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Immune response of human cultured cells towards macrocyclic Fe(2)PO and Fe(2)PC bioactive cyclophane complexes

Synthetic molecules that mimic the function of natural enzymes or molecules have untapped potential for use in the next generation of drugs. Cyclic compounds that contain aromatic rings are macrocyclic cyclophanes, and when they coordinate iron ions are of particular interest due to their antioxidan...

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Autores principales: Salazar-Medina, Alex J., Velazquez-Contreras, Enrique F., Sugich-Miranda, Rocio, Santacruz, Hisila, Navarro, Rosa E., Rocha-Alonzo, Fernando, Islas-Osuna, Maria A., Chen, Patricia L., Christian, Sarah G.B., Romoser, Amelia A., Dindot, Scott V., Sayes, Christie M., Sotelo-Mundo, Rogerio R., Criscitiello, Michael F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: PeerJ Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7179565/
https://www.ncbi.nlm.nih.gov/pubmed/32341898
http://dx.doi.org/10.7717/peerj.8956
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author Salazar-Medina, Alex J.
Velazquez-Contreras, Enrique F.
Sugich-Miranda, Rocio
Santacruz, Hisila
Navarro, Rosa E.
Rocha-Alonzo, Fernando
Islas-Osuna, Maria A.
Chen, Patricia L.
Christian, Sarah G.B.
Romoser, Amelia A.
Dindot, Scott V.
Sayes, Christie M.
Sotelo-Mundo, Rogerio R.
Criscitiello, Michael F.
author_facet Salazar-Medina, Alex J.
Velazquez-Contreras, Enrique F.
Sugich-Miranda, Rocio
Santacruz, Hisila
Navarro, Rosa E.
Rocha-Alonzo, Fernando
Islas-Osuna, Maria A.
Chen, Patricia L.
Christian, Sarah G.B.
Romoser, Amelia A.
Dindot, Scott V.
Sayes, Christie M.
Sotelo-Mundo, Rogerio R.
Criscitiello, Michael F.
author_sort Salazar-Medina, Alex J.
collection PubMed
description Synthetic molecules that mimic the function of natural enzymes or molecules have untapped potential for use in the next generation of drugs. Cyclic compounds that contain aromatic rings are macrocyclic cyclophanes, and when they coordinate iron ions are of particular interest due to their antioxidant and biomimetic properties. However, little is known about the molecular responses at the cellular level. This study aims to evaluate the changes in immune gene expression in human cells exposed to the cyclophanes Fe(2)PO and Fe(2)PC. Confluent human embryonic kidney cells were exposed to either the cyclophane Fe(2)PO or Fe(2)PC before extraction of RNA. The expression of a panel of innate and adaptive immune genes was analyzed by quantitative real-time PCR. Evidence was found for an inflammatory response elicited by the cyclophane exposures. After 8 h of exposure, the cells increased the relative expression of inflammatory mediators such as interleukin 1; IRAK, which transduces signals between interleukin 1 receptors and the NFκB pathway; and the LPS pattern recognition receptor CD14. After 24 h of exposure, regulatory genes begin to counter the inflammation, as some genes involved in oxidative stress, apoptosis and non-inflammatory immune responses come into play. Both Fe(2)PO and Fe(2)PC induced similar immunogenetic changes in transcription profiles, but equal molar doses of Fe(2)PC resulted in more robust responses. These data suggest that further work in whole animal models may provide more insights into the extent of systemic physiological changes induced by these cyclophanes.
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spelling pubmed-71795652020-04-27 Immune response of human cultured cells towards macrocyclic Fe(2)PO and Fe(2)PC bioactive cyclophane complexes Salazar-Medina, Alex J. Velazquez-Contreras, Enrique F. Sugich-Miranda, Rocio Santacruz, Hisila Navarro, Rosa E. Rocha-Alonzo, Fernando Islas-Osuna, Maria A. Chen, Patricia L. Christian, Sarah G.B. Romoser, Amelia A. Dindot, Scott V. Sayes, Christie M. Sotelo-Mundo, Rogerio R. Criscitiello, Michael F. PeerJ Cell Biology Synthetic molecules that mimic the function of natural enzymes or molecules have untapped potential for use in the next generation of drugs. Cyclic compounds that contain aromatic rings are macrocyclic cyclophanes, and when they coordinate iron ions are of particular interest due to their antioxidant and biomimetic properties. However, little is known about the molecular responses at the cellular level. This study aims to evaluate the changes in immune gene expression in human cells exposed to the cyclophanes Fe(2)PO and Fe(2)PC. Confluent human embryonic kidney cells were exposed to either the cyclophane Fe(2)PO or Fe(2)PC before extraction of RNA. The expression of a panel of innate and adaptive immune genes was analyzed by quantitative real-time PCR. Evidence was found for an inflammatory response elicited by the cyclophane exposures. After 8 h of exposure, the cells increased the relative expression of inflammatory mediators such as interleukin 1; IRAK, which transduces signals between interleukin 1 receptors and the NFκB pathway; and the LPS pattern recognition receptor CD14. After 24 h of exposure, regulatory genes begin to counter the inflammation, as some genes involved in oxidative stress, apoptosis and non-inflammatory immune responses come into play. Both Fe(2)PO and Fe(2)PC induced similar immunogenetic changes in transcription profiles, but equal molar doses of Fe(2)PC resulted in more robust responses. These data suggest that further work in whole animal models may provide more insights into the extent of systemic physiological changes induced by these cyclophanes. PeerJ Inc. 2020-04-20 /pmc/articles/PMC7179565/ /pubmed/32341898 http://dx.doi.org/10.7717/peerj.8956 Text en © 2020 Salazar-Medina et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, reproduction and adaptation in any medium and for any purpose provided that it is properly attributed. For attribution, the original author(s), title, publication source (PeerJ) and either DOI or URL of the article must be cited.
spellingShingle Cell Biology
Salazar-Medina, Alex J.
Velazquez-Contreras, Enrique F.
Sugich-Miranda, Rocio
Santacruz, Hisila
Navarro, Rosa E.
Rocha-Alonzo, Fernando
Islas-Osuna, Maria A.
Chen, Patricia L.
Christian, Sarah G.B.
Romoser, Amelia A.
Dindot, Scott V.
Sayes, Christie M.
Sotelo-Mundo, Rogerio R.
Criscitiello, Michael F.
Immune response of human cultured cells towards macrocyclic Fe(2)PO and Fe(2)PC bioactive cyclophane complexes
title Immune response of human cultured cells towards macrocyclic Fe(2)PO and Fe(2)PC bioactive cyclophane complexes
title_full Immune response of human cultured cells towards macrocyclic Fe(2)PO and Fe(2)PC bioactive cyclophane complexes
title_fullStr Immune response of human cultured cells towards macrocyclic Fe(2)PO and Fe(2)PC bioactive cyclophane complexes
title_full_unstemmed Immune response of human cultured cells towards macrocyclic Fe(2)PO and Fe(2)PC bioactive cyclophane complexes
title_short Immune response of human cultured cells towards macrocyclic Fe(2)PO and Fe(2)PC bioactive cyclophane complexes
title_sort immune response of human cultured cells towards macrocyclic fe(2)po and fe(2)pc bioactive cyclophane complexes
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7179565/
https://www.ncbi.nlm.nih.gov/pubmed/32341898
http://dx.doi.org/10.7717/peerj.8956
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