenZaichun ZhouJunlin OuyangKeqin DengXiumei YangHaowen HuangPublished in: Analytical chemistry (2021)
An innovative biosensing assay was developed for simplified, cost-effective, and sensitive detection. By rapid, direct treatment of target proteins with iron porphyrin (TPPFe) in situ, a carboxyl group of amino acid conjugates with an Fe atom of the TPPFe molecule, forming a stable protein complex. We have shown that this complex not only maintains the integrity and functions of original proteins but also acquires peroxidase activity that can turn TMB to a comparably visible signal like that in ELISA. This study is unique since such conversion is difficult to achieve with standard chemical modification or molecular biology methods. In addition, the proposed immunoassay is superior to traditional ELISA as it eliminates an expensive and complicated cross-linking process of an enzyme-labeled antibody. From a practical point of view, we extended this assay to rapid detection of clinically relevant proteins and glucose in blood samples. The results show that this simple immunoassay provides clinical diagnosis, food safety, and environmental monitoring in an easy-to-implement manner.
Keyphrases
- sensitive detection
- loop mediated isothermal amplification
- amino acid
- quantum dots
- high throughput
- label free
- protein protein
- human health
- binding protein
- metal organic framework
- nitric oxide
- type diabetes
- hydrogen peroxide
- pet imaging
- blood glucose
- monoclonal antibody
- drug delivery
- single molecule
- single cell
- combination therapy
- glycemic control