Cargando…

iTRAQ Proteomics Identified the Potential Biomarkers of Coronary Artery Lesion in Kawasaki Disease and In Vitro Studies Demonstrated That S100A4 Treatment Made HCAECs More Susceptible to Neutrophil Infiltration

Coronary artery lesions (CAL) are a major complication of Kawasaki disease (KD). The early prediction of CAL enables the medical personnel to apply adequate medical intervention. We collected the serum samples from the KD patients with CAL (n = 32) and those without CAL (n = 31), followed by a globa...

Descripción completa

Detalles Bibliográficos
Autores principales: Weng, Ken-Pen, Chien, Kuang-Jen, Huang, Shih-Hui, Huang, Lien-Hung, Lin, Pei-Hsien, Lin, Yuyu, Chang, Wei-Hsiang, Chen, Chun-Yu, Li, Sung-Chou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658444/
https://www.ncbi.nlm.nih.gov/pubmed/36361563
http://dx.doi.org/10.3390/ijms232112770
_version_ 1784829952821035008
author Weng, Ken-Pen
Chien, Kuang-Jen
Huang, Shih-Hui
Huang, Lien-Hung
Lin, Pei-Hsien
Lin, Yuyu
Chang, Wei-Hsiang
Chen, Chun-Yu
Li, Sung-Chou
author_facet Weng, Ken-Pen
Chien, Kuang-Jen
Huang, Shih-Hui
Huang, Lien-Hung
Lin, Pei-Hsien
Lin, Yuyu
Chang, Wei-Hsiang
Chen, Chun-Yu
Li, Sung-Chou
author_sort Weng, Ken-Pen
collection PubMed
description Coronary artery lesions (CAL) are a major complication of Kawasaki disease (KD). The early prediction of CAL enables the medical personnel to apply adequate medical intervention. We collected the serum samples from the KD patients with CAL (n = 32) and those without CAL (n = 31), followed by a global screening with isobaric tagging for relative and absolute quantification (iTRAQ) technology and specific validation with an enzyme-linked immunosorbent assay (ELISA). iTRAQ identified 846 proteins in total in the serum samples, and four candidate proteins related to CAL were selected for ELISA validation as follows: Protein S100-A4 (S100A4), Catalase (CAT), Folate receptor gamma (FOLR3), and Galectin 10 (CLC). ELISA validation showed that the S100A4 level was significantly higher in KD patients with CAL than in those without CAL (225.2 ± 209.5 vs. 143.3 ± 83 pg/mL, p < 0.05). In addition, KD patients with CAL had a significantly lower CAT level than those without CAL (1.6 ± 1.5 vs. 2.7 ± 2.3 ng/mL, p < 0.05). Next, we found that S100A4 treatment on human coronary artery endothelial cells (HCAECs) reduced the abundance of cell junction proteins, which promoted the migration of HCAECs. Further assays also demonstrated that S100A4 treatment enhanced the permeability of the endothelial layer. These results concluded that S100A4 treatment resulted in an incompact endothelial layer and made HCAECs more susceptible to in vitro neutrophil infiltration. In addition, both upregulated S100A4 and downregulated CAT increased the risk of CAL in KD. Further in vitro study implied that S100A4 could be a potential therapeutic target for CAL in KD.
format Online
Article
Text
id pubmed-9658444
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96584442022-11-15 iTRAQ Proteomics Identified the Potential Biomarkers of Coronary Artery Lesion in Kawasaki Disease and In Vitro Studies Demonstrated That S100A4 Treatment Made HCAECs More Susceptible to Neutrophil Infiltration Weng, Ken-Pen Chien, Kuang-Jen Huang, Shih-Hui Huang, Lien-Hung Lin, Pei-Hsien Lin, Yuyu Chang, Wei-Hsiang Chen, Chun-Yu Li, Sung-Chou Int J Mol Sci Article Coronary artery lesions (CAL) are a major complication of Kawasaki disease (KD). The early prediction of CAL enables the medical personnel to apply adequate medical intervention. We collected the serum samples from the KD patients with CAL (n = 32) and those without CAL (n = 31), followed by a global screening with isobaric tagging for relative and absolute quantification (iTRAQ) technology and specific validation with an enzyme-linked immunosorbent assay (ELISA). iTRAQ identified 846 proteins in total in the serum samples, and four candidate proteins related to CAL were selected for ELISA validation as follows: Protein S100-A4 (S100A4), Catalase (CAT), Folate receptor gamma (FOLR3), and Galectin 10 (CLC). ELISA validation showed that the S100A4 level was significantly higher in KD patients with CAL than in those without CAL (225.2 ± 209.5 vs. 143.3 ± 83 pg/mL, p < 0.05). In addition, KD patients with CAL had a significantly lower CAT level than those without CAL (1.6 ± 1.5 vs. 2.7 ± 2.3 ng/mL, p < 0.05). Next, we