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A series of Mn(i) photo-activated carbon monoxide-releasing molecules with benzimidazole coligands: synthesis, structural characterization, CO releasing properties and biological activity evaluation

Five Mn(i) photo-activated carbon monoxide-releasing molecules (photo-CORMs) with benzimidazole coligands, namely [MnBr(CO)(3)L1] (1, L1 = 2-(2-pyridyl)benzimidazole), [Mn(CO)(2)L1(PPh(3))(2)](ClO(4)) (2), [MnBr(CO)(3)L2] (3, L2 = 2,2′-bisbenzimidazole), [MnBr(CO)(3)L3]·CH(3)OH (4, L3 = 2,6-bis(benz...

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Autores principales: Hu, Mixia, Yan, YaLi, Zhu, Baohua, Chang, Fei, Yu, Shiyong, Alatan, Gaole
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9065806/
https://www.ncbi.nlm.nih.gov/pubmed/35515566
http://dx.doi.org/10.1039/c9ra01370a
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author Hu, Mixia
Yan, YaLi
Zhu, Baohua
Chang, Fei
Yu, Shiyong
Alatan, Gaole
author_facet Hu, Mixia
Yan, YaLi
Zhu, Baohua
Chang, Fei
Yu, Shiyong
Alatan, Gaole
author_sort Hu, Mixia
collection PubMed
description Five Mn(i) photo-activated carbon monoxide-releasing molecules (photo-CORMs) with benzimidazole coligands, namely [MnBr(CO)(3)L1] (1, L1 = 2-(2-pyridyl)benzimidazole), [Mn(CO)(2)L1(PPh(3))(2)](ClO(4)) (2), [MnBr(CO)(3)L2] (3, L2 = 2,2′-bisbenzimidazole), [MnBr(CO)(3)L3]·CH(3)OH (4, L3 = 2,6-bis(benzimidazole-2′-yl)pyridine) and fac-[MnBr(CO)(3)L4] (5, L4 = 2,4-bis(benzimidazole-2′-yl) pyridine) were synthesized by reactions of MnBr(CO)(5) with complexes L1–L4, respectively, and characterized via single crystal X-ray diffraction, elemental analysis, (1)H-NMR, (13)C-NMR, IR, UV-vis and fluorescence spectroscopy. The CO-release properties of 1–5 were investigated using the myoglobin assay and CO detection, and the results show that all of the complexes could release CO rapidly upon exposure to 365 nm UV light. Comparing their half-lives of CO release, we found that increasing the degree of unsaturation and conjugation of the ligand frame could be advantageous for prolonging the time of CO-release, and that the luminescence intensity of 1–5 could gradually be enhanced. The cellular fluorescence imaging tests demonstrate that these Mn(i) photo-CORMs can be taken up by human liver cells (HL-7702) and liver cancer cells (SK-Hep1), and exhibit good capabilities for bioimaging. A cell viability assay for SK-Hep1 shows that the anticancer activity of 3 is better than that of other complexes.
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spelling pubmed-90658062022-05-04 A series of Mn(i) photo-activated carbon monoxide-releasing molecules with benzimidazole coligands: synthesis, structural characterization, CO releasing properties and biological activity evaluation Hu, Mixia Yan, YaLi Zhu, Baohua Chang, Fei Yu, Shiyong Alatan, Gaole RSC Adv Chemistry Five Mn(i) photo-activated carbon monoxide-releasing molecules (photo-CORMs) with benzimidazole coligands, namely [MnBr(CO)(3)L1] (1, L1 = 2-(2-pyridyl)benzimidazole), [Mn(CO)(2)L1(PPh(3))(2)](ClO(4)) (2), [MnBr(CO)(3)L2] (3, L2 = 2,2′-bisbenzimidazole), [MnBr(CO)(3)L3]·CH(3)OH (4, L3 = 2,6-bis(benzimidazole-2′-yl)pyridine) and fac-[MnBr(CO)(3)L4] (5, L4 = 2,4-bis(benzimidazole-2′-yl) pyridine) were synthesized by reactions of MnBr(CO)(5) with complexes L1–L4, respectively, and characterized via single crystal X-ray diffraction, elemental analysis, (1)H-NMR, (13)C-NMR, IR, UV-vis and fluorescence spectroscopy. The CO-release properties of 1–5 were investigated using the myoglobin assay and CO detection, and the results show that all of the complexes could release CO rapidly upon exposure to 365 nm UV light. Comparing their half-lives of CO release, we found that increasing the degree of unsaturation and conjugation of the ligand frame could be advantageous for prolonging the time of CO-release, and that the luminescence intensity of 1–5 could gradually be enhanced. The cellular fluorescence imaging tests demonstrate that these Mn(i) photo-CORMs can be taken up by human liver cells (HL-7702) and liver cancer cells (SK-Hep1), and exhibit good capabilities for bioimaging. A cell viability assay for SK-Hep1 shows that the anticancer activity of 3 is better than that of other complexes. The Royal Society of Chemistry 2019-07-02 /pmc/articles/PMC9065806/ /pubmed/35515566 http://dx.doi.org/10.1039/c9ra01370a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Hu, Mixia
Yan, YaLi
Zhu, Baohua
Chang, Fei
Yu, Shiyong
Alatan, Gaole
A series of Mn(i) photo-activated carbon monoxide-releasing molecules with benzimidazole coligands: synthesis, structural characterization, CO releasing properties and biological activity evaluation
title A series of Mn(i) photo-activated carbon monoxide-releasing molecules with benzimidazole coligands: synthesis, structural characterization, CO releasing properties and biological activity evaluation
title_full A series of Mn(i) photo-activated carbon monoxide-releasing molecules with benzimidazole coligands: synthesis, structural characterization, CO releasing properties and biological activity evaluation
title_fullStr A series of Mn(i) photo-activated carbon monoxide-releasing molecules with benzimidazole coligands: synthesis, structural characterization, CO releasing properties and biological activity evaluation
title_full_unstemmed A series of Mn(i) photo-activated carbon monoxide-releasing molecules with benzimidazole coligands: synthesis, structural characterization, CO releasing properties and biological activity evaluation
title_short A series of Mn(i) photo-activated carbon monoxide-releasing molecules with benzimidazole coligands: synthesis, structural characterization, CO releasing properties and biological activity evaluation
title_sort series of mn(i) photo-activated carbon monoxide-releasing molecules with benzimidazole coligands: synthesis, structural characterization, co releasing properties and biological activity evaluation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9065806/
https://www.ncbi.nlm.nih.gov/pubmed/35515566
http://dx.doi.org/10.1039/c9ra01370a
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