Abstract
The term isatin and its derivative-based MCRs have emerged over the years as a versatile, environment-friendly, and very promising platform for the construction of highly enabling bioactive organic scaffolds such as drugs, natural products, pharmaceuticals etc. In the world of recent advancements, the one-pot strategy based on isatin has come to the forefront of synthetic chemistry for the activation of small organic molecules. This present survey touched on the chemistry of isatin employed over the past decade to sketch and for the creation of various types of organic molecules consisting of heterocyclic or spiro-heterocyclic skeletons via one-pot methodology.
Graphical Abstract
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