Cargando…

Chronic Iron Overload Results in Impaired Bacterial Killing of THP-1 Derived Macrophage through the Inhibition of Lysosomal Acidification

Iron is essential for living organisms and the disturbance of iron homeostasis is associated with altered immune function. Additionally, bacterial infections can cause major complications in instances of chronic iron overload, such as patients with transfusion-dependent thalassemia. Monocytes and ma...

Descripción completa

Detalles Bibliográficos
Autores principales: Kao, Jun-Kai, Wang, Shih-Chung, Ho, Li-Wei, Huang, Shi-Wei, Chang, Shu-Hao, Yang, Rei-Cheng, Ke, Yu-Yuan, Wu, Chun-Ying, Wang, Jiu-Yao, Shieh, Jeng-Jer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4886970/
https://www.ncbi.nlm.nih.gov/pubmed/27244448
http://dx.doi.org/10.1371/journal.pone.0156713
_version_ 1782434672998875136
author Kao, Jun-Kai
Wang, Shih-Chung
Ho, Li-Wei
Huang, Shi-Wei
Chang, Shu-Hao
Yang, Rei-Cheng
Ke, Yu-Yuan
Wu, Chun-Ying
Wang, Jiu-Yao
Shieh, Jeng-Jer
author_facet Kao, Jun-Kai
Wang, Shih-Chung
Ho, Li-Wei
Huang, Shi-Wei
Chang, Shu-Hao
Yang, Rei-Cheng
Ke, Yu-Yuan
Wu, Chun-Ying
Wang, Jiu-Yao
Shieh, Jeng-Jer
author_sort Kao, Jun-Kai
collection PubMed
description Iron is essential for living organisms and the disturbance of iron homeostasis is associated with altered immune function. Additionally, bacterial infections can cause major complications in instances of chronic iron overload, such as patients with transfusion-dependent thalassemia. Monocytes and macrophages play important roles in maintaining systemic iron homoeostasis and in defense against invading pathogens. However, the effect of iron overload on the function of monocytes and macrophages is unclear. We elucidated the effects of chronic iron overload on human monocytic cell line (THP-1) and THP-1 derived macrophages (TDM) by continuously exposing them to high levels of iron (100 μM) to create I-THP-1 and I-TDM, respectively. Our results show that iron overload did not affect morphology or granularity of I-THP-1, but increased the granularity of I-TDM. Bactericidal assays for non-pathogenic E. coli DH5α, JM109 and pathogenic P. aeruginosa all revealed decreased efficiency with increasing iron concentration in I-TDM. The impaired P. aeruginosa killing ability of human primary monocyte derived macrophages (hMDM) was also found when cells are cultured in iron contained medium. Further studies on the bactericidal activity of I-TDM revealed lysosomal dysfunction associated with the inhibition of lysosomal acidification resulting in increasing lysosomal pH, the impairment of post-translational processing of cathepsins (especially cathepsin D), and decreased autophagic flux. These findings may explain the impaired innate immunity of thalassemic patients with chronic iron overload, suggesting the manipulation of lysosomal function as a novel therapeutic approach.
format Online
Article
Text
id pubmed-4886970
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-48869702016-06-10 Chronic Iron Overload Results in Impaired Bacterial Killing of THP-1 Derived Macrophage through the Inhibition of Lysosomal Acidification Kao, Jun-Kai Wang, Shih-Chung Ho, Li-Wei Huang, Shi-Wei Chang, Shu-Hao Yang, Rei-Cheng Ke, Yu-Yuan Wu, Chun-Ying Wang, Jiu-Yao Shieh, Jeng-Jer PLoS One Research Article Iron is essential for living organisms and the disturbance of iron homeostasis is associated with altered immune function. Additionally, bacterial infections can cause major complications in instances of chronic iron overload, such as patients with transfusion-dependent thalassemia. Monocytes and macrophages play important roles in maintaining systemic iron homoeostasis and in defense against invading pathogens. However, the effect of iron overload on the function of monocytes and macrophages is unclear. We elucidated the effects of chronic iron overload on human monocytic cell line (THP-1) and THP-1 derived macrophages (TDM) by continuously exposing them to high levels of iron (100 μM) to create I-THP-1 and I-TDM, respectively. Our results show that iron overload did not affect morphology or granularity of I-THP-1, but increased the granularity of I-TDM. Bactericidal assays for non-pathogenic E. coli DH5α, JM109 and pathogenic P. aeruginosa all revealed decreased efficiency with increasing iron concentration in I-TDM. The impaired P. aeruginosa killing ability of human primary monocyte derived macrophages (hMDM) was also found when cells are cultured in iron contained medium. Further studies on the bactericidal activity of I-TDM revealed lysosomal dysfunction associated with the inhibition of lysosomal acidification resulting in increasing lysosomal pH, the impairment of post-translational processing of cathepsins (especially cathepsin D), and decreased autophagic flux. These findings may explain the impaired innate immunity of thalassemic patients with chronic iron overload, suggesting the manipulation of lysosomal function as a novel therapeutic approach. Public Library of Science 2016-05-31 /pmc/articles/PMC4886970/ /pubmed/27244448 http://dx.doi.org/10.1371/journal.pone.0156713 Text en © 2016 Kao et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Kao, Jun-Kai
Wang, Shih-Chung
Ho, Li-Wei
Huang, Shi-Wei
Chang, Shu-Hao
Yang, Rei-Cheng
Ke, Yu-Yuan
Wu, Chun-Ying
Wang, Jiu-Yao
Shieh, Jeng-Jer
Chronic Iron Overload Results in Impaired Bacterial Killing of THP-1 Derived Macrophage through the Inhibition of Lysosomal Acidification
title Chronic Iron Overload Results in Impaired Bacterial Killing of THP-1 Derived Macrophage through the Inhibition of Lysosomal Acidification
title_full Chronic Iron Overload Results in Impaired Bacterial Killing of THP-1 Derived Macrophage through the Inhibition of Lysosomal Acidification
title_fullStr Chronic Iron Overload Results in Impaired Bacterial Killing of THP-1 Derived Macrophage through the Inhibition of Lysosomal Acidification
title_full_unstemmed Chronic Iron Overload Results in Impaired Bacterial Killing of THP-1 Derived Macrophage through the Inhibition of Lysosomal Acidification
title_short Chronic Iron Overload Results in Impaired Bacterial Killing of THP-1 Derived Macrophage through the Inhibition of Lysosomal Acidification
title_sort chronic iron overload results in impaired bacterial killing of thp-1 derived macrophage through the inhibition of lysosomal acidification
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4886970/
https://www.ncbi.nlm.nih.gov/pubmed/27244448
http://dx.doi.org/10.1371/journal.pone.0156713
work_keys_str_mv AT kaojunkai chronicironoverloadresultsinimpairedbacterialkillingofthp1derivedmacrophagethroughtheinhibitionoflysosomalacidification
AT wangshihchung chronicironoverloadresultsinimpairedbacterialkillingofthp1derivedmacrophagethroughtheinhibitionoflysosomalacidification
AT holiwei chronicironoverloadresultsinimpairedbacterialkillingofthp1derivedmacrophagethroughtheinhibitionoflysosomalacidification
AT huangshiwei chronicironoverloadresultsinimpairedbacterialkillingofthp1derivedmacrophagethroughtheinhibitionoflysosomalacidification
AT changshuhao chronicironoverloadresultsinimpairedbacterialkillingofthp1derivedmacrophagethroughtheinhibitionoflysosomalacidification
AT yangreicheng chronicironoverloadresultsinimpairedbacterialkillingofthp1derivedmacrophagethroughtheinhibitionoflysosomalacidification
AT keyuyuan chronicironoverloadresultsinimpairedbacterialkillingofthp1derivedmacrophagethroughtheinhibitionoflysosomalacidification
AT wuchunying chronicironoverloadresultsinimpairedbacterialkillingofthp1derivedmacrophagethroughtheinhibitionoflysosomalacidification
AT wangjiuyao chronicironoverloadresultsinimpairedbacterialkillingofthp1derivedmacrophagethroughtheinhibitionoflysosomalacidification
AT shiehjengjer chronicironoverloadresultsinimpairedbacterialkillingofthp1derivedmacrophagethroughtheinhibitionoflysosomalacidification