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Published on: November 20, 2013
Detection of porphyrin using a short peptide immobilized on a surface plasmon resonance sensor chip
C Nakamura1, Y Inuyama, K Shirai
1National Institute for Advanced Interdisciplinary Research, AIST, MITI, 1-1-4 Higashi, Tsukuba 305-8562, Japan. chikashi_nakamura@aist.go.jp
Abstract:
In this paper the development and feasibility of a novel detection system for a low molecular weight chemical, in which a peptide was utilized as a binding molecule, are described. Surface plasmon resonance (SPR) apparatus was used as a transducer. The porphyrin binding peptide, PSP2, was used as a model peptide ligand, while a porphyrin derivative, H(2)TMpyP, was used as a model low-molecular-weight chemical. PSP2 was covalently immobilized onto the SPR sensor chip and SPR measurement using the PSP2-immobilized chip for various concentrations of porphyrin was carried out. H(2)TMpyP was detectable in the range from 100 ng ml(-1) to 10 microg ml(-1) with a linear correlation and good precision and the PSP2-immobilized chip could be regenerated within 1 min after measurement in this system. From comparison of the detection manners of three porphyrin derivatives, the ability of a short peptide to discriminate between differences in molecular structure was demonstrated. Moreover, the self-assembled monolayer (SAM) of PSP2 was successfully prepared on the gold substrate and H(2)TMpyP could be detected using the PSP2-SAM chip.

