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Contemporary progress in the green synthesis of spiro-thiazolidines and their medicinal significance: a review

The development of new strategies for the production of nitrogen and sulfur-containing heterocycles remains an extremely alluring but challenging proposition. Among these heterocyclic compounds, spiro-thiazolidines are a distinct class of heterocyclic motifs with an all-encompassing range of pharmac...

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Autores principales: Dhadda, Surbhi, Sharma, Shaily, Jakhar, Prakash, Sharma, Himanshu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9891087/
https://www.ncbi.nlm.nih.gov/pubmed/36756557
http://dx.doi.org/10.1039/d2ra07474e
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author Dhadda, Surbhi
Sharma, Shaily
Jakhar, Prakash
Sharma, Himanshu
author_facet Dhadda, Surbhi
Sharma, Shaily
Jakhar, Prakash
Sharma, Himanshu
author_sort Dhadda, Surbhi
collection PubMed
description The development of new strategies for the production of nitrogen and sulfur-containing heterocycles remains an extremely alluring but challenging proposition. Among these heterocyclic compounds, spiro-thiazolidines are a distinct class of heterocyclic motifs with an all-encompassing range of pharmaceutical activities such as anti-histaminic, anti-proliferative, anesthetic, hypnotic, anti-fungal, anti-inflammatory, anti-HIV, anthelmintic, CNS stimulant, and anti-viral potentials. Consequently, investigators have produced these heterocycles through diversified intricate pathways as object structures for medicinal studies. Notwithstanding their innumerable manmade solicitations, there is yet no special periodical on MCRs concerning spiro-thiazolidine via green synthesis. Thus, this in-depth review encompasses the excursion of MCRs to spiro-thiazolidines, including the environment-friendly synthetic approaches, reaction situations, rationale behind the optimal selection of catalyst, scope, anticipated mechanism, and biological activities. In this review, we have focussed on the furthermost current developments in spiro-thiazolidine creation under different conditions, such as ionic liquid-assisted, microwave-assisted, on-water, solid-supported acid-catalyzed, asymmetric, and nanocatalyst-assisted syntheses, developed over the last 8 years. This study details works regarding the total amalgamation of spiro-thiazolidines under N- and S-containing heterocycles. Furthermore, this article summarizes the developments of artificially and pharmaceutically important spiro-thiazolidine candidates.
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spelling pubmed-98910872023-02-07 Contemporary progress in the green synthesis of spiro-thiazolidines and their medicinal significance: a review Dhadda, Surbhi Sharma, Shaily Jakhar, Prakash Sharma, Himanshu RSC Adv Chemistry The development of new strategies for the production of nitrogen and sulfur-containing heterocycles remains an extremely alluring but challenging proposition. Among these heterocyclic compounds, spiro-thiazolidines are a distinct class of heterocyclic motifs with an all-encompassing range of pharmaceutical activities such as anti-histaminic, anti-proliferative, anesthetic, hypnotic, anti-fungal, anti-inflammatory, anti-HIV, anthelmintic, CNS stimulant, and anti-viral potentials. Consequently, investigators have produced these heterocycles through diversified intricate pathways as object structures for medicinal studies. Notwithstanding their innumerable manmade solicitations, there is yet no special periodical on MCRs concerning spiro-thiazolidine via green synthesis. Thus, this in-depth review encompasses the excursion of MCRs to spiro-thiazolidines, including the environment-friendly synthetic approaches, reaction situations, rationale behind the optimal selection of catalyst, scope, anticipated mechanism, and biological activities. In this review, we have focussed on the furthermost current developments in spiro-thiazolidine creation under different conditions, such as ionic liquid-assisted, microwave-assisted, on-water, solid-supported acid-catalyzed, asymmetric, and nanocatalyst-assisted syntheses, developed over the last 8 years. This study details works regarding the total amalgamation of spiro-thiazolidines under N- and S-containing heterocycles. Furthermore, this article summarizes the developments of artificially and pharmaceutically important spiro-thiazolidine candidates. The Royal Society of Chemistry 2023-01-25 /pmc/articles/PMC9891087/ /pubmed/36756557 http://dx.doi.org/10.1039/d2ra07474e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Dhadda, Surbhi
Sharma, Shaily
Jakhar, Prakash
Sharma, Himanshu
Contemporary progress in the green synthesis of spiro-thiazolidines and their medicinal significance: a review
title Contemporary progress in the green synthesis of spiro-thiazolidines and their medicinal significance: a review
title_full Contemporary progress in the green synthesis of spiro-thiazolidines and their medicinal significance: a review
title_fullStr Contemporary progress in the green synthesis of spiro-thiazolidines and their medicinal significance: a review
title_full_unstemmed Contemporary progress in the green synthesis of spiro-thiazolidines and their medicinal significance: a review
title_short Contemporary progress in the green synthesis of spiro-thiazolidines and their medicinal significance: a review
title_sort contemporary progress in the green synthesis of spiro-thiazolidines and their medicinal significance: a review
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9891087/
https://www.ncbi.nlm.nih.gov/pubmed/36756557
http://dx.doi.org/10.1039/d2ra07474e
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