Publications by authors named "He-Nan Sun"

Article Synopsis
  • Researchers developed a new electrochemical biosensor for cardiac troponin I (cTnI) using specially designed nanopolyhedras (Pd@PdPtCo MNPs) that enhance signal amplification for detecting acute myocardial infarction (AMI).
  • The unique structure of these nanopolyhedras provides a larger surface area and active sites, improving their ability to oxidize hydroquinone (HQ), which is critical for the sensor's effectiveness.
  • The biosensor demonstrates a wider detection range and lower limits compared to existing sensors, showing reliability and sensitivity even in complex serum environments, making it promising for practical medical use.
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The high level of alpha-fetoprotein (AFP) expression is closely related to hepatocellular carcinoma (HCC). Herein, a dual signal ratiometric electrochemical immunosensor based on chitosan-ferrocenecarboxaldehyde-spindle gold (Chit-Fc-SAu) and Co/Fe metal-organic framework-toluidine blue/polydopamine (Co/Fe MOF-TB/PDA) was proposed for quantitative analysis of AFP. Specifically, Chit-Fc-SAu worked as a substrate to trap more primary antibodies (Ab) generating the first electrochemical signal from Fc.

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Abnormal expression of carcinoembryonic antigen (CEA) can be used for early diagnosis of various cancers (e.g. colorectal cancer, cervical carcinomas, and breast cancer).

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In clinical analysis, carbohydrate antigen 19-9 (CA199) is a gold standard for pancreatic cancer diagnosis. Herein, PtRu nanoassemblies (NAs) were synthesized via a facile one-step solvothermal approach, with the help of octylphenoxypolye thoxyethanol (NP-40) acted as a growth-directing molecule, and triethylene glycol (TEG) worked as a reductant and solvent. During the assembly process of small particles, a large number of voids were formed, which significantly increase the specific surface area of the PtRu NAs exhibiting excellent electrocatalytic performance.

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