found that S100A4 treatment on human coronary artery endothelial cells (HCAECs) reduced the abundance of cell junction proteins, which promoted the migration of HCAECs. Further assays also demonstrated that S100A4 treatment enhanced the permeability of the endothelial layer. These results concluded that S100A4 treatment resulted in an incompact endothelial layer and made HCAECs more susceptible to in vitro neutrophil infiltration. In addition, both upregulated S100A4 and downregulated CAT increased the risk of CAL in KD. Further in vitro study implied that S100A4 could be a potential therapeutic target for CAL in KD. MDPI 2022-10-23 /pmc/articles/PMC9658444/ /pubmed/36361563 http://dx.doi.org/10.3390/ijms232112770 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Weng, Ken-Pen
Chien, Kuang-Jen
Huang, Shih-Hui
Huang, Lien-Hung
Lin, Pei-Hsien
Lin, Yuyu
Chang, Wei-Hsiang
Chen, Chun-Yu
Li, Sung-Chou
iTRAQ Proteomics Identified the Potential Biomarkers of Coronary Artery Lesion in Kawasaki Disease and In Vitro Studies Demonstrated That S100A4 Treatment Made HCAECs More Susceptible to Neutrophil Infiltration
title iTRAQ Proteomics Identified the Potential Biomarkers of Coronary Artery Lesion in Kawasaki Disease and In Vitro Studies Demonstrated That S100A4 Treatment Made HCAECs More Susceptible to Neutrophil Infiltration
title_full iTRAQ Proteomics Identified the Potential Biomarkers of Coronary Artery Lesion in Kawasaki Disease and In Vitro Studies Demonstrated That S100A4 Treatment Made HCAECs More Susceptible to Neutrophil Infiltration
title_fullStr iTRAQ Proteomics Identified the Potential Biomarkers of Coronary Artery Lesion in Kawasaki Disease and In Vitro Studies Demonstrated That S100A4 Treatment Made HCAECs More Susceptible to Neutrophil Infiltration
title_full_unstemmed iTRAQ Proteomics Identified the Potential Biomarkers of Coronary Artery Lesion in Kawasaki Disease and In Vitro Studies Demonstrated That S100A4 Treatment Made HCAECs More Susceptible to Neutrophil Infiltration
title_short iTRAQ Proteomics Identified the Potential Biomarkers of Coronary Artery Lesion in Kawasaki Disease and In Vitro Studies Demonstrated That S100A4 Treatment Made HCAECs More Susceptible to Neutrophil Infiltration
title_sort itraq proteomics identified the potential biomarkers of coronary artery lesion in kawasaki disease and in vitro studies demonstrated that s100a4 treatment made hcaecs more susceptible to neutrophil infiltration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658444/
https://www.ncbi.nlm.nih.gov/pubmed/36361563
http://dx.doi.org/10.3390/ijms232112770
work_keys_str_mv AT wengkenpen itraqproteomicsidentifiedthepotentialbiomarkersofcoronaryarterylesioninkawasakidiseaseandinvitrostudiesdemonstratedthats100a4treatmentmadehcaecsmoresusceptibletoneutrophilinfiltration
AT chienkuangjen itraqproteomicsidentifiedthepotentialbiomarkersofcoronaryarterylesioninkawasakidiseaseandinvitrostudiesdemonstratedthats100a4treatmentmadehcaecsmoresusceptibletoneutrophilinfiltration
AT huangshihhui itraqproteomicsidentifiedthepotentialbiomarkersofcoronaryarterylesioninkawasakidiseaseandinvitrostudiesdemonstratedthats100a4treatmentmadehcaecsmoresusceptibletoneutrophilinfiltration
AT huanglienhung itraqproteomicsidentifiedthepotentialbiomarkersofcoronaryarterylesioninkawasakidiseaseandinvitrostudiesdemonstratedthats100a4treatmentmadehcaecsmoresusceptibletoneutrophilinfiltration
AT linpeihsien itraqproteomicsidentifiedthepotentialbiomarkersofcoronaryarterylesioninkawasakidiseaseandinvitrostudiesdemonstratedthats100a4treatmentmadehcaecsmoresusceptibletoneutrophilinfiltration
AT linyuyu itraqproteomicsidentifiedthepotentialbiomarkersofcoronaryarterylesioninkawasakidiseaseandinvitrostudiesdemonstratedthats100a4treatmentmadehcaecsmoresusceptibletoneutrophilinfiltration
AT changweihsiang itraqproteomicsidentifiedthepotentialbiomarkersofcoronaryarterylesioninkawasakidiseaseandinvitrostudiesdemonstratedthats100a4treatmentmadehcaecsmoresusceptibletoneutrophilinfiltration
AT chenchunyu itraqproteomicsidentifiedthepotentialbiomarkersofcoronaryarterylesioninkawasakidiseaseandinvitrostudiesdemonstratedthats100a4treatmentmadehcaecsmoresusceptibletoneutrophilinfiltration
AT lisungchou itraqproteomicsidentifiedthepotentialbiomarkersofcoronaryarterylesioninkawasakidiseaseandinvitrostudiesdemonstratedthats100a4treatmentmadehcaecsmoresusceptibletoneutrophilinfiltration