Cargando…

Unveiling the anti-cancer mechanism for half-sandwich and cyclometalated Ir(iii)-based complexes with functionalized α-lipoic acid

Alpha lipoic acid (LA) is a natural compound and coenzyme with sufficient safety information for serving as a promising anticancer agent. To further clarify the mechanism of action (MoA), two Ir(iii) complexes with the functionalized α-lipoic acid (N(∧)N-LA, N(∧)N, 2,2-bipyridine derivative), namely...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Meng-Meng, Xue, Xu-Ling, Sheng, Xi-Xi, Su, Yan, Kong, Ya-Qiong, Qian, Yong, Bao, Jian-Chun, Su, Zhi, Liu, Hong-Ke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9049077/
https://www.ncbi.nlm.nih.gov/pubmed/35498295
http://dx.doi.org/10.1039/c9ra10357k
_version_ 1784696065244528640
author Wang, Meng-Meng
Xue, Xu-Ling
Sheng, Xi-Xi
Su, Yan
Kong, Ya-Qiong
Qian, Yong
Bao, Jian-Chun
Su, Zhi
Liu, Hong-Ke
author_facet Wang, Meng-Meng
Xue, Xu-Ling
Sheng, Xi-Xi
Su, Yan
Kong, Ya-Qiong
Qian, Yong
Bao, Jian-Chun
Su, Zhi
Liu, Hong-Ke
author_sort Wang, Meng-Meng
collection PubMed
description Alpha lipoic acid (LA) is a natural compound and coenzyme with sufficient safety information for serving as a promising anticancer agent. To further clarify the mechanism of action (MoA), two Ir(iii) complexes with the functionalized α-lipoic acid (N(∧)N-LA, N(∧)N, 2,2-bipyridine derivative), namely Ir1 and Ir2, were synthesized, where Ir1 possessed a half-sandwich structure with the formula [Ir(Cp*)(N(∧)N-LA)Cl]PF(6) (Cp* = 1,2,3,4,5-pentamethyl-cyclopentadiene) and Ir2 possessed the cyclometalated structure with the formula [Ir(C(∧)N)(2)(N(∧)N-LA)]PF(6) (C(∧)N = 2-phenylpyridine). Even though both complexes were constructed based on the same N(∧)N-LA ligand, Ir1 showed no cytotoxicity (IC(50) > 200 μM), which was due to its low lipophilicity for hard penetration into the cancer cells, easy hydrolysis, and reaction with GSH. Ir2 exhibited excellent cytotoxicity (IC(50) = 3.43–6.74 μM) toward diverse cancer cell lines in vitro and a promising ability to overcome the cisplatin-resistance in A549R cells. The anticancer mechanism of Ir2 in A549 cells was investigated in detail, and it was found it could localize and accumulate in the lysosomes of A549 cells, induce ROS, arrest the cycle at G(0)/G(1), and lead to cell death by autophagy. Comparison with Ir-NH(2) ([Ir(C(∧)N)(2)(N(∧)N-NH(2))]PF(6)) demonstrated that introduction of the LA ligand to Ir2 could highly enhance the cytotoxicity and help to overcome the cisplatin-resistance. This study of the half-sandwich and cyclometalated Ir(iii)-based anticancer agents highlighted the different MoAs toward cancer cells and provided new insights for understanding their structure–property relationships.
