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De novo design and synthesis of dipyridopurinone derivatives as visible-light photocatalysts in productive guanylation reactions

Described here is the de novo design and synthesis of a series of 6H-dipyrido[1,2-e:2′,1′-i]purin-6-ones (DPs) as a new class of visible-light photoredox catalysts (PCs). The synthesized DP1–5 showed their λ(Abs(max)) values in 433–477 nm, excited state redox potentials [Image: see text] in 1.15–0.6...

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Autores principales: Wan, Yameng, Wu, Hao, Ma, Nana, Zhao, Jie, Zhang, Zhiguo, Gao, Wenjing, Zhang, Guisheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8672711/
https://www.ncbi.nlm.nih.gov/pubmed/35024122
http://dx.doi.org/10.1039/d1sc05294b
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author Wan, Yameng
Wu, Hao
Ma, Nana
Zhao, Jie
Zhang, Zhiguo
Gao, Wenjing
Zhang, Guisheng
author_facet Wan, Yameng
Wu, Hao
Ma, Nana
Zhao, Jie
Zhang, Zhiguo
Gao, Wenjing
Zhang, Guisheng
author_sort Wan, Yameng
collection PubMed
description Described here is the de novo design and synthesis of a series of 6H-dipyrido[1,2-e:2′,1′-i]purin-6-ones (DPs) as a new class of visible-light photoredox catalysts (PCs). The synthesized DP1–5 showed their λ(Abs(max)) values in 433–477 nm, excited state redox potentials [Image: see text] in 1.15–0.69 eV and −1.41 to −1.77 eV (vs. SCE), respectively. As a representative, DP4 enables the productive guanylation of various amines, including 1°, 2°, and 3°-alkyl primary amines, secondary amines, aryl and heteroaryl amines, amino-nitrile, amino acids and peptides as well as propynylamines and α-amino esters giving diversities in biologically important guanidines and cyclic guanidines. The photocatalytic efficacy of DP4 in the guanylation overmatched commonly used Ir and Ru polypyridyl complexes, and some organic PCs. Other salient merits of this method include broad substrate scope and functional group tolerance, gram-scale synthesis, and versatile late-stage derivatizations that led to a derivative 81 exhibiting 60-fold better anticancer activity against Ramos cells with the IC(50) of 0.086 μM than that of clinical drug ibrutinib (5.1 μM).
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spelling pubmed-86727112022-01-11 De novo design and synthesis of dipyridopurinone derivatives as visible-light photocatalysts in productive guanylation reactions Wan, Yameng Wu, Hao Ma, Nana Zhao, Jie Zhang, Zhiguo Gao, Wenjing Zhang, Guisheng Chem Sci Chemistry Described here is the de novo design and synthesis of a series of 6H-dipyrido[1,2-e:2′,1′-i]purin-6-ones (DPs) as a new class of visible-light photoredox catalysts (PCs). The synthesized DP1–5 showed their λ(Abs(max)) values in 433–477 nm, excited state redox potentials [Image: see text] in 1.15–0.69 eV and −1.41 to −1.77 eV (vs. SCE), respectively. As a representative, DP4 enables the productive guanylation of various amines, including 1°, 2°, and 3°-alkyl primary amines, secondary amines, aryl and heteroaryl amines, amino-nitrile, amino acids and peptides as well as propynylamines and α-amino esters giving diversities in biologically important guanidines and cyclic guanidines. The photocatalytic efficacy of DP4 in the guanylation overmatched commonly used Ir and Ru polypyridyl complexes, and some organic PCs. Other salient merits of this method include broad substrate scope and functional group tolerance, gram-scale synthesis, and versatile late-stage derivatizations that led to a derivative 81 exhibiting 60-fold better anticancer activity against Ramos cells with the IC(50) of 0.086 μM than that of clinical drug ibrutinib (5.1 μM). The Royal Society of Chemistry 2021-11-13 /pmc/articles/PMC8672711/ /pubmed/35024122 http://dx.doi.org/10.1039/d1sc05294b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Wan, Yameng
Wu, Hao
Ma, Nana
Zhao, Jie
Zhang, Zhiguo
Gao, Wenjing
Zhang, Guisheng
De novo design and synthesis of dipyridopurinone derivatives as visible-light photocatalysts in productive guanylation reactions
title De novo design and synthesis of dipyridopurinone derivatives as visible-light photocatalysts in productive guanylation reactions
title_full De novo design and synthesis of dipyridopurinone derivatives as visible-light photocatalysts in productive guanylation reactions
title_fullStr De novo design and synthesis of dipyridopurinone derivatives as visible-light photocatalysts in productive guanylation reactions
title_full_unstemmed De novo design and synthesis of dipyridopurinone derivatives as visible-light photocatalysts in productive guanylation reactions
title_short De novo design and synthesis of dipyridopurinone derivatives as visible-light photocatalysts in productive guanylation reactions
title_sort de novo design and synthesis of dipyridopurinone derivatives as visible-light photocatalysts in productive guanylation reactions
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8672711/
https://www.ncbi.nlm.nih.gov/pubmed/35024122
http://dx.doi.org/10.1039/d1sc05294b
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