4.2 Article

Establishment of a novel ELISA system for measuring periostin independently of formation of the IgA complex

期刊

ANNALS OF CLINICAL BIOCHEMISTRY
卷 59, 期 5, 页码 347-356

出版社

SAGE PUBLICATIONS INC
DOI: 10.1177/00045632221106068

关键词

periostin; ELISA; IgA; complex

资金

  1. Japan Society for the Promotion of Science [JP21K08476]

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The formation of an IgA complex affects the measurement of periostin. The EMI and R1 domains of periostin contribute to the formation of the complex with IgA. A novel ELISA system that combines the R3 and R4 domains allows for independent measurement of periostin.
Background Periostin, a matricellular protein that modulates cell functions having various pathophysiological roles, has the potential to be a useful biomarker for various diseases. We recently found that periostin forms a complex with IgA in human serum, which may affect the periostin measurement. Methods We investigated (1) whether the formation of the periostin-IgA complex affects the original periostin ELISA system, decreasing the values of serum periostin? (2) bow each domain of periostin affects periostin measurement by the original periostin ELISA system? (3) whether we can establish a novel ELISA system that is not affected by formation of the IgA complex? Results The periostin value at the reducing condition was significantly higher than that of the non-reducing condition, demonstrating that formation of the IgA complex affects periostin measurement. The monoclonal antibodies (mAbs) for periostin recognizing the EMI and R1 domains immunoprecipitated serum periostin in the reducing condition more than in the non-reducing condition, whereas the mAbs recognizing the R2 or R3 domain immunoprecipitated comparable amounts of serum periostin in the reducing and non-reducing conditions, suggesting the EMI and R1 domains contribute to formation of the complex with IgA. Using SS16A recognizing the R3 domain combined with SS17B recognizing the R4 domain, we established an ELISA system that was able to measure periostin independently of the IgA complex. Conclusions We have established a novel ELISA system that measures periostin independently of the IgA complex. This system is promising in identifying periostin as a biomarker for various diseases.

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