format Online
Article
Text
id pubmed-9049077
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90490772022-04-28 Unveiling the anti-cancer mechanism for half-sandwich and cyclometalated Ir(iii)-based complexes with functionalized α-lipoic acid Wang, Meng-Meng Xue, Xu-Ling Sheng, Xi-Xi Su, Yan Kong, Ya-Qiong Qian, Yong Bao, Jian-Chun Su, Zhi Liu, Hong-Ke RSC Adv Chemistry Alpha lipoic acid (LA) is a natural compound and coenzyme with sufficient safety information for serving as a promising anticancer agent. To further clarify the mechanism of action (MoA), two Ir(iii) complexes with the functionalized α-lipoic acid (N(∧)N-LA, N(∧)N, 2,2-bipyridine derivative), namely Ir1 and Ir2, were synthesized, where Ir1 possessed a half-sandwich structure with the formula [Ir(Cp*)(N(∧)N-LA)Cl]PF(6) (Cp* = 1,2,3,4,5-pentamethyl-cyclopentadiene) and Ir2 possessed the cyclometalated structure with the formula [Ir(C(∧)N)(2)(N(∧)N-LA)]PF(6) (C(∧)N = 2-phenylpyridine). Even though both complexes were constructed based on the same N(∧)N-LA ligand, Ir1 showed no cytotoxicity (IC(50) > 200 μM), which was due to its low lipophilicity for hard penetration into the cancer cells, easy hydrolysis, and reaction with GSH. Ir2 exhibited excellent cytotoxicity (IC(50) = 3.43–6.74 μM) toward diverse cancer cell lines in vitro and a promising ability to overcome the cisplatin-resistance in A549R cells. The anticancer mechanism of Ir2 in A549 cells was investigated in detail, and it was found it could localize and accumulate in the lysosomes of A549 cells, induce ROS, arrest the cycle at G(0)/G(1), and lead to cell death by autophagy. Comparison with Ir-NH(2) ([Ir(C(∧)N)(2)(N(∧)N-NH(2))]PF(6)) demonstrated that introduction of the LA ligand to Ir2 could highly enhance the cytotoxicity and help to overcome the cisplatin-resistance. This study of the half-sandwich and cyclometalated Ir(iii)-based anticancer agents highlighted the different MoAs toward cancer cells and provided new insights for understanding their structure–property relationships. The Royal Society of Chemistry 2020-02-03 /pmc/articles/PMC9049077/ /pubmed/35498295 http://dx.doi.org/10.1039/c9ra10357k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Wang, Meng-Meng
Xue, Xu-Ling
Sheng, Xi-Xi
Su, Yan
Kong, Ya-Qiong
Qian, Yong
Bao, Jian-Chun
Su, Zhi
Liu, Hong-Ke
Unveiling the anti-cancer mechanism for half-sandwich and cyclometalated Ir(iii)-based complexes with functionalized α-lipoic acid
title Unveiling the anti-cancer mechanism for half-sandwich and cyclometalated Ir(iii)-based complexes with functionalized α-lipoic acid
title_full Unveiling the anti-cancer mechanism for half-sandwich and cyclometalated Ir(iii)-based complexes with functionalized α-lipoic acid
title_fullStr Unveiling the anti-cancer mechanism for half-sandwich and cyclometalated Ir(iii)-based complexes with functionalized α-lipoic acid
title_full_unstemmed Unveiling the anti-cancer mechanism for half-sandwich and cyclometalated Ir(iii)-based complexes with functionalized α-lipoic acid
title_short Unveiling the anti-cancer mechanism for half-sandwich and cyclometalated Ir(iii)-based complexes with functionalized α-lipoic acid
title_sort unveiling the anti-cancer mechanism for half-sandwich and cyclometalated ir(iii)-based complexes with functionalized α-lipoic acid
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9049077/
https://www.ncbi.nlm.nih.gov/pubmed/35498295
http://dx.doi.org/10.1039/c9ra10357k
work_keys_str_mv AT wangmengmeng unveilingtheanticancermechanismforhalfsandwichandcyclometalatediriiibasedcomplexeswithfunctionalizedalipoicacid
AT xuexuling unveilingtheanticancermechanismforhalfsandwichandcyclometalatediriiibasedcomplexeswithfunctionalizedalipoicacid
AT shengxixi unveilingtheanticancermechanismforhalfsandwichandcyclometalatediriiibasedcomplexeswithfunctionalizedalipoicacid
AT suyan unveilingtheanticancermechanismforhalfsandwichandcyclometalatediriiibasedcomplexeswithfunctionalizedalipoicacid
AT kongyaqiong unveilingtheanticancermechanismforhalfsandwichandcyclometalatediriiibasedcomplexeswithfunctionalizedalipoicacid
AT qianyong unveilingtheanticancermechanismforhalfsandwichandcyclometalatediriiibasedcomplexeswithfunctionalizedalipoicacid
AT baojianchun unveilingtheanticancermechanismforhalfsandwichandcyclometalatediriiibasedcomplexeswithfunctionalizedalipoicacid
AT suzhi unveilingtheanticancermechanismforhalfsandwichandcyclometalatediriiibasedcomplexeswithfunctionalizedalipoicacid
AT liuhongke unveilingtheanticancermechanismforhalfsandwichandcyclometalatediriiibasedcomplexeswithfunctionalizedalipoicacid